Emerging Pollutants

Yawei Wang, Qiurui Zhang, Nanyang Yu, Yuan Wang, Si Wei, Mingliang Fang, Sinuo Tian, Yali Shi, Jianbo Shi, Guangbo Qü, Ying Zhu, Yumin Zhu, Chuhong Zhu, Min Qiao, Jianghuan Hua, Mei Liu, Guorui Liu, Jianguo Liu, Yanna Liu, Nannan Liu, Longfei Jiang, Shuqin Tang, Bixian Mai, Cheng Li, Pan Yang, Lihua Yang, Rongyan Yang, Lili Yang, Xiaoxi Yang, Ruiqiang Yang, Xinghua Qiu, Guangguo Ying, Yan Wang, Gan Zhang, Quan Zhang, Zhen Zhang, Ying Zhang, Qianqian Zhang, Rongjing Lu, Da Chen, Xin Chen, Hexia Chen, Jingwen Chen, Jiazhe Chen, Bingcheng Lin, Xiaojun Luo, Chunling Luo, Rong Ji, Biao Jin, Bingsheng Zhou, Minghui Zheng, Shizhen Zhao, Meirong Zhao, Fanrong Zhao, Lu Jiang, Lingyan Zhu, Linlin Yao, Jingzhi Yao, Yong He, Xunjie Mo, Chuanzi Gao, Yongyong Guo, Nan Sheng, Yunhan Cui, Chengqian Liang, Jian Han, Zhen Cheng, Yanhong Zeng, Wenhui Qiu, Yaqi Cai, Hongli Tan, Bingcai Pan, Jiayin Dai, Dongbin Wei, Chunyang Liao, Jincai Zhao, Guibin Jiang

Prog Chem ›› 2024, Vol. 36 ›› Issue (11) : 1607-1784.

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Prog Chem ›› 2024, Vol. 36 ›› Issue (11) : 1607-1784. DOI: 10.7536/PC241114
Review

Emerging Pollutants

Author information +
History +

Abstract

With the rapid development of current society and economy, as well as the accelerated process of industrialization and urbanization, the complexity and seriousness of environmental pollution issues are becoming increasingly apparent. Beyond traditional pollutants, the appearance of emerging pollutants on a global scale has brought new challenges to environment and public health. China’s “14th Five-Year Plan” and medium and long-term planning put forward “emerging pollutant control”, report of the 20th National Congress of the Communist Party of China also explicitly requested “carry out emerging pollutant control”. In 2022, General Office of the State Council issued “Action Plan for Emerging Pollutant Control”, followed by the Ministry of Ecology and Environment and various provinces, municipalities, and autonomous regions, which released corresponding implementation plans, China has transferred to a new phase of environmental protection that balances the control of both traditional and emerging pollutants. However, management of emerging pollutants is a long-term, dynamic and complex systematic project, which urgently needs to strengthen top-level design as well as scientific and technological support. Conducting systematic research on emerging pollutants not only provides effective scientific guidance for their control and improves the level of environmental quality management, but also assists our country in fulfilling international conventions, enhances the discourse power in global environmental governance, ensures our country environmental security, food security, international trade security, etc., and is of great significance for realizing sustainable development. This review aims to comprehensively explore various aspects of emerging pollutants, including their types and characteristics, production, use and emission, identification and detection, environmental occurrence, migration and transformation, ecotoxicological effects, human exposure, health risks, and management strategies. Furthermore, it looks forward to the future research direction, with a view to providing a scientific basis and decision-making support for control of emerging pollutants in China.

Contents

1 Concepts, types and characteristics of emerging pollutants

1.1 Definition and basic characteristics of emerging pollutants

1.2 Typical emerging pollutants

1.3 Scientific problems faced in the study of emerging pollutants

2 Production, use and emission of emerging pollutants

2.1 Production, use and emission of POPs

2.2 Production, use and release of antibiotics

2.3 Production, use and release of endocrine disruptors

3 Identification and characterization of emerging pollutants

3.1 Non-targeted analytical techniques for identification and characterization of emerging pollutants

3.2 Data analysis techniques for identification and characterization of emerging pollutants

3.3 Application of technologies for identification and characterization of emerging pollutants

3.4 Outlook

4 Environmental level and distribution characteristics

4.1 Regional distribution characteristics of emerging pollutants

4.2 Characteristics of emerging pollutants in environmental media

4.3 Bioconcentration and accumulation of emerging pollutants

5 Environmental transport and transformation of emerging pollutants, source and sink mechanisms

5.1 Multi-media process of emerging pollutants in the water environment and return tendency

5.2 Transport and transformation of emerging pollutants in soil-plant system

5.3 Atmospheric processes of emerging pollutants

5.4 Numerical modeling of regional environmental fate of emerging pollutants

6 Ecotoxicological effects of emerging pollutants

6.1 Ecotoxicology of perfluorinated and polyfluorinated alkyl compounds

6.2 Ecotoxicology of organophosphates

6.3 Integrated exposure assessment of novel nicotinic pesticides in honey crops

6.4 Ecotoxicology of PPCP-like contaminants

7 Human exposure and health risks of emerging pollutants

7.1 Human health risk-oriented screening of environmental contaminants

7.2 ADME processes and conformational relationships of emerging pollutants in humans

7.3 Environmental health risks of emerging pollutants

8 Management of emerging pollutants

8.1 Difficulties in the management of emerging pollutants

8.2 New pollutant management technologies

8.3 China's emerging pollutants environmental management policy

8.4 International experience in environmental management of emerging pollutants

8.5 Problems and suggestions of China's environmental management of emerging pollutants

9 Key scientific issues and prospects

9.1 Lack of emerging pollutants' bottom line

9.2 Environmental and ecotoxicological toxicological effects of low-dose prolonged exposure

9.3 Compound effects of emerging pollutants and histologic study of human exposure

9.4 Strategies for control and green development of high-risk chemicals

9.5 Construction of machine learning-based database for environmental samples and human exposure

9.6 Capacity building of scientific and technological support for emerging pollutants control actions in China

9.7 Coordinated development of ecological and environmental monitoring capability, fine support of emerging pollutant management, and construction of targeted new pollutant risk prevention and pollution prevention system

Key words

emerging pollutants / occurrence level / environmental behavior / ecological risks / control strategies

Cite this article

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Yawei Wang , Qiurui Zhang , Nanyang Yu , et al . Emerging Pollutants[J]. Progress in Chemistry. 2024, 36(11): 1607-1784 https://doi.org/10.7536/PC241114

References

[1]
REGISTRY C. The gold standard for chemical substance information[EB/OL]. [2024-07-01]. https://www.cas.org/cas-data/cas-registry.
[2]
Glüge J, Wang Z Y, Bogdal C, Scheringer M, Hungerbühler K. Sci. Total Environ., 2016, 573: 1132.
[3]
Schnoor J L. Environ. Sci. Technol., 2003, 37(21): 375A.
[4]
Field J A, Johnson C A, Rose J B. Environ. Sci. Technol., 2006, 40(23): 7105.
[5]
Bell K Y, Wells M J M, Traexler K A, Pellegrin M L, Morse A, Bandy J. Water Environ. Res., 2011, 83(10): 1906.
[6]
Arp H P H. Environ. Sci. Technol., 2012, 46(8): 4259.
[7]
Schnoor J L. Environ. Sci. Technol., 2014, 48(19): 11019.
[8]
Snow D D, Cassada D A, Biswas S, Malakar A, D’Alessio M, Marshall A H L, Sallach J B. Water Environ. Res., 2020, 92(10): 1741.
[9]
Zhao Y T, Ye L, Zhang X X. Water Environ. Res., 2018, 90(10): 1301.
[10]
China outlines plan to control new pollutants[EB/OL]. [2024-07-01]. https://english.www.gov.cn/policies/latestreleases/202205/24/content_WS628cd024c6d02e533532b3e1.html.
[11]
Wang Z Y, DeWitt J C, Higgins C P, Cousins I T. Environ. Sci. Technol., 2017, 51(5): 2508.
[12]
Lindstrom A B, Strynar M J, Libelo E L. Environ. Sci. Technol., 2011, 45(19): 7954.
[13]
Prevedouros K, Cousins I T, Buck R C, Korzeniowski S H. Environ. Sci. Technol., 2006, 40(1): 32.
[14]
Yeung L W Y, So M K, Jiang G B, Taniyasu S, Yamashita N, Song M Y, Wu Y N, Li J G, Giesy J P, Guruge K S, Lam P K S. Environ. Sci. Technol., 2006, 40(3): 715.
[15]
Liao C Y, Wang T, Cui L, Zhou Q F, Duan S M, Jiang G B. Environ. Sci. Technol., 2009, 43(6): 2099.
[16]
Xiao F. Water Res., 2017, 124: 482.
[17]
Shi Y L, CAI Y Q. Progress in Chemistry, 2014, 26(4): 665.
[18]
Shi W, Zhang Z, Li M, Dong H, Li J. Environ. Res., 2024, 250: 118485.
[19]
Programme U. U. N. E. Stockholm Convention on Persistent Organic Pollutants, 2023-11-24, 2019.
[20]
Programme U. U. N. E. Proposal to list long-chain perfluorocarboxylic acids, their salts and related compounds in Annex A, B and/or C to the Stockholm Convention on Persistent Organic Pollutants, 2023-11-24, 2021.
[21]
Tyrrell N D. Org. Process Res. Dev., 2023, 27(8): 1422.
[22]
Wang Z Y, Cousins I T, Scheringer M, Buck R C, Hungerbühler K. Environ. Int., 2014, 70: 62.
[23]
Agency, U. E. U. S. E. P. CompTox chemistry Dashboard PFAS Master list of PFAS Sub-stances, 2023-11-24, 2021.
[24]
Saeed A, Altarawneh M, Siddique K, Conesa J A, Ortuño N, Dlugogorski B Z. Ecotoxicol. Environ. Saf., 2020, 192: 110272.
[25]
Birnbaum L S, Staskal D F. Environ. Health Perspect., 2004, 112(1): 9.
[26]
Qu Z, Fang L, Chen D Y, Xu H M, Yan N Q. Fuel, 2017, 203: 128.
[27]
Jiang Y W, Hesser J E. Health Qual. Life Outcomes, 2006, 4: 14.
[28]
Jarosiewicz M, Bukowska B. Med. Pr., 2017, 68(1): 121.
[29]
Hou R, Lin L, Li H X, Liu S, Xu X R, Xu Y P, Jin X W, Yuan Y, Wang Z J. Water Res., 2021, 198: 117168.
[30]
Covaci A, Gerecke A C, Law R J, Voorspoels S, Kohler M, Heeb N V, Leslie H, Allchin C R, de Boer J. Environ. Sci. Technol., 2006, 40(12): 3679.
[31]
Convention S. Proposal to list decabromodiphenyl ether (commercial mixture, c-decaBDE) in Annexes A, B and/or C to the Stockholm Convention on Persistent Organic Pollutants. 2013.
[32]
UNEP. An amendment to Annex A adopted by the Conference of the Parties to the Stockholm Convention on Persistent Organic Pollutants at its sixth meeting. SC-6/13: Listing of hexabromocyclododecane. Secretariat of the Stockholm Convention. Stockholm, Sweden, 2013.
[33]
UNEP. Persistent Organic Pollutants Review Committee to list hexabromodiphenyl ether and eptabromodiphenyl ether in Annex A of the Convention. Stockholm, Sweden, 2009.
[34]
EPA U. S. Priority pollutants. EPA, 2022.
[35]
Announcement on issuing the "List of priority controlled chemicals (the first batch)"[EB/OL]. [2024-07-01]. http://www.mee.gov.cn/gkml/hbb/bgg/201712/t20171229_428832.htm.
[36]
Zhao J P, Wang P, Wang C, Fu M, Li Y M, Yang R Q, Fu J J, Hao Y F, Matsiko J, Zhang Q H, Jiang G B. Sci. Total Environ., 2020, 720: 137557.
[37]
Wang P, Li Y M, Zhang Q H, Yang Q H, Zhang L, Liu F B, Fu J J, Meng W Y, Wang D, Sun H Z, Zheng S C, Hao Y F, Liang Y, Jiang G B. Atmos. Environ., 2017, 150: 407.
[38]
Sepúlveda A, Schluep M, Renaud F G, Streicher M, Kuehr R, Hagelüken C, Gerecke A C. Environ. Impact Assess. Rev., 2010, 30(1): 28.
[39]
Akram R, Natasha, Fahad S, Hashmi M Z, Wahid A, Adnan M, Mubeen M, Khan N, Rehmani M I A, Awais M, Abbas M, Shahzad K, Ahmad S, Hammad H M, Nasim W. Environ. Sci. Pollut. Res., 2024, 26(17): 16923.
[40]
Shi Z X, Wu Y N, Li J G, Zhao Y F, Feng J F. Environ. Sci. Technol., 2009, 43(12): 4314.
[41]
Wu J P, Zhang Y, Luo X J, She Y Z, Yu L H, Chen S J, Mai B X. J. Environ. Sci., 2012, 24(2): 183.
[42]
Montalbano A M, Albano G D, Anzalone G, Moscato M, Gagliardo R, Di Sano C, Bonanno A, Ruggieri S, Cibella F, Profita M. Chemosphere, 2020, 245: 125600.
[43]
Dong L Y, Wang S T, Qu J Z, You H, Liu D M. Ecotoxicol. Environ. Saf., 2021, 208: 111570.
[44]
Chen M L, Liu Q P, Shi H H. J. Environ. Health, 2008, 25(10): 937.
(陈玛丽, 刘青坡, 施华宏. 环境与健康杂志, 2008, 25(10): 937.).
[45]
Schauer U M D, Völkel W, Dekant W. Toxicol. Sci., 2006, 91(1): 49.
[46]
Colnot T, Kacew S, Dekant W. Arch. Toxicol., 2013, 88(3): 553.
[47]
Hu J, Liang Y, Chen M J, Wang X R. Environ. Toxicol., 2009, 24(4): 334.
[48]
Shi H H, Qian L J, Guo S Z, Zhang X L, Liu J Q, Cao Q Z. Comp. Biochem. Physiol. Part C Toxicol. Pharmacol., 2010, 152(1): 62.
[49]
Shi Y J, Xu X B, Zheng X Q, Lu Y L. Comp. Biochem. Physiol. Part C Toxicol. Pharmacol., 2015, 174-175: 32.
[50]
Zhang Y, Jing L Y, He X H, Li Y F, Ma X. J. Ind. Eng. Chem., 2015, 21: 610.
[51]
Peng X X, Jia X S. Bioresour. Technol., 2013, 148: 386.
[52]
Xiong P, Yan X T, Zhu Q Q, Qu G B, Shi J B, Liao C Y, Jiang G B. Environ. Sci. Technol., 2019, 53(23): 13551.
[53]
Luo Q, Cai Z W, Wong M H. Sci. Total Environ., 2007, 383(1-3): 115.
[54]
Wang Y W, Jiang G B, Lam P K S, Li A. Environ. Int., 2007, 33(7): 963.
[55]
Wang R, Cheng H G, Gong Y W, Huang T. Environ. Pollut., 2023, 334: 122121.
[56]
He H Z, Li Y Y, Shen R, Shim H, Zeng Y H, Zhao S Y, Lu Q H, Mai B X, Wang S Q. Environ. Pollut., 2021, 290: 118060.
[57]
EPA. Short-Chain Chlorinated Paraffins (SCCPs) and Other Chlorinated Paraffins Action Plan. EPA, 2009.
[58]
Zhou Y H, de Wit C A, Yin G, Du X Y, Yuan B. Environ. Int., 2019, 130: 104955.
[59]
Van Mourik L M, Gaus C, Leonards P E G, de Boer J. Chemosphere, 2016, 155: 415.
[60]
Song B Y, Bai L, Li J, Gao P, Zhang C L, Gao J Y, Wang Y W. Res. Environ. Sci., 2022, 35(9): 2077.
(宋博宇, 白露, 黎娟, 高鹏, 张彩丽, 高洁玉, 王亚韡. 环境科学研究, 2022, 35(9): 2077.).
[61]
Matsukami H, Takemori H, Takasuga T, Kuramochi H, Kajiwara N. Chemosphere, 2020, 244: 125531.
[62]
Andrade H, Glüge J, Herzke D, Ashta N M, Nayagar S M, Scheringer M. Environ. Sci. Eur., 2021, 33: 85.
[63]
Jiang L, Ma X D, Wang Y W, Gao W, Liao C Y, Gong Y F, Jiang G B. Environ. Sci. Technol., 2022, 56(18): 12852.
[64]
Jiang L, Gao W, Ma X D, Wang Y J, Wang C, Li Y M, Yang R Q, Fu J J, Shi J B, Zhang Q H, Wang Y W, Jiang G B. Environ. Sci. Technol., 2021, 55(1): 230.
[65]
Nøst T H, Halse A K, Randall S, Borgen A R, Schlabach M, Paul A, Rahman A, Breivik K. Environ. Sci. Technol., 2015, 49(19): 11372.
[66]
Gallistl C, Lok B, Schlienz A, Vetter W. Sci. Total Environ., 2017, 595: 303.
[67]
Wang Y W, Fu J J, Jiang G B. Environ. Chem., 2009, 28:1.
(王亚韡, 傅建捷, 江桂斌. 环境化学, 2009, 28:1.).
[68]
Schrenk D, Bignami M, Bodin L, Chipman J K, del Mazo J, Grasl-Kraupp B, Hogstrand C, Hoogenboom L R, Leblanc J C, Nebbia C S, Ntzani E, Petersen A, Sand S, Schwerdtle T, Vleminckx C, Wallace H, Brüschweiler B, Leonards P, Rose M, Binaglia M, Horváth Z, Ramos Bordajandi L, Nielsen E. EFSA J., 2020, 18(3): e05991.
[69]
IARC. Chlorinated paraffins. 1990: 55.
[70]
IPCS. Chlorinated paraffins (EHC 181, 1996). 1996.
[71]
Zeng L X, Lam J C W, Horii Y, Li X L, Chen W F, Qiu J W, Leung K M Y, Yamazaki E, Yamashita N, Lam P K S. Environ. Pollut., 2017, 224: 357.
[72]
Yuan B, de Wit C A. Environ. Sci. Technol. Lett., 2022, 9(12): 1044.
[73]
Yuan B, Haug L S, Tay J H, Padilla-Sánchez J A, Papadopoulou E, de Wit C A. Environ. Sci. Technol., 2022, 56(23): 17080.
[74]
Yuan B, McLachlan M S, Roos A M, Simon M, Strid A, de Wit C A. Environ. Sci. Technol. Lett., 2021, 8(9): 753.
[75]
Zeng L X, Lam J C W, Chen H, Du B B, Leung K M Y, Lam P K S. Environ. Sci. Technol., 2017, 51(17): 9543.
[76]
Wang Y, Gao W, Wang Y W, Jiang G B. Environ. Sci. Technol. Lett., 2018, 5(1): 9.
[77]
Armitage J M, Gobas F A P C. Environ. Sci. Technol., 2007, 41(11): 4019.
[78]
Yuan B, Vorkamp K, Roos A M, Faxneld S, Sonne C, Garbus S E, Lind Y, Eulaers I, Hellström P, Dietz R, Persson S, Bossi R, de Wit C A. Environ. Sci. Technol., 2019, 53(7): 3526.
[79]
Glüge J, Schinkel L, Hungerbühler K, Cariou R, Bogdal C. Environ. Sci. Technol., 2018, 52(12): 6743.
[80]
UNEP. Chlorinated paraffins with carbon chain lengths in the range C14-17 and chlorination levels at or exceeding 45 percent chlorine by weight.UNEP, 2022.
[81]
Xia D, Vaye O, Lu R J, Sun Y F. Sci. Total Environ., 2021, 769: 144701.
[82]
Guida Y, Matsukami H, Oliveira de Carvalho G, Weber R, Vetter W, Kajiwara N. Environ. Sci. Technol., 2023, 57(35): 13136.
[83]
Zhou Q X, Jiang G B. Chin. Sci. Technol. Terms J., 2001, 3(3): 12.
(周庆祥, 江桂斌. 科技术语研究, 2001, 3(3): 12.).
[84]
Oberdörster E, McClellan-Green P. Mar. Environ. Res., 2002, 54(3/4/5): 715.
[85]
Gore A C, Chappell V A, Fenton S E, Flaws J A, Nadal A, Prins G S, Toppari J, Zoeller R T. Endocr. Rev., 2015, 36(6): E1.
[86]
Newbold R. Hormones, 2010, 9(3): 206.
[87]
Caporale N, Leemans M, Birgersson L, Germain P L, Cheroni C, BorbÉly G, Engdahl E, Lindh C, Bressan R B, Cavallo F, Chorev N E, D’Agostino G A, Pollard S M, Rigoli M T, Tenderini E, Tobon A L, Trattaro S, Troglio F, Zanella M, Bergman Å, Damdimopoulou P, Jönsson M, Kiess W, Kitraki E, Kiviranta H, Nånberg E, Öberg M, Rantakokko P, RudÉn C, Söder O, Bornehag C G, Demeneix B, Fini J B, Gennings C, Rüegg J, Sturve J, Testa G. Science, 2022, 375(6582): eabe8244.
[88]
Toporova L, Balaguer P. Mol. Cell. Endocrinol., 2020, 502: 110665.
[89]
PÉrian S, Vanacker J M. Front. Endocrinol., 2020, 11: 545.
[90]
Jiang G B. Science News, 1999, (34): 14.
(江桂斌. 科学新闻, 1999,(34): 14.).
[91]
Shao J, Shi G, Song M, Jiang G. Environ. Int., 2005, 31(5): 763.
[92]
Zhou Q F, Jiang G B, Liu J Y. Arch. Environ. Contam. Toxicol., 2002, 42(3): 332.
[93]
Ruan T, Wang Y W, Wang T, Zhang Q H, Ding L, Liu J Y, Wang C, Qu G B, Jiang G B. Environ. Sci. Technol., 2010, 44(15): 5755.
[94]
Qu G B, Liu A F, Wang T, Zhang C L, Fu J J, Yu M, Sun J T, Zhu N L, Li Z N, Wei G H, Du Y G, Shi J B, Liu S J, Jiang G B. Environ. Sci. Technol., 2013, 47(9): 4760.
[95]
Daughton C H, Ternes T A. Environ. Health Perspect., 2000, 108: 598.
[96]
Awfa D, Ateia M, Fujii M, Johnson M S, Yoshimura C. Water Res., 2018, 142: 26.
[97]
Meyer M F, Powers S M, Hampton S E. Environ. Sci. Technol., 2019, 53: 12961.
[98]
Anand U, Adelodun B, Cabreros C, Kumar P, Suresh S, Dey A, Ballesteros F Jr, Bontempi E. Environ. Chem. Lett., 2022, 20(6): 3883.
[99]
Priya A K, Gnanasekaran L, Rajendran S, Qin J Q, Vasseghian Y. Environ. Res., 2022, 204: 112298.
[100]
Van Boeckel T P, Brower C, Gilbert M, Grenfell B T, Levin S A, Robinson T P, Teillant A, Laxminarayan R. Proc. Natl. Acad. Sci. U. S. A., 2015, 112(18): 5649.
[101]
Kumar R, Sarmah A K, Padhye L P. J. Environ. Manag., 2019, 233: 649.
[102]
Xu M J, Huang H T, Li N, Li F, Wang D H, Luo Q. Ecotoxicol. Environ. Saf., 2019, 175: 289.
[103]
Kolpin D W, Furlong E T, Meyer M T, Thurman E M, Zaugg S D, Barber L B, Buxton H T. Environ. Sci. Technol., 2002, 36(6): 1202.
[104]
Subedi B, Balakrishna K, Sinha R K, Yamashita N, Balasubramanian V G, Kannan K. J. Environ. Chem. Eng., 2015, 3(4): 2882.
[105]
Lin T, Yu S L, Chen W. Chemosphere, 2016, 152: 1.
[106]
Peng X Z, Yu Y Y, Tang C M, Tan J H, Huang Q X, Wang Z D. Sci. Total Environ., 2008, 397(1/2/3): 158.
[107]
Managaki S, Murata A, Takada H, Tuyen B C, Chiem N H. Environ. Sci. Technol., 2007, 41(23): 8004.
[108]
Kim S D, Cho J, Kim I S, Vanderford B J, Snyder S A. Water Res., 2007, 41(5): 1013.
[109]
Murata A, Takada H, Mutoh K, Hosoda H, Harada A, Nakada N. Sci. Total Environ., 2011, 409(24): 5305.
[110]
Arpin-Pont L, Bueno M J M, Gomez E, Fenet H. Environ. Sci. Pollut. Res., 2016, 23(6): 4978.
[111]
Xu Y B, Yu X Q, Xu B L, Peng D, Guo X T. Sci. Total Environ., 2021, 753: 141891.
[112]
Hamscher G, Sczesny S, Höper H, Nau H. Anal. Chem., 2002, 74(7): 1509.
[113]
Wu W Y, Ma M, Hu Y Q, Yu W C, Liu H L, Bao Z. Agric. Water Manag., 2021, 251: 106862.
[114]
Lu Y, Yuan T, Yun S H, Wang W H, Kannan K. Arch. Environ. Contam. Toxicol., 2011, 60(1): 182.
[115]
Chen D H, Zeng X Y, Sheng Y Q, Bi X H, Gui H Y, Sheng G Y, Fu J M. Chemosphere, 2007, 66(2): 252.
[116]
Wang L, Liao C Y, Liu F, Wu Q, Guo Y, Moon H B, Nakata H, Kannan K. Environ. Sci. Technol., 2012, 46(21): 11584.
[117]
Zhang X L, Liang G F, Zeng X Y, Zhou J, Sheng G Y, Fu J M. J. Environ. Sci., 2011, 23(6): 983.
[118]
Li X, Ying G G, Su H C, Yang X B, Wang L. Environ. Int., 2010, 36(6): 557.
[119]
Moore J E, Rao J R, Moore P J A, Millar B C, Goldsmith C E, Loughrey A, Rooney P J. Aquat. Ecol., 2010, 44(2): 349.
[120]
Xue X H, Xue J C, Liu W B. Environ. Sci. Technol., 2017, 51: 780.
[121]
Liu J L, Wong M H. Environ. Int., 2013, 59: 208.
[122]
Dodd M C, Shah A D, von Gunten U, Huang C H. Environ. Sci. Technol., 2005, 39(18): 7065.
[123]
Miranda C D, Zemelman R. Sci. Total Environ., 2002, 293(1/2/3): 207.
[124]
Van Dijck P, van de Voorde H. Appl. Environ. Microbiol., 1976, 31(3): 332.
[125]
Lai K M, Scrimshaw M D, Lester J N. Crit. Rev. Toxicol., 2002, 32(2): 113.
[126]
Park J Y, Huwe B. Environ. Sci. Pollut. Res., 2016, 23(12): 12456.
[127]
Novo M, Verdú I, Trigo D, Martínez-Guitarte J L. Ecotoxicol. Environ. Saf., 2018, 150: 159.
[128]
Pan X, Su D, Song G M, Ben W W. Asian J. Ecotoxicol., 2017, 12(5): 184.
(潘寻, 苏都, 宋光明, 贲伟伟. 生态毒理学报, 2017, 12(5): 184.).
[129]
Qin Q, Chen X J, Zhuang J. Crit. Rev. Environ. Sci. Technol., 2015, 45(13): 1379.
[130]
Buchberger W W. J. Chromatogr. A, 2011, 1218(4): 603.
[131]
Zhang Z, Zeng K, Liu J F. Trac Trends Anal. Chem., 2017, 87: 49.
[132]
Qin Q, Song K, Sun L J, Sun Y F, Sun Y F. Ecol. Environ. Sci., 2019, 28(5): 1046.
(秦秦, 宋科, 孙丽娟, 孙雅菲. 生态环境学报, 2019, 28(5): 1046.).
[133]
Wang J L, Wang S Z. J. Environ. Manag., 2016, 182: 620.
[134]
Koelmans A A, Redondo-Hasselerharm P E, Nor N H M, de Ruijter V N, Mintenig S M, Kooi M. Nat. Rev. Mater., 2022, 7(2): 138.
[135]
Vethaak A D, Legler J. Science, 2021, 371(6530): 672.
[136]
Duis K, Coors A. Environ. Sci. Eur., 2016, 28: 2.
[137]
Fairbrother A, Hsueh H C, Kim J H, Jacobs D, Perry L, Goodwin D, White C, Watson S, Sung L P. Polym. Degrad. Stab., 2019, 165: 153.
[138]
Goßmann I, Herzke D, Held A, Schulz J, Nikiforov V, Georgi C, Evangeliou N, Eckhardt S, Gerdts G, Wurl O, Scholz-Böttcher B M. Nat. Commun., 2023, 14: 3707.
[139]
Su Y, Hu X, Tang H J, Lu K, Li H M, Liu S J, Xing B S, Ji R. Nat. Nanotechnol., 2022, 17(1): 76.
[140]
Tian Z Y, Zhao H Q, Peter K T, Gonzalez M, Wetzel J, Wu C, Hu X M, Prat J, Mudrock E, Hettinger R, Cortina A E, Biswas R G, Kock F V C, Soong R, Jenne A, Du B W, Hou F, He H, Lundeen R, Gilbreath A, Sutton R, Scholz N L, Davis J W, Dodd M C, Simpson A, McIntyre J K, Kolodziej E P. Science, 2021, 371(6525): 185.
[141]
Kim M S, Chang H, Zheng L, Yan Q, Pfleger B F, Klier J, Nelson K, Majumder E L W, Huber G W. Chem. Rev., 2023, 123(16): 9915.
[142]
Kane I A, Clare M A, Miramontes E, Wogelius R, Rothwell J J, Garreau P, Pohl F. Science, 2020, 368(6495): 1140.
[143]
Tang L, Feng J C, Li C R, Liang J Z, Zhang S, Yang Z F. J. Environ. Manag., 2023, 329: 116961.
[144]
Nava V, Chandra S, Aherne J, Alfonso M B, Antão-Geraldes A M, Attermeyer K, Bao R, Bartrons M, Berger S A, Biernaczyk M, Bissen R, Brookes J D, Brown D, Cañedo-Argüelles M, Canle M, Capelli C, Carballeira R, Cereijo J L, Chawchai S, Christensen S T, Christoffersen K S, de Eyto E, Delgado J, Dornan T N, Doubek J P, Dusaucy J, Erina O, Ersoy Z, Feuchtmayr H, Frezzotti M L, Galafassi S, Gateuille D, Gonçalves V, Grossart H P, Hamilton D P, Harris T D, Kangur K, Kankılıç G B, Kessler R, Kiel C, Krynak E M, Leiva-Presa À, Lepori F, Matias M G, Matsuzaki S I S, McElarney Y, Messyasz B, Mitchell M, Mlambo M C, Motitsoe S N, Nandini S, Orlandi V, Owens C, Özkundakci D, Pinnow S, Pociecha A, Raposeiro P M, Rõõm E I, Rotta F, Salmaso N, Sarma S S S, Sartirana D, Scordo F, Sibomana C, Siewert D, Stepanowska K, Tavsanoğlu Ü N, Tereshina M, Thompson J, Tolotti M, Valois A, Verburg P, Welsh B, Wesolek B, Weyhenmeyer G A, Wu N C, Zawisza E, Zink L, Leoni B. Nature, 2023, 619(7969): 317.
[145]
Mai L, You S N, He H, Bao L J, Liu L Y, Zeng E Y. Environ. Sci. Technol., 2019, 53(20): 11810.
[146]
Wang M J, Li Q Q, Shi C Z, Lv J, Xu Y D, Yang J J, Chua S L, Jia L R, Chen H W, Liu Q, Huang C J, Huang Y C, Chen J M, Fang M L. Nat. Nanotechnol., 2023, 18(4): 403.
[147]
Yaseen A, Assad I, Sofi M S, Hashmi M Z, Bhat S U. Environ. Res., 2022, 212: 113258.
[148]
MacLeod M, Arp H P H, Tekman M B, Jahnke A. Science, 2021, 373(6550): 61.
[149]
Chen L Y, Yu L, Li Y J, Han B J, Zhang J D, Tao S, Liu W X. Environ. Sci. Technol., 2022, 56(23): 16964.
[150]
Revell L E, Kuma P, Le Ru E C, Somerville W R C, Gaw S. Nature, 2021, 598(7881): 462.
[151]
Fu Y M, Pang Q T, Ga S L Z, Wu P P, Wang Y J, Mao M, Yuan Z, Xu X R, Liu K, Wang X H, Li D J, Zhang Y X. One Earth, 2023, 6(6): 705.
[152]
Brahney J, Mahowald N, Prank M, Cornwell G, Klimont Z, Matsui H, Prather K A. Proceedings of the National Academy of Sciences, 2021, 118(16): e2020719118.
[153]
Gigault J, El Hadri H, Nguyen B, Grassl B, Rowenczyk L, Tufenkji N, Feng S Y, Wiesner M. Nat. Nanotechnol., 2021, 16(5): 501.
[154]
Kooi M, van Nes E H, Scheffer M, Koelmans A A. Environ. Sci. Technol., 2017, 51(14): 7963.
[155]
Sun X D, Yuan X Z, Jia Y B, Feng L J, Zhu F P, Dong S S, Liu J J, Kong X P, Tian H Y, Duan J L, Ding Z J, Wang S G, Xing B S. Nat. Nanotechnol., 2020, 15(9): 755.
[156]
Shi J, Wang Z, Peng Y M, Fan Z M, Zhang Z Y, Wang X, Zhu K, Shang J Y, Wang J. Environ. Sci. Technol., 2023, 57(36): 13588.
[157]
Rillig M C, Lehmann A. Science, 2020, 368(6498): 1430.
[158]
Seeley M E, Song B, Passie R, Hale R C. Nat. Commun., 2020, 11: 2372.
[159]
Zhou Y F, He G, Bhagwat G, Palanisami T, Yang Y Y, Liu W Z, Zhang Q F. Glob. Change Biol., 2023, 29(14): 3895.
[160]
Sengupta S, Chattopadhyay M K, Grossart H P. Front. Microbiol., 2013, 4: 47.
[161]
Zhu Y G, Ouyang W Y, Wu N, Su J Q, Qiao M. Bull. Chin. Acad. Sci., 2015, 30(4): 509.
(朱永官, 欧阳纬莹, 吴楠, 苏建强, 乔敏. 中国科学院院刊, 2015, 30(4): 509.).
[162]
Davies J, Davies D. Microbiol. Mol. Biol. Rev., 2010, 74(3): 417.
[163]
D’Costa V M, King C E, Kalan L, Morar M, Sung W W L, Schwarz C, Froese D, Zazula G, Calmels F, Debruyne R, Golding G B, Poinar H N, Wright G D. Nature, 2011, 477(7365): 457.
[164]
Knapp C W, Dolfing J, Ehlert P A I, Graham D W. Environ. Sci. Technol., 2010, 44(2): 580.
[165]
Zhu Y G, Johnson T A, Su J Q, Qiao M, Guo G X, Stedtfeld R D, Hashsham S A, Tiedje J M. Proc. Natl. Acad. Sci. U. S. A., 2013, 110(9): 3435.
[166]
Pruden A, Pei R T, Storteboom H, Carlson K H. Environ. Sci. Technol., 2006, 40(23): 7445.
[167]
Alcock B P, Huynh W, Chalil R, Smith K W, Raphenya A, Wlodarski M A, Edalatmand A, Petkau A, Syed S A, Tsang K K, Baker S J C, Dave M, McCarthy M, Mukiri K M, Nasir J A, Golbon B, Imtiaz H, Jiang X J, Kaur K, Kwong M, Liang Z C, Niu K C, Shan P, Yang J Y J, Gray K, Hoad G R, Jia B F, Bhando T, Carfrae L, Farha M, French S, Gordzevich R, Rachwalski K, Tu M, Bordeleau E, Dooley D, Griffiths E, Zubyk H L, Brown E D, Maguire F, Beiko R, Hsiao W W L, Brinkman F S L, Van Domselaar G, McArthur A G. Nucleic Acids Res., 2023, 51(D1): D690.
[168]
Zhu Y G, Zhao Y, Li B, Huang C L, Zhang S Y, Yu S, Chen Y S, Zhang T, Gillings M R, Su J Q. Nat. Microbiol., 2017, 2(4): 16270.
[169]
Programme U. N. E. Bracing for Superbugs: Strengthening environmental action in the One Health response to antimicrobial resistance. In Geneva, 2023.
[170]
Emerging contaminants: a one health perspective[EB/OL]. [2024-07-01]. https://www.sciencedirect.com/science/article/pii/S266667582400050X?via%3Dihub.
[171]
Emerging contaminants and biological effects in Arctic wildlife[EB/OL]. [2024-07-01]. https://www.sciencedirect.com/science/article/pii/S0169534721000239.
[172]
We need a “Keeling Curve” approach for contaminants of emerging concern[EB/OL]. [2024-07-01]. https://pubs.acs.org/doi/full/10.1021/acs.est.3c10630.
[173]
IPEN. Industrial chemicals[EB/OL]. [2024-07-01]. https://ipen.org/toxic-priorities/industrial-chemicals.
[174]
FAMIC. Basic knowlegde of agricultural chemicals[EB/OL]. 2014. [2024-07-01]. https://www.acis.famic.go.jp/eng/chishiki/01.htm.
[175]
Schuster J K, Harner T, Eng A, Rauert C, Su K, Hornbuckle K C, Johnson C W. Environ. Sci. Technol., 2021, 55(14): 9479.
[176]
Jones K C. Environ. Sci. Technol., 2021, 55(14): 9400.
[177]
White K B, Kalina J, Scheringer M, Přibylová P, Kukučka P, Kohoutek J, Prokeš R, Klánová J. Environ. Sci. Technol., 2023, 57(31): 11583.
[178]
Li L, Chen C K, Li D S, Breivik K, Abbasi G, Li Y F. Environ. Sci.: Adv., 2023, 2(1): 55.
[179]
Chen C K, Chen A N, Zhan F Q, Wania F, Zhang S X, Li L, Liu J G. Environ. Sci. Technol., 2022, 56(12): 7895.
[180]
Chen C K, Chen A N, Li L, Peng W Y, Weber R, Liu J G. Environ. Sci. Technol., 2021, 55(11): 7335.
[181]
Yang J, Zhang W J. Pestic. Sci. Adm., 2011, 32(10): 6.
(杨峻, 张文君. 农药科学与管理, 2011, 32(10): 6.).
[182]
Li Y F, MacDonald R W. Sci. Total Environ., 2005, 342(12/3): 87.
[183]
Ti B W, Wang J, Liu J G, Hu J X. Res. Environ. Sci., 2016, 29(8): 1241.
(提博雯, 王杰, 刘建国, 胡建信. 环境科学研究, 2016, 29(8): 1241.).
[184]
Yang Y J. Pestic. Sci. Adm., 2019, 40(1): 18.
(杨益军. 农药科学与管理, 2019, 40(1): 18.).
[185]
UNEP. UNEP/POPS/POPRC.19/4: Draft risk profile: chlorpyrifos. United Nations Environment Programme, 2023.
[186]
Sang C H, Sørensen P B, An W, Andersen J H, Yang M. Environ. Pollut., 2020, 257: 113590.
[187]
Abbasi G, Li L, Breivik K. Environ. Sci. Technol., 2019, 53(11): 6330.
[188]
Ni K, Lu Y L, Wang T Y, Shi Y J, Kannan K, Xu L, Li Q S, Liu S J. J. Environ. Manag., 2013, 115: 114.
[189]
Chen Y, Li J H, Tan Q Y. Environ. Pollut., 2020, 260: 114022.
[190]
Li H Y, Wang Z X, He J, Zhang N, Mao X X, Ma J M, Gao H, Yang Z L, Ma H B. J. Hazard. Mater., 2023, 459: 132223.
[191]
Heeb N V, Schweizer W B, Kohler M, Gerecke A C. Chemosphere, 2005, 61(1): 65.
[192]
Li L, Wania F. Environ. Sci. Technol., 2018, 52(18): 10532.
[193]
Li L, Weber R, Liu J G, Hu J X. Environ. Int., 2016, 91: 291.
[194]
Shen K H, Li L, Liu J Z, Chen C K, Liu J G. Environ. Pollut., 2019, 250: 79.
[195]
Chen A N, Chen C K, Zhang S X, Li L, Zhang Z Z, Chen J Z, Jing Q N, Liu J G. Environ. Pollut., 2023, 327: 121536.
[196]
Yao L L, Wang Y Y, Shi J B, Liu Y N, Guo H, Yang X X, Liu Y Q, Ma J J, Li D Y, Wang Z N, Li Z K, Luo Q, Fu J J, Zhang Q H, Qu G B, Wang Y X, Jiang G B. Environ. Sci. Technol., 2021, 55(12): 8191.
[197]
Wang J, Dai G D. Chem. Res. Toxicol., 2022, 35(9): 1512.
[198]
Evich M G, Davis M J B, McCord J P, Acrey B, Awkerman J A, Knappe D R U, Lindstrom A B, Speth T F, Tebes-Stevens C, Strynar M J, Wang Z Y, Weber E J, Henderson W M, Washington J W. Science, 2022, 375(6580): eabg9065.
[199]
Ng C, Cousins I T, DeWitt J C, Glüge J, Goldenman G, Herzke D, Lohmann R, Miller M, Patton S, Scheringer M, Trier X, Wang Z Y. Environ. Sci. Technol., 2021: acs.est.1c03386.
[200]
UNEP. UNEP/POPS/POPRC.2/17/Add.5: Report of the Persistent Organic Pollutants Review Committee on the work of its second meeting. United Nations Environment Programme, 2006.
[201]
Paul A G, Jones K C, Sweetman A J. Environ. Sci. Technol., 2009, 43(2): 386.
[202]
Prevedouros K, Cousins I T, Buck R C, Korzeniowski S H. Environ. Sci. Technol., 2006, 40(1): 32.
[203]
Wang Z Y, Cousins I T, Scheringer M, Buck R C, Hungerbühler K. Environ. Int., 2014, 70: 62.
[204]
Zhang L, Liu J G, Hu J X, Liu C, Guo W G, Wang Q, Wang H. Environ. Pollut., 2012, 165: 193.
[205]
UNEP. UNEP/POPS/POPRC.12/11/Add.2: Additional information relating to the draft risk management evaluation for Pentadecafluorooctanoic acid (PFOA, Perfluorooctanoic acid), its salts and PFOA-related compounds. United Nations Environment Programme, 2016.
[206]
Wang Z Y, Cousins I T, Scheringer M, Buck R C, Hungerbühler K. Environ. Int., 2014, 69: 166.
[207]
Li L, Zhai Z H, Liu J G, Hu J X. Chemosphere, 2015, 129: 100.
[208]
UNEP. UNEP/POPS/POPRC.14/6/Add.1: Report of the Persistent Organic Pollutants Review Committee on the work of its fourteenth meeting. United Nations Environment Programme, 2018.
[209]
OECD. OECD existing chemicals database[EB/OL]. 2021.[2024-07-01]. https://hpvchemicals.oecd.org/ui/Search.aspx.
[210]
ECHA. 2-(2H-benzotriazol-2-yl)-4,6-ditertpentylphenol registration dossier[EB/OL]. 2020.[2024-07-01]. https://echa.europa.eu/es/substance-information/-/substanceinfo/100.043.062.
[211]
UNEP. UNEP/POPS/POPRC.17/13/Add.3: Risk profile for UV-328. United Nations Environment Programme, 2022.
[212]
Browne A J, Chipeta M G, Haines-Woodhouse G, Kumaran E P A, Hamadani B H K, Zaraa S, Henry N J, Deshpande A, Reiner R C Jr, Day N P J, Lopez A D, Dunachie S, Moore C E, Stergachis A, Hay S I, Dolecek C. Lancet Planet. Health, 2021, 5(12): e893.
[213]
Van Boeckel T P, Gandra S, Ashok A, Caudron Q, Grenfell B T, Levin S A, Laxminarayan R. Lancet Infect. Dis., 2014, 14(8): 742.
[214]
GREM. Antibiotic usage and consumption. In 2023.
[215]
USFDA. 2020 summary report on antimicrobials sold or distributed for use in food-producing animals. US Food and Drug Administration, 2021.
[216]
Van Boeckel T P, Brower C, Gilbert M, Grenfell B T, Levin S A, Robinson T P, Teillant A, Laxminarayan R. Proc. Natl. Acad. Sci. U. S. A., 2015, 112(18): 5649.
[217]
国务院食品安全办等五部门关于印发《畜禽水产品抗生素、禁用化合物及兽药残留超标专项整治行动方案》的通知[EB/OL].[2024-07-01]. www.jgj.moa.gov.cn/zfjg/201904/t20190418_6186117.htm.
[218]
Van T T H, Yidana Z, Smooker P M, Coloe P J. J. Glob. Antimicrob. Resist., 2020, 20: 170.
[219]
Klein E Y, Van Boeckel T P, Martinez E M, Pant S, Gandra S, Levin S A, Goossens H, Laxminarayan R. Proc. Natl. Acad. Sci. U. S. A., 2018, 115(15): E3463.
[220]
ESAC. Antimicrobial consumption in the EU/EEA (ESAC-Net): annual epidemiological report 2021. European Centre for Disease Prevention Control: Stockholm, Sweden, 2022.
[221]
Qu X Y, Yin C, Sun X H, Huang S S, Li C F, Dong P P, Lu X F, Zhang Z, Yin A T. PLoS One, 2018, 13(5): e0196668.
[222]
Li H, Yan S J, Li D D, Gong Y H, Lu Z X, Yin X. J. Antimicrob. Chemother., 2019, 74(6): 1731.
[223]
King L M, Bartoces M, Fleming-Dutra K E, Roberts R M, Hicks L A. Clin. Infect. Dis., 2019: 70(3): 370.
[224]
Mulchandani R, Wang Y, Gilbert M, Van Boeckel T P. PLoS Glob. Public Health, 2023, 3(2): e0001305.
[225]
WHO. WHO report on surveillance of antibiotic consumption: 2016-2018 early implementation. World Health Organization, 2018.
[226]
Zhang Q Q, Ying G G, Pan C G, Liu Y S, Zhao J L. Environ. Sci. Technol., 2015, 49(11): 6772.
[227]
Lienert J, Güdel K, Escher B I. Environ. Sci. Technol., 2007, 41(12): 4471.
[228]
Sarmah A K, Meyer M T, Boxall A B A. Chemosphere, 2006, 65(5): 725.
[229]
Zhou L J, Ying G G, Zhang R Q, Liu S, Lai H J, Chen Z F, Yang B, Zhao J L. Environ. Sci.: Processes Impacts, 2013, 15(4): 802.
[230]
Yang X C, Zhong Q M, Liang S, Li Y M, Wang Y F, Zhu X B, Liu Y. Environ. Sci. Technol., 2022, 56(9): 5860.
[231]
An W K, Duan L, Zhang Y Z, Zhou Y T, Wang B, Yu G. J. Hazard. Mater., 2022, 422: 126889.
[232]
Hanna N D, Tamhankar A J, Stålsby Lundborg C. Lancet Planet. Health, 2023, 7(1): e45.
[233]
La Merrill M A, Vandenberg L N, Smith M T, Goodson W, Browne P, Patisaul H B, Guyton K Z, Kortenkamp A, Cogliano V J, Woodruff T J, Rieswijk L, Sone H, Korach K S, Gore A C, Zeise L, Zoeller R T. Nat. Rev. Endocrinol., 2020, 16(1): 45.
[234]
The Danish Environmental Protection Agency. List I: Substances identified as endocrine disruptors at EU level[EB/OL]. 2023.[2024-07-01]. https://edlists.org/the-ed-lists/list-i-substances-identified-as-endocrine-disruptors-by-the-eu.
[235]
United States Environmental Protection Agency. Status of endocrine disruptor screening program (EDSP) list 1 screening conclusions[EB/OL]. 2023.[2024-07-01]. https://www.regulations.gov/document/EPA-HQ-OPP-2023-0474-0001.
[236]
Agency E. C. Commission sets up rules to identify endocrine disruptors and long-lasting chemicals and to improve labelling[EB/OL]. 2022.[2024-07-01]. https://ec.europa.eu/commission/presscorner/detail/en/IP_22_7775.
[237]
Wang Z Y, Walker G W, Muir D C G, Nagatani-Yoshida K. Environ. Sci. Technol., 2020, 54(5): 2575.
[238]
Wiesinger H, Wang Z Y, Hellweg S. Environ. Sci. Technol., 2021, 55(13): 9339.
[239]
Cui Y H, Chen J W, Wang Z Y, Wang J Y, Allen D T. Environ. Sci. Technol., 2022, 56(15): 11006.
[240]
Pollution, T. I. P. o. C. Overview Report II: An Overview of Current Scientific Knowledge on the Life Cycles, Environmental Exposures, and Environmental Effects of Select Endocrine Disrupting Chemicals (EDCs) and Potential EDCs, 2017.
[241]
Aurisano N, Weber R, Fantke P. Curr. Opin. Green Sustain. Chem., 2021, 31: 100513.
[242]
OECD. OECD existing chemicals database[EB/OL]. 2023. [2024-07-01]. https://hpvchemicals.oecd.org/UI/AllChemicals.aspx.
[243]
Wang Y, Wang F, Xiang L L, Gu C G, Redmile-Gordon M, Sheng H J, Wang Z Q, Fu Y H, Bian Y R, Jiang X. Environ. Sci. Technol., 2021, 55(6): 3676.
[244]
Lin Y F, Ruan T, Jiang G B. SCIENTIA SINICA Chimica, 2018, 48(10): 1151.
(林泳峰, 阮挺, 江桂斌. 中国科学: 化学, 2018, 48(10): 1151.).
[245]
Ruan T, Jiang G B. Bulletin of the Chinese Academy of Sciences, 2020, 35(11): 1328.
(阮挺, 江桂斌. 中国科学院院刊, 2020, 35(11): 1328.).
[246]
Holmbom B, Voss R H, Mortimer R D, Wong A. Environ. Sci. Technol., 1984, 18(5): 333.
[247]
Burkhard L P, Sheedy B R. Environ. Toxicol. Chem., 1995, 14(4): 697.
[248]
Wigilius B, BorÉn H, Carlberg G E, Grimvall A, Lundgren B V, Sävenhed R. J. Chromatogr. A, 1987, 391: 169.
[249]
Fontanals N, MarcÉ R M, Borrull F. J. Chromatogr. A, 2017, 1524: 66.
[250]
Björklund K, Strömvall A M, Malmqvist P A. Water Sci. Technol., 2011, 64(1): 206.
[251]
Backe W J, Day T C, Field J A. Environ. Sci. Technol., 2013, 47(10): 5226.
[252]
Liu Y N, Qian M L, Ma X X, Zhu L Y, Martin J W. Environ. Sci. Technol., 2018, 52(10): 5830.
[253]
Massei R, Byers H, Beckers L M, Prothmann J, Brack W, Schulze T, Krauss M. Anal. Bioanal. Chem., 2018, 410(1): 177.
[254]
Ma Q C, Yang X X, Guo Y H, Wang Y, Liu Y N, Zhang S Y, Xie H Q, Xiang T T, Li Z K, Nie T, Yan Y H, Qu G B, Jiang G B. Environ. Pollut., 2022, 306: 119369.
[255]
Llompart M, Celeiro M, Dagnac T. Trac Trends Anal. Chem., 2019, 116: 136.
[256]
Svenson A, Viktor T, Remberger M. Environ. Toxicol. Water Qual., 1998, 13(3): 217.
[257]
Baduel C, Mueller J F, Tsai H, Gomez Ramos M J. J. Chromatogr. A, 2015, 1426: 33.
[258]
Zhang K, Pereira A S, Martin J W. Environ. Sci. Technol., 2015, 49(14): 8907.
[259]
Wu C C, Jiang Y J, Bao L J, Zeng E Y. Environ. Sci. Technol., 2022, 56(18): 12999.
[260]
Hawthorne S B, Lanno R, Kreitinger J P. Environ. Toxicol. Chem., 2005, 24(8): 1893.
[261]
Liu Y N, D’Agostino L A, Qu G B, Jiang G B, Martin J W. Trac Trends Anal. Chem., 2019, 121: 115420.
[262]
Li J H, Zhao L M, Letcher R J, Zhang Y Y, Jian K, Zhang J H, Su G Y. Environ. Int., 2019, 127: 35.
[263]
Liu Y N, Dos Santos Pereira A, Martin J W. Anal. Chem., 2015, 87(8): 4260.
[264]
Koelmel J P, Sartain M J, Salcedo J, Murali A, Li X D. In Improving Coverage of the Plasma Lipidome Using Iterative MS/MS Data Acquisition Combined with Lipid Annotator Software and 6546 LC/Q-TOF, 2020.
[265]
Nozière B, Kalberer M, Claeys M, Allan J, D’Anna B, Decesari S, Finessi E, Glasius M, Grgić I, Hamilton J F, Hoffmann T, Iinuma Y, Jaoui M, Kahnt A, Kampf C J, Kourtchev I, Maenhaut W, Marsden N, Saarikoski S, Schnelle-Kreis J, Surratt J D, Szidat S, Szmigielski R, Wisthaler A. Chem. Rev., 2015, 115(10): 3919.
[266]
Stemmler E A, Hites R A. Biol. Mass Spectrom., 1988, 17(4): 311.
[267]
Zwiener C, Frimmel F H. Anal. Bioanal. Chem., 2004, 378(4): 851.
[268]
Gago-Ferrero P, Krettek A, Fischer S, Wiberg K, Ahrens L. Environ. Sci. Technol., 2018, 52(12): 6881.
[269]
Lin Y F, Yang J, Fu Q, Ruan T, Jiang G B. Environ. Sci. Technol., 2019, 53(10): 5687.
[270]
Trego M L, Hoh E, Kellar N M, Meszaros S, Robbins M N, Dodder N G, Whitehead A, Lewison R L. Environ. Sci. Technol., 2018, 52(5): 3101.
[271]
Ye L J, Meng W K, Huang J N, Li J H, Su G Y. Environ. Sci. Technol., 2021, 55(9): 5836.
[272]
Djoumbou-Feunang Y, Fiamoncini J, Gil-de-la-Fuente A, Greiner R, Manach C, Wishart D S. J. Cheminf., 2019, 11: 2.
[273]
Yu N Y, Guo H W, Yang J P, Jin L, Wang X B, Shi W, Zhang X W, Yu H X, Wei S. Environ. Sci. Technol., 2018, 52(15): 8205.
[274]
Wang Y, Yu N Y, Zhu X B, Guo H W, Jiang J G, Wang X B, Shi W, Wu J C, Yu H X, Wei S. Environ. Sci. Technol., 2018, 52(19): 11007.
[275]
Koelmel J P, Stelben P, McDonough C A, Dukes D A, Aristizabal-Henao J J, Nason S L, Li Y, Sternberg S, Lin E, Beckmann M, Williams A J, Draper J, Finch J P, Munk J K, Deigl C, Rennie E E, Bowden J A, Godri Pollitt K J. Anal. Bioanal. Chem., 2022, 414(3): 1201.
[276]
Li L H, Gao R J, Wang X B, Deng Y Y, Sun H, Sun H J, Zhang B B, Yu N Y, Gu C, Pan B C, Yu H X, Wei S. Anal. Chem., 2023, 95(39): 14551.
[277]
Loos M, Singer H. J. Cheminf., 2017, 9: 12.
[278]
Liu Y N, Richardson E S, Derocher A E, Lunn N J, Lehmler H J, Li X S, Zhang Y F, Cui J Y, Cheng L H, Martin J W. Angew. Chem., 2018, 130(50): 16639.
[279]
Peng H, Chen C L, Cantin J, Saunders D M V, Sun J X, Tang S, Codling G, Hecker M, Wiseman S, Jones P D, Li A, Rockne K J, Sturchio N C, Cai M H, Giesy J P. Environ. Sci. Technol., 2016, 50(18): 10097.
[280]
LÉon A, Cariou R, Hutinet S, Hurel J, Guitton Y, Tixier C, Munschy C, Antignac J P, Dervilly-Pinel G, Le Bizec B. Anal. Chem., 2019, 91(5): 3500.
[281]
Wang L, Kang Q Y, Jia Y T, Li X J, Hu J Y. Environ. Sci. Technol., 2021, 55(4): 2482.
[282]
Yang J Y, Sanchez L M, Rath C M, Liu X T, Boudreau P D, Bruns N, Glukhov E, Wodtke A, de Felicio R, Fenner A, Wong W R, Linington R G, Zhang L X, Debonsi H M, Gerwick W H, Dorrestein P C. J. Nat. Prod., 2013, 76(9): 1686.
[283]
Wang M X, Carver J J, Phelan V V, Sanchez L M, Garg N, Peng Y, Nguyen D D, Watrous J, Kapono C A, Luzzatto-Knaan T, Porto C, Bouslimani A, Melnik A, Meehan M J, Liu W T, Crüsemann M, Boudreau P D, Esquenazi E, Sandoval-CalderÓn M, Kersten R, Pace L, Quinn R, Duncan K R, Hsu C C, Floros D, Gavilán R, Kleigrewe K, Northen T, Dutton R, Parrot D, Carlson E E, Aigle B, Michelsen C F, Jelsbak L, Sohlenkamp C, Pevzner P, Edlund A, McLean J, Piel J, Murphy B, Gerwick L, Liaw C, Yang Y L, Humpf H, Maansson M, Keyzers R, Sims A, Johnson A R, Sidebottom A, Sedio B E, Klitgaard A K, Larson C B, Torres-Mendoza D, Gonzalez D, Silva D, Marques L M, Demarque D, Pociūtė E, O’Neill E, Briand E, Helfrich E J N, Granatosky E A, Glukhov E, Ryffel F, Houson H, Mohimani H, Kharbush J J, Zeng Y, Vorholt J, Kurita K L, Charusanti P, McPhail K, Nielsen K, Vuong L, Elfeki M, Traxler M F, Engene N, Koyama N, Vining O B, Baric R, Silva R R, Mascuch S J, Tomasi S, Jenkins S, Macherla V, Hoffman T, Agarwal V, Williams P, Dai J, Neupane R, Gurr J R, Rodriguez A M C, Lamsa A, Zhang C, Dorrestein K, Duggan B, Almaliti J, Allard P M, Phapale P, Nothias L F, Alexandrov T, Litaudon M, Wolfender J, Kyle J, Metz T, Peryea T, Nguyen D T, Vanleer D, Shinn P, Jadhav A, Müller R, Waters K, Shi W Y, Liu X T, Zhang L X, Knight R, Jensen P, Palsson B, Pogliano K, Linington R G, GutiÉrrez M, Lopes N, Gerwick W, Moore B, Dorrestein P, Bandeira N. Nat. Biotechnol., 2016, 34: 828.
[284]
Nothias L F, Petras D, Schmid R, Dührkop K, Rainer J, Sarvepalli A, Protsyuk I, Ernst M, Tsugawa H, Fleischauer M, Aicheler F, Aksenov A A, Alka O, Allard P M, Barsch A, Cachet X, Caraballo-Rodriguez A M, Da Silva R R, Dang T, Garg N, Gauglitz J M, Gurevich A, Isaac G, Jarmusch A K, Kameník Z, Bin Kang K, Kessler N, Koester I, Korf A, Le Gouellec A, Ludwig M, Martin H C, McCall L I, McSayles J, Meyer S W, Mohimani H, Morsy M, Moyne O, Neumann S, Neuweger H, Nguyen N H, Nothias-Esposito M, Paolini J, Phelan V V, Pluskal T, Quinn R A, Rogers S, Shrestha B, Tripathi A, van der Hooft J J J, Vargas F, Weldon K C, Witting M, Yang H, Zhang Z, Zubeil F, Kohlbacher O, Böcker S, Alexandrov T, Bandeira N, Wang M X, Dorrestein P C. Nat. Meth., 2020, 17(9): 905.
[285]
Schmid R, Petras D, Nothias L F, Wang M X, Aron A T, Jagels A, Tsugawa H, Rainer J, Garcia-Aloy M, Dührkop K, Korf A, Pluskal T, Kameník Z, Jarmusch A K, Caraballo-Rodríguez A M, Weldon K C, Nothias-Esposito M, Aksenov A A, Bauermeister A, Albarracin Orio A, Grundmann C O, Vargas F, Koester I, Gauglitz J M, Gentry E C, Hövelmann Y, Kalinina S A, Pendergraft M A, Panitchpakdi M, Tehan R, Le Gouellec A, Aleti G, Mannochio Russo H, Arndt B, Hübner F, Hayen H, Zhi H, Raffatellu M, Prather K A, Aluwihare L I, Böcker S, McPhail K L, Humpf H U, Karst U, Dorrestein P C. Nat. Commun., 2021, 12: 3832.
[286]
Yu N Y, Deng Y Y, Wang X B, Shi W, Zhou D M, Pan B C, Yu H X, Wei S. Environ. Sci. Technol., 2023, 57(22): 8335.
[287]
Gago-Ferrero P, Schymanski E L, Bletsou A A, Aalizadeh R, Hollender J, Thomaidis N S. Environ. Sci. Technol., 2015, 49(20): 12333.
[288]
Kiefer K, Du L T, Singer H, Hollender J. Water Res., 2021, 196: 116994.
[289]
SchollÉe J E, Bourgin M, von Gunten U, McArdell C S, Hollender J. Water Res., 2018, 142: 267.
[290]
vChiaia-Hernández A C, Günthardt B F, Frey M P, Hollender J. Environ. Sci. Technol., 2017, 51(21): 12547.
[291]
Lara-Martín P A, Chiaia-Hernández A C, Biel-Maeso M, Baena-Nogueras R M, Hollender J. Environ. Sci. Technol., 2020, 54(7): 3996.
[292]
Schymanski L, Jeon J, Gulde R, Fenner K, Ruff M, Singer H P, Hollender J. Identifying small molecules via high resolution mass spectrometry: communicating confidence. ACS Publications, 2014.
[293]
Charbonnet J A, McDonough C A, Xiao F, Schwichtenberg T, Cao D P, Kaserzon S, Thomas K V, Dewapriya P, Place B J, Schymanski E L, Field J A, Helbling D E, Higgins C P. Environ. Sci. Technol. Lett., 2022, 9(6): 473.
[294]
Gilbert-LÓpez B, García-Reyes J F, Lozano A, Fernández-Alba A R, Molina-Díaz A. J. Chromatogr. A, 2010, 1217(39): 6022.
[295]
Moorthy A S, Wallace W E, Kearsley A J, Tchekhovskoi D V, Stein S E. Anal. Chem., 2017, 89(24): 13261.
[296]
Xing S P, Hu Y, Yin Z X, Liu M, Tang X Y, Fang M L, Huan T. Anal. Chem., 2020, 92(21): 14476.
[297]
Treen D G C, Wang M X, Xing S P, Louie K B, Huan T, Dorrestein P C, Northen T R, Bowen B P. Nat. Commun., 2022, 13: 2510.
[298]
Yang Q, Ji H C, Xu Z B, Li Y M, Wang P S, Sun J Y, Fan X Q, Zhang H L, Lu H M, Zhang Z M. Nat. Commun., 2023, 14: 3722.
[299]
Dührkop K, Fleischauer M, Ludwig M, Aksenov A A, Melnik A V, Meusel M, Dorrestein P C, Rousu J, Böcker S. Nat. Meth., 2019, 16(4): 299.
[300]
Dührkop K, Nothias L F, Fleischauer M, Reher R, Ludwig M, Hoffmann M A, Petras D, Gerwick W H, Rousu J, Dorrestein P C, Böcker S. Nat. Biotechnol., 2021, 39(4): 462.
[301]
Allen F, Pon A, Wilson M, Greiner R, Wishart D. Nucleic Acids Res., 2014, 42(W1): W94.
[302]
Wang F, Liigand J, Tian S Y, Arndt D, Greiner R, Wishart D S. Anal. Chem., 2021, 93(34): 11692.
[303]
Ruttkies C, Schymanski E L, Wolf S, Hollender J, Neumann S. J. Cheminf., 2016, 8: 3.
[304]
Schymanski E L, Kondić T, Neumann S, Thiessen P A, Zhang J, Bolton E E. J. Cheminf., 2021, 13: 19.
[305]
Cheng Z, Qiu X H, Shi X D, Jiang X, Zhu T. Front. Environ. Sci. Eng., 2023, 17(4): 45.
[306]
Peng H, Chen C L, Cantin J, Saunders D M V, Sun J X, Tang S, Codling G, Hecker M, Wiseman S, Jones P D, Li A, Rockne K J, Sturchio N C, Giesy J P. Environ. Sci. Technol., 2016, 50(1): 321.
[307]
Zhang X M, Saini A, Hao C Y, Harner T. Trac Trends Anal. Chem., 2020, 132: 116052.
[308]
Kuang B Y, Yeung H S, Lee C C, Griffith S M, Yu J Z. Anal. Bioanal. Chem., 2018, 410(24): 6289.
[309]
Xu C, Gao L R, Zheng M H, Qiao L, Wang K R, Huang D, Wang S. Environ. Sci. Technol., 2021, 55(1): 109.
[310]
Manzano C A, Marvin C, Muir D, Harner T, Martin J, Zhang Y F. Environ. Sci. Technol., 2017, 51(10): 5445.
[311]
An Z J, Li X, Yuan Y, Duan F K, Jiang J K. Environ. Int., 2022, 163: 107193.
[312]
Durant J L, Busby W F Jr, Lafleur A L, Penman B W, Crespi C L. Genet. Toxicol., 1996, 371(3/4): 123.
[313]
Shi X D, Qiu X H, Cheng Z, Chen Q, Rudich Y, Zhu T. Environ. Sci. Technol., 2020, 54(2): 707.
[314]
Shi X D, Qiu X H, Jiang X, Rudich Y, Zhu T. J. Hazard. Mater., 2021, 407: 124794.
[315]
Shi X D, Qiu X H, Li A L, Jiang X, Wei G Y, Zheng Y, Chen Q, Chen S Y, Hu M, Rudich Y, Zhu T. Environ. Sci. Technol., 2023, 57(13): 5160.
[316]
Yu N Y, Wen H Z, Wang X B, Yamazaki E, Taniyasu S, Yamashita N, Yu H X, Wei S. Environ. Sci. Technol., 2020, 54(6): 3103.
[317]
Wang X B, Yu N Y, Qian Y L, Shi W, Zhang X W, Geng J J, Yu H X, Wei S. Water Res., 2020, 183: 115989.
[318]
Zhou J, Zhao G Q, Li M, Li J Q, Liang X X, Yang X Y, Guo J, Wang T C, Zhu L Y. Environ. Int., 2022, 158: 107007.
[319]
Kang Q Y, Gao F M, Zhang X H, Wang L, Liu J Y, Fu M, Zhang S Y, Wan Y, Shen H, Hu J Y. Environ. Int., 2020, 139: 105686.
[320]
Li L H, Yu N Y, Wang X B, Shi W, Liu H L, Zhang X W, Yang L Y, Pan B C, Yu H X, Wei S. Environ. Sci. Technol., 2022, 56(20): 14617.
[321]
Liu Q F, Li L, Zhang X M, Saini A, Li W L, Hung H, Hao C Y, Li K, Lee P, Wentzell J J B, Huo C Y, Li S M, Harner T, Liggio J. Nature, 2021, 600(7889): 456.
[322]
Gong S, Ren K F, Ye L J, Deng Y R, Su G Y. J. Hazard. Mater., 2022, 436: 129273.
[323]
Choi Y, Jeon J, Kim S D. Water Research, 2021, 200: 117201.
[324]
Brüggemann M, van Pinxteren D, Wang Y C, Yu J Z, Herrmann H. Environ. Chem., 2019, 16(5): 333.
[325]
Li A L, Shi X D, Qiu X H, Wei G Y, Zheng Y, Chen Q, Chen S Y, Hu M, Zhu T. Sci. Total Environ., 2023, 887: 164114.
[326]
Liu Q F, Abbatt J P D. Proc. Natl. Acad. Sci. U. S. A., 2021, 118(23): e2105067118.
[327]
Su H J, Shi S B, Zhu M, Crump D, Letcher R J, Giesy J P, Su G Y. Proc. Natl. Acad. Sci. U. S. A., 2019, 116(52): 26450.
[328]
Cheng Z, Qiu X H, Shi X D, Zhu T. Environ. Pollut., 2021, 271: 116128.
[329]
Liu Y Y, Yu N Y, Fang W D, Tan Q G, Ji R, Yang L Y, Wei S, Zhang X W, Miao A J. Nat. Commun., 2021, 12: 812.
[330]
Wang M J, Li Q Q, Shi C Z, Lv J, Xu Y D, Yang J J, Chua S L, Jia L R, Chen H W, Liu Q, Huang C J, Huang Y C, Chen J M, Fang M L. Nat. Nanotechnol., 2023, 18(4): 403.
[331]
Escher B I, Fenner K. Environ. Sci. Technol., 2011, 45(9): 3835.
[332]
Pycke B F G, Roll I B, Brownawell B J, Kinney C A, Furlong E T, Kolpin D W, Halden R U. Environ. Sci. Technol., 2014, 48(14): 7881.
[333]
Hu J, Lyu Y, Chen H, Li S, Sun W. Environmental Science & Technology, 2023, 57(45): 17439.
[334]
Helbling D E, Hollender J, Kohler H P E, Fenner K. Environ. Sci. Technol., 2010, 44(17): 6628.
[335]
Wang M, Helbling D. Water Research, 2016, 102: 241.
[336]
Wu G, Geng J J, Shi Y F, Wang L Y, Xu K, Ren H Q. Water Res., 2020, 184: 116158.
[337]
Yu J S, Nothias L F, Wang M X, Kim D H, Dorrestein P C, Bin Kang K, Yoo H H. Anal. Chem., 2022, 94(2): 1456.
[338]
Wu G, Wang X B, Zhang X X, Ren H Q, Wang Y R, Yu Q M, Wei S, Geng J J. Water Res., 2023, 232: 119509.
[339]
Sleight T W, Khanna V, Gilbertson L M, Ng C A. Environ. Sci. Technol., 2020, 54(17): 10735.
[340]
Wu G, Qian Y L, Fan F, Zhang Z Z, Zhang Y, Yu Q M, Zhang X X, Ren H Q, Geng J J, Liu H L. Water Res., 2023, 235: 119895.
[341]
Tian Z Y, Zhao H Q, Peter K T, Gonzalez M, Wetzel J, Wu C, Hu X M, Prat J, Mudrock E, Hettinger R, Cortina A E, Biswas R G, Kock F V C, Soong R, Jenne A, Du B W, Hou F, He H, Lundeen R, Gilbreath A, Sutton R, Scholz N L, Davis J W, Dodd M C, Simpson A, McIntyre J K, Kolodziej E P. Science, 2021, 371(6525): 185.
[342]
Breinlinger S, Phillips T J, Haram B N, Mareš J, Martínez Yerena J A, Hrouzek P, Sobotka R, Henderson W M, Schmieder P, Williams S M, Lauderdale J D, Wilde H D, Gerrin W, Kust A, Washington J W, Wagner C, Geier B, Liebeke M, Enke H K, Niedermeyer T H J, Wilde S B. Science, 2021, 371(6536): eaax9050.
[343]
Yang D W, Liu Q F, Wang S Z, Bozorg M, Liu J B, Nair P, Balaguer P, Song D T, Krause H, Ouazia B, Abbatt J P D, Peng H. Sci. Adv., 2022, 8(48): eabq7023.
[344]
Yoo K, Yoo H, Lee J, Choi E J, Park J. J Microbiol., 2020, 58(2): 123.
[345]
Lee G, Yoo K. Rev. Environ. Sci. Bio, 2022, 21(3): 799.
[346]
Peng L C, Mehmood T, Bao R Q, Wang Z Z, Fu D D. Sustainability, 2022, 14(21): 14338.
[347]
Chojer H, Branco P T B S, Martins F G, Alvim-Ferraz M, Sousa S I V. Environ. Technol. Innov., 2024, 33: 103534.
[348]
Barati Moghaddam M, Mazaheri M, Mohammad Vali Samani J. Groundw. Sustain. Dev., 2021, 15: 100651.
[349]
Song X W. Doctoral Dissertation of University of Chinese Academy of Sciences, 2019.
(宋小卫. 中国科学院大学博士论文, 2019.).
[350]
Huang X Y, Wei X X, Liu H Z, Li W, Shi D Z, Qian S H, Sun W J, Yue D B, Wang X M. Environ. Sci. Pollut. Res., 2022, 29(46): 69588.
[351]
Liu Y L, Mendoza-Perilla P, Clavier K A, Tolaymat T M, Bowden J A, Solo-Gabriele H M, Townsend T G. Waste Manag., 2022, 144: 49.
[352]
Benskin J P, Li B, Ikonomou M G, Grace J R, Li L Y. Environ. Sci. Technol., 2012, 46(21): 11532.
[353]
Sörengård M, Bergström S, McCleaf P, Wiberg K, Ahrens L. Environ. Pollut., 2022, 311: 119981.
[354]
Schwichtenberg T, Bogdan D, Carignan C C, Reardon P, Rewerts J, Wanzek T, Field J A. Environ. Sci. Technol., 2020, 54(22): 14455.
[355]
Ruan T, Lin Y F, Wang T, Liu R Z, Jiang G B. Environ. Sci. Technol., 2015, 49(11): 6519.
[356]
Han F, Wang Y X, Li J G, Lyu B, Liu J Y, Zhang J, Zhao Y F, Wu Y N. J. Hazard. Mater., 2023, 443: 130163.
[357]
Jin Q, Ma J H, Shi Y L, Chen C Y, Wang Y, Zhao E J, Cai Y Q, Qu G Q. Environ. Int., 2020, 144: 106043.
[358]
Yao J Z, Dong Z M, Jiang L L, Pan Y T, Zhao M R, Bai X X, Dai J Y. Environ. Health Perspect., 2023, 131(3): 037003.
[359]
Rauert C, Schuster J K, Eng A, Harner T. Environ. Sci. Technol., 2018, 52(5): 2777.
[360]
Li Z W, Zhu Y, Wang D, Zhang X M, Jones K C, Ma J M, Wang P, Yang R Q, Li Y M, Pei Z G, Zhang Q H, Jiang G B. Environ. Sci. Technol., 2021, 55(17): 11745.
[361]
Covaci A, Harrad S, Abdallah M A E, Ali N, Law R J, Herzke D, de Wit C A. Environ. Int., 2011, 37(2): 532.
[362]
Ali N, Shahzad K, Rashid M I, Shen H Q, Ismail I M I, Ali Musstjab Akber Shah Eqani S. Environ. Sci. Pollut. Res., 2017, 24(23): 18721.
[363]
McGrath T J, Morrison P D, Ball A S, Clarke B O. Environ. Sci. Technol., 2018, 52(15): 8194.
[364]
Poudel K, Ketema R M, Thi Thu Ngo H, Ikeda A, Minatoya M. E-waste in Vietnam: a narrative review of environmental contaminants and potential health risks. 2023.
[365]
Cristale J, Aragão BelÉ T G, Lacorte S, de Marchi M R R. Environ. Res., 2019, 168: 420.
[366]
Björklund J A, Thuresson K, Cousins A P, Sellström U, Emenius G, de Wit C A. Environ. Sci. Technol., 2012, 46(11): 5876.
[367]
La Guardia M J, Hale R C. Environ. Int., 2015, 79: 106.
[368]
Zhu Y S, Yang W D, Li X W, Ni H G, Zeng H. Environ. Pollut., 2018, 233: 1104.
[369]
Guo J Q, Li Y F, Liu L Y, Huo C Y, Sun Y, Ma W L, Zhang Z F, Li Y F. Environ. Sci. Pollut. Res., 2020, 27(28): 35126.
[370]
Feo M L, Eljarrat E, BarcelÓ D, BarcelÓ D. Trac Trends Anal. Chem., 2009, 28(6): 778.
[371]
Huang Y M, Chen L G, Jiang G, He Q S, Ren L, Gao B, Cai L M. Sci. Total Environ., 2019, 671: 262.
[372]
Wang Y, Li J, Cheng Z N, Li Q L, Pan X H, Zhang R J, Liu D, Luo C L, Liu X, Katsoyiannis A, Zhang G. Environ. Sci. Technol., 2013, 47(6): 2679.
[373]
Wang T, Han S L, Yuan B, Zeng L X, Li Y M, Wang Y W, Jiang G B. Environ. Pollut., 2012, 171: 38.
[374]
Barber J L, Sweetman A J, Thomas G O, Braekevelt E, Stern G A, Jones K C. Environ. Sci. Technol., 2005, 39(12): 4407.
[375]
Jiangwan Y H. Doctoral Dissertation of Lanzhou University, 2020.
(蒋宛彦含. 兰州大学博士论文, 2020.).
[376]
Li J, Xu L, Zhou Y H, Yin G, Wu Y, Yuan G L, Du X Y. Chemosphere, 2021, 263: 128341.
[377]
Jiang L, Gao W, Ma X D, Wang Y J, Wang C, Li Y M, Yang R Q, Fu J J, Shi J B, Zhang Q H, Wang Y W, Jiang G B. Environ. Sci. Technol., 2021, 55(1): 230.
[378]
Wang P W. Masteral Dissertation of Shandong University, 2018.
(王佩文. 山东大学硕士论文, 2018.).
[379]
Guan K L. Masteral Dissertation of University of Chinese Academy of Sciences, 2020.
(管克兰. 中国科学院大学硕士论文, 2020.).
[380]
Zhang P X. Masteral Dissertation of Xi’an University of Science and Technology, 2021.
(张佩萱. 西安科技大学硕士论文, 2021.).
[381]
Sunderland E M, Hu X C, Dassuncao C, Tokranov A K, Wagner C C, Allen J G. J. Expo. Sci. Environ. Epidemiol., 2019, 29(2): 131.
[382]
Kotlarz N, McCord J, Collier D, Lea C S, Strynar M, Lindstrom A B, Wilkie A A, Islam J Y, Matney K, Tarte P, Polera M E, Burdette K, DeWitt J, May K, Smart R C, Knappe D R U, Hoppin J A. Environ. Health Perspect., 2020, 128(7): 077005.
[383]
He A N, Liang Y, Li F F, Lu Y, Liu C, Li J, Zhou Z, Zhu N L, Liao C Y, Wang Y W, Jiang G B. Environ. Sci. Technol., 2022, 56(23): 16789.
[384]
Bao J, Liu L, Wang X, Jin Y H, Dong G H. Environ. Sci. Pollut. Res., 2017, 24(10): 9194.
[385]
Bao J, Yu W J, Liu Y, Wang X, Jin Y H, Dong G H. Ecotoxicol. Environ. Saf., 2019, 171: 199.
[386]
Liu J L, Cui Y Y, Lu M L, Lv J G, Dong L, Guo J, Zhang X L, Sun Y B, Huang Y R, Zhang L F. Chemosphere, 2022, 302: 134719.
[387]
Wang S W, Huang J, Yang Y, Hui Y M, Ge Y X, Larssen T, Yu G, Deng S B, Wang B, Harman C. Environ. Sci. Technol., 2013, 47(18): 10163.
[388]
Pan Y T, Zhang H X, Cui Q Q, Sheng N, Yeung L W Y, Sun Y, Guo Y, Dai J Y. Environ. Sci. Technol., 2018, 52(14): 7621.
[389]
Shan G Q, Qian X, Chen X, Feng X M, Cai M H, Yang L P, Chen M, Zhu L Y, Zhang S F. J. Hazard. Mater., 2021, 411: 125049.
[390]
He Y X, Lv D, Li C H, Liu X Q, Liu W D, Han W C. Environ. Int., 2022, 161: 107108.
[391]
Yan S Y. Masteral Dissertation of Dalian University of Technology, 2020.
(鄢世阳. 大连理工大学硕士论文, 2020.).
[392]
Jin J, Wang Y, Yang C Q, Hu J C, Liu W Z, Cui J, Tang X Y. Environ. Int., 2009, 35(7): 1048.
[393]
Zhao X Z, Chen T, Yang B, Wang D J, Sun W, Wang Y W, Yang X D, Wen S, Li J G, Shi Z X. Ecotoxicol. Environ. Saf., 2021, 208: 111467.
[394]
Wang Y W, Sun Y M, Chen T, Shi Z X, Zhou X Q, Sun Z W, Zhang L, Li J G. J. Chromatogr. B, 2018, 1099: 64.
[395]
Ma Y L, Li P, Jin J, Wang Y, Wang Q H. Environ. Res., 2017, 155: 116.
[396]
Hicks C, Dietmar R, Eugster M. Environ. Impact Assess. Rev., 2005, 25(5): 459.
[397]
Lin M Q. Doctoral Dissertation of University of Chinese Academy of Sciences, China, 2020.
(林美卿. 中国科学院大学博士论文, 2020.).
[398]
Bi X H, Thomas G O, Jones K C, Qu W Y, Sheng G Y, Martin F L, Fu J M. Environ. Sci. Technol., 2007, 41(16): 5647.
[399]
Liang S, Xu F, Tang W B, Zhang Z, Zhang W, Liu L L, Wang J X, Lin K F. Environ. Sci. Pollut. Res., 2016, 23(15): 14889.
[400]
Zhao X R, Qin Z F, Yang Z Z, Zhao Q, Zhao Y X, Qin X F, Zhang Y C, Ruan X L, Zhang Y F, Xu X B. Chemosphere, 2010, 78(6): 659.
[401]
Ma S T, Ren G F, Zheng K W, Cui J T, Li P, Huang X M, Lin M Q, Liu R R, Yuan J, Yin W J, Peng P A, Sheng G Y, Yu Z Q. Environ. Sci. Technol., 2022, 56(14): 10239.
[402]
Jiang W, Huang T, Mao X X, Wang L, Zhao Y, Jia C H, Wang Y N, Gao H, Ma J M. Environ. Pollut., 2017, 220: 132.
[403]
Xu J Z, Gao Y, Zhang H J, Zhan F Q, Chen J P. Environ. Sci. Technol., 2016, 50(23): 12759.
[404]
Wang R H, Gao L R, Zheng M H, Tian Y L, Li J G, Zhang L, Wu Y N, Huang H T, Qiao L, Liu W B, Su G J, Liu G R, Liu Y. Sci. Total Environ., 2018, 615: 1199.
[405]
Huang H T, Gao L R, Zheng M H, Li J G, Zhang L, Wu Y N, Wang R H, Xia D, Qiao L, Cui L L, Su G J, Liu W B, Liu G R. Environ. Pollut., 2018, 233: 439.
[406]
Xu C, Zhang Q, Gao L R, Zheng M H, Qiao L, Cui L L, Wang R H, Cheng J. Sci. Total Environ., 2019, 649: 821.
[407]
Zeng Y H, Tang B, Luo X J, Zheng X B, Peng P A, Mai B X. Sci. Total Environ., 2016, 569-570: 982.
[408]
Nipen M, Vogt R D, Bohlin-Nizzetto P, Borgå K, Mwakalapa E B, Borgen A R, Jørgensen S J, Ntapanta S M, Mmochi A J, Schlabach M, Breivik K. Environ. Pollut., 2022, 292: 118298.
[409]
Sinclair E, Kannan K. Environmental Science & Technology, 2006, 40(5):1408.
[410]
Jin M, Liu L J, Zhao B, Yan Y N, Li Yan X, Li Y Q, Han J L, Ding Z R. Environ. Chem., 2023, 42 (7): 2153.
(金梦, 刘丽君, 赵波, 闫雅楠, 李彦希, 黎玉清, 韩静磊, 丁紫荣. 环境化学, 2023, 42 (7): 2153.).
[411]
Fang S H, Yue Y, Li C, Yin H L, Sun J, Yang Y C, Ye Z X. Acta Scientiae Circumstantiae, 2019, 39(4): 1234.
(方淑红, 岳月, 李成, 印红玲, 孙静, 杨迎春, 叶芝祥. 环境科学学报, 2019, 39(4): 1234.).
[412]
Zhou Z, Liang Y, Shi Y L, Xu L, Cai Y Q. Environ. Sci. Technol., 2013, 47(16): 9249.
[413]
Qiao L, Zhang R P, Yang Y, Ran Y. Geochimica, 2022, 51(6): 617.
(乔磊, 张汝频, 杨余, 冉勇. 地球化学, 2022, 51(6): 617.).
[414]
Chen D, Zhang Z H, Zhao W, Li J, Jiao X C. Rock and Mineral Analysis, 2022, 41(3): 499.
(陈典, 张照荷, 赵微, 李俊, 焦杏春. 岩矿测试, 2022, 41(3): 499.).
[415]
Huang Y, Chen C H, Li Y T, Zhang H, Liu W, Fang S H. China Environmental Science, 2023, 43(10): 5444.
(黄语, 陈朝辉, 李钰涛, 张辉, 刘伟, 方淑红. 中国环境科学, 2023, 43(10): 5444.).
[416]
Li J R, Guo R X, Liu Y H, Chen J Q. Environ. Chem., 2020, 39(10): 2637.
(李金荣, 郭瑞昕, 刘艳华, 陈建秋. 环境化学, 2020, 39(10): 2637.).
[417]
Wang S T, Rao Z, Guo F, Liu C H, Zhan N, Wang Y N, Peng J, Yang H B. Environmental Science, 2021, 42(1): 166.
(王淑婷, 饶竹, 郭峰, 刘成海, 战楠, 王娅南, 彭洁, 杨鸿波. 环境科学, 2021, 42(1): 166.).
[418]
Li L Y, Gao L, Zheng L X, Li F J, Tao H, Ma L. Environmental Science, 2023, 44(5): 2539.
(李凌云, 高礼, 郑兰香, 李富娟, 陶红, 马兰. 环境科学, 2023, 44(5): 2539.).
[419]
Xiong X Y, He C C, Jiao X Y, Wang C J. Journal of South-Central University for Nationalities(Natural Science Edition), 2021, 40(3): 238.
(熊希瑶, 贺聪聪, 焦啸宇, 王成俊. 中南民族大学学报(自然科学版), 2021, 40(3): 238.).
[420]
Xu H, Liu Y, Xu X, Lan H C, Qi W X, Wang D H, Liu H J, Qu J H. Sci. Total Environ., 2022, 836: 155677.
[421]
Peng F J, Pan C G, Zhang M, Zhang N S, Windfeld R, Salvito D, Selck H, Van den Brink P J, Ying G G. Science of The Total Environment, 2017, 589: 46.
[422]
Xiong S M, Wang X Z, Luo W K, Ma Y, Lin Y, Wang M H, Zheng J. Environ. Chem., 2021, 40(12): 3803.
(熊仕茂, 王秀珍, 罗伟铿, 马艳, 林颖, 王美欢, 郑晶. 环境化学, 2021, 40(12): 3803.).
[423]
Xiao Y, Han D M, Currell M, Song X F, Zhang Y H. Water Res., 2023, 245: 120645.
[424]
Bu Q W, Wang B, Huang J, Deng S B, Yu G. J. Hazard. Mater., 2013, 262: 189.
[425]
He Y, Yuan Q B, Mathieu J, Stadler L, Senehi N, Sun R N, Alvarez P J J. NPJ Clean Water, 2020, 3: 4.
[426]
Han Z M, Zhang Y, An W, Lu J Y, Hu J Y, Yang M. Water Res., 2020, 183: 116088.
[427]
Xue B M, Yang W W, Wang Y H, Huang W Y, Li P Y, Zhang R J, Huang K. China Environmental Science, 2013, 33(9): 1664.
(薛保铭, 杨惟薇, 王英辉, 黄闻宇, 李平阳, 张瑞杰, 黄魁. 中国环境科学, 2013, 33(9): 1664.).
[428]
Liu X, Wang Z, Wang X L, Li Z, Yang C, Li E H, Wei H M. Environmental Science, 2019, 40(5): 2094.
(刘昔, 王智, 王学雷, 李珍, 杨超, 厉恩华, 位慧敏. 环境科学, 2019, 40(5): 2094.).
[429]
Su Z X, Wang K, Yang F C, Zhuang T. Water Research, 2023, 235:119867.
[430]
Peng X, Ou W, Wang C, Wang Z, Huang Q, Jin J, Tan J. Science of The Total Environment, 2014, 490: 889.
[431]
Chen X, Zhang C J, Yang G P, Zhang J, Liu M. Environmental Science, 2020, 41(1): 194.
(陈贤, 张彩杰, 杨桂朋, 张婧, 刘梦. 环境科学, 2020, 41(1): 194.).
[432]
Richardson S D, Ternes T A. Analytical Chemistry, 2022, 94(1): 382.
[433]
Cao M Y, Li X C, Huang B W. J. Public Health Prev. Med., 2020, 6(3): 90.
(曹美苑, 李鰼橙, 黄柏文. 公共卫生与预防医学, 2020, 6(3): 90.).
[434]
Wang W, Qian Y C, Boyd J M, Wu M H, Hrudey S E, Li X F. Environ. Sci. Technol., 2013, 47(7): 3275.
[435]
Hu S Y, Gong T T, Zhu H T, Wang J J, Li Z G, Chen H R, Huang Z J, Zhang M Q, Xian Q M. Environ. Sci. Technol., 2020, 54(8): 5237.
[436]
Bei E, Shu Y Y, Li S X, Liao X B, Wang J, Zhang X J, Chen C, Krasner S. Water Res., 2016, 98: 168.
[437]
Zhou X L, Zheng L L, Chen S Y, Du H W, Gakoko Raphael B M, Song Q Y, Wu F Y, Chen J R, Lin H J, Hong H C. Ecotoxicol. Environ. Saf., 2019, 171: 813.
[438]
Chu W H, Gao N Y, Yin D Q, Krasner S W, Templeton M R. J. Chromatogr. A, 2012, 1235: 178.
[439]
Chen T L, Tzing S H, Ding W H. Journal of Chromatography A, 2015, 1422: 340.
[440]
Liao Y F, Wang Z, Pan Y, Li A M. Environmental Science, 2024, 45(3):1561.
(廖雨枫, 王正, 潘旸, 李爱民. 环境科学, 2024, 45(3):1561.
[441]
Martin J W, Mabury S A, Solomon K R, Muir D C G. Environ. Toxicol. Chem., 2003, 22(1): 196.
[442]
Hu Z. Masteral Dissertation of Huazhong Agricultural University, 2016.
(胡哲. 华中农业大学硕士论文, 2016.).
[443]
Ankley G T, Kuehl D W, Kahl M D, Jensen K M, Linnum A, Leino R L, Villeneuve D A. Environ. Toxicol. Chem., 2005, 24(9): 2316.
[444]
Houde M, Bujas T A D, Small J, Wells R S, Fair P A, Bossart G D, Solomon K R, Muir D C G. Environ. Sci. Technol., 2006, 40(13): 4138.
[445]
Szabo D, Moodie D, Green M P, Mulder R A, Clarke B O. Environ Sci Technol, 2022, 56(12): 8231.
[446]
Xiao S K. Masteral Dissertation of Guangxi University, 2021.
(肖少可. 广西大学硕士论文, 2021.).
[447]
Li W Z, Li H Z, Zhang D N, Tong Y J, Li F X, Cheng F, Huang Z B, You J. Environ. Sci. Technol., 2022, 56(6): 3492.
[448]
Pickard H M, Ruyle B J, Thackray C P, Chovancova A, Dassuncao C, Becanova J, Vojta S, Lohmann R, Sunderland E M. Environ. Sci. Technol., 2022, 56(22): 15573.
[449]
Lam N H, Cho C R, Lee J S, Soh H Y, Lee B C, Lee J A, Tatarozako N, Sasaki K, Saito N, Iwabuchi K, Kannan K, Cho H S. Sci. Total Environ., 2014, 491-492: 154.
[450]
Gebbink W A, Bignert A, Berger U. Environ. Sci. Technol., 2016, 50(12): 6354.
[451]
Casal P, González-Gaya B, Zhang Y F, Reardon A J F, Martin J W, JimÉnez B, Dachs J. Environ. Sci. Technol., 2017, 51(5): 2766.
[452]
Shi Y L, Vestergren R, Zhou Z, Song X W, Xu L, Liang Y, Cai Y Q. Environ. Sci. Technol., 2015, 49(24): 14156.
[453]
Koch A, Jonsson M, Yeung L W Y, Kärrman A, Ahrens L, Ekblad A, Wang T. Environ. Sci. Technol., 2020, 54(19): 11951.
[454]
Munoz G, Budzinski H, Babut M, Drouineau H, Lauzent M, Le Menach K, Lobry J, Selleslagh J, Simonnet-Laprade C, Labadie P. Environ. Sci. Technol., 2017, 51(15): 8450.
[455]
Zhang X M, Lohmann R, Sunderland E M. Environ. Sci. Technol., 2019, 53(21): 12348.
[456]
Xu J, Guo C S, Zhang Y, Meng W. Environ. Pollut., 2014, 184: 254.
[457]
Lu Y, Meng L Y, Ma D H, Cao H M, Liang Y, Liu H W, Wang Y W, Jiang G B. Environ. Pollut., 2021, 273: 116460.
[458]
Zhang L Y, Ren X M, Guo L H. Environ. Sci. Technol., 2013, 47(19): 11293.
[459]
Martin J W, Whittle D M, Muir D C G, Mabury S A. Environ. Sci. Technol., 2004, 38(20): 5379.
[460]
Tomy G T, Budakowski W, Halldorson T, Helm P A, Stern G A, Friesen K, Pepper K, Tittlemier S A, Fisk A T. Environ. Sci. Technol., 2004, 38(24): 6475.
[461]
Tomy G T, Pleskach K, Ferguson S H, Hare J, Stern G, MacInnis G, Marvin C H, Loseto L. Environ. Sci. Technol., 2009, 43(11): 4076.
[462]
Müller C E, De Silva A O, Small J, Williamson M, Wang X W, Morris A, Katz S, Gamberg M, Muir D C G. Environ. Sci. Technol., 2011, 45(20): 8665.
[463]
Fremlin K M, Elliott J E, Letcher R J, Harner T, Gobas F A P C. Environ. Sci. Technol., 2023, 57(34): 12806.
[464]
Kelly B C, Ikonomou M G, Blair J D, Surridge B, Hoover D, Grace R, Gobas F A P C. Environ. Sci. Technol., 2009, 43(11): 4037.
[465]
Dassuncao C, Pickard H, Pfohl M, Tokranov A K, Li M L, Mikkelsen B, Slitt A, Sunderland E M. Environ. Sci. Technol. Lett., 2019, 6(3): 119.
[466]
Armitage J M, Arnot J A, Wania F. Environ. Sci. Technol., 2012, 46(22): 12285.
[467]
Fitzgerald N J M, Wargenau A, Sorenson C, Pedersen J, Tufenkji N, Novak P J, Simcik M F. Environ. Sci. Technol., 2018, 52(18): 10433.
[468]
Jones P D, Hu W Y, De Coen W, Newsted J L, Giesy J P. Environ. Toxicol. Chem., 2003, 22(11): 2639.
[469]
Ng C A, Hungerbühler K. Environ. Sci. Technol., 2014, 48(9): 4637.
[470]
Feng Q J, Luo X J, Ye M X, Hu K Q, Zeng Y H, Mai B X. Sci. Total Environ., 2023, 905: 167008.
[471]
Chen L J, Mai B X, Luo X J. Toxics, 2022, 10(12): 778.
[472]
Castro M, Breitholtz M, Yuan B, Athanassiadis I, Asplund L, Sobek A. Environ. Sci. Technol., 2018, 52(17): 9713.
[473]
Houde M, Muir D C G, Tomy G T, Whittle D M, Teixeira C, Moore S. Environ. Sci. Technol., 2008, 42(10): 3893.
[474]
Zeng L, Wang T, Wang P, Liu Q, Han S, Yuan B, Zhu N, Wang Y, Jiang G. Environ Sci Technol, 2011, 45(13): 5529.
[475]
Ma X D. Doctoral Dissertation of Dalian University of Technology, 2014.
(马新东. 大连理工大学博士论文, 2014.).
[476]
Du X Y, Yuan B, Zhou Y H, Benskin J P, Qiu Y L, Yin G, Zhao J F. Environ. Sci. Technol., 2018, 52(3): 1072.
[477]
Yuan B, Vorkamp K, Roos A M, Faxneld S, Sonne C, Garbus S E, Lind Y, Eulaers I, Hellström P, Dietz R, Persson S, Bossi R, de Wit C A. Environ. Sci. Technol., 2019, 53(7): 3526.
[478]
Sun R X, Luo X J, Tang B, Li Z R, Huang L Q, Wang T, Mai B X. Sci. Total Environ., 2016, 553: 196.
[479]
Zeng L X, Lam J C W, Chen H, Du B B, Leung K M Y, Lam P K S. Environ. Sci. Technol., 2017, 51(17): 9543.
[480]
Du X Y, Yuan B, Zhou Y H, de Wit C A, Zheng Z Y, Yin G. Environ. Sci. Technol., 2020, 54(5): 2753.
[481]
Li H J, Bu D, Fu J J, Gao Y, Cong Z Y, Zhang G S, Wang Y W, Chen X F, Zhang A Q, Jiang G B. Environ. Sci. Technol., 2019, 53(16): 9472.
[482]
Li H J, Fu J J, Pan W X, Wang P, Li Y M, Zhang Q H, Wang Y W, Zhang A Q, Liang Y, Jiang G B. Sci. Total Environ., 2017, 590-591: 163.
[483]
Fisk A T, Cymbalisty C D, Tomy G T, Muir D C G. Aquat. Toxicol., 1998, 43(2-3): 209.
[484]
Fisk A T, Tomy G T, Cymbalisty C D, Muir D C G. Environ. Toxicol. Chem., 2000, 19(6): 1508.
[485]
Huang X M, Cui Z F, Ding C H, Su Q Q, Lin X X, Wang W L, Yin Q M, Wang X. J. Agric. Food Chem., 2021, 69(35): 10329.
[486]
Sprengel J, Behnisch P A, Besselink H, Brouwer A, Vetter W. Arch. Toxicol., 2021, 95(4): 1391.
[487]
Sun Y B, Cui H Y, Li T, Tao S, Hu J Y, Wan Y. Environ. Int., 2020, 145: 106165.
[488]
Fang W D, Peng Y, Muir D, Lin J, Zhang X W. Environ. Int., 2019, 131: 104994.
[489]
Huang C, Jin B, Han M, Yu Y, Zhang G, Arp H P H. J. Hazard. Mater. Lett., 2021, 2: 100026.
[490]
Yao L, Chen Z Y, Dou W Y, Yao Z K, Duan X C, Chen Z F, Zhang L J, Nong Y J, Zhao J L, Ying G G. Water Res., 2021, 207: 117803.
[491]
Zhang J N, Chen J, Yang L, Zhang M, Yao L, Liu Y S, Zhao J L, Zhang B, Ying G G. Water Res., 2021, 192: 116836.
[492]
Jin B, Huang C, Yu Y, Zhang G, Arp H P H. Environmental Science & Technology, 2020, 54 (19):11651.
[493]
Chemicals strategy for sustainability towards a toxic-free environment[EB/OL]. [2024-07-01]. https://environment.ec.europa.eu/strategy/chemicals-strategy_en.
[494]
Du R J, Duan L, Zhang Q X, Wang B, Huang J, Deng S B, Yu G. Water Res., 2023, 242: 120203.
[495]
Gao Y, Liang Y, Gao K, Wang Y J, Wang C, Fu J J, Wang Y W, Jiang G B, Jiang Y S. Chemosphere, 2019, 227: 305.
[496]
Nanusha M Y, Frøkjær E E, Rüsz Hansen H, Bonde Rasmussen S, Bruun Nicolaisen J, Hansen M. ACS ES&T Water, 2023, 3(12): 3992.
[497]
Bagnis S, Fitzsimons M F, Snape J, Tappin A, Comber S. Sci. Total Environ., 2019, 658: 42.
[498]
Wu S X, Hua P, Gui D W, Zhang J, Ying G G, Krebs P. Water Res., 2022, 225: 119138.
[499]
Ziliotto F, Basilio Hazas M, Rolle M, Chiogna G. Geophys. Res. Lett., 2021, 48(21): e2021GL095336.
[500]
Tong X N, Mohapatra S, Zhang J J, Tran N H, You L H, He Y L, Gin K Y H. Water Res., 2022, 217: 118418.
[501]
Schulze S, Sättler D, Neumann M, Arp H P H, Reemtsma T, Berger U. Sci. Total Environ., 2018, 625: 1122.
[502]
Liu S, Wu W, Jin B, Zhang G. Environmental Chemistry, 2023, 42(6): 1771.
[503]
Sigmund G, Arp H P H, Aumeier B M, Bucheli T D, Chefetz B, Chen W, Droge S T J, Endo S, Escher B I, Hale S E, Hofmann T, Pignatello J, Reemtsma T, Schmidt T C, Schönsee C D, Scheringer M. Environ. Sci. Technol., 2022, 56(8): 4702.
[504]
Gilevska T, Masbou J, Baumlin B, Chaumet B, Chaumont C, Payraudeau S, Tournebize J, Probst A, Probst J L, Imfeld G. Sci. Total Environ., 2022, 842: 156735.
[505]
Vione D, Scozzaro A. Environ. Sci. Technol., 2019, 53(14): 7945.
[506]
Schmitt M, Wack K, Glaser C, Wei R, Zwiener C. Environ. Sci. Technol., 2021, 55(13): 8908.
[507]
Liu Y, Wang Y Q, Jin B, Wang Z W, Gligorovski S, Vione D, Zhang Y F, Peng P A, Zhang G. Appl. Geochem., 2022, 147: 105502.
[508]
Björklund E, Styrishave B, Anskjær G G, Hansen M, Halling-Sørensen B. Sci. Total Environ., 2011, 409(19): 3732.
[509]
Chefetz B, Xing B S. Environ. Sci. Technol., 2009, 43(6): 1680.
[510]
Li F, Fang X L, Zhou Z M, Liao X B, Zou J, Yuan B L, Sun W J. Sci. Total Environ., 2019, 649: 504.
[511]
Cristale J, Álvarez-Martín A, Rodríguez-Cruz S, Sánchez-Martín M J, Lacorte S. Environ. Sci. Pollut. Res., 2017, 24(36): 27870.
[512]
Mei W P, Sun H, Song M K, Jiang L F, Li Y T, Lu W S, Ying G G, Luo C L, Zhang G. Environ. Int., 2021, 156: 106642.
[513]
Du Z W, Deng S B, Bei Y, Huang Q, Wang B, Huang J, Yu G. J. Hazard. Mater., 2014, 274: 443.
[514]
Wang F, Shih K, Leckie J O. Chemosphere, 2015, 118: 213.
[515]
Wang F, Shih K. Water Res., 2011, 45(9): 2925.
[516]
Mahinroosta R, Senevirathna L. J. Environ. Manag., 2020, 255: 109896.
[517]
Butzen M L, Wilkinson J T, McGuinness S R, Amezquita S, Peaslee G F, Fein J B. Chem. Geol., 2020, 552: 119778.
[518]
Xiang L, Chen X T, Yu P F, Li X H, Zhao H M, Feng N X, Li Y W, Li H, Cai Q Y, Mo C H, Li Q X. Environ. Sci. Technol., 2020, 54(20): 13046.
[519]
Liu G X, Feng X X, Guo Y J, Wang X Y, An K, Dong J G, Liu Y C. J. Agric. Food Chem., 2023, 71(22): 8356.
[520]
Wang W F, Rhodes G, Ge J, Yu X Y, Li H. Chemosphere, 2020, 261: 127584.
[521]
Wen B, Li L F, Liu Y, Zhang H N, Hu X Y, Shan X Q, Zhang S Z. Plant Soil, 2013, 370(1-2): 345.
[522]
Liu S Q, Zhou J, Guo J, Xue M Z, Shen L N, Bai S, Liang X X, Wang T C, Zhu L Y. Environ. Sci. Technol., 2023, 57(23): 8739.
[523]
Gong X Y, Wang Y, Pu J, Zhang J J, Sun H W, Wang L. Environ. Int., 2020, 135: 105405.
[524]
Song M K, Jiang L F, Zhang D Y, Huang Z L, Wang S R, Mei W P, Luo C L, Zhang G. J. Agric. Food Chem., 2021, 69(7): 2062.
[525]
Zhang D, Zhou K, Liu C Q, Li X J, Pan S Y, Zhong L. Chemosphere, 2023, 315: 137651.
[526]
PÉrez D J, Doucette W J, Moore M T. Chemosphere, 2022, 288: 132480.
[527]
Hu B B, Jiang L F, Zheng Q, Luo C L, Zhang D Y, Wang S R, Xie Y C, Zhang G. Environ. Int., 2021, 155: 106591.
[528]
Wen B, Li L F, Zhang H N, Ma Y B, Shan X Q, Zhang S Z. Environ. Pollut., 2014, 184: 547.
[529]
Liu Q, Wang X L, Yang R Y, Yang L P, Sun B B, Zhu L Y. Environ. Sci. Technol., 2019, 53(9): 4940.
[530]
Wen B, Wu Y L, Zhang H N, Liu Y, Hu X Y, Huang H L, Zhang S Z. Environ. Pollut., 2016, 216: 682.
[531]
Rhodes G R. Environmental Fate and Plant Uptake of Chemicals of Emerging Concern in Agricultural Systems. 2021.
[532]
Li H B, Chang X, Zhang J K, Wang Y H, Zhong R Z, Wang L X, Wei J, Wang Y. Chemosphere, 2023, 313: 137491.
[533]
Luo Y M, Li L Z, Feng Y D, Li R J, Yang J, Peijnenburg W J G M, Tu C. Nat. Nanotechnol., 2022, 17(4): 424.
[534]
Yuan W K, Xu E G, Li L Z, Zhou A M, Peijnenburg W J G M, Grossart H P, Liu W Z, Yang Y Y. Water Res., 2023, 242: 120249.
[535]
Wang F Y, Feng X Y, Liu Y Y, Adams C A, Sun Y H, Zhang S W. Resour. Conserv. Recycl., 2022, 185: 106503.
[536]
Huber C, Bartha B, Schröder P. J. Hazard. Mater., 2012, 243: 250.
[537]
Wang G D, Li Q J, Luo B, Chen X Y. Nat. Biotechnol., 2004, 22(7): 893.
[538]
Liu Q, Wang X L, Zhou J, Yu X Y, Liu M L, Li Y, Sun H W, Zhu L Y. Environ. Sci. Technol., 2021, 55(14): 9895.
[539]
Kurade M B, Ha Y H, Xiong J Q, Govindwar S P, Jang M, Jeon B H. Chem. Eng. J., 2021, 415: 129040.
[540]
Cui E P, Cui B J, Fan X Y, Li S J, Gao F. Sci. Total Environ., 2021, 784: 147093.
[541]
Zhu C L, H X, Huang Y H, Cheng J L, Li H, Li Y W, Mo C H, Zhao H M, Xiang L, Cai Q Y. J. Hazard. Mater., 2023, 452: 131227.
[542]
Yu Y Y, Yu X L, Zhang D Q, Jin L, Huang J H, Zhu X F, Sun J T, Yu M, Zhu L Z. Environ. Sci. Technol., 2023, 57(4): 1776.
[543]
Liang Y T, Pei M, Wang D D, Cao S N, Xiao X, Sun B. Environ. Sci. Technol., 2017, 51(9): 4988.
[544]
Chen J, Liu S S, He L X, Cheng Y X, Ye P, Li J, Ying G G, Wang Y J, Yang F. Water Res., 2021, 198: 117145.
[545]
Huang Y H, Yang Y J, Wu X L, Zhu C L, H X, Zhao H M, Xiang L, Li H, Mo C H, Li Y W, Cai Q Y, Li Q X. J. Hazard. Mater., 2023, 444: 130292.
[546]
Thomas F, CÉbron A. Front. Microbiol., 2016, 7: 92.
[547]
Liao Q H, Liu H, Lu C, Liu J, Waigi M G, Ling W T. Sci. Total Environ., 2021, 764: 144436.
[548]
Jin J R, Wang M, Lu W W, Zhang L, Jiang Q Y, Jin Y Q, Lu K H, Sun S R, Cao Q, Wang Y J, Xiao M. Environ. Int., 2019, 127: 114.
[549]
Zubrova A, Michalikova K, Semerad J, Strejcek M, Cajthaml T, Suman J, Uhlik O. Front. Microbiol., 2021, 12: 657311.
[550]
Liou J S C, Szostek B, DeRito C M, Madsen E L. Chemosphere, 2010, 80(2): 176.
[551]
Huang S, JaffÉ P R. Environ. Sci. Technol., 2019, 53(19): 11410.
[552]
Weiner B, Yeung L W Y, Marchington E B, D’Agostino L A, Mabury S A. Environ. Chem., 2013, 10(6): 486.
[553]
Yin T R, Te S H, Reinhard M, Yang Y, Chen H T, He Y L, Gin K Y H. Chemosphere, 2018, 211: 379.
[554]
Yoshida S, Hiraga K, Takehana T, Taniguchi I, Yamaji H, Maeda Y, Toyohara K, Miyamoto K, Kimura Y, Oda K. Science, 2016, 351(6278): 1196.
[555]
Zafar R, Bang T H, Lee Y K, Begum M S, Rabani I, Hong S, Hur J. Sci. Total Environ., 2022, 843: 157010.
[556]
Dai H Y, Wu B B, Chen B L, Ma B, Chu C H. Environ. Sci. Technol., 2022, 56(12): 9075.
[557]
Liu J B, Zhu K C, Zhang C, Zhang X C, Chen N, Jia H Z. Environ. Sci. Technol., 2022, 56(22): 16483.
[558]
Qi Y W, Cao H M, Pan W J, Wang C P, Liang Y N. J. Hazard. Mater., 2022, 436: 129139.
[559]
Harner T, Bidleman T F. Environ. Sci. Technol., 1998, 32(10): 1494.
[560]
Pankow J F. Atmos. Environ. 1967, 1987, 21(11): 2275.
[561]
Li Y F, Ma W L, Yang M. Atmos. Chem. Phys., 2015, 15(4): 1669.
[562]
Li Y F, Qiao L N, Ren N Q, Sverko E, MacKay D, MacDonald R W. Environ. Sci. Technol., 2017, 51(2): 1035.
[563]
Li Y F, Qin M, Yang P F, Liu L Y, Zhou L J, Liu J N, Shi L L, Qiao L N, Hu P T, Tian C G, Nikolaev A, MacDonald R. Chemosphere, 2021, 271: 129580.
[564]
Qin M, Ma W L, Yang P F, Li W L, Wang L, Shi L L, Li L, Li Y F. Sci. Total Environ., 2024, 909: 168622.
[565]
Zhu F J, Hu P T, Ma W L. Atmos. Chem. Phys., 2023, 23(15): 8583.
[566]
Zhao S Z, Tian L L, Zou Z H, Liu X, Zhong G C, Mo Y Z, Wang Y, Tian Y K, Li J, Guo H, Zhang G. Environ. Sci. Technol., 2021, 55(14): 9450.
[567]
Okeme J O, Rodgers T F M, Jantunen L M, Diamond M L. Environ. Sci. Technol., 2018, 52(23): 13834.
[568]
Pankow J F, Storey J M E, Yamasaki H. Environ. Sci. Technol., 1993, 27(10): 2220.
[569]
Chen L G, Mai B X, Bi X H, Chen S J, Wang X M, Ran Y, Luo X J, Sheng G Y, Fu J M, Zeng E Y. Environ. Sci. Technol., 2006, 40(4): 1190.
[570]
Harner T, Bidleman T F. Environ. Sci. Technol., 1998, 32(10): 1494.
[571]
Arp H P H, Schwarzenbach R P, Goss K U. Environ. Sci. Technol., 2008, 42(15): 5541.
[572]
Shahpoury P, Lammel G, Albinet A, Sofuoglu A, Dumanoğlu Y, Sofuoglu S C, Wagner Z, Zdimal V. Environ. Sci. Technol., 2016, 50(22): 12312.
[573]
Jang M, Kamens R M. Environ. Sci. Technol., 1998, 32(9): 1237.
[574]
Huang R J, Zhang Y L, Bozzetti C, Ho K F, Cao J J, Han Y M, Daellenbach K R, Slowik J G, Platt S M, Canonaco F, Zotter P, Wolf R, Pieber S M, Bruns E A, Crippa M, Ciarelli G, Piazzalunga A, Schwikowski M, Abbaszade G, Schnelle-Kreis J, Zimmermann R, An Z S, Szidat S, Baltensperger U, El Haddad I, PrÉvôt A S H. Nature, 2014, 514(7521): 218.
[575]
Perraud V, Bruns E A, Ezell M J, Johnson S N, Yu Y, Alexander M L, Zelenyuk A, Imre D, Chang W L, Dabdub D, Pankow J F, Finlayson-Pitts B J. Proc. Natl. Acad. Sci. U. S. A., 2012, 109(8): 2836.
[576]
Zelenyuk A, Imre D, Beránek J, Abramson E, Wilson J, Shrivastava M. Environ. Sci. Technol., 2012, 46(22): 12459.
[577]
Vereecken L, Francisco J S. Chem. Soc. Rev., 2012, 41(19): 6259.
[578]
Atkinson R. Atmos. Environ., 2007, 41: 200.
[579]
Nie W, Yan C, Huang D D, Wang Z, Liu Y L, Qiao X H, Guo Y S, Tian L H, Zheng P G, Xu Z N, Li Y Y, Xu Z, Qi X M, Sun P, Wang J P, Zheng F X, Li X X, Yin R J, Dallenbach K R, Bianchi F, Petäjä T, Zhang Y J, Wang M Y, Schervish M, Wang S N, Qiao L P, Wang Q, Zhou M, Wang H L, Yu C, Yao D W, Guo H, Ye P L, Lee S C, Li Y J, Liu Y C, Chi X G, Kerminen V M, Ehn M, Donahue N M, Wang T, Huang C, Kulmala M, Worsnop D, Jiang J K, Ding A J. Nat. Geosci., 2022, 15(4): 255.
[580]
Milani A, Al-Naiema I M, Stone E A. Atmos. Environ., 2021, 246: 118078.
[581]
Wallington T J, Hurley M D, Xia J, Wuebbles D J, Sillman S, Ito A, Penner J E, Ellis D A, Martin J, Mabury S A, Nielsen O J, Sulbaek Andersen M P. Environ. Sci. Technol., 2006, 40(3): 924.
[582]
Thackray C P, Selin N E, Young C J. Environ. Sci.: Processes Impacts, 2020, 22(2): 285.
[583]
Melymuk L, Carter L, Ng C A, Liu Q F, Vijver M G, Fantke P, Baun A. One Earth, 2022, 5(10): 1067.
[584]
Kovacevic G, Sabljic A. Chemosphere, 2016, 159: 488.
[585]
Liao Z H, Zeng M, Wang L M. Chemosphere, 2020, 240: 124756.
[586]
Ellis D A, Martin J W, De Silva A O, Mabury S A, Hurley M D, Sulbaek Andersen M P, Wallington T J. Environ. Sci. Technol., 2004, 38(12): 3316.
[587]
Anderson P N, Hites R A. Environ. Sci. Technol., 1996, 30(5): 1756.
[588]
Liu Q F, Liggio J, Wentzell J, Lee P, Li K, Li S M. Environ. Sci. Technol. Lett., 2020, 7(9): 646.
[589]
Liu Y C, Liggio J, Harner T, Jantunen L, Shoeib M, Li S M. Environ. Sci. Technol., 2014, 48(2): 1041.
[590]
Liu Q F, Liggio J, Wentzell J, Lee P, Li K, Li S M. Environ. Sci. Technol. Lett., 2020, 7(9): 646.
[591]
Liu Q F, Li L, Zhang X M, Saini A, Li W L, Hung H, Hao C Y, Li K, Lee P, Wentzell J J B, Huo C Y, Li S M, Harner T, Liggio J. Nature, 2021, 600(7889): 456.
[592]
Liu Q F, Liu R Z, Zhang X M, Li W L, Harner T, Saini A, Liu H Y, Yue F G, Zeng L X, Zhu Y, Xing C Y, Li L, Lee P, Tong S R, Wang W G, Ge M F, Wang J J, Wu X G, Johannessen C, Liggio J, Li S M, Hung H, Xie Z Q, Mabury S A, Abbatt J P D. One Earth, 2023, 6(9): 1202.
[593]
Hao Y F, Xiong S Y, Wang P, Yang R Q, Pei Z G, Li Y M, Zhang Q H, Jiang G B. J. Hazard. Mater., 2022, 440: 129776.
[594]
Xiong S Y, Hao Y F, Fu J J, Wang P, Yang R Q, Pei Z G, Li Y M, Li A, Zhang Q H, Jiang G B. Environ. Pollut., 2022, 313: 120195.
[595]
Yu Y, Katsoyiannis A, Bohlin-Nizzetto P, Brorström-LundÉn E, Ma J M, Zhao Y, Wu Z Y, Tych W, Mindham D, Sverko E, Barresi E, Dryfhout-Clark H, Fellin P, Hung H. Environ. Sci. Technol., 2019, 53(5): 2375.
[596]
Wang X P, Halsall C, Codling G, Xie Z Y, Xu B Q, Zhao Z, Xue Y G, Ebinghaus R, Jones K C. Environ. Sci. Technol., 2014, 48(1): 173.
[597]
Wu J, Gao W, Liang Y, Fu J J, Gao Y, Wang Y W, Jiang G B. Environ. Sci. Technol., 2017, 51(19): 11136.
[598]
Allen S, Allen D, Baladima F, Phoenix V R, Thomas J L, Le Roux G, Sonke J E. Nat. Commun., 2021, 12: 7242.
[599]
Wang X P, Zhou Y Q. Science, 2023, 381(6665): 1419.
[600]
Wang X P, Chen M K, Gong P, Wang C F. Environ. Int., 2019, 124: 294.
[601]
Wang X P, Zhang Q G, Zhang Y L, Cong Z Y, Xu B Q, Ji Z M, Kang S C. Chin. Sci. Bull., 2019, 64(27): 2876.
[602]
Xu Y, Tian C G, Ma J M, Zhang G, Li Y F, Ming L L, Li J, Chen Y J, Tang J H. Environ. Sci. Technol., 2012, 46(17): 9525.
[603]
Liu D, Xu Y, Li J, Chaemfa C, Tian C G, Liu X, Luo C L, Zhang G. Aerosol Air Qual. Res., 2014, 14(4): 1258.
[604]
Park S, Western L M, Saito T, Redington A L, Henne S, Fang X K, Prinn R G, Manning A J, Montzka S A, Fraser P J, Ganesan A L, Harth C M, Kim J, Krummel P B, Liang Q, Mühle J, O’Doherty S, Park H, Park M K, Reimann S, Salameh P K, Weiss R F, Rigby M. Nature, 2021, 590(7846): 433.
[605]
Rigby M, Park S, Saito T, Western L M, Redington A L, Fang X, Henne S, Manning A J, Prinn R G, Dutton G S, Fraser P J, Ganesan A L, Hall B D, Harth C M, Kim J, Kim K R, Krummel P B, Lee T, Li S, Liang Q, Lunt M F, Montzka S A, Mühle J, O’Doherty S, Park M K, Reimann S, Salameh P K, Simmonds P, Tunnicliffe R L, Weiss R F, Yokouchi Y, Young D. Nature, 2019, 569(7757): 546.
[606]
Fang X K, Shao M, Stohl A, Zhang Q, Zheng J Y, Guo H, Wang C, Wang M, Ou J M, Thompson R L, Prinn R G. Atmos. Chem. Phys., 2016, 16(5): 3369.
[607]
Ubl S, Scheringer M, Hungerbühler K. Environ. Sci. Technol., 2017, 51(17): 9784.
[608]
Buser A M, Kierkegaard A, Bogdal C, MacLeod M, Scheringer M, Hungerbühler K. Environ. Sci. Technol., 2013, 47(13): 7045.
[609]
Tian L L, Li J, Zhao S Z, Tang J, Li J, Guo H, Liu X, Zhong G C, Xu Y, Lin T, Lyv X, Chen D H, Li K C, Shen J, Zhang G. Environ. Sci. Technol., 2021, 55(14): 9740.
[610]
Yang M M, Mao H T, Li H L, Yang F C, Cao F F, Wang Y. Environ. Res., 2023, 216: 114139.
[611]
Gewurtz S B, Bradley L E, Backus S, Dove A, McGoldrick D, Hung H, Dryfhout-Clark H. Environ. Sci. Technol., 2019, 53(15): 8543.
[612]
Zhao L J, Zhou M, Zhang T, Sun H W. Arch. Environ. Contam. Toxicol., 2013, 64(2): 198.
[613]
Johansson J H, Shi Y L, Salter M, Cousins I T. Environ. Sci.: Processes Impacts, 2018, 20(7): 997.
[614]
Cousins I T, Johansson J H, Salter M E, Sha B, Scheringer M. Environ. Sci. Technol., 2022, 56(16): 11172.
[615]
Cahill T M. Environ. Sci. Technol., 2022, 56(13): 9428.
[616]
Arp H P H, Goss K U. Environ. Sci. Technol., 2009, 43(22): 8542.
[617]
Rayne S, Forest K, Friesen K J. J. Environ. Sci. Health Part A, 2009, 44(10): 936.
[618]
Wright S L, Ulke J, Font A, Chan K L A, Kelly F J. Environ. Int., 2020, 136: 105411.
[619]
Cai L Q, Wang J D, Peng J P, Tan Z, Zhan Z W, Tan X L, Chen Q Q. Environ. Sci. Pollut. Res., 2017, 24(32): 24928.
[620]
Dris R, Gasperi J, Tassin B. Sources and fate of microplastics in urban areas: a focus on Paris megacity[M]//Wagner M, Lambert S. Freshwater Microplastics: Emerging Environmental Contaminants? Cham: Springer International Publishing, 2018. 69-83.
[621]
Allen S, Allen D, Phoenix V R, Le Roux G, Durántez JimÉnez P, Simonneau A, Binet S, Galop D. Nat. Geosci., 2019, 12(5): 339.
[622]
Brahney J, Hallerud M, Heim E, Hahnenberger M, Sukumaran S. Science, 2020, 368(6496): 1257.
[623]
Aeschlimann M, Li G Y, Kanji Z A, Mitrano D M. Nat. Geosci., 2022, 15(12): 967.
[624]
Xu X M, Li T, Zhen J B, Jiang Y Q, Nie X L, Wang Y, Yuan X Z, Mao H T, Wang X F, Xue L K, Chen J M. Environ. Sci. Technol. Lett., 2024, 11(1): 16.
[625]
MacKay D. Environ. Sci. Technol., 1979, 13(10): 1218.
[626]
MacKay D, Paterson S. Environ. Sci. Technol., 1981, 15(9): 1006.
[627]
Xu F L, Qin N, Zhu Y, He W, Kong X Z, Barbour M T, He Q S, Wang Y, Ou-Yang H L, Tao S. Ecol. Model., 2013, 252: 246.
[628]
Liu Y, Li C Y, Anderson B, Zhang S, Shi X H, Zhao S N. Chemosphere, 2017, 176: 117.
[629]
MacKay D, Paterson S, Joy M. Chemosphere, 1983, 12(9/10): 1193.
[630]
MacKay D, Diamond M. Chemosphere, 1989, 18(7/8): 1343.
[631]
MacKay D, Joy M, Paterson S. Chemosphere, 1983, 12(7/8): 981.
[632]
Kong X Z, Liu W X, He W, Xu F L, Koelmans A A, Mooij W M. Environ. Pollut., 2018, 237: 339.
[633]
Um M, Weerackody D, Gao L, Mohseni A, Evans B, Murdoch B, Schmidt J, Fan L H. J. Hazard. Mater., 2023, 446: 130694.
[634]
Cai Y Y, Zhang Q Q, Yan X T, Zhai Y Q, Guo Z, Li N, Ying G G. Sci. Total Environ., 2022, 842: 156633.
[635]
Csiszar S A, Diamond M L, Daggupaty S M. Environ. Sci. Technol., 2014, 48(2): 1075.
[636]
Diamond M L, Priemer D A, Law N L. Chemosphere, 2001, 44(7): 1655.
[637]
Csiszar S A, Daggupaty S M, Verkoeyen S, Giang A, Diamond M L. Environ. Sci. Technol., 2013, 47(1): 436.
[638]
Liu Y Y, Tian F F, Gu H X, Liu H F, Liu C. Pol. J. Environ. Stud., 2016, 25(1): 325.
[639]
Rodgers T F M, Truong J W, Jantunen L M, Helm P A, Diamond M L. Environ. Sci. Technol., 2018, 52(21): 12465.
[640]
Rodgers T F M, Giang A, Diamond M L, Gillies E, Saini A. Nat. Commun., 2023, 14: 1175.
[641]
Domínguez-Morueco N, Diamond M L, Sierra J, Schuhmacher M, Domingo J L, Nadal M. Sci. Total Environ., 2016, 573: 1622.
[642]
MacLeod M, Riley W J, McKone T E. Environ. Sci. Technol., 2005, 39(17): 6749.
[643]
Prevedouros K, MacLeod M, Jones K C, Sweetman A J. Environ. Pollut., 2004, 128(1/2): 251.
[644]
MacLeod M, von Waldow H, Tay P, Armitage J M, Wöhrnschimmel H, Riley W J, McKone T E, Hungerbuhler K. Environ. Pollut., 2011, 159(5): 1442.
[645]
Liu S J, Lu Y L, Xie S W, Wang T Y, Jones K C, Sweetman A J. Environ. Int., 2015, 85: 15.
[646]
MacLeod M, Woodfine D G, MacKay D, McKone T, Bennett D, Maddalena R. Environ. Sci. Pollut. Res., 2001, 8(3): 156.
[647]
Su C, Song S, Lu Y L, Wang P, Meng J, Lu X T, Jürgens M D, Khan K, Baninla Y, Liang R Y. Sci. Total Environ., 2018, 643: 90.
[648]
Su C, Song S, Lu Y L, Liu S J, Giesy J P, Chen D L, Jenkins A, Sweetman A J, Yvette B. Sci. Total Environ., 2018, 613-614: 352.
[649]
Su C, Lu Y L, Wang T Y, Lu X T, Song S, Li L, Khan K, Wang C C, Liang R Y. Environ. Pollut., 2018, 235: 235.
[650]
Prevedouros K, Jones K C, Sweetman A J. Environ. Sci. Technol., 2004, 38(22): 5993.
[651]
Earnshaw M R, Jones K C, Sweetman A J. Environ. Int., 2015, 74: 71.
[652]
Wania F, Dugani C B. Environ. Toxicol. Chem., 2003, 22(6): 1252.
[653]
Wania F, Mackay D. Chemosphere, 1993, 27(10): 2079.
[654]
Scherimger M. Wania F. Multimedia models of global transport and fate of persistent organic pollutants[M]//Fiedler H. Persistent Organic Pollutants. Springer: Berlin, Heidelberg, 2003. 237.
[655]
Lee Y, Cho G, Lee D S, Lee J Y, Kim Y K, Kim D W, Kim S J, Kim K, Jang G, Choi S. Environ. Sci. Technol., 2007, 41(15): 5231.
[656]
Lee Y, Lee D S, Kim S K, Kim Y K, Kim D W. Environ. Sci. Technol., 2004, 38(4): 1079.
[657]
Scheringer M, Salzmann M, Stroebe M, Wegmann F, Fenner K, Hungerbühler K. Environ. Pollut., 2004, 128(1/2): 177.
[658]
Scheringer M. Environ. Sci. Technol., 1996, 30(5): 1652.
[659]
Webster E, MacKay D, Di Guardo A, Kane D, Woodfine D. Chemosphere, 2004, 55(10): 1361.
[660]
Devillers J, Bintein S, Karcher W. Chemosphere, 1995, 30(3): 457.
[661]
Bintein S, Devillers J. Chemosphere, 1996, 32(12): 2427.
[662]
Bintein S, Devillers J. Chemosphere, 1996, 32(12): 2441.
[663]
Devillers J, Bintein S, Domine D. SAR QSAR Environ. Res., 1997, 6(1/2): 63.
[664]
Hollander A, Scheringer M, Shatalov V, Mantseva E, Sweetman A, Roemer M, Baart A, Suzuki N, Wegmann F, van de Meent D. J. Environ. Monit., 2008, 10(10): 1139.
[665]
Fenner K, Lanz V A, Scheringer M, Borsuk M E. Environ. Sci. Technol., 2007, 41(8): 2840.
[666]
Scheringer M, Wegmann F, Fenner K, Hungerbühler K. Environ. Sci. Technol., 2000, 34(9): 1842.
[667]
Di Guardo A, Morselli M, Morabito G, Semplice M, Van den Brink P J, De Laender F. Sci. Total Environ., 2017, 580: 1237.
[668]
Morselli M, Semplice M, De Laender F, Van den Brink P J, Di Guardo A. Sci. Total Environ., 2015, 526: 338.
[669]
MacKay D, Di Guardo A, Paterson S, Cowan C E. Environ. Toxicol. Chem., 1996, 15(9): 1627.
[670]
Beyer A, MacKay D, Matthies M, Wania F, Webster E. Environ. Sci. Technol., 2000, 34(4): 699.
[671]
Choi S D, Wania F. Environ. Sci. Technol., 2011, 45(20): 8834.
[672]
Wania F, McLachlan M S. Environ. Sci. Technol., 2001, 35(3): 582.
[673]
Breivik K, Eckhardt S, McLachlan M S, Wania F. Environ. Sci.: Processes Impacts, 2021, 23(8): 1146.
[674]
Hayashi T I, Imaizumi Y, Yokomizo H, Tatarazako N, Suzuki N. Environ. Toxicol. Chem., 2016, 35(1): 233.
[675]
Suzuki N, Murasawa K, Sakurai T, Nansai K, Matsuhashi K, Moriguchi Y, Tanabe K, Nakasugi O, Morita M. Environ. Sci. Technol., 2004, 38(21): 5682.
[676]
Imaizumi Y, Suzuki N, Shiraishi F, Nakajima D, Serizawa S, Sakurai T, Shiraishi H. Environ. Sci.: Processes Impacts, 2018, 20(1): 120.
[677]
Misaki T, Yokomizo H, Tanaka Y. Ecotoxicol. Environ. Saf., 2019, 171: 173.
[678]
Morselli M, Vitale C M, Ippolito A, Villa S, Giacchini R, Vighi M, Di Guardo A. Sci. Total Environ., 2018, 615: 307.
[679]
Morselli M, Terzaghi E, Galimberti F, Di Guardo A. Chemosphere, 2018, 210: 204.
[680]
Zhang Q, Crittenden J C, Shonnard D, Mihelcic J R. Chemosphere, 2003, 50(10): 1377.
[681]
Barra R, Vighi M, Maffioli G, Di Guardo A, Ferrario P. Environ. Sci. Technol., 2000, 34(20): 4425.
[682]
Di Guardo A, Calamari D, Zanin G, Consalter A, MacKay D. Chemosphere, 1994, 28(3): 511.
[683]
Di Guardo A, Williams R J, Matthiessen P, Brooke D N, Calamari D. Environ. Sci. & Pollut. Res., 1994, 1(3): 151.
[684]
Ghirardello D, Morselli M, Otto S, Zanin G, Di Guardo A. Environ. Pollut., 2014, 184: 502.
[685]
Ghirardello D, Morselli M, Semplice M, Di Guardo A. Environ. Sci. Technol., 2010, 44(23): 9010.
[686]
Dong J X, Chen Z, Wang Q Y, Guo J B, Pu Y H, Han Y, Xia J, Haghighat F. Sustain. Cities Soc., 2019, 50: 101624.
[687]
Cousins A P, Holmgren T, Remberger M. Sci. Total Environ., 2014, 470-471: 527.
[688]
Cousins A P. Sci. Total Environ., 2012, 438: 233.
[689]
Humbert S, Manneh R, Shaked S, Wannaz C, Horvath A, Deschênes L, Jolliet O, Margni M. Sci. Total Environ., 2009, 407(17): 4812.
[690]
Jolliet O, Wannaz C, Kilgallon J, Speirs L, Franco A, Lehner B, Veltman K, Hodges J. Environ. Int., 2020, 134: 105260.
[691]
Wannaz C, Franco A, Kilgallon J, Hodges J, Jolliet O. Sci. Total Environ., 2018, 622-623: 410.
[692]
Hauck M, Huijbregts M A J, Armitage J M, Cousins I T, Ragas A M J, van de Meent D. Chemosphere, 2008, 72(6): 959.
[693]
Brandes L J, den Hollander H, Van de Meent D. SimpleBox 2.0: A Nested Multimedia Fate Model for Evaluating the Environmental Fate of Chemicals. 1996.
[694]
Wang J Q, Hoondert R P J, Thunnissen N W, van de Meent D, Hendriks A J. Sci. Total Environ., 2020, 720: 137579.
[695]
Hollander A, Schoorl M, van de Meent D. Chemosphere, 2016, 148: 99.
[696]
Quik J T K, Meesters J A J, Koelmans A A. Sci. Total Environ., 2023, 882: 163437.
[697]
Beyer A, Matthie M. Criteria for Atmospheric Long-range Transport Potential and Persistence of Pesticides and Industrial Chemicals. Germany, 2001.
[698]
Chen R C, Xing C Y, Shen G F, Jones K C, Zhu Y. Environ. Sci. Technol., 2023, 57(48): 20304.
[699]
Zhu Y, Price O R, Tao S, Jones K C, Sweetman A J. Environ. Int., 2014, 69: 18.
[700]
Zhu Y, Tao S, Price O R, Shen H Z, Jones K C, Sweetman A J. Environ. Sci. Technol., 2015, 49(23): 13868.
[701]
Zhu Y, Price O R, Kilgallon J, Rendal C, Tao S, Jones K C, Sweetman A J. Environ. Sci. Technol., 2016, 50(13): 7001.
[702]
Franco A, Trapp S. Environ. Toxicol. Chem., 2010, 29(4): 789.
[703]
Zhu Y, Huang H J, Zhang Y H, Xiong G N, Zhang Q H, Li Y J, Tao S, Liu W X. Sci. Total Environ., 2021, 773: 145076.
[704]
Zhu Y, Price O R, Kilgallon J, Rendal C, Tao S, Jones K C, Sweetman A J. Environ. Sci. Technol., 2016, 50(13): 7001.
[705]
Cooter E J, Hutzell W T. Environ. Sci. Technol., 2002, 36(19): 4091.
[706]
Cooter E J, Hutzell W T, Foreman W T, Majewski M S. Environ. Sci. Technol., 2002, 36(21): 4593.
[707]
D’Ambro E L, Murphy B N, Bash J O, Gilliam R C, Pye H O T. Sci. Total Environ., 2023, 902: 166256.
[708]
D’Ambro E L, Pye H O T, Bash J O, Bowyer J, Allen C, Efstathiou C, Gilliam R C, Reynolds L, Talgo K, Murphy B N. Environ. Sci. Technol., 2021, 55(2): 862.
[709]
Wang L F, Huang Y F, Zhang X D, Liu X R, Chen K J, Jian X H, Liu J F, Gao H, Zhugu R Y, Ma J M. Environ. Pollut., 2022, 298: 118859.
[710]
He J, Wang Z X, Zhao L Y, Ma H B, Huang J, Li H Y, Mao X X, Huang T, Gao H, Ma J M. Environ. Pollut., 2021, 290: 118071.
[711]
Huang T, Ling Z L, Ma J M, MacDonald R W, Gao H, Tao S, Tian C G, Song S J, Jiang W, Chen L L, Chen K J, Xie Z Y, Zhao Y, Zhao L Y, Gu C, Mao X X. Nat. Food, 2020, 1(5): 292.
[712]
Zhang Y X, Tao S, Shen H Z, Ma J M. Proc. Natl. Acad. Sci. U. S. A., 2009, 106(50): 21063.
[713]
Jiang W, Huang T, Mao X X, Wang L, Zhao Y, Jia C H, Wang Y N, Gao H, Ma J M. Environ. Pollut., 2017, 220: 132.
[714]
Ma J M, Hung H, Tian C G, Kallenborn R. Nat. Clim. Change, 2011, 1(5): 255.
[715]
Hansen K M, Christensen J H, Geels C, Silver J D, Brandt J. Atmos. Chem. Phys., 2015, 15(11): 6549.
[716]
Allen S, Allen D, Baladima F, Phoenix V R, Thomas J L, Le Roux G, Sonke J E. Nat. Commun., 2021, 12: 7242.
[717]
Allen S, Allen D, Phoenix V R, Le Roux G, Durántez JimÉnez P, Simonneau A, Binet S, Galop D. Nat. Geosci., 2019, 12(5): 339.
[718]
Ding Y C, Zou X Q, Wang C L, Feng Z Y, Wang Y, Fan Q Y, Chen H Y. Atmos. Environ., 2021, 253: 118389.
[719]
Wang X H, Li C J, Liu K, Zhu L X, Song Z Y, Li D J. J. Hazard. Mater., 2020, 389: 121846.
[720]
Fu Y M, Pang Q T, Ga S L Z, Wu P P, Wang Y J, Mao M, Yuan Z, Xu X R, Liu K, Wang X H, Li D J, Zhang Y X. One Earth, 2023, 6(6): 705.
[721]
Long X, Fu T M, Yang X, Tang Y Y, Zheng Y, Zhu L, Shen H Z, Ye J H, Wang C, Wang T, Li B J. Environ. Sci. Technol., 2022, 56(10): 6243.
[722]
Peng Y M, Wu P P, Schartup A T, Zhang Y X. Proc. Natl. Acad. Sci. U. S. A., 2021, 118(47): e2111530118.
[723]
Zhang Y X, Wu P P, Xu R C, Wang X T, Lei L L, Schartup A T, Peng Y M, Pang Q T, Wang X L, Mai L, Wang R W, Liu H, Wang X T, Luijendijk A, Chassignet E, Xu X B, Shen H Z, Zheng S X, Zeng E Y. Nat. Commun., 2023, 14: 1372.
[724]
Zhang X M, Zhang Y X, Dassuncao C, Lohmann R, Sunderland E M. Glob. Biogeochem. Cycles, 2017, 31(8): 1332.
[725]
Wagner C C, Amos H M., Thackray C P, Zhang Y, Lundgren E W, Forget G, Friedman C L, Selin N E, Lohmann R, Sunderland E M. Global Biogeochemical Cycles, 2019, 33(3): 469.
[726]
USEPA. surface water models to assess exposures[EB/OL]. (2023-11-27)[2024-07-01]. https://www.epa.gov/ceam/surface-water-models-assess-exposures.
[727]
Talukdar P, Kumar B, Kulkarni V V. Rev. Environ. Sci. Bio, 2023, 22(3): 653.
[728]
Laroche A M, Gallichand J, LagacÉ R, Pesant A. J. Environ. Eng., 1996, 122(7): 622.
[729]
Rathjens H, Kiesel J, Miguez M B, Winchell M, Arnold J G, Sur R. Water, 2022, 14(9): 1332.
[730]
Bradbury S P, Feijtel T C J, Van Leeuwen C J. Environ. Sci. Technol., 2004, 38(23): 463A.
[731]
Zhang L L, Liu J L, Li Y, Zhao Y W. Ecol. Model., 2013, 265: 239.
[732]
Zhang S X, Zhang Q Q, Liu Y S, Yan X T, Zhang B, Xing C, Zhao J L, Ying G G. Sci. Total Environ., 2020, 712: 136518.
[733]
Pandey P K, Soupir M L, Ikenberry C D, Rehmann C R. JAWRA J. Am. Water Resour. Assoc., 2016, 52(1): 184.
[734]
Desai A, Rifai H S, Petersen T M, Stein R. J. Water Resour. Plann. Manage., 2011, 137(5): 412.
[735]
Kim J W, Pachepsky Y A, Shelton D R, Coppock C. Ecol. Model., 2010, 221(12): 1592.
[736]
Niazi M, Obropta C, Miskewitz R. J. Environ. Manag., 2015, 151: 167.
[737]
Coffey R, Cummins E, O’ Flaherty V, Cormican M. Hum. Ecol. Risk Assess., 2010, 16(4): 913.
[738]
Collins R, Rutherford K. Water Res., 2004, 38(3): 700.
[739]
Dorner S M, Anderson W B, Slawson R M, Kouwen N, Huck P M. Environ. Sci. Technol., 2006, 40(15): 4746.
[740]
Ferguson C M, Croke B F W, Beatson P J, Ashbolt N J, Deere D A. J. Water Health, 2007, 5(2): 187.
[741]
Haydon S, Deletic A. J. Hydrol., 2006, 328(3/4): 467.
[742]
Sterk A, Schijven J, de Roda Husman A M, de Nijs T. Water Res., 2016, 95: 90.
[743]
Yates M V, Ouyang Y. Appl. Environ. Microbiol., 1992, 58(5): 1609.
[744]
Gothwal R, Thatikonda S. Sci. Rep., 2020, 10: 15081.
[745]
Ikuma K, Rehmann C R. Environ. Eng. Sci., 2020, 37(2): 164.
[746]
Li R W, MacDonald Gibson J. Front. Environ. Sci., 2022, 10: 958784.
[747]
Li R W, Gibson J M. Environ. Sci. Technol., 2023, 57(46): 18329.
[748]
George S, Dixit A. J. Environ. Manag., 2021, 295: 113359.
[749]
Fernandez N, Nejadhashemi A P, Loveall C. Water Res., 2023, 243: 120307.
[750]
McMahon P B, Tokranov A K, Bexfield L M, Lindsey B D, Johnson T D, Lombard M A, Watson E. Environ. Sci. Technol., 2022, 56(4): 2279.
[751]
Zheng D S, Yin G Y, Liu M, Hou L J, Yang Y, Van Boeckel T P, Zheng Y L, Li Y. Sci. Adv., 2022, 8(46): eabq8015.
[752]
Zhou H, Beltrán J F, Brito I L. Sci. Adv., 2021, 7(43): eabj5056.
[753]
Bilal M, Liu H, Liu R, Cohen Y. Nanoscale, 2017, 9(12): 4162.
[754]
Pongratz J, Dolman H, Don A, Erb K H, Fuchs R, Herold M, Jones C, Kuemmerle T, Luyssaert S, Meyfroidt P, Naudts K. Glob. Change Biol., 2018, 24(4): 1470.
[755]
Lohman K, Pai P, Seigneur C, Levin L. Sci. Total Environ., 2000, 259(1/2/3): 3.
[756]
Zhang Y X, Song Z C, Huang S J, Zhang P, Peng Y M, Wu P P, Gu J, Dutkiewicz S, Zhang H X, Wu S L, Wang F Y, Chen L, Wang S X, Li P. Nat. Commun., 2021, 12: 3035.
[757]
Zhang Y X, Zhang P, Song Z C, Huang S J, Yuan T F, Wu P P, Shah V, Liu M D, Chen L, Wang X J, Zhou J, Agnan Y. One Earth, 2023, 6(3): 316.
[758]
Yuan T F, Zhang P, Song Z C, Huang S J, Wang X, Zhang Y X. Environ. Int., 2023, 174: 107904.
[759]
Gaines L G T. Am. J. Ind. Med., 2023, 66(5): 353.
[760]
Wang Z Y, Buser A M, Cousins I T, Demattio S, Drost W, Johansson O, Ohno K, Patlewicz G, Richard A M, Walker G W, White G S, Leinala E. Environ. Sci. Technol., 2021, 55(23): 15575.
[761]
Dickman R A, Aga D S. J. Hazard. Mater., 2022, 436: 129120.
[762]
O’Hagan D. Chem. Soc. Rev., 2008, 37(2): 308.
[763]
Pang W Q, Li Y, DeLuca L T, Liang D L, Qin Z, Liu X G, Xu H X, Fan X Z. Nanomaterials, 2021, 11(10): 2749.
[764]
Glüge J, Scheringer M, Cousins I T, DeWitt J C, Goldenman G, Herzke D, Lohmann R, Ng C A, Trier X, Wang Z Y. Environ. Sci.: Processes Impacts, 2020, 22(12): 2345.
[765]
Sims J L, Stroski K M, Kim S, Killeen G, Ehalt R, Simcik M F, Brooks B W. Sci. Total Environ., 2022, 816: 151535.
[766]
Shi Y, Zhang B, Zheng Z, Cai Y. Research of Environmental Sciences, 2022, 35(9):2037.
[767]
Abou-Khalil C, Sarkar D, Braykaa P, Boufadel M C. Curr. Pollut. Rep., 2022, 8(4): 422.
[768]
Peritore A F, Gugliandolo E, Cuzzocrea S, Crupi R, Britti D. Int. J. Mol. Sci., 2023, 24(14): 11707.
[769]
Jiao X C, Shi Q Y, Gan J. Crit. Rev. Environ. Sci. Technol., 2021, 51(23): 2745.
[770]
Jian J M, Chen D, Han F J, Guo Y, Zeng L X, Lu X W, Wang F. Sci. Total Environ., 2018, 636: 1058.
[771]
Conley J M, Lambright C S, Evans N, McCord J, Strynar M J, Hill D, Medlock-Kakaley E, Wilson V S, Gray L E Jr. Environ. Int., 2021, 146: 106204.
[772]
Roth K, Yang Z, Agarwal M, Liu W, Peng Z Y, Long Z, Birbeck J, Westrick J, Liu W Q, Petriello M C. Environ. Int., 2021, 157: 106843.
[773]
Gaballah S, Swank A, Sobus J R, Howey X M, Schmid J, Catron T, McCord J, Hines E, Strynar M, Tal T. Environ. Health Perspect., 2020, 128(4): 5843.
[774]
Menger F, Pohl J, Ahrens L, Carlsson G, Örn S. Chemosphere, 2020, 245: 125573.
[775]
Roth K, Petriello M C. Front. Endocrinol., 2022, 13: 965384.
[776]
Hærvig K K, Petersen K U, Hougaard K S, Lindh C, Ramlau-Hansen C H, Toft G, Giwercman A, Høyer B B, Flachs E M, Bonde J P, Tøttenborg S S. Environ. Health Perspect., 2022, 130(10): 10285.
[777]
Steenland K, Winquist A. Environ. Res., 2021, 194: 110690.
[778]
Buck R C, Franklin J, Berger U, Conder J M, Cousins I T, de Voogt P, Jensen A A, Kannan K, Mabury S A, van Leeuwen S P. Integr. Environ. Assess. Manag., 2011, 7(4): 513.
[779]
Sonne C, Jenssen B M, Rinklebe J, Lam S S, Hansen M, Bossi R, Gustavson K, Dietz R. Sci. Total Environ., 2023, 876: 162770.
[780]
Fromme H, Tittlemier S A, Völkel W, Wilhelm M, Twardella D. Int. J. Hyg. Environ. Health, 2009, 212(3): 239.
[781]
Guo R, Liu X L, Liu J, Liu Y, Qiao X C, Ma M Y, Zheng B H, Zhao X R. Sci. Rep., 2020, 10: 4691.
[782]
Breitmeyer S E, Williams A M, Duris J W, Eicholtz L W, Shull D R, Wertz T A, Woodward E E. Sci. Total Environ., 2023, 888: 164161.
[783]
Li L, Zheng H Y, Wang T Y, Cai M H, Wang P. Environ. Pollut., 2018, 238: 168.
[784]
Heydebreck F, Tang J H, Xie Z Y, Ebinghaus R. Environ. Sci. Technol., 2015, 49(14): 8386.
[785]
Joerss H, Xie Z Y, Wagner C C, von Appen W J, Sunderland E M, Ebinghaus R. Environ. Sci. Technol., 2020, 54(16): 9958.
[786]
Sun M, Arevalo E, Strynar M, Lindstrom A, Richardson M, Kearns B, Pickett A, Smith C, Knappe D R U. Environ. Sci. Technol. Lett., 2016, 3(12): 415.
[787]
Yao J Z, Sheng N, Guo Y, Yeung L W Y, Dai J Y, Pan Y T. Environ. Sci. Technol., 2022, 56(12): 7986.
[788]
Yu N Y, Guo H W, Yang J P, Jin L, Wang X B, Shi W, Zhang X W, Yu H X, Wei S. Environ. Sci. Technol., 2018, 52(15): 8205.
[789]
Jahnke A, Ahrens L, Ebinghaus R, Temme C. Environ. Sci. Technol., 2007, 41(3): 745.
[790]
Yao Y M, Sun H W, Gan Z W, Hu H W, Zhao Y Y, Chang S, Zhou Q X. Environ. Sci. Technol., 2016, 50(7): 3676.
[791]
Li J F, He J H, Niu Z G, Zhang Y. Environ. Int., 2020, 135: 105419.
[792]
Nascimento R A, Nunoo D B O, Bizkarguenaga E, Schultes L, Zabaleta I, Benskin J P, SpanÓ S, Leonel J. Environ. Pollut., 2018, 242: 1436.
[793]
Ali A M, Sanden M, Higgins C P, Hale S E, Alarif W M, Al-Lihaibi S S, Ræder E M, Langberg H A, Kallenborn R. Environ. Pollut., 2021, 280: 116935.
[794]
Benskin J P, Ikonomou M G, Gobas F A P C, Woudneh M B, Cosgrove J R. Environ. Sci. Technol., 2012, 46(12): 6505.
[795]
Griffin E K, Hall L M, Brown M A, Taylor-Manges A, Green T, Suchanec K, Furman B T, Congdon V M, Wilson S S, Osborne T Z, Martin S, Schultz E A, Holden M M, Lukacsa D T, Greenberg J A, Deliz Quiñones K Y, Lin E Z, Camacho C, Bowden J A. J. Am. Soc. Mass Spectrom., 2023, 34(9): 1826.
[796]
Qian S H, Lu H Y, Xiong T T, Zhi Y, Munoz G, Zhang C H, Li Z W, Liu C H, Li W, Wang X M, He Q. Environ. Sci. Technol., 2023, 57(11): 4443.
[797]
Zhi Y, Lu H Y, Grieger K D, Munoz G, Li W, Wang X M, He Q, Qian S H. ACS EST Eng., 2022, 2(7): 1169.
[798]
Li Y N, Yao J Z, Zhang J, Pan Y T, Dai J Y, Ji C L, Tang J H. Environ. Sci. Technol., 2022, 56(10): 6046.
[799]
Pan Y T, Zhang H X, Cui Q Q, Sheng N, Yeung L W Y, Guo Y, Sun Y, Dai J Y. Environ. Sci. Technol., 2017, 51(17): 9553.
[800]
Jiao Z Y, Yu N Y, Mao J D, Yang Q, Jiao L P, Wang X B, Shi W, Yu H X, Wei S. J. Hazard. Mater., 2023, 458: 131868.
[801]
Russell M C, Newton S R, McClure K M, Levine R S, Phelps L P, Lindstrom A B, Strynar M J. Chemosphere, 2019, 222: 295.
[802]
Cui Q Q, Shi F L, Pan Y T, Zhang H X, Dai J Y. Sci. Total Environ., 2019, 674: 524.
[803]
Barrett H, Du X, Houde M, Lair S, Verreault J, Peng H. Environ. Sci. Technol., 2021, 55(3): 1659.
[804]
Kurwadkar S, Dane J, Kanel S R, Nadagouda M N, Cawdrey R W, Ambade B, Struckhoff G C, Wilkin R. Sci. Total Environ., 2022, 809: 151003.
[805]
Xiang Q, Shan G Q, Wu W, Zhu L Y. Chin. Sci. Bull., 2019, 64(9): 911.
[806]
Yamashita N, Taniyasu S, Petrick G, Wei S, Gamo T, Lam P K S, Kannan K. Chemosphere, 2008, 70(7): 1247.
[807]
Munoz G, Desrosiers M, Vetter L, Vo Duy S, Jarjour J, Liu J X, SauvÉ S. Environ. Sci. Technol., 2020, 54(3): 1687.
[808]
Cui Q Q, Pan Y T, Zhang H X, Sheng N, Wang J S, Guo Y, Dai J Y. Environ. Sci. Technol., 2018, 52(3): 982.
[809]
Shi Y L, Vestergren R, Nost T H, Zhou Z, Cai Y Q. Environ. Sci. Technol., 2018, 52(8): 4592.
[810]
Guillette T C, McCord J, Guillette M, Polera M E, Rachels K T, Morgeson C, Kotlarz N, Knappe D R U, Reading B J, Strynar M, Belcher S M. Environ. Int., 2020, 136: 105358.
[811]
Robuck A R, Cantwell M G, McCord J P, Addison L M, Pfohl M, Strynar M J, McKinney R, Katz D R, Wiley D N, Lohmann R. Environ. Sci. Technol., 2020, 54(20): 12938.
[812]
Gebbink W A, Bossi R, RigÉt F F, Rosing-Asvid A, Sonne C, Dietz R. Chemosphere, 2016, 144: 2384.
[813]
Herzke D, Nikiforov V, Yeung L W Y, Moe B, Routti H, Nygård T, Gabrielsen G W, Hanssen L. Environ. Int., 2023, 171: 107640.
[814]
Liu X L, Zheng X W, Zhang L L, Li J, Li Y, Huang H H, Fan Z Q. J. Hazard. Mater., 2022, 437: 129355.
[815]
Gonzales A K, Donaher S E, Wattier B D, Martinez N E. Environ. Toxicol. Chem., 2023, 42(11): 2412.
[816]
Li R, Tang T H, Qiao W C, Huang J. J. Environ. Sci., 2020, 92: 176.
[817]
Liu H N, Hu W L, Li X, Hu F W, Liu Y F, Xie T H, Liu B, Xi Y N, Su Z, Zhang C. Chemosphere, 2022, 289: 133137.
[818]
Lin Q Q, Zhou C, Chen L, Li Y F, Huang X F, Wang S Z, Qiu R L, Tang C Y. Chemosphere, 2020, 249: 126447.
[819]
Liu C H, Gin K Y H, Chang V W C. Environ. Sci. Pollut. Res., 2014, 21(4): 2785.
[820]
Pan R L, Yang S W, Jiang M. Asian Journal of Ecotoxicology, 2016, 11(6): 112.
[821]
Aquilina-Beck A A, Reiner J L, Chung K W, DeLise M J, Key P B, DeLorenzo M E. Arch. Environ. Contam. Toxicol., 2020, 79(3): 333.
[822]
Park K, Nikapitiya C, Kwak T S, Kwak I S. Ocean Sci. J., 2015, 50(3): 547.
[823]
Zhang F, Wei J J, Li Q, Jiang R L, Yu N, Qin J G, Chen L Q. Comp. Biochem. Physiol. Part C Toxicol. Pharmacol., 2015, 172-173: 13.
[824]
Labine L M, Oliveira Pereira E A, Kleywegt S, Jobst K J, Simpson A J, Simpson M J. Environ. Toxicol. Chem., 2023, 42(1): 242.
[825]
Yu Z J, Li Q, Wang J, Yu Y L, Wang Y, Zhou Q H, Li P F. Nanoscale Res. Lett., 2020, 15: 115.
[826]
Wang Z F, Li C N, Shao Y Y, Xue W N, Wang N, Xu X M, Zhang Z B. RSC Adv., 2021, 11(43): 26481.
[827]
Delor L, Louzon M, Pelosi C, Michel E, Maillet G, Carronnier H. Environ. Pollut., 2023, 335: 122221.
[828]
Sonter C A, Rader R, Stevenson G, Stavert J R, Wilson S C. Integr. Environ. Assess. Manag., 2021, 17(4): 673.
[829]
Gebreab K Y, Benetti D, Grosell M, Stieglitz J D, Berry J P. Ecotoxicology, 2022, 31(7): 1057.
[830]
Dale K, Yadetie F, Horvli T, Zhang X K, Frøysa H G, Karlsen O A, Goksøyr A. Sci. Total Environ., 2022, 814: 152732.
[831]
Flynn R W, Chislock M F, Gannon M E, Bauer S J, Tornabene B J, Hoverman J T, Sepúlveda M S. Chemosphere, 2019, 236: 124350.
[832]
Flynn R W, Hoover G, Iacchetta M, Guffey S, de Perre C, Huerta B, Li W M, Hoverman J T, Lee L D, Sepúlveda M S. Environ. Toxicol. Chem., 2022, 41(6): 1407.
[833]
Tornabene B J, Chislock M F, Gannon M E, Sepúlveda M S, Hoverman J T. Integr. Environ. Assess. Manag., 2021, 17(4): 684.
[834]
Buytaert J, Eens M, Elgawad H A, Bervoets L, Beemster G, Groffen T. Environ. Pollut., 2023, 335: 122304.
[835]
Custer C M, Custer T W, Schoenfuss H L, Poganski B H, Solem L. Reprod. Toxicol., 2012, 33(4): 556.
[836]
Pedersen K E, Letcher R J, Sonne C, Dietz R, Styrishave B. Environ. Int., 2016, 96: 180.
[837]
Wang Y J, Yao J Z, Dai J Y, Ma L Y, Liu D, Xu H T, Cui Q Q, Ma J Z, Zhang H X. Environ. Pollut., 2020, 265: 114805.
[838]
Sebastiano M, Jouanneau W, BlÉvin P, Angelier F, Parenteau C, Gernigon J, Lemesle J C, Robin F, Pardon P, Budzinski H, Labadie P, Chastel O. Sci. Total Environ., 2021, 765: 144611.
[839]
Piva E, Schumann S, Dotteschini S, Brocca G, Radaelli G, Marion A, Irato P, Bertotto D, Santovito G. Antioxidants, 2022, 11(6): 1115.
[840]
Hoover G, Kar S, Guffey S, Leszczynski J, Sepúlveda M S. Chemosphere, 2019, 233: 25.
[841]
Hamid N, Junaid M, Manzoor R, Sultan M, Chuan O M, Wang J. Sci. Total Environ., 2023, 905: 167213.
[842]
Cheng W X, Ng C A. Environ. Sci. Technol., 2019, 53(23): 13970.
[843]
Greaves A K, Letcher R J. Bull. Environ. Contam. Toxicol., 2017, 98(1): 2.
[844]
Wei G L, Li D Q, Zhuo M N, Liao Y S, Xie Z Y, Guo T L, Li J J, Zhang S Y, Liang Z Q. Environ. Pollut., 2015, 196: 29.
[845]
Xie Z Y, Wang P, Wang X, Castro-JimÉnez J, Kallenborn R, Liao C Y, Mi W Y, Lohmann R, Vila-Costa M, Dachs J. Nat. Rev. Earth Environ., 2022, 3(5): 309.
[846]
Blum A, Behl M, Birnbaum L S, Diamond M L, Phillips A, Singla V, Sipes N S, Stapleton H M, Venier M. Environ. Sci. Technol. Lett., 2019, 6(11): 638.
[847]
van der Veen I, de Boer J. Chemosphere, 2012, 88(10): 1119.
[848]
Zhang X. China phosphorus flame retardant industry market status analysis in 2020, industry market, performance advantages[EB/OL]. (2024-06-10)[2024-07-01]. https://www.huaon.com/channel/trend/741225.html.
[849]
Fu J, Fu K H, Hu B Y, Zhou W, Fu Y L, Gu L Y, Zhang Q H, Zhang A Q, Fu J J, Jiang G B. Environ. Sci. Technol., 2023, 57(5): 1919.
[850]
Zhu H K, Al-Bazi M M, Kumosani T A, Kannan K. Environ. Sci. Technol. Lett., 2020, 7(6): 415.
[851]
Pang L, Yang H Q, Yang P J, Zhang H Z, Zhao J H. Food Chem., 2017, 229: 445.
[852]
Lee J W, Lee H K, Moon H B. Ecotoxicol. Environ. Saf., 2019, 180: 185.
[853]
Bacaloni A, Cavaliere C, Foglia P, Nazzari M, Samperi R, Laganà A. Rapid Commun. Mass Spectrom., 2007, 21(7): 1123.
[854]
Cui K Y, Wen J X, Zeng F, Li S C, Zhou X, Zeng Z X. Chemosphere, 2017, 175: 514.
[855]
Ding J J, Deng T Q, Xu M M, Wang S, Yang F X. Environ. Pollut., 2018, 233: 986.
[856]
Wang X, Zhu Q Q, Yan X T, Wang Y W, Liao C Y, Jiang G B. Sci. Total Environ., 2020, 731: 139071.
[857]
Tan H L, Yang L, Yu Y J, Guan Q X, Liu X T, Li L Z, Chen D. Environ. Sci. Technol., 2019, 53(9): 4784.
[858]
Wang Y, Yao Y M, Han X X, Li W H, Zhu H K, Wang L, Sun H W, Kannan K. Sci. Total Environ., 2020, 700: 134502.
[859]
Christia C, Poma G, Besis A, Samara C, Covaci A. Chemosphere, 2018, 196: 231.
[860]
Kademoglou K, Xu F C, Padilla-Sanchez J A, Haug L S, Covaci A, Collins C D. Environ. Int., 2017, 102: 48.
[861]
Yadav I C, Devi N L, Zhong G C, Li J, Zhang G, Covaci A. Environ. Pollut., 2017, 229: 668.
[862]
Li W H, Wang Y, Asimakopoulos A G, Covaci A, Gevao B, Johnson-Restrepo B, Kumosani T A, Malarvannan G, Moon H B, Nakata H, Sinha R K, Tran T M, Kannan K. Environ. Int., 2019, 133: 105178.
[863]
Zhao S Z, Tian L L, Zou Z H, Liu X, Zhong G C, Mo Y Z, Wang Y, Tian Y K, Li J, Guo H, Zhang G. Environ. Sci. Technol., 2021, 55(14): 9450.
[864]
Wang X M, Leung C W, Cai Z W, Hu D. Environ. Sci. Technol., 2023, 57(38): 14289.
[865]
Chen Y Y, Song Y Y, Chen Y J, Zhang Y H, Li R J, Wang Y J, Qi Z H, Chen Z F, Cai Z W. Environ. Int., 2020, 134: 105343.
[866]
Zeng Y, Chen S J, Liang Y H, Zhu C Y, Liu Z, Guan Y F, Ma H M, Mai B X. Environ. Pollut., 2021, 284: 117208.
[867]
Zeng X Y, Hu Q P, Zhang J W, Song Q, Xu L, Liang Y, Wu Y, Yu Z Q. Environ. Sci. Technol., 2023, 57(11): 4415.
[868]
Wu Y, Venier M, Salamova A. Environ. Sci. Technol., 2020, 54(9): 5400.
[869]
Li W H, Wang Y, Kannan K. Environ. Int., 2019, 131: 105054.
[870]
Shi Q P, Yang H R, Zheng Y N, Zheng N, Lei L, Li X Y, Ding W K. Chemosphere, 2023, 334: 138944.
[871]
Na G S, Hou C, Li R J, Shi Y L, Gao H, Jin S C, Gao Y Z, Jiao L P, Cai Y Q. Mar. Pollut. Bull., 2020, 157: 111243.
[872]
Hammel S C, Hoffman K, Webster T F, Anderson K A, Stapleton H M. Environ. Sci. Technol., 2016, 50(8): 4483.
[873]
Hoffman K, Garantziotis S, Birnbaum L S, Stapleton H M. Environ. Health Perspect., 2015, 123(2): 160.
[874]
Peng C F, Tan H L, Guo Y, Wu Y, Chen D. Chemosphere, 2017, 186: 635.
[875]
Tan H L, Chen D, Peng C F, Liu X T, Wu Y, Li X, Du R, Wang B, Guo Y, Zeng E Y. Environ. Sci. Technol., 2018, 52(19): 11017.
[876]
Meyer J, Bester K. J. Environ. Monitor., 2004, 6(7): 599.
[877]
Chokwe T B, Mporetji S M. Water SA, 2019, 45(3): 1.
[878]
Woudneh M B, Benskin J P, Wang G H, Grace R, Hamilton M C, Cosgrove J R. J. Chromatogr. A, 2015, 1400: 149.
[879]
Li J, Wang J, Taylor A R, Cryder Z, Schlenk D, Gan J. Environ. Sci. Technol., 2019, 53(15): 8767.
[880]
Shimabuku I, Chen D, Wu Y, Miller E, Sun J, Sutton R. Sci. Total Environ., 2022, 813: 152287.
[881]
Truong D A, Trinh H T, Le G T, Phan T Q, Duong H T, Tran T T L, Nguyen T Q, Hoang M T T, Nguyen T V. Chemosphere, 2023, 331: 138805.
[882]
Schmidt N, Castro-JimÉnez J, Oursel B, SempÉrÉ R. Environ. Pollut., 2021, 272: 115970.
[883]
Sühring R, Diamond M L, Bernstein S, Adams J K, Schuster J K, Fernie K, Elliott K, Stern G, Jantunen L M. Environ. Sci. Technol., 2021, 55(1): 304.
[884]
Wang S, Qian J S, Zhang B L, Chen L, Wei S, Pan B C. Environ. Sci. Technol., 2023, 57(5): 1907.
[885]
Li W T, Yuan Y, Wang S L, Liu X Y. J. Hazard. Mater., 2023, 443: 130153.
[886]
Liu Y H, Song N H, Guo R X, Xu H Z, Zhang Q, Han Z H, Feng M J, Li D, Zhang S H, Chen J Q. Chemosphere, 2018, 202: 255.
[887]
Wang T, Xu C, Song N, Zhang S, Bu Y, Xiong L, Yin L, Pu Y, Zhang J. Int. J. Environ. Sci. Technol., 2023, 20(1): 411.
[888]
Lao J Y, Xu S P, Zhang K, Lin H J, Cao Y R, Wu R B, Tao D Y, Ruan Y F, Yee Leung K M, Lam P K S. Environ. Sci. Technol., 2023, 57(31): 11656.
[889]
Li S L, Wan Y J, Wang Y, He Z Y, Xu S Q, Xia W. Sci. Total Environ., 2022, 851: 158021.
[890]
You J, Chen Z M, Hou X Y, Guo J S, Wang C C, Gao J M. Sci. Total Environ., 2022, 806: 151348.
[891]
He M J, Lu J F, Wei S Q. Environ. Pollut., 2019, 244: 388.
[892]
Hou L, Jiang J Y, Gan Z W, Dai Y Y, Yang P, Yan Y, Ding S L, Su S J, Bao X M. Arch. Environ. Contam. Toxicol., 2019, 77(2): 279.
[893]
Gbadamosi M R, Ogunneye A L, Jegede D O, Abdallah M A E, Harrad S. Environ. Sci. Pollut. Res., 2023, 30(59): 124274.
[894]
Ye L J, Meng W K, Huang J N, Li J H, Su G Y. Environ. Sci. Technol., 2021, 55(9): 5836.
[895]
Ye L J, Su G Y. Water Res., 2022, 217: 118362.
[896]
Luo Q, Gu L Y, Wu Z P, Shan Y, Wang H, Sun L N. Chemosphere, 2020, 250: 126297.
[897]
Xie J L, Pei N C, Sun Y X, Chen Z Y, Cheng Y Y, Chen L G, Xie C M, Dai S H, Zhu C Y, Luo X J, Zhang L, Mai B X. J. Hazard. Mater., 2022, 427: 127909.
[898]
Ding Y, Han M W, Wu Z Q, Zhang R J, Li A, Yu K F, Wang Y H, Huang W, Zheng X B, Mai B X. Environ. Int., 2020, 143: 105919.
[899]
Wang X L, Zhong W J, Xiao B W, Liu Q, Yang L P, Covaci A, Zhu L Y. Environ. Int., 2019, 125: 25.
[900]
Bekele T G, Zhao H X, Wang Q Z, Chen J W. Environ. Sci. Technol., 2019, 53(22): 13417.
[901]
Liu Y E, Luo X J, Huang L Q, Zeng Y H, Mai B X. Sci. Total Environ., 2019, 663: 125.
[902]
Huang Q Y, Hou R, Lin L, Li H X, Liu S, Cheng Y Y, Xu X R. Environ. Sci. Technol., 2023, 57(9): 3549.
[903]
Hou R, Liu C, Gao X Z, Xu Y P, Zha J M, Wang Z J. Environ. Pollut., 2017, 229: 548.
[904]
Li J H, Zhang Y Y, Bi R F, Ye L J, Su G Y. Environ. Sci. Technol., 2022, 56(1): 302.
[905]
Choi Y, Hao C Y, Helm P A, Bhavsar S P, Kim S D. Sci. Total Environ., 2022, 807: 150981.
[906]
Fu J, Fu K H, Gao K, Li H J, Xue Q, Chen Y, Wang L G, Shi J B, Fu J J, Zhang Q H, Zhang A Q, Jiang G B. J. Hazard. Mater., 2020, 396: 122742.
[907]
Sala B, GimÉnez J, de Stephanis R, BarcelÓ D, Eljarrat E. Environ. Res., 2019, 172: 289.
[908]
Aznar-Alemany Ò, Sala B, Plön S, Bouwman H, BarcelÓ D, Eljarrat E. Chemosphere, 2019, 226: 791.
[909]
Garcia-Garin O, Sala B, Aguilar A, Vighi M, Víkingsson G A, Chosson V, Eljarrat E, Borrell A. Sci. Total Environ., 2020, 721: 137768.
[910]
Aznar-Alemany Ò, Sala B, Jobst K J, Reiner E J, Borrell A, Aguilar À, Eljarrat E. Sci. Total Environ., 2021, 753: 142205.
[911]
Lippold A, Harju M, Aars J, BlÉvin P, Bytingsvik J, Gabrielsen G W, Kovacs K M, Lyche J L, Lydersen C, Rikardsen A H, Routti H. Environ. Pollut., 2022, 315: 120395.
[912]
Huang Q H, Wei L, Bignert A, Ye H, Huang F, Qiu Y L, Bergman Å. Chemosphere, 2019, 236: 124327.
[913]
Guo J H, Simon K, Romanak K, Bowerman W, Venier M. Environ. Pollut., 2018, 237: 499.
[914]
Wang S R, Steiniche T, Rothman J M, Wrangham R W, Chapman C A, Mutegeki R, QuirÓs R, Wasserman M D, Venier M. Environ. Sci. Technol., 2020, 54(19): 12013.
[915]
Zhang T, Bai X Y, Lu S Y, Zhang B, Xie L, Zheng H C, Jiang Y C, Zhou M Z, Zhou Z Q, Song S M, He Y, Gui M W, Ouyang J P, Huang H B, Kannan K. Environ. Int., 2018, 121: 1363.
[916]
He C, Wang X Y, Tang S Y, Thai P, Li Z R, Baduel C, Mueller J F. Environ. Sci. Technol., 2018, 52(21): 12765.
[917]
Tao F, Sellström U, de Wit C A. Environ. Sci. Technol., 2019, 53(4): 2124.
[918]
Luo W W, Liu Y X, Yang X M, Aamir M, Bai X X, Liu W P. Environ. Pollut., 2023, 336: 122463.
[919]
Wang X L, Chen P Y, Zhao L X, Zhu L Y, Wu F C. Environ. Sci. Technol., 2021, 55(5): 3091.
[920]
Hou M M, Shi Y L, Jin Q, Cai Y Q. Environ. Int., 2020, 139: 105698.
[921]
Ding E M, Deng F C, Fang J L, Li T T, Hou M M, Liu J, Miao K, Yan W Y, Fang K, Shi W Y, Fu Y Z, Liu Y Y, Dong H R, Dong L, Ding C M, Liu X H, Pollitt K J G, Ji J S, Shi Y L, Cai Y Q, Tang S, Shi X M. Environ. Health Perspect., 2023, 131(4): 047009.
[922]
Chen X L, Zhang N, Li L P, Zhao R, Chen N, Fan S, Shi Z X. Anal. Bioanal. Chem., 2022, 414(14): 4255.
[923]
Ma J, Zhu H K, Kannan K. Environ. Sci. Technol. Lett., 2019, 6(9): 525.
[924]
McDonough C A, De Silva A O, Sun C X, Cabrerizo A, Adelman D, Soltwedel T, Bauerfeind E, Muir D C G, Lohmann R. Environ. Sci. Technol., 2018, 52(11): 6208.
[925]
Dasgupta S, Cheng V, Vliet S M F, Mitchell C A, Volz D C. Environ. Sci. Technol., 2018, 52(18): 10820.
[926]
Dasgupta S, Vliet S M F, Cheng V, Mitchell C A, Kirkwood J, Vollaro A, Hur M, Mehdizadeh C, Volz D C. Environ. Sci. Technol., 2019, 53(17): 10497.
[927]
Li Y, Ma H J, Chen R C, Zhang H, Nakanishi T, Hu J Y. Environ. Sci. Technol., 2021, 55(8): 5056.
[928]
Isales G M, Hipszer R A, Raftery T D, Chen A, Stapleton H M, Volz D C. Aquat. Toxicol., 2015, 161: 221.
[929]
Chen Q L, Lian X L, An J J, Geng N B, Zhang H J, Challis J K, Luo Y, Liu Y X, Su G Y, Xie Y W, Li Y W, Liu Z H, Shen Y J, Giesy J P, Gong Y F. Environ. Sci. Technol., 2021, 55(19): 13122.
[930]
Mitchell C A, Reddam A, Dasgupta S, Zhang S, Stapleton H M, Volz D C. Environ. Sci. Technol., 2019, 53(7): 3908.
[931]
Hou J, Wu X Y, Ji J L, Mao T T, Zhu X, Shao R Q, Zhu Y. Environ. Sci. Technol. Lett., 2023, 10(9): 740.
[932]
Wang C, Chen H B, Li H, Zhang Y C, Ren L Y, Chen C, Wang X L, Yu J, Li Z R, Liu Y D. Environ. Sci. Technol., 2020, 54(17): 10783.
[933]
Wang H, Wang P P, Li Q, Li J H, Zhang L Y, Shi H J, Li J F, Zhang Y H. Environ. Sci. Technol., 2022, 56(23): 17018.
[934]
Navaranjan G, Jantunen L M, Diamond M L, Harris S A, Bernstein S, Scott J A, Takaro T K, Dai R X, Lefebvre D L, Mandhane P J, Moraes T J, Simons E, Turvey S E, Sears M R, Subbarao P, Brook J R. Environ. Sci. Technol. Lett., 2021, 8(7): 531.
[935]
Li J, Xu Y, Li N, Zuo R, Zhai Y Z, Chen H Y. Environ. Sci. Technol., 2022, 56(7): 4241.
[936]
Wang X T, Lee E, Hales B F, Robaire B. Endocrinology, 2023, 164(7):1.
[937]
Li Y, Kang Q Y, Chen R C, He J W, Liu L, Wang L, Hu J Y. Environ. Sci. Technol., 2020, 54(14): 8919.
[938]
Wang H K, Jing C, Peng H K, Liu S S, Zhao H C, Zhang W N, Chen X H, Hu F X. Ecotoxicol. Environ. Saf., 2022, 248: 114313.
[939]
Liu M, Li A, Meng L L, Zhang G X, Guan X L, Zhu J, Li Y M, Zhang Q H, Jiang G B. Environ. Sci. Technol., 2022, 56(24): 17825.
[940]
Yao Y M, Li M Q, Pan L Y, Duan Y S, Duan X Y, Li Y C, Sun H W. Environ. Int., 2021, 146: 106215.
[941]
Li Z H, Tang X, Zhu L F, Qi X J, Cao G, Lu G. Environ. Sci. Technol., 2020, 54(18): 11464.
[942]
Yue J J, Sun X, Duan X Y, Sun C T, Chen H, Sun H W, Zhang L Y. Environ. Int., 2023, 172: 107749.
[943]
Tian D D, Yu Y H, Yu Y Y, Lu L Z, Tong D F, Zhang W X, Zhang X Y, Shi W, Liu G X. Environ. Sci. Technol., 2023, 57(24): 9043.
[944]
Patisaul H B, Behl M, Birnbaum L S, Blum A, Diamond M L, Rojello Fernández S, Hogberg H T, Kwiatkowski C F, Page J D, Soehl A, Stapleton H M. Environ. Health Perspect., 2021, 129(10): 105001.
[945]
Xiang D D, Wang Q W. Chemosphere, 2021, 284: 131250.
[946]
Wang Y, Hong J B, Shi M, Guo L X, Liu L H, Tang H W, Liu X S. Chemosphere, 2021, 275: 129978.
[947]
Le Y F, Shen H P, Yang Z, Lu D Z, Wang C. Environ. Pollut., 2021, 274: 116541.
[948]
Negi C K, Gadara D, Kohoutek J, Bajard L, Spáčil Z, Blaha L. Environ. Sci. Technol., 2023, 57(5): 2006.
[949]
Yang D Q, Wei X J, Zhang Z Y, Chen X, Zhu R J, Oh Y, Gu N. Chem. Biol. Interact., 2022, 363: 110027.
[950]
Yang R Y, Zhang Y, Deng Y, Yang Y, Zhong W J, Zhu L Y. Environ. Sci. Technol., 2023, 57(38): 14162.
[951]
Cui H Y, Chang Y Q, Cao J, Jiang X F, Li M. Chemosphere, 2022, 308: 136543.
[952]
Shi Q P, Wang M, Shi F Q, Yang L H, Guo Y Y, Feng C L, Liu J F, Zhou B S. Aquat. Toxicol., 2018, 203: 80.
[953]
Sun L W, Xu W B, Peng T, Chen H G, Ren L, Tan H N, Xiao D, Qian H F, Fu Z W. Neurotoxicol. Teratol., 2016, 55: 16.
[954]
Alzualde A, Behl M, Sipes N S, Hsieh J H, Alday A, Tice R R, Paules R S, Muriana A, Quevedo C. Neurotoxicol. Teratol., 2018, 70: 40.
[955]
Glazer L, Hawkey A B, Wells C N, Drastal M, Odamah K A, Behl M, Levin E D. Toxicol. Sci., 2018, 165(2): 487.
[956]
Xia M, Wang X D, Xu J Q, Qian Q H, Gao M, Wang H L. Sci. Total Environ., 2021, 758: 143694.
[957]
Shi Q P, Guo W, Shen Q C, Han J, Lei L, Chen L G, Yang L H, Feng C L, Zhou B S. J. Hazard. Mater., 2021, 409: 124999.
[958]
Li R W, Wang H Q, Mi C, Feng C L, Zhang L, Yang L H, Zhou B S. Chemosphere, 2019, 220: 811.
[959]
Li R W, Guo W, Lei L, Zhang L, Liu Y H, Han J, Chen L G, Zhou B S. Environ. Int., 2020, 134: 105293.
[960]
Adams S, Wiersielis K, Yasrebi A, Conde K, Armstrong L, Guo G L, Roepke T A. Reprod. Toxicol., 2020, 94: 65.
[961]
Wiersielis K R, Adams S, Yasrebi A, Conde K, Roepke T A. Horm. Behav., 2020, 122: 104759.
[962]
Liu W Y, Luo D, Xia W, Tao Y, Wang L M, Yu M, Hu L Q, Zhou A F, Covaci A, Lin C Y, Xu S Q, Mei S R, Li Y Y. J. Hazard. Mater., 2021, 408: 124856.
[963]
Potts S G, Imperatriz-Fonseca V, Ngo H T, Aizen M A, Biesmeijer J C, Breeze T D, Dicks L V, Garibaldi L A, Hill R, Settele J, Vanbergen A J. Nature, 2016, 540(7632): 220.
[964]
Garibaldi L A, Carvalheiro L G, Vaissière B E, Gemmill-Herren B, HipÓlito J, Freitas B M, Ngo H T, Azzu N, Sáez A, Åström J, An J D, Blochtein B, Buchori D, García F J C, Oliveira da Silva F, Devkota K, de Fátima Ribeiro M, Freitas L, Gaglianone M C, Goss M, Irshad M, Kasina M, Filho A J S P, Kiill L H P, Kwapong P, Parra G N, Pires C, Pires V, Rawal R S, Rizali A, Saraiva A M, Veldtman R, Viana B F, Witter S, Zhang H. Science, 2016, 351(6271): 388.
[965]
van der Sluijs J P, Simon-Delso N, Goulson D, Maxim L, Bonmatin J M, Belzunces L P. Curr. Opin. Environ. Sustain., 2013, 5(3/4): 293.
[966]
Apoidea species-identification guide-Discover Life[EB/OL]. [2024-07-01]. https://www.discoverlife.org/mp/20q?guide=Apoidea_species&flags=HAS.
[967]
van der Zee R, Pisa L, Andonov S, Brodschneider R, Charrière J D, Chlebo R, Coffey M F, Crailsheim K, Dahle B, Gajda A, Gray A, Drazic M M, Higes M, Kauko L, Kence A, Kence M, Kezic N, Kiprijanovska H, Kralj J, Kristiansen P, Hernandez R M, Mutinelli F, Nguyen B K, Otten C, Özkırım A, Pernal S F, Peterson M, Ramsay G, Santrac V, Soroker V, Topolska G, Uzunov A, Vejsnæs F, Wei S, Wilkins S. J. Apic. Res., 2012, 51(1): 100.
[968]
Holden C. Science, 2006, 314(5798): 397.
[969]
Biesmeijer J C, Roberts S P M, Reemer M, Ohlemu¨ller R, Edwards M, Peeters T, Schaffers A P, Potts S G, Kleukers R, Thomas C D, Settele J, Kunin W E. Science, 2006, 313(5785): 351.
[970]
Suryanarayanan S, Kleinman D L. Issues in Science and Technology, 2011, 27(4): 33.
[971]
Wood T J, Michez D, Paxton R J, Drossart M, Neumann P, GÉrard M, Vanderplanck M, Barraud A, Martinet B, Leclercq N, Vereecken N J. Apidologie, 2020, 51(6): 1100.
[972]
Bruckner S, Wilson M, Aurell D, Rennich K, VanEngelsdorp D, Steinhauer N, Williams G R. J. Apic. Res., 2023, 62(3): 429.
[973]
Gray A, Adjlane N, Arab A, Ballis A, Brusbardis V, Bugeja Douglas A, Cadahía L, Charrière J D, Chlebo R, Coffey M F, Cornelissen B, da Costa C A, Danneels E, Danihlík J, Dobrescu C, Evans G, Fedoriak M, Forsythe I, Gregorc A, Ilieva Arakelyan I, Johannesen J, Kauko L, Kristiansen P, Martikkala M, Martín-Hernández R, Mazur E, Medina-Flores C A, Mutinelli F, Omar E M, Patalano S, Raudmets A, San Martin G, Soroker V, Stahlmann-Brown P, Stevanovic J, Uzunov A, Vejsnaes F, Williams A, Brodschneider R. J. Apic. Res., 2023, 62(2): 204.
[974]
Zhang C, Wang X R, Kaur P, Gan J. Sci. Total Environ., 2023, 899: 165670.
[975]
Hallmann C A, Foppen R P B, van Turnhout C A M, de Kroon H, Jongejans E. Nature, 2014, 511(7509): 341.
[976]
Elmquist J, Biddinger D, Phan N T, Moural T W, Zhu F, Hoover K. J. Econ. Entomol., 2023, 116(2): 368.
[977]
He Q B, Zhang S Y, Yin F, Liu Q Q, Gao Q, Xiao J J, Huang Y, Yu L S, Cao H Q. Ecotoxicol. Environ. Saf., 2023, 267: 115591.
[978]
Lu C S, Chang C H, Lemos B, Zhang Q, MacIntosh D. Environ. Sci. Technol. Lett., 2020, 7(4): 254.
[979]
Torrice M. Chem. Eng. News Archive, 2015, 93(46): 6.
[980]
Zhang Q, Fu L L, Cang T, Tang T, Guo M C, Zhou B B, Zhu G H, Zhao M R. Environ. Sci. Technol., 2022, 56(2): 1104.
[981]
Woodcock B A, Bullock J M, Shore R F, Heard M S, Pereira M G, Redhead J, Ridding L, Dean H, Sleep D, Henrys P, Peyton J, Hulmes S, Hulmes L, Sárospataki M, Saure C, Edwards M, Genersch E, Knäbe S, Pywell R F. Science, 2017, 356(6345): 1393.
[982]
Whitehorn P R, O’Connor S, Wackers F L, Goulson D. Science, 2012, 336(6079): 351.
[983]
Pietrzak D, Kania J, Kmiecik E, Malina G, Wᶏtor K. Chemosphere, 2020, 255: 126981.
[984]
Lu C S, Lu Z B, Lin S, Dai W, Zhang Q. Environ. Pollut., 2020, 258: 113722.
[985]
Motaung T E. Crop Prot., 2020, 131: 105097.
[986]
Gunstone T, Cornelisse T, Klein K, Dubey A, Donley N. Front. Environ. Sci., 2021, 9: 643847.
[987]
Batista N R, Farder-Gomes C F, Nocelli R C F, Antonialli-Junior W F. Sci. Total Environ., 2023, 904: 166823.
[988]
Girolami V, Mazzon L, Squartini A, Mori N, Marzaro M, Di bernardo A, Greatti M, Giorio C, Tapparo A. J. Econ. Entomol., 2009, 102(5): 1808.
[989]
Mourtzinis S, Krupke C H, Esker P D, Varenhorst A, Arneson N J, Bradley C A, Byrne A M, Chilvers M I, Giesler L J, Herbert A, Kandel Y R, Kazula M J, Hunt C, Lindsey L E, Malone S, Mueller D S, Naeve S, Nafziger E, Reisig D D, Ross W J, Rossman D R, Taylor S, Conley S P. Sci. Rep., 2019, 9: 11207.
[990]
Douglas M R, Tooker J F. Environ. Sci. Technol., 2015, 49(8): 5088.
[991]
Li C X, Liu D D, Gao Y X, Zhang J, Zhang L X. Chemical Reagents, 2023, 45(3): 29.
(李昌兴, 刘东东, 高一星, 张静, 张立新. 化学试剂, 2023, 45(3): 29.).
[992]
Elbert A, Haas M, Springer B, Thielert W, Nauen R. Pest Manag. Sci., 2008, 64(11): 1099.
[993]
Jeschke P, Nauen R, Schindler M, Elbert A. J. Agric. Food Chem., 2011, 59(7): 2897.
[994]
Dirilgen T, Herbertsson L, O’Reilly A D, Mahon N, Stanley D A. Environ. Res., 2023, 235: 116612.
[995]
Simon-Delso N, Amaral-Rogers V, Belzunces L P, Bonmatin J M, Chagnon M, Downs C, Furlan L, Gibbons D W, Giorio C, Girolami V, Goulson D, Kreutzweiser D P, Krupke C H, Liess M, Long E, McField M, Mineau P, Mitchell E A D, Morrissey C A, Noome D A, Pisa L, Settele J, Stark J D, Tapparo A, Van Dyck H, Van Praagh J, Van der Sluijs J P, Whitehorn P R, Wiemers M. Environ. Sci. Pollut. Res., 2015, 22(1): 5.
[996]
Thompson D A, Lehmler H J, Kolpin D W, Hladik M L, Vargo J D, Schilling K E, LeFevre G H, Peeples T L, Poch M C, LaDuca L E, Cwiertny D M, Field R W. Environ. Sci.: Processes Impacts, 2020, 22(6): 1315.
[997]
Traynor K S, Tosi S, Rennich K, Steinhauer N, Forsgren E, Rose R, Kunkel G, Madella S, Lopez D, Eversole H, Fahey R, Pettis J, Evans J D, VanEngelsdorp D. Environ. Pollut., 2021, 279: 116566.
[998]
Tosi S, Sfeir C, Carnesecchi E, VanEngelsdorp D, Chauzat M P. Sci. Total Environ., 2022, 844: 156857.
[999]
Tosi S, Costa C, Vesco U, Quaglia G, Guido G. Sci. Total Environ., 2018, 615: 208.
[1000]
Mitchell E A D, Mulhauser B, Mulot M, Mutabazi A, Glauser G, Aebi A. Science, 2017, 358(6359): 109.
[1001]
Gill R J, Ramos-Rodriguez O, Raine N E. Nature, 2012, 491(7422): 105.
[1002]
Assessment of combined exposures to multiple chemicals: report of a WHO/IPCS international workshop on aggregate/cumulative risk assessment[EB/OL]. [2024-07-01]. https://www.who.int/publications/i/item/9789241563833.
[1003]
Mariner D, Shepperd J. Regul. Toxicol. Pharmacol., 2011, 61(3): S1.
[1004]
Moher D, Liberati A, Tetzlaff J, Altman D G, Group T P. PLoS Med., 2009, 6(7): e1000097.
[1005]
Impellizzeri F M, Bizzini M. Int. J. Sports. Phys. Ther., 2012, 7(5): 493.
[1006]
Zhang Q, Li Z, Chang C H, Lou J L, Zhao M R, Lu C. Environ. Pollut., 2018, 236: 71.
[1007]
Benuszak J, Laurent M, Chauzat M P. Sci. Total Environ., 2017, 587-588: 423.
[1008]
Zioga E, Kelly R, White B, Stout J C. Environ. Res., 2020, 189: 109873.
[1009]
Dively G P, Kamel A. J. Agric. Food Chem., 2012, 60(18): 4449.
[1010]
Agency U. S. E. P. Reference dose (RfD): description and use in health risk assessments[EB/OL]. [2024-07-01]. https://www.epa.gov/iris/reference-dose-rfd-description-and-use-health-risk-assessments.
[1011]
Chen L, Zhang Q, Yi Z W, Chen Y, Xiao W H, Su D, Shi W B. Foods, 2022, 11(19): 2946.
[1012]
Gu S J, Li Z, Yang L Q, Bao X Q, Ying C F, Zhang Q. Chemosphere, 2023, 322: 138143.
[1013]
Bil W, Zeilmaker M, Fragki S, Lijzen J, Verbruggen E, Bokkers B. Environ. Toxicol. Chem., 2021, 40(3): 859.
[1014]
Gu S J, Fu L L, Wang J, Sun X H, Wang X M, Lou J L, Zhao M R, Wang C, Zhang Q. Environ. Sci. Technol., 2023, 57(42): 15816.
[1015]
Zhang Q, Mo X J, Lou J L, Ying Z T, Wang Y, Dai W. Sci. Total Environ., 2023, 878: 163044.
[1016]
Tao T, Wang C, Dai W, Yu S Q, Lu Z B, Zhang Q. Environ. Pollut., 2019, 250: 397.
[1017]
Lu C A, Chang C H, Tao L, Chen M. Environ. Chem., 2016, 13(1): 4.
[1018]
Tao Y, Jia C H, Jing J J, Zhao M Y, Yu P Z, He M, Chen L, Zhao E C. J. Agric. Food Chem., 2021, 69(14): 4064.
[1019]
Wu C C, Dong F S, Mei X D, Ning J, She D M. J. Agric. Food Chem., 2019, 67(45): 12374.
[1020]
Wettstein F E, Kasteel R, Garcia Delgado M F, Hanke I, Huntscha S, Balmer M E, Poiger T, Bucheli T D. J. Agric. Food Chem., 2016, 64(33): 6407.
[1021]
Nicholls E, Botías C, Rotheray E L, Whitehorn P, David A, Fowler R, David T, Feltham H, Swain J L, Wells P, Hill E M, Osborne J L, Goulson D. Environ. Sci. Technol., 2018, 52(16): 9391.
[1022]
Sanchez-Bayo F, Goka K. PLoS One, 2014, 9(4): e94482.
[1023]
David A, Botías C, Abdul-Sada A, Nicholls E, Rotheray E L, Hill E M, Goulson D. Environ. Int., 2016, 88: 169.
[1024]
El Agrebi N, Traynor K, Wilmart O, Tosi S, Leinartz L, Danneels E, de Graaf D C, Saegerman C. Sci. Total Environ., 2020, 745: 141036.
[1025]
Xiao J J, He Q B, Liu Q Q, Wang Z Y, Yin F, Chai Y H, Yang Q, Jiang X C, Liao M, Yu L S, Jiang W, Cao H Q. Sci. Total Environ., 2022, 805: 150292.
[1026]
Ardestani M M. Proc. Zool. Soc., 2020, 73(2): 118.
[1027]
Stanley D A, Garratt M P D, Wickens J B, Wickens V J, Potts S G, Raine N E. Nature, 2015, 528(7583): 548.
[1028]
Gierer F, Vaughan S, Slater M, Thompson H M, Elmore J S, Girling R D. Environ. Pollut., 2019, 249: 236.
[1029]
Gooley Z C, Gooley A C, Fell R D. J. Econ. Entomol., 2018, 111(6): 2505.
[1030]
Wang H T, Li L B, Chen H Y, Zhang X F, Chen L D, Zhao H X. Journal of Environmental Entomology, 2022, 44(1): 84.
(王华堂, 李良斌, 陈海玉, 张学锋, 陈隆达, 赵红霞. 环境昆虫学报, 2022, 44(1): 84.).
[1031]
Ghosh S, Jung C. J. Asia Pac. Entomol., 2020, 23(3): 701.
[1032]
Chen M, Collins E M, Tao L, Lu C S. Anal. Bioanal. Chem., 2013, 405(28): 9251.
[1033]
Zioga E, White B, Stout J C. Sci. Total Environ., 2023, 879: 162971.
[1034]
Botías C, David A, Horwood J, Abdul-Sada A, Nicholls E, Hill E, Goulson D. Environ. Sci. Technol., 2015, 49(21): 12731.
[1035]
Odemer R, Friedrich E, Illies I, Berg S, Pistorius J, Bischoff G. Environ. Toxicol. Chem., 2023, 42(5): 1167.
[1036]
Zhao X N. Doctoral Dissertation of Northeast Normal University, 2017.
(赵兴楠. 东北师范大学博士论文, 2017.).
[1037]
Bommuraj V, Chen Y, Klein H, Sperling R, Barel S, Shimshoni J A. Food Chem., 2019, 299: 125123.
[1038]
Ostiguy N, Drummond F A, Aronstein K, Eitzer B, Ellis J D, Spivak M, Sheppard W S. Insects, 2019, 10(1): 13.
[1039]
Raimets R, Bontšutšnaja A, Bartkevics V, Pugajeva I, Kaart T, Puusepp L, Pihlik P, Keres I, Viinalass H, Mänd M, Karise R. Chemosphere, 2020, 238: 124555.
[1040]
Wang X R, Goulson D, Chen L Z, Zhang J Z, Zhao W, Jin Y, Yang S P, Li Y, Zhou J H. Environ. Sci. Technol., 2020, 54(8): 5021.
[1041]
Kavanagh S, Henry M, Stout J C, White B. Environ. Sci. Pollut. Res., 2021, 28(22): 28179.
[1042]
Lundin O, Rundlöf M, Smith H G, Fries I, Bommarco R. PLoS One, 2015, 10(8): e0136928.
[1043]
Tang F H M, Lenzen M, McBratney A, Maggi F. Nat. Geosci., 2021, 14(4): 206.
[1044]
Schreinemachers P, Tipraqsa P. Food Policy, 2012, 37(6): 616.
[1045]
Yang X M, Wang F, Meng L, Zhang W S, Fan L X, Geissen V, Ritsema C J. Sci. Total Environ., 2014, 497-498: 172.
[1046]
Wood T J, Goulson D. Environ. Sci. Pollut. Res., 2017, 24(21): 17285.
[1047]
Authority E F S. EFSA Journal, 2013, 11(1): 3068.
[1048]
Authority E F S. EFSA Journal, 2013, 11(1): 3067.
[1049]
Authority E F S. EFSA Journal, 2013, 11(1): 3066.
[1050]
Xu T B, Dyer D G, McConnell L L, Bondarenko S, Allen R, Heinemann O. Environ. Toxicol. Chem., 2016, 35(2): 311.
[1051]
Godfray H C J, Blacquière T, Field L M, Hails R S, Petrokofsky G, Potts S G, Raine N E, Vanbergen A J, McLean A R. Proc. R. Soc. B., 2014, 281(1786): 20140558.
[1052]
Xu X Q, Wang X H, Yang Y Q, Ares I, Martínez M, Lopez-Torres B, Martínez-Larrañaga M R, Wang X, AnadÓn A, Martinez M A. Arch. Toxicol., 2022, 96(6): 1493.
[1053]
Wen X L, Ma C S, Sun M H, Wang Y, Xue X F, Chen J, Song W C, Li-Byarlay H, Luo S D. Sci. Total Environ., 2021, 786: 147443.
[1054]
Chaimanee V, Chantawannakul P, Khongphinitbunjong K, Kamyo T, Pettis J S. J. Apic. Res., 2019, 58(5): 720.
[1055]
Codling G, Al Naggar Y, Giesy J P, Robertson A J. Ecotoxicology, 2018, 27(2): 122.
[1056]
Lentola A, David A, Abdul-Sada A, Tapparo A, Goulson D, Hill E M. Environ. Pollut., 2017, 228: 297.
[1057]
Kasiotis K M, Anagnostopoulos C, Anastasiadou P, Machera K. Sci. Total Environ., 2014, 485-486: 633.
[1058]
Böhme F, Bischoff G, Zebitz C P W, Rosenkranz P, Wallner K. PLoS One, 2018, 13(7): e0199995.
[1059]
Calza P, Guarino B, Dal Bello F, Dioni A, Bergero M, Medana C. Food Chem., 2022, 372: 131153.
[1060]
Beyer M, Lenouvel A, Guignard C, Eickermann M, Clermont A, Kraus F, Hoffmann L. Environ. Sci. Pollut. Res., 2018, 25(32): 32163.
[1061]
Roszko M Ł, Kamińska M, Szymczyk K, Jędrzejczak R. PLoS One, 2016, 11(12): e0167487.
[1062]
Bishop C A, Moran A J, Toshack M C, Elle E, Maisonneuve F, Elliott J E. Environ. Toxicol. Chem., 2018, 37(8): 2143.
[1063]
Colwell M J, Williams G R, Evans R C, Shutler D. Ecol. Evol., 2017, 7(18): 7243.
[1064]
Stoner K A, Cowles R S, Nurse A, Eitzer B D. Environ. Entomol., 2019, 48(2): 351.
[1065]
Wood T J, Kaplan I, Zhang Y, Szendrei Z. Proc. R. Soc. B., 2019, 286( 1905): 20190989.
[1066]
Hester K P, Stoner K A, Eitzer B D, Koethe R W, Lehmann D M. Environ. Pollut., 2023, 333: 122037.
[1067]
Drummond F A, Ballman E S, Eitzer B D, Du Clos B, Dill J. Environ. Entomol., 2018, 47(2): 378.
[1068]
DÉmares F J, Schmehl D, Bloomquist J R, Cabrera A R, Huang Z Y, Lau P, Rangel J, Sullivan J, Xie X B, Ellis J D. Environ. Toxicol. Chem., 2022, 41(4): 991.
[1069]
Chen M, Tao L, McLean J, Lu C S. J. Agric. Food Chem., 2014, 62(26): 6082.
[1070]
Al Naggar Y, Codling G, Giesy J P. Toxicol. Environ. Chem., 2017, 99(9/10): 1397.
[1071]
Tanner G, Czerwenka C. J. Agric. Food Chem., 2011, 59(23): 12271.
[1072]
Baša Č esnik H, Kmecl V, Velikonja Bolta Š. Food Addit. Contam. Part A, 2019, 36(9): 1358.
[1073]
Mrzlikar M, Heath D, Heath E, Markelj J, Kandolf Borovšak A, Prosen H. Lwt, 2019, 104: 45.
[1074]
Woodcock B A, Ridding L, Freeman S N, Pereira M G, Sleep D, Redhead J, Aston D, Carreck N L, Shore R F, Bullock J M, Heard M S, Pywell R F. PLoS One, 2018, 13(1): e0189681.
[1075]
Jones A, Turnbull G. Pest Manag. Sci., 2016, 72(10): 1897.
[1076]
Aguirre-Martínez G V, DelValls T A, Martín-Díaz M. Ecotoxicol. Environ. Saf., 2016, 124: 18.
[1077]
Munari M, Marin M G, Matozzo V. Mar. Environ. Res., 2014, 94: 32.
[1078]
Zhang Y, Bao J G, Du J K, Mao Q D, Cheng B A. Water Res., 2023, 247: 120803.
[1079]
Michalaki A, Grintzalis K. Toxics, 2023, 11(4): 320.
[1080]
Krawczyk B, Zięba N, Kaźmierczak A, Czarny-Krzymińska K, Szczukocki D. Sci. Total Environ., 2023, 896: 165019.
[1081]
SolÉ M, Shaw J P, Frickers P E, Readman J W, Hutchinson T H. Anal. Bioanal. Chem., 2010, 396(2): 649.
[1082]
Ishola I O, Eneanya S U, Folarin O R, Awogbindin I O, Abosi A J, Olopade J O, Okubadejo N U. Neurotox. Res., 2022, 40(5): 1304.
[1083]
Akhigbe R, Ajayi A. PLoS One, 2020, 15(3): e0224052.
[1084]
Fiaz M, Ahmed I, Hassan S M U, Niazi A K, Khokhar M F, Zeshan, Farooq M A, Arshad M. Sci. Total Environ., 2023, 873: 162449.
[1085]
Yamamoto H, Tamura I, Hirata Y, Kato J, Kagota K, Katsuki S, Yamamoto A, Kagami Y, Tatarazako N. Sci. Total Environ., 2011, 410-411: 102.
[1086]
Li M, Yin X Y, Chen H, Wang H, Song L, Dong W J, Zhao B Q, Yu Y L, Dong W, Yang J F. Asian Journal of Ecotoxicology, 2020, 15(3):81.
(李明, 尹晓宇, 陈浩, 王欢, 宋磊, 董文静, 赵宝全, 于永利, 董武, 杨景峰. 生态毒理学报, 2020, 15(3):81.).
[1087]
Du Y, Wang B, Cai Z, Zhang H, Wang B, Liang W, Zhou G, Ouyang F, Wang W. Ecotoxicology and Environmental Safety, 2021, 220: 112389.
[1088]
Xin X Y, Huang G H, Liu X, An C J, Yao Y, Weger H, Zhang P, Chen X J. Environ. Pollut., 2017, 226: 12.
[1089]
Broniowska Ż, Tomczyk I, Grzmil P, Bystrowska B, SkÓrkowska A, Maciejska A, Kazek G, Budziszewska B. Reprod. Toxicol., 2023, 120: 108450.
[1090]
Seidlová-Wuttke D, Jarry H, Wuttke W. Toxicology, 2004, 205(1/2): 103.
[1091]
Foran C M, Weston J, Slattery M, Brooks B W, Huggett D B. Arch. Environ. Contam. Toxicol., 2004, 46(4): 511.
[1092]
Gao S Y. Masteral Dissertation of Zhejiang University, 2021.
(高思越. 浙江大学硕士论文, 2021.).
[1093]
Gonzalez-Rey M, Bebianno M J. Environ. Toxicol. Pharmacol., 2012, 33(2): 361.
[1094]
Zhang Y G, Guo J, Yao T M, Zhang Y L, Zhou X F, Chu H Q. Sci. Rep., 2019, 9: 1624.
[1095]
Fan Z P, Yang Y Y, Hu P X, Huang Y C, He L T, Hu R, Zhao K, Zhang H P, Liu C Y. Sci. Total Environ., 2022, 842: 156785.
[1096]
Reilly T P, Lash L H, Doll M A, Hein D W, Woster P M, Svensson C K. J. Investig. Dermatol., 2000, 114(6): 1164.
[1097]
Kanbara Y, Murakane K, Nishimura Y, Satoh M, Oyama Y. J. Toxicol. Sci., 2013, 38(1): 49.
[1098]
Sanoh S, Santoh M, Takagi M, Kanayama T, Sugihara K, Kotake Y, Ejiri Y, Horie T, Kitamura S, Ohta S. Toxicol. Vitro, 2014, 28(6): 1176.
[1099]
Park J C, Yoon D S, Byeon E, Seo J S, Hwang U K, Han J, Lee J S. Aquat. Toxicol., 2018, 204: 70.
[1100]
Fang H S, Gao Y P, Wang H H, Yin H L, Li G Y, An T C. Water Res., 2017, 115: 339.
[1101]
Orozco-Hernández J M, Elizalde-Velázquez G A, GÓmez-Oliván L M, Santamaría-González G O, Rosales-PÉrez K E, García-Medina S, Galar-Martínez M, Juan-Reyes N S. Sci. Total Environ., 2023, 905: 167391.
[1102]
Zhang W Z, Li Q, Yang Y X, Yu Y, Li S, Liu J, Xiao Y X, Wen Y L, Wang Q C, Lei N F, Gu P. J. Hazard. Mater., 2023, 458: 131910.
[1103]
Gnanasoundari M, Pari L. Ren. Fail., 2006, 28(7): 599.
[1104]
Abraham J, Mudd J O, Kapur N, Klein K, Champion H C, Wittstein I S. J. Am. Coll. Cardiol., 2009, 53(15): 1320.
[1105]
Tiwari K K, Chu C, Couroucli X, Moorthy B, Lingappan K. Biochem. Biophys. Res. Commun., 2014, 450(4): 1345.
[1106]
Zhang Y Y, Huang L X, Zhao Y J, Hu T H. Chemosphere, 2017, 168: 1506.
[1107]
LB B. Toxicol. Sci., 1998, 44: 143.
[1108]
Rah Y C, Yoo M H, Choi J, Park S, Park H C, Oh K H, Lee S H, Kwon S Y. Neurotoxicol. Teratol., 2017, 64: 1.
[1109]
Qiu W H, Liu T, Liu X J, Chen H H, Luo S S, Chen Q Q, Magnuson J T, Zheng C M, Xu E G, Schlenk D. Environ. Sci. Technol., 2022, 56(12): 8428.
[1110]
Qiu W H, Chen B, Tang L, Zheng C M, Xu B T, Liu Z Y, Magnuson J T, Zhang S W, Schlenk D, Xu E G, Xing B S. Environ. Sci. Technol., 2022, 56(7): 4251.
[1111]
Miazek K, Brozek-Pluska B. Int. J. Mol. Sci., 2019, 20(10): 2492.
[1112]
Xin X Y, Huang G, Zhang B Y. J. Hazard. Mater., 2021, 410: 124619.
[1113]
Matozzo V, Bertin V, Battistara M, Guidolin A, Masiero L, Marisa I, Orsetti A. Mar. Environ. Res., 2016, 119: 51.
[1114]
Liu S S, Zhao H C, Zheng M Y, Wang H K, Jing C, Zhang W N, Hu F X. Comp. Biochem. Physiol. Part C Toxicol. Pharmacol., 2022, 260: 109406.
[1115]
Aguirre-Martínez G V, Buratti S, Fabbri E, DelValls A T, Martín-Díaz M L. J. Environ. Sci., 2013, 25(7): 1408.
[1116]
Yazar S, Kara Ertekin S. J. Cosmet. Dermatol., 2020, 19(1): 246.
[1117]
Ajao C, Andersson M A, Teplova V V, Nagy S, Gahmberg C G, Andersson L C, Hautaniemi M, Kakasi B, Roivainen M, Salkinoja-Salonen M. Toxicol. Rep., 2015, 2: 624.
[1118]
Wu X L, Liu R Y, Li H X, Na G S, Yao Z W, Guan D M. Marin. Sci. Bull., 2009, 28(3): 117.
(伍筱琳, 刘仁沿, 李红霞, 那广水, 姚子伟, 关道明. 海洋通报, 2009, 28(3): 117.).
[1119]
Bai Q F, Gao L, Yuan T. Environ. Chem., 2012, 31(5): 720.
(白琦锋, 高礼, 袁涛. 环境化学, 2012, 31(5): 720.).
[1120]
Liu B, Cui Y T, Brown P B, Ge X P, Xie J, Xu P. Fish Shellfish. Immunol., 2015, 47(2): 639.
[1121]
Hájková M, Kummerová M, Zezulka Š, Babula P, Váczi P. Chemosphere, 2019, 224: 892.
[1122]
Takao T, Nanamiya W, Nagano I, Asaba K, Kawabata K, Hashimoto K. Life Sci., 1999, 65(22): 2351.
[1123]
Witorsch R J, Thomas J A. Crit. Rev. Toxicol., 2010, 40(sup3): 1.
[1124]
Routledge E J, Parker J, Odum J, Ashby J, Sumpter J P. Toxicol. Appl. Pharmacol., 1998, 153(1): 12.
[1125]
Tang L, Sun X F, Zhang J. Chin. J. Pharmacol. Toxicol., 2002, 16(1): 70.
(唐丽, 孙秀发, 张军. 中国药理学与毒理学杂志, 2002, 16(1): 70.).
[1126]
Api A M, Ford R A. Toxicology Letters, 1999,111: 143.
[1127]
Steinberg P, Fischer T, Arand M, Park E, Elmadfa I, Rimkus G, Brunn H, Dienes H P. Toxicol. Lett., 1999, 111(1/2): 151.
[1128]
Seydi E, Tabbati Y, Pourahmad J. Drug Res., 2020, 70(4): 151.
[1129]
Salimi A, Bahreini F, Jamali Z, Pourahmad J. Int. J. Toxicol., 2020, 39(3): 241.
[1130]
Naidoo V, Duncan N, Bekker L, Swan G. Environ. Toxicol. Pharmacol., 2007, 24(3): 260.
[1131]
Efosa N J, Kleiner W, Kloas W, Hoffmann F. Chemosphere, 2017, 173: 69.
[1132]
Mathias F T, Fockink D H, Disner G R, Prodocimo V, Ribas J L C, Ramos L P, Cestari M M, Silva de Assis H C. Environ. Toxicol. Pharmacol., 2018, 59: 105.
[1133]
Hoeger B, Köllner B, Dietrich D R, Hitzfeld B. Aquat. Toxicol., 2005, 75(1): 53.
[1134]
Yang Y, Dong F S, Liu X G, Xu J, Wu X H, Qi S Z, Liu W X, Zheng Y Q. Sci. Total Environ., 2018, 633: 1227.
[1135]
Cherednichenko G, Zhang R, Bannister R A, Timofeyev V, Li N, Fritsch E B, Feng W, Barrientos G C, Schebb N H, Hammock B D, Beam K G, Chiamvimonvat N, Pessah I N. Proc. Natl. Acad. Sci. U. S. A., 2012, 109(35): 14158.
[1136]
Wu X M, He Q X, Han L W, Yuan Y Q, Yang G E, Liu K C. Chin. Pharmacol. Bull., 2013, 29(9): 1251.
(吴晓敏, 何秋霞, 韩利文, 袁延强, 杨官娥, 刘可春. 中国药理学通报, 2013, 29(9): 1251.).
[1137]
Hamid N, Junaid M, Manzoor R, Duan J J, Lv M, Xu N, Pei D S. Aquat. Toxicol., 2022, 242: 106040.
[1138]
Galus M, Kirischian N, Higgins S, Purdy J, Chow J, Rangaranjan S, Li H X, Metcalfe C, Wilson J Y. Aquat. Toxicol., 2013, 132-133: 200.
[1139]
Hamid N, Junaid M, Wang Y, Pu S Y, Jia P P, Pei D S. Environ. Pollut., 2021, 273: 116494.
[1140]
Ji K, Liu X S, Lee S, Kang S, Kho Y, Giesy J P, Choi K. J. Hazard. Mater., 2013, 254-255: 242.
[1141]
Kwon B, Kho Y, Kim P G, Ji K. Environ. Toxicol. Pharmacol., 2016, 48: 168.
[1142]
Schnitzler J G, FrÉdÉrich B, Dussenne M, Klaren P H M, Silvestre F, Das K. Aquat. Toxicol., 2016, 181: 1.
[1143]
Näslund J, Asker N, Fick J, Joakim Larsson D G, Norrgren L. Aquat. Toxicol., 2020, 227: 105583.
[1144]
Hodkovicova N, Enevova V, Cahova J, Blahova J, Siroka Z, Plhalova L, Doubkova V, Marsalek P, Franc A, Fiorino E, Faggio C, Tichy F, Faldyna M, Svobodova Z. Physiol. Res., 2020: S595.
[1145]
Sun C L, Dudley S, Trumble J, Gan J. Environ. Pollut., 2018, 234: 39.
[1146]
Li Z J, Xie X Y, Zhang S Q, Liang Y C. Pedosphere, 2011, 21(2): 244.
[1147]
Xue W X, Liu W H, Ma R W, Zhang S H, Yu X X, Li T, Luan X Y, Cui X W, Liu J, Zhang C W, Shan S L, Ni S Q, Wang X B, Cao X F, Cui Z J. J. Hazard. Mater., 2023, 460: 132453.
[1148]
Michelini L, Reichel R, Werner W, Ghisi R, Thiele-Bruhn S. Water Air Soil Pollut., 2012, 223(8): 5243.
[1149]
Farombi E O, Ugwuezunmba M C, Ezenwadu T T, Oyeyemi M O, Ekor M. Exp. Toxicol. Pathol., 2008, 60(1): 77.
[1150]
Yamamoto H, Watanabe M, Hirata Y, Nakamura Y, Kitani C, Sekizawa J, Uchida M, Nakamura H, Kagami Y, Koshio M. Environmental Sciences, 2007,14: 73.
[1151]
Yang Y J, Hong Y P. Toxicol. Environ. Health Sci., 2012, 4(1): 37.
[1152]
Murray D, Jefferson B, Jarvis P, Parsons S A. Environ. Technol., 2010, 31(4): 455.
[1153]
Sun H Q, Du Y, Zhang Z Y, Jiang W J, Guo Y M, Lu X W, Zhang Y M, Sun L W. Int. J. Environ. Res. Public Health, 2016, 13(9): 925.
[1154]
González-Pleiter M, Gonzalo S, Rodea-Palomares I, LeganÉs F, Rosal R, Boltes K, Marco E, Fernández-Piñas F. Water Res., 2013, 47(6): 2050.
[1155]
Janecko N, Pokludova L, Blahova J, Svobodova Z, Literak I. Environ. Toxicol. Chem., 2016, 35(11): 2647.
[1156]
Geiger E, Hornek-Gausterer R, Saçan M T. Ecotoxicol. Environ. Saf., 2016, 129: 189.
[1157]
Tsiaka P, Tsarpali V, Ntaikou I, Kostopoulou M N, Lyberatos G, Dailianis S. Ecotoxicology, 2013, 22(8): 1208.
[1158]
Wang Y X, Zhu X S, Lao Y M, Lv X H, Tao Y, Huang B M, Wang J X, Zhou J, Cai Z H. Sci. Total Environ., 2016, 565: 818.
[1159]
Wan J J, Guo P Y, Peng X F, Wen K Q. J. Hazard. Mater., 2015, 283: 778.
[1160]
Wang H Z, Luo Y, Xu W Q, Zhou Q X, Tang B H, Wang Y Y. Journal of Agro-Environment Science, 2008, 27: 1536.
[1161]
Cleuvers M. Ecotoxicol. Environ. Saf., 2004, 59(3): 309.
[1162]
Waiser M J, Humphries D, Tumber V, Holm J. Environ. Toxicol. Chem., 2011, 30(2): 508.
[1163]
Santos L H M L M, Araújo A N, Fachini A, Pena A, Delerue-Matos C, Montenegro M C B S M. J. Hazard. Mater., 2010, 175(1/2/3): 45.
[1164]
Ferrari B, Mons R, Vollat B, Fraysse B, Paxēaus N, Giudice R L, Pollio A, Garric J. Environ. Toxicol. Chem., 2004, 23(5): 1344.
[1165]
Robinson A A, Belden J B, Lydy M J. Environ. Toxicol. Chem., 2005, 24(2): 423.
[1166]
Brain R A, Johnson D J, Richards S M, Sanderson H, Sibley P K, Solomon K R. Environ. Toxicol. Chem., 2004, 23(2): 371.
[1167]
Patyna P J, Davi R A, Parkerton T F, Brown R P, Cooper K R. Sci. Total Environ., 1999, 233(1/2/3): 211.
[1168]
Lee J, Ji K, Lim Kho Y, Kim P, Choi K. Ecotoxicol. Environ. Saf., 2011, 74(5): 1216.
[1169]
Han S, Choi K, Kim J, Ji K, Kim S, Ahn B, Yun J, Choi K, Khim J S, Zhang X W, Giesy J P. Aquat. Toxicol., 2010, 98(3): 256.
[1170]
Blázquez M, Zanuy S, Carrillo M, Piferrer F. Fish Physiology and Biochemistry, 1998,18: 37.
[1171]
Weinberger J II, Klaper R. Aquat. Toxicol., 2014, 151: 77.
[1172]
Andersen L, Kinnberg K, Holbech H, Korsgaard B, Bjerregaard P. Fish Physiol. Biochem., 2004, 30(3/4): 257.
[1173]
de Oliveira L L D, Antunes S C, Gonçalves F, Rocha O, Nunes B. Drug Chem. Toxicol., 2016, 39(1): 13.
[1174]
Nentwig G, Oetken M, Oehlmann J. Pharmaceuticals in the Environment. Berlin, Heidelberg: Springer Berlin Heidelberg, 2004: 195.
[1175]
Pan M, Chu L M. Ecotoxicol. Environ. Saf., 2016, 126: 228.
[1176]
Liu D. Doctoral Dissertation of Zhejiang University, 2017.
(刘娣. 浙江大学博士论文, 2017.).
[1177]
Bao C Y, Gu G P, Zhang M K. Chin. J. Soil Sci., 2016, 47(1): 164.
(鲍陈燕, 顾国平, 章明奎. 土壤通报, 2016, 47(1): 164.).
[1178]
Carlsson G, Norrgren L. Arch. Environ. Contam. Toxicol., 2004, 46(1): 102.
[1179]
Carlsson G, Örn S, Andersson P L, Söderström H, Norrgren L. Mar. Environ. Res., 2000, 50(1/2/3/4/5): 237.
[1180]
Yang M, Qiu W H, Chen J S, Zhan J, Pan C Y, Lei X J, Wu M H. Aquat. Toxicol., 2014, 151: 68.
[1181]
Giltrow E, Eccles P D, Winter M J, McCormack P J, Rand-Weaver M, Hutchinson T H, Sumpter J P. Aquat. Toxicol., 2009, 95(3): 195.
[1182]
Wang H, Jin M K, Mao W F, Chen C J, Fu L Y, Li Z, Du S T, Liu H J. Sci. Total Environ., 2020, 707: 136176.
[1183]
Smith G R, Burgett A A. Ecotoxicology, 2005, 14(4): 477.
[1184]
Schmidt W, O’Rourke K, Hernan R, Quinn B. Mar. Pollut. Bull., 2011, 62(7): 1389.
[1185]
Tabari S A, Esfahani M L, Hosseini S M, Rahimi A. Food Chem. Toxicol., 2019, 130: 154.
[1186]
Philippot G, Hosseini K, Yakub A, Mhajar Y, Hamid M, Buratovic S, Fredriksson R. Front. Toxicol., 2022, 4: 867748.
[1187]
Henry T B, Black M C. Arch. Environ. Contam. Toxicol., 2008, 54(2): 325.
[1188]
Doepker C, Lieberman H R, Smith A P, Peck J D, El-Sohemy A, Welsh B T. Annu. Rev. Food Sci. Technol., 2016, 7: 117.
[1189]
Yun J, Chung E, Choi K H, Cho D H, Song Y J, Han K M, Cha H J, Shin J S, Seong W K, Kim Y H, Kim H S. Biomol. Ther., 2015, 23(4): 386.
[1190]
Feng L J, Xu H W, Wang Y F, Zhang X, Ge Y L, Huang R, Lan J, Ge Y H. Environ. Sci. Technol., 2020, 43(12): 1.
(冯琳钧, 许瀚文, 王艺霏, 张雪, 葛艳灵, 黄蓉, 兰静, 葛艳辉. 环境科学与技术, 2020, 43(12): 1.).
[1191]
Schmitt C, Oetken M, Dittberner O, Wagner M, Oehlmann J. Environ. Pollut., 2008, 152(2): 322.
[1192]
Hoppe P D, Rosi-Marshall E J, Bechtold H A. Freshwater Science, 2012, 31: 379.
[1193]
Danovaro R, Bongiorni L, Corinaldesi C, Giovannelli D, Damiani E, Astolfi P, Greci L, Pusceddu A. Environ. Health Perspect., 2008, 116(4): 441.
[1194]
Yang L H, Ying G G, Su H C, Stauber J L, Adams M S, Binet M T. Environ. Toxicol. Chem., 2008, 27(5): 1201.
[1195]
Japan, Ministry of the Environment. In Results of Eco-toxicity Tests of Chemicals Conducted by Ministry of the Environment in Japan(March 2023).(2023-03-01)[2024-07-01]. https://www.env.go.jp/en/chemi/page_00001.html.
[1196]
Archana G, Dhodapkar R, Kumar A. Environ. Monit. Assess., 2017, 189(9): 446.
[1197]
Sengar A, Vijayanandan A. Sci. Total Environ., 2022, 807: 150677.
[1198]
Luna T O, Plautz S C, Salice C J. Environ. Toxicol. Chem., 2013, 32(12): 2771.
[1199]
Brodin T, Fick J, Jonsson M, Klaminder J. Science, 2013, 339(6121): 814.
[1200]
Brodin T, Piovano S, Fick J, Klaminder J, Heynen M, Jonsson M. Phil. Trans. R. Soc. B, 2014, 369(1656): 20130580.
[1201]
Liu S Y. Doctoral Dissertation of Zhejiang University, 2011.
(刘少颖. 浙江大学博士论文, 2011.).
[1202]
Lee S S, Paspalof A M, Snow D D, Richmond E K, Rosi-Marshall E J, Kelly J J. Environ. Sci. Technol., 2016, 50(17): 9727.
[1203]
Nietch C T, Quinlan E L, Lazorchak J M, Impellitteri C A, Raikow D, Walters D. Environ. Toxicol. Chem., 2013, 32(12): 2874.
[1204]
Drury B, Scott J, Rosi-Marshall E J, Kelly J J. Environ. Sci. Technol., 2013, 47(15): 8923.
[1205]
Richmond E K, Rosi-Marshall E J, Lee S S, Thompson R M, Grace M R. Freshwater Science, Chicago: University of Chicago Press, 2016, 35: 845.
[1206]
Lawrence J R, Zhu B, Swerhone G D W, Roy J, Tumber V, Waiser M J, Topp E, Korber D R. Environ. Toxicol. Chem., 2012, 31(3): 508.
[1207]
Jarvis A L, Bernot M J, Bernot R J. Sci. Total Environ., 2014, 496: 461.
[1208]
Rico A, Dimitrov M R, Van Wijngaarden R P A, Satapornvanit K, Smidt H, Van den Brink P J. Aquat. Toxicol., 2014, 147: 92.
[1209]
Näslund J, Hedman J E, Agestrand C. Aquat. Toxicol., 2008, 90(3): 223.
[1210]
Wright M V, Matson C W, Baker L F, Castellon B T, Watkins P S, King R S. Sci. Total Environ., 2018, 626: 357.
[1211]
Gunathilaka M D K L, Bao S Y, Liu X X, Li Y, Pan Y. Environ. Sci. Technol., 2023, 57(3): 1199.
[1212]
Liu F, Wu J S, Ying G G, Luo Z X, Feng H. Appl. Microbiol. Biotechnol., 2012, 95(6): 1615.
[1213]
Liu F, Ying G G, Zhou Q X, Tao R, Su H C, Li X. Environmental Science, 2009, 30(5): 1280.
(刘锋, 应光国, 周启星, 陶然, 苏浩昌, 李旭. 环境科学, 2009, 30(5): 1280.).
[1214]
Westergaard K, Müller A K, Christensen S, Bloem J, Sørensen S J. Soil Biol. Biochem., 2001, 33(15): 2061.
[1215]
Kong W D, Zhu Y G, Fu B J, Marschner P, He J Z. Environ. Pollut., 2006, 143(1): 129.
[1216]
Richmond E K, Grace M R, Kelly J J, Reisinger A J, Rosi E J, Walters D M. Elem. Sci. Anth., 2017, 5: 66.
[1217]
Hu P, Guo C S, Zhang Y, Lv J P, Zhang Y, Xu J. Front. Environ. Sci. Eng., 2019, 13(4): 56.
[1218]
Dong W W, He X, Zheng H B, Zhang Y, Quan X, Mu H L. Journal of Dalian University of Technolog, 2020, 60(2):119.
(董莞莞, 何欣, 郑洪波, 张瑛, 全燮, 穆海林. 大连理工大学学报, 2020, 60(2):119.).
[1219]
Zhang R J, Zhang G, Zheng Q, Tang J H, Chen Y J, Xu W H, Zou Y D, Chen X X. Ecotoxicol. Environ. Saf., 2012, 80: 208.
[1220]
Artola-Garicano E, Borkent I, Damen K, Jager T, Vaes W H J. Environ. Sci. Technol., 2003, 37(1): 116.
[1221]
Rimkus G, Rimkus B, Wolf M. Chemosphere, 1994, 28(2): 421.
[1222]
Toth J D, Feng Y C, Dou Z X. Soil Biol. Biochem., 2011, 43(12): 2470.
[1223]
Molina M C, Bautista L F, Catalá M, de las Heras M R, Martínez-Hidalgo P, San-Sebastián J, González-Benítez N. Appl. Sci., 2020, 10(10): 3391.
[1224]
Yang Z P, Lu T, Zhu Y C, Zhang Q, Zhou Z G, Pan X L, Qian H F. Sci. Total Environ., 2019, 654: 129.
[1225]
Sanderson H, Dyer S D, Price B B, Nielsen A M, van Compernolle R, Selby M, Stanton K, Evans A, Ciarlo M, Sedlak R. Sci. Total Environ., 2006, 368(2/3): 695.
[1226]
Wambaugh J F, Setzer R W, Reif D M, Gangwal S, Mitchell-Blackwood J, Arnot J A, Joliet O, Frame A, Rabinowitz J, Knudsen T B, Judson R S, Egeghy P, Vallero D, Cohen Hubal E A. Environ. Sci. Technol., 2013, 47(15): 8479.
[1227]
Ring C L, Arnot J A, Bennett D H, Egeghy P P, Fantke P, Huang L, Isaacs K K, Jolliet O, Phillips K A, Price P S, Shin H M, Westgate J N, Setzer R W, Wambaugh J F. Environ. Sci. Technol., 2019, 53(2): 719.
[1228]
Chen C, Zhao B. Atmos. Environ., 2011, 45(2): 275.
[1229]
Rowland M, Peck C, Tucker G. Annu. Rev. Pharmacol. Toxicol., 2011, 51: 45.
[1230]
Campbell J L, Clewell R, Gentry P, Andersen M E, Clewell H. Methods in Molecular Biology, 2012, 929: 439.
[1231]
Kim S J, Choi E J, Choi G W, Lee Y B, Cho H Y. Arch. Toxicol., 2019, 93(2): 311.
[1232]
Yang F, Sun N, Sun Y X, Shan Q, Zhao H Y, Zeng D P, Zeng Z L. J. Vet. Pharmacol. Ther., 2013, 36(2): 192.
[1233]
Harris L A, Barton H A. Toxicol. Lett., 2008, 181(3): 148.
[1234]
Zhou K X, Mi K, Ma W J, Xu X Y, Huo M X, Algharib S A, Pan Y H, Xie S Y, Huang L L. J. Vet. Pharmacol. Ther., 2021, 44(5): 663.
[1235]
Chou W C, Lin Z M. Environ. Int., 2019, 129: 408.
[1236]
Rovira J, Martínez M Á, Sharma R P, Espuis T, Nadal M, Kumar V, Costopoulou D, Vassiliadou I, Leondiadis L, Domingo J L, Schuhmacher M. Environ. Res., 2019, 175: 384.
[1237]
Loccisano A E, Campbell J L Jr, Andersen M E, Clewell H J III. Regul. Toxicol. Pharmacol., 2011, 59(1): 157.
[1238]
Loccisano A E, Campbell J L Jr, Butenhoff J L, Andersen M E, Clewell H J III. Reprod. Toxicol., 2012, 33(4): 452.
[1239]
Loccisano A E, Campbell J L, Butenhoff J L, Andersen M E, Clewell H J III. Reprod. Toxicol., 2012, 33(4): 468.
[1240]
Andersen M E, Clewell H J III, Tan Y M, Butenhoff J L, Olsen G W. Toxicology, 2006, 227(1/2): 156.
[1241]
Tan Y M, Clewell H J III, Andersen M E. Toxicol. Lett., 2008, 177(1): 38.
[1242]
Worley R R, Fisher J. Toxicol. Appl. Pharmacol., 2015, 289(3): 428.
[1243]
Ngueta G, Longnecker M P, Yoon M, Ruark C D, Clewell H J, Andersen M E, Verner M A. Environ. Int., 2017, 104: 118.
[1244]
Wu H L, Yoon M, Verner M A, Xue J P, Luo M, Andersen M E, Longnecker M P, Clewell H J III. Environ. Int., 2015, 82: 61.
[1245]
Verner M A, Loccisano A E, Morken N H, Yoon M, Wu H L, McDougall R, Maisonet M, Marcus M, Kishi R, Miyashita C, Chen M H, Hsieh W S, Andersen M E, Clewell H J III, Longnecker M P. Environ. Health Perspect., 2015, 123(12): 1317.
[1246]
Zhu Y M, Pan X Y, Jia Y B, Yang X, Song X H, Ding J Q, Zhong W J, Feng J F, Zhu L Y. Environ. Health Perspect., 2023, 131(12): 127012.
[1247]
Sung J H, Esch M B, Shuler M L. Expert Opin. Drug Metab. Toxicol., 2010, 6(9): 1063.
[1248]
Quignot N, Bois F Y. PLoS One, 2013, 8(1): e53891.
[1249]
Rotroff D M, Wetmore B A, Dix D J, Ferguson S S, Clewell H J, Houck K A, LeCluyse E L, Andersen M E, Judson R S, Smith C M, Sochaski M A, Kavlock R J, Boellmann F, Martin M T, Reif D M, Wambaugh J F, Thomas R S. Toxicol. Sci., 2010, 117(2): 348.
[1250]
Wetmore B A, Allen B, Clewell H J III, Parker T, Wambaugh J F, Almond L M, Sochaski M A, Thomas R S. Toxicol. Sci., 2014, 142(1): 210.
[1251]
Wetmore B A, Wambaugh J F, Allen B, Ferguson S S, Sochaski M A, Setzer R W, Houck K A, Strope C L, Cantwell K, Judson R S, LeCluyse E, Clewell H J, Thomas R S, Andersen M E. Toxicol. Sci., 2015, 148(1): 121.
[1252]
Zhao F R, Li L, Lin P H, Chen Y, Xing S P, Du H L, Wang Z, Yang J J, Huan T, Long C, Zhang L M, Wang B, Fang M L. Environ. Health Perspect., 2023, 131(3): 037009.
[1253]
Zhu H, Martin T M, Ye L, Sedykh A, Young D M, Tropsha A. Chem. Res. Toxicol., 2009, 22(12): 1913.
[1254]
United States Environmental Protection Agency. Estimation Programs Interface SuiteTM for Microsoft® Windows, v 4.11. United States Environmental Protection Agency, Washington, DC, USA, 2012.
[1255]
Villoutreix B O, Taboureau O. Adv. Drug Deliv. Rev., 2015, 86: 72.
[1256]
Chemi G, Gemma S, Campiani G, Brogi S, Butini S, Brindisi M. Front. Chem., 2017, 5: 1.
[1257]
Wang S Q, Sun H Y, Liu H, Li D, Li Y Y, Hou T J. Mol. Pharmaceutics, 2016, 13(8): 2855.
[1258]
Cai C P, Guo P F, Zhou Y D, Zhou J W, Wang Q, Zhang F X, Fang J S, Cheng F X. J. Chem. Inf. Model., 2019, 59(3): 1073.
[1259]
Creanza T M, Delre P, Ancona N, Lentini G, Saviano M, Mangiatordi G F. J. Chem. Inf. Model., 2021, 61(9): 4758.
[1260]
Xu Y J, Pei J F, Lai L H. J. Chem. Inf. Model., 2017, 57(11): 2672.
[1261]
Schmidt U, Struck S, Gruening B, Hossbach J, Jaeger I S, Parol R, Lindequist U, Teuscher E, Preissner R. Nucleic Acids Res., 2009, 37: D295.
[1262]
Chen M J, Vijay V, Shi Q, Liu Z C, Fang H, Tong W D. Drug Discov. Today, 2011, 16(15/16): 697.
[1263]
Li X, Chen Y J, Song X R, Zhang Y, Li H H, Zhao Y. RSC Advances, 2018, 8 (15): 8101.
[1264]
Mayr A, Klambauer G, Unterthiner T, Hochreiter S. Front. Environ. Sci., 2016, 3: 80.
[1265]
Fernandez M, Ban F Q, Woo G, Hsing M, Yamazaki T, LeBlanc E, Rennie P S, Welch W J, Cherkasov A. J. Chem. Inf. Model., 2018, 58(8): 1533.
[1266]
Jiang J, Wang R, Wei G W. J. Chem. Inf. Model., 2021, 61(4): 1691.
[1267]
Karim A, Mishra A, Hakim Newton M A, Sattar A. ACS Omega, 2019, 4(1): 1874.
[1268]
Xu C Y, Cheng F X, Chen L, Du Z, Li W H, Liu G X, Lee P W, Tang Y. J. Chem. Inf. Model., 2012, 52(11): 2840.
[1269]
Zhang H, Kang Y L, Zhu Y Y, Zhao K X, Liang J Y, Ding L, Zhang T G, Zhang J. Toxicol. Vitro, 2017, 41: 56.
[1270]
Chu C S M, Simpson J D, O’Neill P M, Berry N G. J. Mol. Graph. Model., 2021, 109: 108011.
[1271]
Gold L S, Manley N B, Slone T H, Rohrbach L, Garfinkel G B. Toxicol. Sci., 2005, 85(2): 747.
[1272]
Wexler P. Am Fam Physician, 1995, 52(6): 1677.
[1273]
Drwal M N, Banerjee P, Dunkel M, Wettig M R, Preissner R. Nucleic Acids Res., 2014, 42(W1): W53.
[1274]
Reif D M, Martin M T, Tan S W, Houck K A, Judson R S, Richard A M, Knudsen T B, Dix D J, Kavlock R J. Environ. Health Perspect., 2010, 118(12): 1714.
[1275]
Dong T, Zhang Y D, Jia S L, Shang H T, Fang W J, Chen D, Fang M L. Environ. Sci. Technol., 2019, 53(12): 7045.
[1276]
Sobus J R, Wambaugh J F, Isaacs K K, Williams A J, McEachran A D, Richard A M, Grulke C M, Ulrich E M, Rager J E, Strynar M J, Newton S R. J. Expo. Sci. Environ. Epidemiol., 2018, 28(5): 411.
[1277]
Newton S R, McMahen R L, Sobus J R, Mansouri K, Williams A J, McEachran A D, Strynar M J. Environ. Pollut., 2018, 234: 297.
[1278]
Aalizadeh R, Alygizakis N A, Schymanski E L, Krauss M, Schulze T, Ibáñez M, McEachran A D, Chao A, Williams A J, Gago-Ferrero P, Covaci A, Moschet C, Young T M, Hollender J, Slobodnik J, Thomaidis N S. Anal. Chem., 2021, 93(33): 11601.
[1279]
Wen Y B, Amos R I J, Talebi M, Szucs R, Dolan J W, Pohl C A, Haddad P R. Anal. Chem., 2018, 90(15): 9434.
[1280]
Rager J E, Strynar M J, Liang S, McMahen R L, Richard A M, Grulke C M, Wambaugh J F, Isaacs K K, Judson R, Williams A J, Sobus J R. Environ. Int., 2016, 88: 269.
[1281]
Meekel N, Vughs D, BÉen F, Brunner A M. Anal. Chem., 2021, 93(12): 5071.
[1282]
Yang J J, Zhao F R, Zheng J, Wang Y L, Fei X C, Xiao Y J, Fang M L. J. Hazard. Mater., 2023, 448: 130893.
[1283]
Little J L, Cleven C D, Brown S D. J. Am. Soc. Mass Spectrom., 2011, 22(2): 348.
[1284]
Milman B L. Trac Trends Anal. Chem., 2015, 69: 24.
[1285]
Brack W, Ait-Aissa S, Burgess R M, Busch W, Creusot N, Di Paolo C, Escher B I, Mark Hewitt L, Hilscherova K, Hollender J, Hollert H, Jonker W, Kool J, Lamoree M, Muschket M, Neumann S, Rostkowski P, Ruttkies C, Schollee J, Schymanski E L, Schulze T, Seiler T B, Tindall A J, De Aragão Umbuzeiro G, Vrana B, Krauss M. Sci. Total Environ., 2016, 544: 1073.
[1286]
Brack W. Anal. Bioanal. Chem., 2003, 377(3): 397.
[1287]
Ouyang X Y, Leonards P E G, Tousova Z, Slobodnik J, de Boer J, Lamoree M H. Anal. Chem., 2016, 88(4): 2353.
[1288]
Loewenthal D, Shai D G, Drug E. Anal. Chem., 2023, 95(5): 2623.
[1289]
Muratov E N, Bajorath J, Sheridan R P, Tetko I V, Filimonov D, Poroikov V, Oprea T I, Baskin I I, Varnek A, Roitberg A, Isayev O, Curtalolo S, Fourches D, Cohen Y, Aspuru-Guzik A, Winkler D A, Agrafiotis D, Cherkasov A, Tropsha A. Chem. Soc. Rev., 2020, 49(11): 3525.
[1290]
Gadaleta D, Vuković K, Toma C, Lavado G J, Karmaus A L, Mansouri K, Kleinstreuer N C, Benfenati E, Roncaglioni A. J. Cheminf., 2019, 11(1): 58.
[1291]
Manganaro A, Pizzo F, Lombardo A, Pogliaghi A, Benfenati E. Chemosphere, 2016, 144: 1624.
[1292]
Kim S, Chen J, Cheng T J, Gindulyte A, He J, He S Q, Li Q L, Shoemaker B A, Thiessen P A, Yu B, Zaslavsky L, Zhang J, Bolton E E. Nucleic Acids Res., 2021, 49(D1): D1388.
[1293]
Zushi Y. Anal. Chem., 2022, 94(25): 9149.
[1294]
Kruve A, Kaupmees K, Liigand J, Leito I. Anal. Chem., 2014, 86(10): 4822.
[1295]
Zoeller R T, Bergman Å, Becher G, Bjerregaard P, Bornman R, Brandt I, Iguchi T, Jobling S, Kidd K A, Kortenkamp A, Skakkebaek N E, Toppari J, Vandenberg L N. Environ. Health, 2014, 13(1): 118.
[1296]
Weiss J M, Simon E, Stroomberg G J, de Boer R, de Boer J, van der Linden S C, Leonards P E G, Lamoree M H. Anal. Bioanal. Chem., 2011, 400(9): 3141.
[1297]
Krewski D, Acosta D Jr, Andersen M, Anderson H, Bailar J C III, Boekelheide K, Brent R, Charnley G, Cheung V G, Green S Jr, Kelsey K T, Kerkvliet N I, Li A A, McCray L, Meyer O, Patterson R D, Pennie W, Scala R A, Solomon G M, Stephens M, Yager J, Zeise L, Staff of Committee on Toxicity Test. J. Toxicol. Environ. Health Part B, 2010, 13(2/3/4): 51.
[1298]
Zwart N, Nio S L, Houtman C J, de Boer J, Kool J, Hamers T, Lamoree M H. Environ. Sci. Technol., 2018, 52(7): 4367.
[1299]
Arturi K, Hollender J. Environ. Sci. Technol., 2023, 57(46): 18067.
[1300]
Neale P A, Munz N A, Ait-Aissa S, Altenburger R, Brion F, Busch W, Escher B I, Hilscherová K, Kienle C, Novák J, Seiler T B, Shao Y, Stamm C, Hollender J. Sci. Total Environ., 2017, 576: 785.
[1301]
Richard A M, Huang R L, Waidyanatha S, Shinn P, Collins B J, Thillainadarajah I, Grulke C M, Williams A J, Lougee R R, Judson R S, Houck K A, Shobair M, Yang C, Rathman J F, Yasgar A, Fitzpatrick S C, Simeonov A, Thomas R S, Crofton K M, Paules R S, Bucher J R, Austin C P, Kavlock R J, Tice R R. Chem. Res. Toxicol., 2021, 34(2): 189.
[1302]
European Food Safety Authority. EFSA Journal, 2012, 10(6): 2743.
[1303]
Zhang T, Sun H W, Wu Q, Zhang X Z, Yun S H, Kannan K. Environ. Sci. Technol., 2010, 44(9): 3572.
[1304]
Zhou Z, Shi Y L, Vestergren R, Wang T, Liang Y, Cai Y Q. Environ. Sci. Technol., 2014, 48(7): 3864.
[1305]
Yamada A, Bemrah N, Veyrand B, Pollono C, Merlo M, Desvignes V, Sirot V, Marchand P, Berrebi A, Cariou R, Antignac J P, Le Bizec B, Leblanc J C. Sci. Total Environ., 2014, 491-492: 170.
[1306]
Yu Y X, Li J L, Zhang X Y, Yu Z Q, Van de Wiele T, Han S Y, Wu M H, Sheng G Y, Fu J M. J. Agric. Food Chem., 2010, 58(1): 301.
[1307]
Zhang Y Y, Pignatello J J, Tao S, Xing B S. Environ. Sci. Technol., 2015, 49(24): 14641.
[1308]
Chen Y, Juhasz A, Li H B, Li C, Ma L Q, Cui X Y. Environ. Sci. Technol., 2020, 54(8): 5003.
[1309]
Zhu Y M, Jia Y B, Wang X, Yi S J, Li Y Q, Zhong W J, Zhu L Y. Environ. Sci. Technol., 2022, 56(6): 3613.
[1310]
Lu M J, Li G Y, Yang Y, Yu Y X. Sci. Total Environ., 2021, 752: 142001.
[1311]
ATSDR(Agency for Toxic Substances and Disease Registry). Toxicological profile for perfluoroalkyls. Atlanta.Department of Health and Human services U. S. Public Health Service, 2021[EB/OL]. [2024-07-01]. https://www.atsdr.cdc.gov/ToxProfiles/tp200.pdf.
[1312]
Smith J N, Campbell J A, Busby-Hjerpe A L, Lee S, Poet T S, Barr D B, Timchalk C. Toxicology, 2009, 261(1/2): 47.
[1313]
Staskal D F. Toxicol. Sci., 2004, 83(2): 215.
[1314]
Chen M, Zhu L Y, Wang Q, Shan G Q. Environ. Pollut., 2021, 268: 115887.
[1315]
Yi S J, Zhu L Y, Mabury S A. Environ. Sci. Technol., 2020, 54(1): 345.
[1316]
Cui Q Q, Pan Y T, Zhang H X, Sheng N, Wang J S, Guo Y, Dai J Y. Environ. Sci. Technol., 2018, 52(3): 982.
[1317]
Bekele T G, Zhao H X, Wang Q Z. J. Hazard. Mater., 2021, 401: 123410.
[1318]
Zhang B, He Y, Yang G, Chen B Y, Yao Y M, Sun H W, Kannan K, Zhang T. Environ. Sci. Technol., 2022, 56(10): 6113.
[1319]
Yang R Y, Yang Y, Yang L P, Chen H, Zhong W J, Zhu L Y. J. Hazard. Mater., 2023, 452: 131299.
[1320]
Sun R X, Chen J M, Shao H Y, Tang L, Zheng X B, Li Q X, Wang Y Y, Luo X J, Mai B X. J. Hazard. Mater., 2020, 396: 122590.
[1321]
MÉzière M, Marchand P, Larvor F, BaÉza E, Le Bizec B, Dervilly G, Cariou R. Food Chem., 2021, 351: 129289.
[1322]
Lu Y, Guan R N, Zhu N L, Hao J H, Peng H Y, He A N, Zhao C Y, Wang Y W, Jiang G B. Crit. Rev. Environ. Sci. Technol., 2024, 54(2): 95.
[1323]
Martin J W, Asher B J, Beesoon S, Benskin J P, Ross M S. J. Environ. Monit., 2010, 12(11): 1979.
[1324]
Zhao S Y, Wang B H, Zhu L Y, Liang T K, Chen M, Yang L P, Lv J P, Liu L F. Environ. Pollut., 2018, 241: 19.
[1325]
Zhu Y M, Jia Y B, Liu M L, Yang L P, Yi S J, Feng X M, Zhu L Y. Environ. Int., 2021, 151: 106451.
[1326]
Göckener B, Eichhorn M, Lämmer R, Kotthoff M, Kowalczyk J, Numata J, Schafft H, Lahrssen-Wiederholt M, Bücking M. J. Agric. Food Chem., 2020, 68(45): 12527.
[1327]
Yang R Y, Ye Y X, Chen Y, Yang Y, Yang L P, Yao Y M, Zhong W J, Zhu L Y. Environ. Sci. Technol., 2023, 57(1): 451.
[1328]
Liu Q, Wang X L, Zhou J, Yu X Y, Liu M L, Li Y, Sun H W, Zhu L Y. Environ. Sci. Technol., 2021, 55(14): 9895.
[1329]
Greaves A K, Letcher R J. Bull. Environ. Contam. Toxicol., 2017, 98(1): 2.
[1330]
Darnerud P O, Bergman Å. Environ. Int., 2022, 163: 107195.
[1331]
Zhang Y F, Beesoon S, Zhu L Y, Martin J W. Environ. Sci. Technol., 2013, 47(18): 10619.
[1332]
Shi Y L, Vestergren R, Xu L, Zhou Z, Li C X, Liang Y, Cai Y Q. Environ. Sci. Technol., 2016, 50(5): 2396.
[1333]
Zhang F H, Liu L, Hu J L, Fu H Y, Li H Y, Chen J M, Yang C Y, Guo Q R, Liang X T, Wang L, Guo Y, Dai J Y, Sheng N, Wang J S. Environ. Int., 2023, 178: 108092.
[1334]
Wang X L, Liu Q, Zhong W J, Yang L P, Yang J, Covaci A, Zhu L Y. Environ. Int., 2020, 134: 105321.
[1335]
Dong Z M, Li T, Wan Y, Sun Y B, Hu J Y. Environ. Sci. Technol., 2020, 54(2): 938.
[1336]
Khan K, Kumar V, Colombo E, Lombardo A, Benfenati E, Roy K. Environ. Int., 2022, 170: 107625.
[1337]
Yamashita F, Fujiwara S I, Wanchana S, Hashida M. J. Drug Target., 2006, 14(7): 496.
[1338]
Kar S, Sepúlveda M S, Roy K, Leszczynski J. Chemosphere, 2017, 184: 514.
[1339]
Ng C A, Hungerbühler K. Environ. Sci. Technol., 2014, 48(9): 4637.
[1340]
Ng C A, Hungerbühler K. Environ. Sci. Technol., 2013, 47(13): 7214.
[1341]
Zhao L H, Teng M M, Zhao X L, Li Y X, Sun J Q, Zhao W T, Ruan Y F, Leung K M Y, Wu F C. Environ. Int., 2023, 175: 107951.
[1342]
Liu M L, Dong F F, Yi S J, Zhu Y M, Zhou J, Sun B B, Shan G Q, Feng J F, Zhu L Y. Environ. Sci. Technol., 2020, 54(8): 4932.
[1343]
Chen P Y, Yang J, Chen G, Yi S J, Liu M L, Zhu L Y. Environ. Sci. Technol. Lett., 2020, 7(5): 330.
[1344]
Ren X M, Zhang Y F, Guo L H, Qin Z F, Lv Q Y, Zhang L Y. Arch. Toxicol., 2015, 89(2): 233.
[1345]
Gao K, Zhuang T F, Liu X, Fu J J, Zhang J X, Fu J, Wang L G, Zhang A Q, Liang Y, Song M Y, Jiang G B. Environ. Sci. Technol., 2019, 53(11): 6529.
[1346]
Jackson T W, Scheibly C M, Polera M E, Belcher S M. Environ. Sci. Technol., 2021, 55(18): 12291.
[1347]
Cao H M, Zhou Z, Wang L, Liu G L, Sun Y Z, Wang Y W, Wang T, Liang Y. Environ. Sci. Technol., 2019, 53(5): 2811.
[1348]
Vandenberg L N, Colborn T, Hayes T B, Heindel J J, Jacobs D R Jr, Lee D H, Shioda T, Soto A M, vom Saal F S, Welshons W V, Zoeller R T, Myers J P. Endocr. Rev., 2012, 33(3): 378.
[1349]
Tan H Y, Chen Q C, Hong H X, Benfenati E, Gini G C, Zhang X W, Yu H X, Shi W. Environ. Sci. Technol., 2021, 55(24): 16552.
[1350]
Verreault J, Shahmiri S, Gabrielsen G W, Letcher R J. Environ. Int., 2007, 33(6): 823.
[1351]
Yang R Y, Yang Y, Yang L P, Chen H, Zhong W J, Zhu L Y. J. Hazard. Mater., 2023, 452: 131299.
[1352]
Cao L Y, Zheng Z, Ren X M, Andersson P L, Guo L H. Environmental Science & Technology, 2018, 52(15): 8894.
[1353]
Ding N, Harlow S D, Randolph J F, Loch-Caruso R, Park S K. Hum. Reprod. Update, 2020, 26(5): 724.
[1354]
Mashayekhi V, Tehrani K H M E, Hashemzaei M, Tabrizian K, Shahraki J, Hosseini M J. Hum. Exp. Toxicol., 2015, 34(10): 985.
[1355]
LÓpez-Arellano P, LÓpez-Arellano K, Luna J, Flores D, JimÉnez-Salazar J, Gavia G, Teteltitla M, Rodríguez J J, Domínguez A, Casas E, Bahena I, Betancourt M, González C, Ducolomb Y, Bonilla E. Environ. Toxicol., 2019, 34(1): 92.
[1356]
Zhang S Y, Tan R R, Pan R, Xiong J W, Tian Y, Wu J, Chen L. J. Clin. Endocrinol. Metab., 2018, 103(7): 2543.
[1357]
Zhou W, Zhang L L, Tong C L, Fang F, Zhao S S, Tian Y, Tao Y X, Zhang J. Environ. Health Perspect., 2017, 125(6): 067012.
[1358]
Wang W, Zhou W, Wu S W, Liang F, Li Y, Zhang J, Cui L L, Feng Y, Wang Y. Environ. Pollut., 2019, 247: 824.
[1359]
Zhang Y J, Hu H W, Chen Q L, Singh B K, Yan H, Chen D L, He J Z. Environ. Int., 2019, 130: 104912.
[1360]
Chen Y, Li H T, Mo J Y, Chen X X, Wu K Y, Ge F, Ma L K, Li X H, Guo X L, Zhao J Z, Ge R S. Chem. Res. Toxicol., 2019, 32(1): 146.
[1361]
Li L L, Li X H, Chen X W, Chen Y, Liu J P, Chen F F, Ge F, Ye L P, Lian Q Q, Ge R S. Chemosphere, 2018, 190: 43.
[1362]
Shi Z, Zhang H, Liu Y, Xu M, Dai J. Toxicol. Sci., 2007, 98(1): 206.
[1363]
Qiu L L, Qian Y Y, Liu Z Z, Wang C, Qu J H, Wang X K, Wang S L. Toxicology, 2016, 373: 1.
[1364]
Wan H T, Mruk D D, Wong C K C, Cheng C Y. Endocrinology, 2014, 155(1): 249.
[1365]
Lopez-Espinosa M J, Mondal D, Armstrong B G, Eskenazi B, Fletcher T. Environ. Health Perspect., 2016, 124(8): 1269.
[1366]
Joensen U N, Veyrand B, Antignac J P, Blomberg Jensen M, Petersen J H, Marchand P, Skakkebæk N E, Andersson A M, Le Bizec B, Jørgensen N. Hum. Reprod., 2013, 28(3): 599.
[1367]
Zhou Y, Hu L W, Qian Z M, Chang J J, King C, Paul G, Lin S, Chen P C, Lee Y L, Dong G H. Environ. Int., 2016, 94: 189.
[1368]
Sakr C J, Kreckmann K H, Green J W, Gillies P J, Reynolds J L, Leonard R C. J. Occup. Environ. Med., 2007, 49(10): 1086.
[1369]
Joensen U N, Bossi R, Leffers H, Jensen A A, Skakkebæk N E, Jørgensen N. Environ. Health Perspect., 2009, 117(6): 923.
[1370]
Toft G, Jönsson B A G, Lindh C H, Giwercman A, Spano M, Heederik D, Lenters V, Vermeulen R, Rylander L, Pedersen H S, Ludwicki J K, Zviezdai V, Bonde J P. Hum. Reprod., 2012, 27(8): 2532.
[1371]
Peng Y, Shi C L, Wang C, Li Y, Zeng L J, Zhang J, Huang M Y, Zheng Y, Chen H B, Chen C, Li H. J. Hazard. Mater., 2023, 460: 132426.
[1372]
Li Y T, Wang X, Zhu Q Q, Xu Y Q, Fu Q G, Wang T, Liao C Y, Jiang G B. Environ. Sci. Technol., 2023, 57(18): 7109.
[1373]
Wang X L, Chen P Y, Zhao L X, Zhu L Y, Wu F C. Environ. Sci. Technol., 2021, 55(5): 3091.
[1374]
Gan H, Zhang Y, Wang Y F, Tao F B, Gao H. Ecotoxicol. Environ. Saf., 2023, 252: 114642.
[1375]
Luan M, Liang H, Chen Y F, Chen D, Ji H L, Chen H X, Miao M H, Yuan W. Sci. Total Environ., 2023, 856: 159050.
[1376]
Carignan C C, Mínguez-AlarcÓn L, Butt C M, Williams P L, Meeker J D, Stapleton H M, Toth T L, Ford J B, Hauser R, Team F T E S. Environ. Health Perspect., 2017, 125(8): 087018.
[1377]
Li Y P, Luo D, Zhao X Y, Wang H, Zheng Z Y, Liu J, Liu C, Wang H, Chen Y J, Shang Y Z, Lu W Q, Mei S R, Wang Y X. Sci. Total Environ., 2023, 865: 161202.
[1378]
Carlton B D, Basaran A H, Mezza L E, Smith M K. Toxicology, 1987, 46(3): 321.
[1379]
Yang B, Wang X L, Ma Y L, Yan L, Ren Y, Yu D N, Qiao B, Shen X, Liu H, Zhang D L, Kuang H B. Environ. Toxicol., 2020, 35(1): 97.
[1380]
Hu L L, Peng T T, Huang J, Su T, Luo R C, Zheng Y H, Zhong Z S, Yu P L, Nie K, Zheng L P. Reprod. Toxicol., 2019, 83: 21.
[1381]
Liu X S, Jung D, Jo A, Ji K, Moon H B, Choi K. Environ. Toxicol. Chem., 2016, 35(9): 2288.
[1382]
Liu X S, Lu X X, Hong J B, Zhang J, Lin J T, Jiang M Z, Liu Q, Choi K, Zhang J J. Anim. Models Exp. Med., 2022, 5(3): 239.
[1383]
Qian Z, Li C W, Zhao W, He Z, Xue M Q, Wang S X, Cheng X, Ma R J, Ge X. Toxicol. Lett., 2023, 376: 1.
[1384]
Li C. J. Sex. Med., 2023, 20(Supplement 1): qdad060.091.
[1385]
Hashemipour M, Kelishadi R, Amin M M, Ebrahim K. Environ. Sci. Pollut. Res., 2018, 25(14): 13589.
[1386]
Cobellis L. Hum. Reprod., 2003, 18(7): 1512.
[1387]
Cai W, Yang J L, Liu Y N, Bi Y Y, Wang H. Int. J. Environ. Res. Public Health, 2019, 16(19): 3678.
[1388]
Kim S H, Cho S, Ihm H J, Oh Y S, Heo S H, Chun S, Im H, Chae H D, Kim C H, Kang B M. J. Clin. Endocrinol. Metab., 2015, 100(12): E1502.
[1389]
Wen X, Xiong Y, Qu X L, Jin L, Zhou C, Zhang M, Zhang Y Z. Gynecol. Endocrinol., 2019, 35(8): 645.
[1390]
Bloom M S, Whitcomb B W, Chen Z, Ye A, Kannan K, Buck Louis G M. Hum. Reprod., 2015, 30(11): 2645.
[1391]
Liu L P, Bao H Q, Liu F, Zhang J, Shen H Q. Environ. Int., 2012, 42: 78.
[1392]
Wang Y X, Zeng Q, Sun Y, Yang P, Wang P, Li J, Huang Z, You L, Huang Y H, Wang C, Li Y F, Lu W Q. Environ. Pollut., 2016, 211: 173.
[1393]
Swan S H, Main K M, Liu F, Stewart S L, Kruse R L, Calafat A M, Mao C S, Redmon J B, Ternand C L, Sullivan S, Teague J L. Environ. Health Perspect., 2005, 113(8): 1056.
[1394]
Swan S H. Environ. Res., 2008, 108(2): 177.
[1395]
Blaauwendraad S M, Jaddoe V W, Santos S, Kannan K, Dohle G R, Trasande L, Gaillard R. Environ. Pollut., 2022, 309: 119745.
[1396]
Freire C, Castiello F, Lopez-Espinosa M J, Beneito A, Lertxundi A, Jimeno-Romero A, Vrijheid M, Casas M. Environ. Res., 2022, 213: 113606.
[1397]
Zhang Y, Yang Y, Tao Y, Guo X Y, Cui Y H, Li Z X. J. Hazard. Mater., 2023, 459: 132182.
[1398]
Hamid N, Junaid M, Manzoor R, Jia P P, Pei D S. J. Hazard. Mater., 2020, 398: 122851.
[1399]
Liu C S, Zhang X W, Deng J, Hecker M, Al-Khedhairy A, Giesy J P, Zhou B S. Environ. Sci. Technol., 2011, 45(2): 769.
[1400]
Feng X J, Wang X L, Cao X Y, Xia Y K, Zhou R, Chen L. Toxicol. Sci., 2015, 148(2): 368.
[1401]
Tachachartvanich P, Singam E R A, Durkin K A, Furlow J D, Smith M T, La Merrill M A. J. Hazard. Mater., 2022, 429: 128243.
[1402]
Qiu L L, Wang H X, Dong T Y, Huang J Y, Li T, Ren H, Wang X P, Qu J H, Wang S L. Toxicology, 2021, 449: 152663.
[1403]
Knutsen H K, Alexander J, Barregård L, Bignami M, Brüschweiler B, Ceccatelli S, Cottrill B, Dinovi M, Edler L, Grasl-Kraupp B, Hogstrand C, Hoogenboom L R, Nebbia C S, Oswald I P, Petersen A, Rose M, Roudot A C, Vleminckx C, Vollmer G, Wallace H, Bodin L, Cravedi J P, Halldorsson T I, Haug L S, Johansson N, van Loveren H, Gergelova P, MacKay K, Levorato S, van Manen M, Schwerdtle T. EFSA J., 2018, 16(12): e05194.
[1404]
Winquist A, Steenland K. Epidemiology, 2014, 25(2): 255.
[1405]
Kim J H, Park H Y, Jeon J D, Kho Y, Kim S K, Park M S, Hong Y C. Eur. J. Nutr., 2016, 55(3): 1011.
[1406]
Hu W X, Gao P, Wang L, Hu J Y. Crit. Rev. Environ. Sci. Technol., 2023, 53(1): 1.
[1407]
Liu X S, Ji K, Choi K. Aquat. Toxicol., 2012, 114-115: 173.
[1408]
Zhang Q, Wang J H, Zhu J Q, Liu J, Zhao M R. Environ. Sci. Technol., 2017, 51(10): 5803.
[1409]
Kim S, Jung J, Lee I, Jung D, Youn H, Choi K. Aquat. Toxicol., 2015, 160: 188.
[1410]
Ingle M E, Watkins D, Rosario Z, VÉlez Vega C M, Huerta-Montanez G, Calafat A M, Ospina M, Cordero J F, Alshawabkeh A, Meeker J D. Environ. Res., 2019, 179: 108756.
[1411]
Luo K, Zhang R R, Aimuzi R, Wang Y Q, Nian M, Zhang J. Environ. Int., 2020, 143: 105941.
[1412]
Percy Z, Vuong A M, Xu Y Y, Xie C C, Ospina M, Calafat A M, Hoofnagle A, Lanphear B P, Braun J M, Cecil K M, Dietrich K N, Yolton K, Chen A M. Am. J. Epidemiol., 2021, 190(9): 1793.
[1413]
Tao Y, Hu L Q, Liu L, Yu M, Li Y P, Li X, Liu W Y, Luo D, Covaci A, Xia W, Xu S Q, Li Y Y, Mei S R. Environ. Int., 2021, 156: 106640.
[1414]
Luo K, Aimuzi R, Wang Y Q, Nian M, Zhang J. Environ. Pollut., 2020, 267: 115607.
[1415]
Siddique S, Harris S A, Kosarac I, Latifovic L, Kubwabo C. Environ. Pollut., 2020, 263: 114110.
[1416]
Luo K, Liu J H, Wang Y Q, Aimuzi R, Luo F, Ao J J, Zhang J. Environ. Int., 2020, 136: 105461.
[1417]
Qiao L, Gao L R, Zheng M H, Xia D, Li J G, Zhang L, Wu Y N, Wang R H, Cui L L, Xu C. Environ. Sci. Technol., 2018, 52(17): 10097.
[1418]
Fernie K J, Karouna-Renier N K, Letcher R J, Schultz S L, Peters L E, Palace V, Henry P F P. Environ. Int., 2020, 145: 106087.
[1419]
Gong Y F, Zhang H J, Geng N B, Xing L G, Fan J F, Luo Y, Song X Y, Ren X Q, Wang F D, Chen J P. Sci. Total Environ., 2018, 625: 657.
[1420]
Ali T E S, Legler J. Overview of the Mammalian and Environmental Toxicity of Chlorinated Paraffins,In: Boer J (Eds).Chlorinated Paraffins. The Handbook of Environmental Chemistry, Berlin: Springer, 2010. 135.
[1421]
Liu L H, Li Y F, Coelhan M, Chan H M, Ma W L, Liu L Y. Environ. Pollut., 2016, 219: 1122.
[1422]
Zhang Q, Wang J, Zhu J, Liu J, Zhang J, Zhao M. Environment International, 2016, 94: 43.
[1423]
Yu J, Zou H Y, Zhang T H, Zhang J. J. Agric. Food Chem., 2023, 71(45): 16902.
[1424]
Jobling S, Reynolds T, White R, Parker M G, Sumpter J P. Environ. Health Perspect., 1995, 103(6): 582.
[1425]
Stephen R L, Gustafsson M C U, Jarvis M, Tatoud R, Marshall B R, Knight D, Ehrenborg E, Harris A L, Wolf C R, Palmer C N A. Cancer Res., 2004, 64(9): 3162.
[1426]
Meeker J D, Calafat A M, Hauser R. Environ. Health Perspect., 2007, 115(7): 1029.
[1427]
Huang P C, Kuo P L, Guo Y L, Liao P C, Lee C C. Hum. Reprod., 2007, 22(10): 2715.
[1428]
Boas M, Frederiksen H, Feldt-Rasmussen U, Skakkebæk N E, Hegedüs L, Hilsted L, Juul A, Main K M. Environ. Health Perspect., 2010, 118(10): 1458.
[1429]
Lam J, Koustas E, Sutton P, Johnson P I, Atchley D S, Sen S, Robinson K A, Axelrad D A, Woodruff T J. Environ. Health Perspect., 2014, 122(10): 1040.
[1430]
Apelberg B J, Witter F R, Herbstman J B, Calafat A M, Halden R U, Needham L L, Goldman L R. Environ. Health Perspect., 2007, 115(11): 1670.
[1431]
Fei C, McLaughlin J K, Tarone R E, Olsen J. Am. J. Epidemiol., 2008, 168(1): 66.
[1432]
Chen Q, Zhang X, Zhao Y J, Lu W Y, Wu J, Zhao S S, Zhang J, Huang L S. Chemosphere, 2019, 226: 17.
[1433]
Fletcher T, Galloway T S, Melzer D, Holcroft P, Cipelli R, Pilling L C, Mondal D, Luster M, Harries L W. Environ. Int., 2013, 57-58: 2.
[1434]
Watkins D J, Wellenius G A, Butler R A, Bartell S M, Fletcher T, Kelsey K T. Environ. Int., 2014, 63: 71.
[1435]
Guerrero-Preston R, Goldman L R, Brebi-Mieville P, Ili-Gangas C, LeBron C, Witter F R, Apelberg B J, Hernández-Roystacher M, Jaffe A, Halden R U, Sidransky D. Epigenetics, 2010, 5(6): 539.
[1436]
Vanden Heuvel J P, Thompson J T, Frame S R, Gillies P J. Toxicological Sciences, 2006, 92(2): 476.
[1437]
Bastos Sales L, Kamstra J H, Cenijn P H, van Rijt L S, Hamers T, Legler J. Toxicol. Vitro, 2013, 27(6): 1634.
[1438]
Taxvig C, Dreisig K, Boberg J, Nellemann C, Schelde A B, Pedersen D, Boergesen M, Mandrup S, Vinggaard A M. Mol. Cell. Endocrinol., 2012, 361(1/2): 106.
[1439]
Ye L, Guo J, Ge R S. Vitamins & Hormones, 2014, 94: 349.
[1440]
Luo D, Liu W Y, Wu W X, Tao Y, Hu L Q, Wang L M, Yu M, Zhou A F, Covaci A, Xia W, Xu S Q, Li Y Y, Mei S R. J. Hazard. Mater., 2021, 406: 124754.
[1441]
Yang W L, Braun J M, Vuong A M, Percy Z, Xu Y Y, Xie C C, Deka R, Calafat A M, Ospina M, Burris H H, Yolton K, Cecil K M, Lanphear B P, Chen A M. Environ. Pollut., 2023, 316: 120516.
[1442]
Crawford K A, Hawley N, Calafat A M, Jayatilaka N K, Froehlich R J, Has P, Gallagher L G, Savitz D A, Braun J M, Werner E F, Romano M E. Environ. Health, 2020, 19: 97.
[1443]
Boyle M, Buckley J P, QuirÓs-Alcalá L. Environ. Int., 2019, 127: 754.
[1444]
Aamir M, Yin S S, Guo F J, Liu K, Xu C Y, Liu W P. Environ. Sci. Technol., 2019, 53(19): 11458.
[1445]
Burýšková B, Bláha L, Vršková D, Šimková K, Maršálek B. Acta Vet. Brno, 2006, 75(1): 115.
[1446]
Valvi D, Casas M, Romaguera D, Monfort N, Ventura R, Martinez D, Sunyer J, Vrijheid M. Environ. Health Perspect., 2015, 123(10): 1022.
[1447]
Huang Y J, Li J N, Garcia J M, Lin H, Wang Y Z, Yan P, Wang L Q, Tan Y, Luo J H, Qiu Z Q, Chen J A, Shu W Q. PLoS One, 2014, 9(2): e87430.
[1448]
Harley K G, Berger K, Rauch S, Kogut K, Claus Henn B, Calafat A M, Huen K R, Eskenazi B, Holland N. Pediatr. Res., 2017, 82(3): 405.
[1449]
Wang H X, Zhou Y, Tang C X, He Y H, Wu J G, Chen Y, Jiang Q W. PLoS One, 2013, 8(2): e56800.
[1450]
Xia B, Zhu Q Y, Zhao Y Y, Ge W Z, Zhao Y, Song Q, Zhou Y H, Shi H J, Zhang Y H. Environ. Int., 2018, 121: 159.
[1451]
Amin M M, Ebrahimpour K, Parastar S, Shoshtari-Yeganeh B, Hashemi M, Mansourian M, Poursafa P, Fallah Z, Rafiei N, Kelishadi R. Chemosphere, 2018, 211: 547.
[1452]
Cao Y X, Ng C. Environ. Sci.: Processes Impacts, 2021, 23(11): 1623.
[1453]
Liew Z, Goudarzi H, Oulhote Y. Curr. Environ. Health Rep., 2018, 5(1): 173.
[1454]
Vuong A M, Yolton K, Webster G M, Sjödin A, Calafat A M, Braun J M, Dietrich K N, Lanphear B P, Chen A M. Environ. Res., 2016, 147: 556.
[1455]
Liew Z, Ritz B, Bonefeld-Jørgensen E C, Henriksen T B, Nohr E A, Bech B H, Fei C Y, Bossi R, von Ehrenstein O S, Streja E, Uldall P, Olsen J. Am. J. Epidemiol., 2014, 180(6): 574.
[1456]
Hoffman K, Webster T F, Weisskopf M G, Weinberg J, Vieira V M. Environ. Health Perspect., 2010, 118(12): 1762.
[1457]
Stein C R, Savitz D A. Environ. Health Perspect., 2011, 119(10): 1466.
[1458]
Braun J M, Kalkbrenner A E, Just A C, Yolton K, Calafat A M, Sjödin A, Hauser R, Webster G M, Chen A M, Lanphear B P. Environ. Health Perspect., 2014, 122(5): 513.
[1459]
Wang Y, Rogan W J, Chen H Y, Chen P C, Su P H, Chen H Y, Wang S L. Int. J. Hyg. Environ. Health, 2015, 218(7): 639.
[1460]
Stein C R, Savitz D A, Bellinger D C. Epidemiology, 2013, 24(4): 590.
[1461]
Forns J, Iszatt N, White R A, Mandal S, Sabaredzovic A, Lamoree M, Thomsen C, Haug L S, Stigum H, Eggesbø M. Environ. Int., 2015, 83: 176.
[1462]
Fei C Y, Olsen J. Environ. Health Perspect., 2011, 119(4): 573.
[1463]
Shrestha S, Bloom M S, Yucel R, Seegal R F, Rej R, McCaffrey R J, Wu Q, Kannan K, Fitzgerald E F. Int. J. Hyg. Environ. Health, 2017, 220(4): 679.
[1464]
Yu N Y, Wei S, Li M Y, Yang J P, Li K, Jin L, Xie Y W, Giesy J P, Zhang X W, Yu H X. Sci. Rep., 2016, 6: 23963.
[1465]
Slotkin T A, MacKillop E A, Melnick R L, Thayer K A, Seidler F J. Environ. Health Perspect., 2008, 116(6): 716.
[1466]
Salgado R, LÓpez-Doval S, Pereiro N, Lafuente A. Toxicol. Lett., 2016, 240(1): 226.
[1467]
Hallgren S, Viberg H. Environ. Toxicol. Pharmacol., 2016, 41: 121.
[1468]
Foguth R M, Hoskins T D, Clark G C, Nelson M, Flynn R W, de Perre C, Hoverman J T, Lee L S, Sepúlveda M S, Cannon J R. Neurotoxicol. Teratol., 2020, 81: 106907.
[1469]
Foguth R M, Flynn R W, de Perre C, Iacchetta M, Lee L S, Sepúlveda M S, Cannon J R. Toxicol. Appl. Pharmacol., 2019, 377: 114623.
[1470]
Hall A M, Ramos A M, Drover S S, Choi G, Keil A P, Richardson D B, Martin C L, Olshan A F, Villanger G D, Reichborn-Kjennerud T, Zeiner P, Øvergaard K R, Sakhi A K, Thomsen C, Aase H, Engel S M. Int. J. Hyg. Environ. Health, 2023, 248: 114078.
[1471]
Doherty B T, Hammel S C, Daniels J L, Stapleton H M, Hoffman K. Curr. Environ. Health Rep., 2019, 6(4): 201.
[1472]
Yang X Y, Zhang B, Gao Y, Chen Y W, Yin D Q, Xu T. J. Hazard. Mater., 2019, 377: 172.
[1473]
Ding W J, Zhao Z X, Zheng Y D, Wang R, Zhang Z Y, Zhang Z Y, Wang X D, Yu S L, Liu L, Huang R R, Zhao X Y, Wu Q Y. Ecotoxicol. Environ. Saf., 2022, 248: 114268.
[1474]
Wang Z M, Ma J C, Wang T T, Qin C, Hu X J, Mosa A, Ling W T. Chemosphere, 2023, 328: 138578.
[1475]
Chopra V, Harley K, Lahiff M, Eskenazi B. Environ. Res., 2014, 128: 64.
[1476]
Engel S M, Villanger G D, Nethery R C, Thomsen C, Sakhi A K, Drover S S M, Hoppin J A, Zeiner P, Knudsen G P, Reichborn-Kjennerud T, Herring A H, Aase H. Environ. Health Perspect., 2018, 126(5): 057004.
[1477]
Kim B N, Cho S C, Kim Y, Shin M S, Yoo H J, Kim J W, Yang Y H, Kim H W, Bhang S Y, Hong Y C. Biol. Psychiatry, 2009, 66(10): 958.
[1478]
Kobrosly R W, Evans S, Miodovnik A, Barrett E S, Thurston S W, Calafat A M, Swan S H. Environ. Health Perspect., 2014, 122(5): 521.
[1479]
Li N, Papandonatos G D, Calafat A M, Yolton K, Lanphear B P, Chen A M, Braun J M. Environ. Res., 2019, 172: 604.
[1480]
Kim J I, Hong Y C, Shin C H, Lee Y, Lim Y H, Kim B N. Environ. Res., 2017, 156: 519.
[1481]
Choi Y J, Ha K H, Kim D J. Environ. Sci. Pollut. Res., 2017, 24(1): 284.
[1482]
Liu Y B, Wang X N, Guo R. Modern Preventive Medicine, 2022, 49(7): 1333.
(刘亚兵, 王小娜, 郭蕊. 现代预防医学, 2022, 49(7): 1333.).
[1483]
Bao W W, Qian Z, Geiger S D, Liu E C, Liu Y M, Wang S Q, Lawrence W R, Yang B Y, Hu L W, Zeng X W, Dong G H. Sci. Total Environ., 2017, 607-608: 1304.
[1484]
Su T C, Kuo C C, Hwang J J, Lien G W, Chen M F, Chen P C. Environ. Int., 2016, 88: 15.
[1485]
You L, Zheng F J, Su C, Wang L M, Li X, Chen Q Q, Kou J, Wang X L, Wang Y F, Wang Y T, Mei S R, Zhang B, Liu X Y, Xu G W. Environ. Int., 2022, 158: 106919.
[1486]
Guo X W, Wu B R, Xia W H, Gao J, Xie P, Feng L Y, Sun C Y, Liang M M, Ding X X, Zhao D D, Ma S D, Liu H X, Lowe S, Bentley R, Huang C, Qu G B, Sun Y H. Chemosphere, 2022, 308: 136428.
[1487]
Kang H, Lee J, Lee J P, Choi K. Environ. Int., 2019, 131: 105034.
[1488]
Zhang G X, Zhang Q H, Guan X L, Liu M, Meng L L, Han X, Li Y M, Jiang G B. Sci. Total Environ., 2024, 908: 168192.
[1489]
Liu Y, Han X M, Zhao N, Fang X X, Zhang S W, Li S X, Jiang W, Ding L. Environ. Pollut., 2021, 268: 115762.
[1490]
Song Y, Chou E L, Baecker A, You N C Y, Song Y Q, Sun Q, Liu S M. J. Diabetes, 2016, 8(4): 516.
[1491]
Geng N B, Luo Y, Cao R, Song X Y, Li F, Wang F D, Gong Y F, Xing L G, Zhang H J, Chen J P. Sci. Total Environ., 2021, 750: 141404.
[1492]
Geng N B, Ren X Q, Gong Y F, Zhang H J, Wang F D, Xing L G, Cao R, Xu J Z, Gao Y, Giesy J P, Chen J P. Environ. Int., 2019, 133: 105231.
[1493]
Kersten S. Mol. Metab., 2014, 3(4): 354.
[1494]
Gong Y F, Zhang H J, Geng N B, Ren X Q, Giesy J P, Luo Y, Xing L G, Wu P, Yu Z K, Chen J P. Ecotoxicol. Environ. Saf., 2019, 181: 164.
[1495]
Finck B N, Kelly D P. J. Mol. Cell. Cardiol., 2002, 34(10): 1249.
[1496]
Zhao N, Fang X X, Zhang S W, Zhu Y T, Ding L, Xu C H. Environ. Int., 2021, 153: 106514.
[1497]
Ding L, Luo N N, Liu Y, Fang X X, Zhang S W, Li S X, Jiang W, Zhao N. Sci. Total Environ., 2020, 728: 137998.
[1498]
Mu Y W, Cheng D, Zhang C L, Zhao X L, Zeng T. Sci. Total Environ., 2023, 872: 162187.
[1499]
Yang L X, Liu Y P, Cui Z, Zhang Y M, Zhang J B, Lian K Q. Environ. Res., 2021, 197: 111060.
[1500]
Mu Y W, Cheng D, Zhang C L, Zhao X L, Zeng T. Sci. Total Environ., 2023, 872: 162187.
[1501]
Kim J H, Park H Y, Bae S, Lim Y H, Hong Y C. PLoS One, 2013, 8(8): e71392.
[1502]
James-Todd T, Stahlhut R, Meeker J D, Powell S G, Hauser R, Huang T Y, Rich-Edwards J. Environ. Health Perspect., 2012, 120(9): 1307.
[1503]
Halaby R, Popma C J, Cohen A, Chi G, Zacarkim M R, Romero G, Goldhaber S Z, Hull R, Hernandez A, Mentz R, Harrington R, Lip G, Peacock F, Welker J, Martin-Loeches I, Daaboul Y, Korjian S, Gibson C M. J. Thromb. Thrombolysis, 2015, 39(1): 55.
[1504]
Hoppin J A, Jaramillo R, London S J, Bertelsen R J, Salo P M, Sandler D P, Zeldin D C. Environ. Health Perspect., 2013, 121(10): 1129.
[1505]
Bekö G, Callesen M, Weschler C J, Toftum J, Langer S, Sigsgaard T, Høst A, Kold Jensen T, Clausen G. Environ. Res., 2015, 137: 432.
[1506]
Ku H Y, Su P H, Wen H J, Sun H L, Wang C J, Chen H Y, Jaakkola J J K, Wang S L, Group T. PLoS One, 2015, 10(4): e0123309.
[1507]
Bornehag C G, Sundell J, Weschler C J, Sigsgaard T, Lundgren B, Hasselgren M, Hägerhed-Engman L. Environ. Health Perspect., 2004, 112(14): 1393.
[1508]
Vieira V M, Hoffman K, Shin H M, Weinberg J M, Webster T F, Fletcher T. Environ. Health Perspect., 2013, 121(3): 318.
[1509]
Girardi P, Merler E. Environ. Res., 2019, 179: 108743.
[1510]
Wielsøe M, Kern P, Bonefeld-Jørgensen E C. Environ. Health, 2017, 16: 56.
[1511]
Hurley S, Goldberg D, Wang M M, Park J S, Petreas M, Bernstein L, Anton-Culver H, Nelson D O, Reynolds P. Environ. Health, 2018, 17: 83.
[1512]
Cohn B A, La Merrill M A, Krigbaum N Y, Wang M M, Park J S, Petreas M, Yeh G, Hovey R C, Zimmermann L, Cirillo P M. Reprod. Toxicol., 2020, 92: 112.
[1513]
Li Y, Fu Y R, Hu K Q, Zhang Y L, Chen J Q, Zhang S H, Zhang B, Liu Y H. Ecotoxicol. Environ. Saf., 2020, 196: 110548.
[1514]
Liu Y H, Li Y, Dong S S, Han L, Guo R X, Fu Y R, Zhang S H, Chen J Q. J. Hazard. Mater., 2021, 404: 124020.
[1515]
Bardin J A, Gore R J, Wegman D H, Kriebel D, Woskie S R, Eisen E A. Scand. J. Work. Environ. Health, 2005, 31(3): 205.
[1516]
Huang J W, Bai Y Y, Zeeshan M, Liu R Q, Dong G H. Sci. Total Environ., 2023, 886: 163953.
[1517]
Program N T. National Toxicology Program Technical Report Series, 1986, 308: 1.
[1518]
Geng N B, Zhang H J, Zhang B Q, Wu P, Wang F D, Yu Z K, Chen J P. Environ. Sci. Technol., 2015, 49(5): 3076.
[1519]
Sprengel J, Behnisch P A, Besselink H, Brouwer A, Vetter W. Arch. Toxicol., 2021, 95(4): 1391.
[1520]
Zainab B, Ayaz Z, Rashid U, Al Farraj D A, Alkufeidy R M, AlQahtany F S, Aljowaie R M, Abbasi A M. Biology, 2021, 10(7): 681.
[1521]
International Agency for Research on Cancer (IARC), World Health Organization (WHO). Agents classified by the IARC Monographs, volumes 1-131. 2022[EB/OL]. [2024-07-01]. https://monographs.iarc.who.int/list-of-classifications.
[1522]
LÓpez-Carrillo L, Hernández-Ramírez R U, Calafat A M, Torres-Sánchez L, Galván-Portillo M, Needham L L, Ruiz-Ramos R, Cebrián M E. Environ. Health Perspect., 2010, 118(4): 539.
[1523]
Miao Y F, Wang R H, Lu C, Zhao J P, Deng Q H. Environ. Sci. Pollut. Res., 2017, 24(1): 312.
[1524]
Lemay A C, Sontarp E J, Martinez D, Maruri P, Mohammed R, Neapole R, Wiese M, Willemsen J A R, Bourg I C. Environ. Sci. Technol., 2023, 57(15): 6296.
[1525]
Peng B, Dong Q L, Li F Z, Wang T, Qiu X H, Zhu T. Environ. Sci. Technol., 2023, 57:15314.
[1526]
Li X M, Zhang Q H, Wang P, Fu J J, Jiang G B. Environ. Sci. Technol., 2020, 54(1): 6.
[1527]
Wei S, Xu T, Jiang T, Yin D Q. Environ. Sci. Technol., 2021, 55(16): 10911.
[1528]
Lee K, Alava J J, Cottrell P, Cottrell L, Grace R, Zysk I, Raverty S. Environ. Sci. Technol., 2023, 57(1): 360.
[1529]
Holzem R M, Stapleton H M, Gunsch C K. Environ. Sci. Technol., 2014, 48(3): 1646.
[1530]
Su H J, Ren K F, Li R R, Li J H, Gao Z Q, Hu G J, Fu P Q, Su G Y. Environ. Sci. Technol., 2022, 56(12): 8061.
[1531]
Wang X M, Xiong Y, Yuan B, Wu Y, Hu W J, Wang X, Liu W S. J. Environ. Manag., 2023, 348: 119355.
[1532]
Schnoor J L. Environ. Sci. Technol., 2014, 48(19): 11019.
[1533]
De Laender F, Hammer J, Hendriks A J, Soetaert K, Janssen C R. Environ. Sci. Technol., 2011, 45(20): 9024.
[1534]
Jiang L, Gao W, Ma X D, Wang Y J, Wang C, Li Y M, Yang R Q, Fu J J, Shi J B, Zhang Q H, Wang Y W, Jiang G B. Environ. Sci. Technol., 2021, 55(1): 230.
[1535]
Aker A, Ayotte P, Caron-Beaudoin É, De Silva A, Ricard S, Lemire M. Sci. Total Environ., 2023, 857: 159557.
[1536]
Turgeon O’Brien H, Blanchet R, GagnÉ D, Lauzière J, VÉzina C, Vaissière É, Ayotte P, DÉry S. Environ. Sci. Technol., 2012, 46(8): 4614.
[1537]
Blackwell B R, Ankley G T, Corsi S R, DeCicco L A, Houck K A, Judson R S, Li S B, Martin M T, Murphy E, Schroeder A L, Smith E R, Swintek J, Villeneuve D L. Environ. Sci. Technol., 2017, 51(15): 8713.
[1538]
Baumgartner R, Stieger G K, McNeill K. Environ. Sci. Technol., 2013, 47(12): 6545.
[1539]
Mudumbi J B N, Ntwampe S K O, Matsha T, Mekuto L, Itoba-Tombo E F. Environ. Monit. Assess., 2017, 189(8): 402.
[1540]
Wang Z Y, Cousins I T, Scheringer M, Hungerbühler K. Environ. Int., 2013, 60: 242.
[1541]
Min E K, Lee H, Sung E J, Seo S W, Song M, Wang S, Kim S S, Bae M A, Kim T Y, Lee S, Kim K T. J. Hazard. Mater., 2023, 457: 131714.
[1542]
Pachkowski B, Post G B, Stern A H. Environ. Res., 2019, 171: 452.
[1543]
Liu S Y, Yang R J, Yin N Y, Faiola F. J. Environ. Sci., 2020, 88: 187.
[1544]
Tang L Z, Liu M Y, Song S W, Hu C Y, Lam P K S, Lam J C W, Chen L G. Aquat. Toxicol., 2020, 222: 105466.
[1545]
Corsini E, Sangiovanni E, Avogadro A, Galbiati V, Viviani B, Marinovich M, Galli C L, Dell’Agli M, Germolec D R. Toxicol. Appl. Pharmacol., 2012, 258(2): 248.
[1546]
Hu C Y, Liu M Y, Sun B L, Tang L Z, Zhou X Z, Chen L G. Environ. Int., 2022, 167: 107418.
[1547]
Gong H J, Du J, Xu J, Yang Y, Lu H, Xiao H. Environ. Toxicol. Chem., 2022, 41(10): 2527.
[1548]
Hu C Y, Huang Z L, Sun B L, Liu M Y, Tang L Z, Chen L G. Environ. Res., 2022, 204: 112380.
[1549]
Ulhaq Z S, Tse W K F. J. Hazard. Mater., 2023, 457: 131722.
[1550]
Annunziato K M, Jantzen C E, Gronske M C, Cooper K R. Aquat. Toxicol., 2019, 208: 126.
[1551]
Jiao X, Guo Z Y, Liu B L, Wang L T, Yang Z N, Yang Y R, Qian A D, Li Y H. Comp. Biochem. Physiol. Part C Toxicol. Pharmacol., 2023, 271: 109683.
[1552]
Wang S W, Huang J, Yang Y, Hui Y M, Ge Y X, Larssen T, Yu G, Deng S B, Wang B, Harman C. Environ. Sci. Technol., 2013, 47(18): 10163.
[1553]
Xu L, Shi Y L, Li C X, Song X W, Qin Z F, Cao D, Cai Y Q. Environ. Sci. Technol., 2017, 51(24): 14173.
[1554]
Gomis M I, Vestergren R, Borg D, Cousins I T. Environ. Int., 2018, 113: 1.
[1555]
Heidari H, Abbas T, Ok Y S, Tsang D C W, Bhatnagar A, Khan E. Water Res., 2021, 205: 117683.
[1556]
Skogeng L P, Lunder Halvorsen H, Breivik K, Eckhardt S, Herzke D, Moeckel C, Krogseth I S. Front. Environ. Sci., 2023, 10: 1083011.
[1557]
Zafar M I, Kali S, Ali M, Riaz M A, Naz T, Iqbal M M, Masood N, Munawar K, Jan B, Ahmed S, Waseem A, Niazi M B K. Environ. Sci. Pollut. Res., 2020, 27(34): 42369.
[1558]
Bao J S, Ren H M, Han J L, Yang X R, Li Y X, Jin J. Sci. Total Environ., 2023, 903: 166156.
[1559]
Zhang W W, Wang P, Zhu Y, Yang R Q, Li Y M, Wang D, Matsiko J, Han X, Zhao J P, Zhang Q H, Zhang J Q, Jiang G B. Ecotoxicol. Environ. Saf., 2019, 171: 181.
[1560]
Pasecnaja E, Perkons I, Bartkevics V, Zacs D. Environ. Sci. Pollut. Res., 2021, 28(20): 25493.
[1561]
Qiao Z H, Wang Y W, Lu C, Ling S Y, Zhou S Q, Fu M R, Luo K L, Peng C, Zhang W, Zhou B S. J. Clean. Prod., 2023, 387: 135916.
[1562]
Wang Y W, Chen T, Sun Y M, Zhao X Z, Zheng D, Jing L, Zhou X Q, Sun Z W, Shi Z X. Ecotoxicol. Environ. Saf., 2019, 174: 224.
[1563]
Kajiwara N, Noma Y, Takigami H. Environ. Sci. Technol., 2008, 42(12): 4404.
[1564]
Cheng G Y, Hao H H, Xie S Y, Wang X, Dai M H, Huang L L, Yuan Z H. Front. Microbiol., 2014, 5: 217.
[1565]
Barrow P A. Avian Pathol., 2007, 36(1): 1.
[1566]
Potter A, Gerdts V, van Drunen Littel-van den Hurk S. Anim. Health. Res. Rev., 2008, 9(2): 187.
[1567]
Masihi K N. Int. J. Immunopharmacol., 2000, 22(12): 1083.
[1568]
Bricknell I, Dalmo R. Fish Shellfish. Immunol., 2005, 19(5): 457.
[1569]
Kak V, Sundareshan V, Modi J, Khardori N M. Med. Clin. N Am, 2012, 96(3): 455.
[1570]
Field D, Hill C, Cotter P D, Ross R P. Mol. Microbiol., 2010, 78(5): 1077.
[1571]
Chen P, Gong W W, Yu G, Fiedler H. Chemosphere, 2019, 219: 875.
[1572]
Liu W B, Li H F, Tao F, Li S M, Tian Z Y, Xie H T. Chemosphere, 2013, 92(3): 304.
[1573]
Holt E, Weber R, Stevenson G, Gaus C. Environ. Sci. Technol., 2010, 44(14): 5409.
[1574]
Liu X Y, Liu G R, Wang M X, Wu J J, Yang Q T, Liu S T, Wang M X, Yang L L, Zheng M H. Environ. Sci. Technol., 2023, 57(4): 1646.
[1575]
Liu G R, Zheng M H, Jiang X X, Jin R, Zhao Y Y, Zhan J Y. Chemosphere, 2016, 144: 420.
[1576]
Liu G R, Zheng M H, Liu W B, Wang C Z, Zhang B, Gao L R, Su G J, Xiao K, Lv P. Environ. Sci. Technol., 2009, 43(24): 9196.
[1577]
Öberg T, Bergström J. Chemosphere, 1985, 14(8): 1081.
[1578]
Imagawa T, Lee C W. Chemosphere, 2001, 44(6): 1511.
[1579]
Fiedler H, Lau C, Eduljee G. Waste Manag. Res., 2000, 18(3): 283.
[1580]
Chakraborty P, Selvaraj S, Nakamura M, Prithiviraj B, Cincinelli A, Bang J J. Sci. Total Environ., 2018, 621: 930.
[1581]
Liu G R, Cai Z W, Zheng M H, Jiang X X, Nie Z Q, Wang M. Chemosphere, 2015, 118: 194.
[1582]
Kim H, Oh S, Gye M C, Shin I. Drug Chem. Toxicol., 2018, 41(4): 486.
[1583]
Kelce W R, Stone C R, Laws S C, Gray L E, Kemppainen J A, Wilson E M. Nature, 1995, 375(6532): 581.
[1584]
Houeto P, Bindoula G, Hoffman J R. Environ. Health Perspect., 1995, 103(6): 568.
[1585]
Chung H K, Cho W C, Park H Y, Choi S H, Kwon D, Shin W S, Song J S, Park B G. Mol. Cell. Toxicol., 2019, 15(1): 57.
[1586]
Cocco P. Int. J. Environ. Res. Public Health, 2022, 19(5): 2632.
[1587]
Lin B G, Yu Y J, Xiang M D, Yu L H, Li L Z, Ju Y M, Yu L. Environ. Chem., 2016, 35(3): 466.
(林必桂, 于云江, 向明灯, 余乐洹, 李良忠, 鞠勇明, 玉琳. 环境化学, 2016, 35(3): 466.).
[1588]
Piyadasa C K G, Håkansson P, Ariyaratne T R. Rapid Commun. Mass Spectrom., 1999, 13(7): 620.
[1589]
Peng B, Dong Q L, Li F Z, Wang T, Qiu X H, Zhu T. Environ. Sci. Technol., 2023, 57(41): 15314.
[1590]
Lee S, Kim K, Jeon J, Moon H B. Ecotoxicol. Environ. Saf., 2019, 181: 11.
[1591]
Murray J A. J. Chromatogr. A, 2012, 1261: 58.
[1592]
Hoh E, Dodder N G, Lehotay S J, Pangallo K C, Reddy C M, Maruya K A. Environ. Sci. Technol., 2012, 46(15): 8001.
[1593]
Skoczyńska E, Korytár P, de Boer J. Environ. Sci. Technol., 2008, 42(17): 6611.
[1594]
Knolhoff A M, Zweigenbaum J A, Croley T R. Anal. Chem., 2016, 88(7): 3617.
[1595]
Meng D, Fan D L, Gu W, Wang Z, Chen Y J, Bu H Z, Liu J N. Chemosphere, 2020, 243: 125367.
[1596]
Hernández F, Sancho J V, Ibáñez M, Grimalt S. Trac Trends Anal. Chem., 2008, 27(10): 862.
[1597]
Martínez Bueno M J, Ulaszewska M M, Gomez M J, Hernando M D, Fernández-Alba A R. J. Chromatogr. A, 2012, 1256: 80.
[1598]
Levsen K. Trac Trends Anal. Chem., 2000, 19(1): 27.
[1599]
Alves Filho E G, Sartori L, Silva L M A, Silva B F, Fadini P S, Soong R, Simpson A, Ferreira A G. Magn. Reson. Chem., 2015, 53(9): 704.
[1600]
Liu Z C, Huang R L, Roberts R, Tong W D. Trends Pharmacol. Sci., 2019, 40(2): 92.
[1601]
Sakhteman A, Failli M, Kublbeck J, Levonen A L, Fortino V. Environ. Int., 2021, 156: 106751.
[1602]
Wang X Q, Li F, Liu J L, Ji C L, Wu H F. Ecotoxicol. Environ. Saf., 2020, 205: 111126.
[1603]
Lamb J, Crawford E D, Peck D, Modell J W, Blat I C, Wrobel M J, Lerner J, Brunet J P, Subramanian A, Ross K N, Reich M, Hieronymus H, Wei G, Armstrong S A, Haggarty S J, Clemons P A, Wei R, Carr S A, Lander E S, Golub T R. Science, 2006, 313(5795): 1929.
[1604]
Zhang K, Zhao Y B. Environ. Sci. Technol., 2018, 52(12): 7120.
[1605]
Lee H, Sung E J, Seo S, Min E K, Lee J Y, Shim I, Kim P, Kim T Y, Lee S, Kim K T. Environ. Int., 2021, 157: 106802.
[1606]
Traglia M, Croen L A, Lyall K, Windham G C, Kharrazi M, DeLorenze G N, Torres A R, Weiss L A. G3 Genes|genomes|genetics, 2017, 7(4): 1287.
[1607]
Dai X Y, Deng S Y, Wang T, Qiu G K, Li J, Yang B Y, Feng W, He X S, Deng Q F, Ye J, Zhang W Z, He M A, Zhang X M, Guo H, Wu T C. Cancer Epidemiol. Biomark. Prev., 2014, 23(6): 986.
[1608]
Xiao H X, Krauss M, Floehr T, Yan Y, Bahlmann A, Eichbaum K, Brinkmann M, Zhang X W, Yuan X Z, Brack W, Hollert H. Environ. Sci. Technol., 2016, 50(20): 11319.
[1609]
Qi H X, Li H Z, Wei Y L, Mehler W T, Zeng E Y, You J. Environ. Sci. Technol., 2017, 51(11): 6414.
[1610]
Kortagere S, Krasowski M D, Reschly E J, Venkatesh M, Mani S, Ekins S. Environ. Health Perspect., 2010, 118(10): 1412.
[1611]
Guedes I A, Pereira F S S, Dardenne L E. Front. Pharmacol., 2018, 9: 1089.
[1612]
Liang J F, Yang X X, Liu Q S, Sun Z D, Ren Z H, Wang X Y, Zhang Q, Ren X M, Liu X C, Zhou Q F, Jiang G B. Environ. Sci. Technol., 2022, 56(1): 460.
[1613]
Li J, Xu Y, Li N, Zuo R, Zhai Y Z, Chen H Y. Environ. Sci. Technol., 2022, 56(7): 4241.
[1614]
Kumari I, Sandhu P, Ahmed M, Akhter Y. Curr. Protein Pept. Sci., 2017, 18(11): 1163.
[1615]
Zhong S F, Zhang K, Bagheri M, Burken J G, Gu A, Li B K, Ma X M, Marrone B L, Ren Z J, Schrier J, Shi W, Tan H Y, Wang T B, Wang X, Wong B M, Xiao X S, Yu X, Zhu J J, Zhang H C. Environ. Sci. Technol., 2021, 55(19): 12741.
[1616]
Yang L L, Shen J, Liu G R, Zhao X G, Zheng M H. Chin. Sci. Bull., 2022, 67(3): 278.
(杨莉莉, 申佳, 刘国瑞, 赵晓光, 郑明辉. 科学通报, 2022, 67(3): 278.).
[1617]
Yu F B, Wei C H, Deng P, Peng T, Hu X G. Sci. Adv., 2021, 7(22): eabf4130.
[1618]
Hsieh J H, Sedykh A, Mutlu E, Germolec D R, Auerbach S S, Rider C V. Chem. Res. Toxicol., 2021, 34(2): 268.
[1619]
Garcia de Lomana M, Weber A G, Birk B, Landsiedel R, Achenbach J, Schleifer K J, Mathea M, Kirchmair J. Chem. Res. Toxicol., 2021, 34(2): 396.
[1620]
Cheng W X, Ng C A. Environ. Sci. Technol., 2019, 53(23): 13970.
[1621]
Ma B W, Xue W J, Hu C Z, Liu H J, Qu J H, Li L L. Chem. Eng. J., 2019, 359: 159.
[1622]
Li D W, Yang Y H, Ding X M. Chem. Bioeng., 2023, 40(10): 39.
(李道文, 杨宇航, 丁鑫末. 化学与生物工程, 2023, 40(10): 39.).
[1623]
Chen Y J, Chen Y F, Miao C, Wang Y R, Gao G K, Yang R X, Zhu H J, Wang J H, Li S L, Lan Y Q. J. Mater. Chem. A, 2020, 8(29): 14644.
[1624]
Deng S B, Zhang Q Y, Nie Y, Wei H R, Wang B, Huang J, Yu G, Xing B S. Environ. Pollut., 2012, 168: 138.
[1625]
Liu D S, Huang Z, Li M N, Li X C, Sun P, Zhou L C. Carbohydr. Polym., 2020, 230: 115564.
[1626]
Murray A, Örmeci B, Lai E P C. J. Environ. Sci., 2017, 51: 256.
[1627]
Song Y H, Ma R Y, Jiao C N, Hao L, Wang C, Wu Q H, Wang Z. Microchim. Acta, 2018, 185: 19.
[1628]
Myers K F, Karn R A, Eng D Y, Hewitt A D, Strong A B, Brannon J M. Field Analyt. Chem. Technol., 1998, 2(3): 163.
[1629]
Jiang C, Meng X R, Shi W L, XU W, Zhang J R. Chin. J. Environ. Eng., 2019, 13(7): 1720.
(蒋村, 孟宪荣, 施维林, 许伟, 张建荣. 环境工程学报, 2019, 13(7): 1720.).
[1630]
Chi K Y, Li C W, Ji L J, Yan L G, Liu P, Li S P, Wei Y X. Chin. J. Environ. Eng., 2019, 13(9): 2049.
(迟克宇, 李传维, 籍龙杰, 闫利刚, 刘鹏, 李书鹏, 韦云霄. 环境工程学报, 2019, 13(9): 2049.).
[1631]
Zhao T, Ma G P, Zhou Y, Li S Q. Environmental Engineering, 2017, 35(11): 178.
(赵涛, 马刚平, 周宇, 李世青. 环境工程, 2017, 35(11): 178.).
[1632]
Ji L J, Chen M, Zhang W Q, Li C Z, Yu T, Li S P, Zhan M X, Jiao W T. Energy Environmental Protection, 2022, 36(5): 46.
(籍龙杰, 陈芒, 张维琦, 李承志, 余韬, 李书鹏, 詹明秀, 焦文涛. 能源环境保护, 2022, 36(5): 46.).
[1633]
Molinari R, Lavorato C, Argurio P. Catal. Today, 2017, 281: 144.
[1634]
Wang D, Bolton J R, Andrews S A, Hofmann R. Sci. Total Environ., 2015, 518-519: 49.
[1635]
Wang X M, Mao Y Q, Tang S, Yang H W, Xie Y F. Front. Environ. Sci. Eng., 2015, 9(1): 3.
[1636]
Le T T, Yoon H, Son M H, Kang Y G, Chang Y S. Sci. Total Environ., 2019, 689: 444.
[1637]
Monteoliva-García A, Martín-Pascual J, Muñío M M, Poyatos J M. Int. J. Environ. Sci. Technol., 2019, 16(10): 6005.
[1638]
Nemati Sani O, Navaei fezabady A A, Yazdani M, Taghavi M. J. Water Process. Eng., 2019, 32: 100894.
[1639]
Wei L Y, Zhou B, Xiao K, Yang B, Yu G, Li J Y, Zhu C Z, Zhang J M, Duan H B. J. Hazard. Mater., 2020, 385: 121551.
[1640]
Chen W. Masteral Dissertation of Nanchang University, 2023.
(陈伟. 南昌大学硕士论文, 2023.).
[1641]
Chen L, Wang Z P. Applied Chemical Industry, 2019, 48(1): 164.
(陈蕾, 王志鹏. 应用化工, 2019, 48(1): 164.).
[1642]
Chinnaiyan P, Thampi S G, Kumar M, Balachandran M. Int. J. Environ. Sci. Technol., 2019, 16(10): 5463.
[1643]
Wang N Y, Huang X H, Chan V, Zhang L. Mater. Res. Express, 2019, 6(10): 105916.
[1644]
Gao S W. Masteral Dissertation of North University of China, 2017.
(高生旺. 中北大学硕士论文, 2017.).
[1645]
Ong C B, Mohammad A W, Ng L Y, Mahmoudi E, Azizkhani S, Hayati Hairom N H. Process. Saf. Environ. Prot., 2017, 112: 298.
[1646]
Uheida A, Mejía H G, Abdel-Rehim M, Hamd W, Dutta J. J. Hazard. Mater., 2021, 406: 124299.
[1647]
Liu Y X, Lin Y C, Ma W F. Chemical Industry and Engineering Progress, 2022, 41(S1): 571.
(刘怡璇, 林跃朝, 马伟芳. 化工进展, 2022, 41(S1): 571.).
[1648]
Yan D H, Peng Z, Karstensen K H, Ding Q, Wang K X, Wang Z G. Sci. Total Environ., 2014, 476-477: 250.
[1649]
Ebert J. Environ. Int., 2003, 29(6): 711.
[1650]
Yang Y F, Huang Q F, Tang Z W, Wang Q, Zhu X H, Liu W B. Environ. Sci. Technol., 2012, 46(24): 13409.
[1651]
Everaert K. J. Hazard. Mater., 2004, 109(1/3): 113.
[1652]
Yu M F, Li X D, Ren Y, Chen T, Lu S Y, Yan J H. Environ. Prog. Sustain. Energy, 2016, 35(5): 1265.
[1653]
Yu M F, Feng L S, Ji L J, Zhan M X. Energy Engineering, 2019 (1): 39.
(俞明锋, 冯罗澍, 籍龙杰, 詹明秀. 能源工程, 2019 (1): 39.).
[1654]
Sang Y M, Yu W, Ji L J, Ma F J, Zhu L, Chen M Q, Gu Q B, Li F S. Chin. J. Environ. Eng., 2020, 14(11): 2912.
(桑义敏, 余望, 籍龙杰, 马福俊, 朱玲, 陈梦巧, 谷庆宝, 李发生. 环境工程学报, 2020, 14(11): 2912.).
[1655]
Xu S X. Doctoral Dissertation of Zhejiang University, 2018.
(徐帅玺. 浙江大学博士论文, 2018.).
[1656]
Lin B C, Yang L L, Zheng M H, Qin L J, Liu S T, Sun Y X, Chen C Z, Liu G R. Chem. Eng. J., 2022, 441: 136102.
[1657]
Ma Y F, Wang P Y, Lin X Q, Chen T, Li X D. J. Hazard. Mater., 2021, 403: 123812.
[1658]
Hunsinger H, Seifert H, Jay K. Environ. Eng. Sci., 2007, 24(8): 1145.
[1659]
Ma Y F, Lin X Q, Chen Z L, Li X D, Lu S Y, Yan J H. Chemosphere, 2019, 228: 495.
[1660]
Fu J Y, Chen T, Wu H L, Lin X Q, Lin X Q, Lu S Y, Li X D. CIESC J., 2014, 65(9): 3687.
(付建英, 陈彤, 吴海龙, 林晓青, 陆胜勇, 李晓东. 化工学报, 2014, 65(9): 3687.).
[1661]
Ryan S P, Li X D, Gullett B K, Lee C W, Clayton M, Touati A. Environ. Sci. Technol., 2006, 40(22): 7040.
[1662]
Sharma S, Basu S M, Shetti N P, Nadagouda M N, Aminabhavi T M. Chem. Eng. J., 2021, 408: 127317.
[1663]
Gani K M, Bux F, Ahmad Kazmi A. Chemosphere, 2019, 234: 885.
[1664]
Kasonga T K, Coetzee M A A, Van Zijl C, Momba M N B. J. Environ. Manag., 2019, 240: 209.
[1665]
Becker D, Rodriguez-Mozaz S, Insa S, Schoevaart R, BarcelÓ D, de Cazes M, Belleville M P, Sanchez-Marcano J, Misovic A, Oehlmann J, Wagner M. Org. Process Res. Dev., 2017, 21(4): 480.
[1666]
Xiong J Q, Jeon B H, Govindwar S P, Kurade M B, Patil S M, Park J H, Kim K H. Environ. Sci. Pollut. Res., 2019, 26(33): 34552.
[1667]
Peng P, Yang H Y, Jia R B, Li L. Appl. Microbiol. Biotechnol., 2013, 97(12): 5585.
[1668]
Yu K, Chen L. Applied Chemical Industry, 2022, 51(10): 3005.
(余可, 陈蕾. 应用化工, 2022, 51(10): 3005.).
[1669]
Paço A, Duarte K, da Costa J P, Santos P S M, Pereira R, Pereira M E, Freitas A C, Duarte A C, Rocha-Santos T A P. Sci. Total Environ., 2017, 586: 10.
[1670]
Park S Y, Kim C G. Chemosphere, 2019, 222: 527.
[1671]
Li Q S, Yu F, Cuo G Z, Zhi Y, Lin M S. Environmental Protection, 2021, 49(10):13.
(李秋爽, 於方, 曹国志, 只艳, 林民松. 环境保护, 2021, 49(10): 13.).
[1672]
Peng Z, Jiang C, Yu S K. Environ. Prot., 2023, 51(7): 24.
(彭政, 姜晨, 余劭坤. 环境保护, 2023, 51(7): 24.).
[1673]
Ruan T, Jiang G B. Bulletin of the Chinese Academy of Sciences, 2020, 35(11): 1328.
(阮挺, 江桂斌. 中国科学院院刊, 2020, 35(11): 1328.).
[1674]
Yang H L, Xi Z G, Yan J, Zhang W. Journal of Ecotoxicology, 2009, 4 (1): 28.
(杨红莲, 袭著革, 闫峻, 张伟. 生态毒理学报, 2009, 4(1): 28.).
[1675]
Zhang C L, Liu B Y, Zou X P, Xing Y, Huang B R. Environmental Protection, 2021, 49(10): 20.
(张丛林, 刘宝印, 邹秀萍, 邢颖, 黄宝荣. 环境保护, 2021, 49(10): 20.).
[1676]
Jiang G B. New pollutant control will become an important factor affecting high-quality development[EB/OL]. (2023-11-13)[2024-07-01]. https://www.163.com/dy/article/IJEB78AI0519DDQ2.html.
[1677]
Zhai W J. Sci. Technol. Ind. China, 2013 (8): 11.
(翟万江. 中国科技产业, 2013 (8): 11.).
[1678]
Jiang G B. Fight for new pollutants in the 'new battlefield'[EB/OL]. (2023-11-16)[2024-07-01]. People 's Political Consultative Conference Network: https://www.rmzxb.com.cn/c/2023-11-16/3444546.shtml.
[1679]
Zheng X C, Zhang Y, Ben W W, Ma C M, Shang W, Liu J. Water Supply & Drainage, 2022, 58(6): 26.
(郑兴灿, 张昱, 贲伟伟, 马春萌, 尚巍, 刘静. 给水排水, 2022, 58(6): 26.).
[1680]
Jiang R. Environment, 2023, (8): 19.
(江镕. 环境, 2023, (8): 19.).
[1681]
Qian H M, Liu Y N, Yao L L, Qu G B, Shi J B, Jiang G B. Environmental Chemistry, 2024, 43(2): 1.
(钱慧敏, 刘艳娜, 姚林林, 曲广波, 史建波, 江桂斌. 环境化学, 2024, 43(2): 1.).
[1682]
Jiang G B, Song M Y. Environmental exposure and health effects. Beijing: Science Press, 2020.
(江桂斌, 宋茂勇. 环境暴露与健康效应. 北京: 科学出版社, 2020.).
[1683]
'The Second National Pollution Source Census Bulletin ' release meeting[EB/OL]. (2020-06-10) [2024-07-01]. https://www.mee.gov.cn/ywdt/hjywnews/202006/t20200610_783719.shtml.
[1684]
Wang J N. China Environment Supervision, 2022 (4): 44.
(王金南. 中国环境监察, 2022 (4): 44.).
[1685]
Wei Z Z, Xiang Y J, Guo Y, Huang B Z, Jiang Y D. Research of Environmental Science, 2022, 35(2): 443.
(韦正峥, 向月皎, 郭云, 黄炳昭, 蒋玉丹. 环境科学研究, 2022, 35 (2): 443.).
[1686]
Pan Y T, Zhang H X, Cui Q Q, Sheng N, Yeung L W Y, Guo Y, Sun Y, Dai J Y. Environ. Sci. Technol., 2017, 51(17): 9553.
[1687]
Feng X M, Chen X, Yang Y, Yang L P, Zhu Y M, Shan G Q, Zhu L Y, Zhang S F. Environ. Int., 2021, 157: 106824.
[1688]
Kudo N, Iwase Y, Okayachi H, Yamakawa Y, Kawashima Y. Toxicol. Sci., 2005, 86(2): 231.
[1689]
Han X, Kemper R, Jepson G. Drug & Chem. Toxicology, 2005, 28(2): 197.
[1690]
Kennedy G L, Butenhoff J L, Olsen G W, O’Connor J C, Seacat A M, Perkins R G, Biegel L B, Murphy S R, Farrar D G. Crit. Rev. Toxicol., 2004, 34(4): 351.
[1691]
Nakayama S, Harada K, Inoue K, Sasaki K, Seery B, Saito N, Koizumi A. Environmental Sciences, 2005, 12(6): 293.
[1692]
Huang X L. Eco-economy, 2023, 39(8): 5.
(黄显雷. 生态经济, 2023, 39(8): 5.).
[1693]
Zhao Z X, Zhang Y X, Wang L P, Liu R Z, Tang L. Res. Environ. Sci., 2023, 36(12): 2393.
(赵震雄, 张宇轩, 王丽平, 刘瑞志, 汤利. 环境科学研究, 2023, 36(12): 2393.).
[1694]
Su B, Zhang L Y, Chen L, Yu J, Wu B. Saf. Environ. Eng., 2022, 29(5): 91.
(苏贝, 张琳钰, 陈玲, 余静, 吴兵. 安全与环境工程, 2022, 29(5):91.).
[1695]
Cui F X, Zhang P, Cao S K, Zheng Z X, Zhu C, Ge L K. Acta Scien. Circum., 2024, 44(2): 136.
(崔芳溪, 张蓬, 曹胜凯, 郑智轩, 朱超, 葛林科. 环境科学学报, 2024, 44(2): 136.).
[1696]
Wang C H, Jiang P, Hu W, Wang Y Q. J. Environ. Health, 2011, 28(1): 82.
(王春花, 蒋萍, 胡伟, 王玉秋. 环境与健康杂志, 2011, 28(1): 82.).
[1697]
González-González R B, Sharma P, Singh S P, AmÉrico-Pinheiro J H P, Parra-Saldívar R, Bilal M, Iqbal H M N. Science of The Total Environment, 2022, 821: 153329.
[1698]
Lao J Y, Ruan Y F, Leung K M Y, Zeng E Y, Lam P K S. Crit. Rev. Environ. Sci. Technol., 2023, 53(7): 803.
[1699]
Zhao J M, Sun Y L, Teng F, Qin A N. Chinese Society for Environmental Sciences. Proceedings of the 2023 Annual Conference of Science and Technology, Chinese Society of Environmental Sciences (Ⅳ). Documentation and Information Center of the Chinese Academy of Sciences, 2023: 6.
(赵佳敏, 孙玉玲, 滕飞, 秦阿宁. 中国环境科学学会.中国环境科学学会2023年科学技术年会论文集(四).中国科学院文献情报中心, 2023: 6.).
[1700]
Xue Y H, Zhang M M, Xu Z Y, Feng L S, Sun Z X, Jia T, Liu D S. Fishery Sciences, 2023, 42(6): 1081.
(薛颖昊, 张明明, 徐志宇, 冯良山, 孙占祥, 贾涛, 刘东生. 水产科学, 2023, 42(6):1081.).
[1701]
Miao L Z, Deng Y X, Yang Z, Li W Y, Hou J. China Environmental Science, 2023, 43(11): 6156.
(苗令占, 邓肖雅, 杨铮, 李婉逸, 侯俊. 中国环境科学, 2023, 43(11): 6156.).
[1702]
Cui Y H. Masteral Dissertation of Northeast Agricultural University, 2023.
(崔耘赫. 东北农业大学硕士论文, 2023.).
[1703]
Li J C. Human exposure assessment and health risk assessment of environmental pollutants are difficult problems[EB/OL]. (2023-11-23)[2024-07-01]. Sohu.com: https://www.sohu.com/a/738142911_121719025.
[1704]
Chen X, Feng X M, Sun X, Li Y, Yang Y, Shan G Q, Zhu L Y. Environ. Sci. Technol., 2022, 56(9): 5632.
[1705]
Zhang Y H. Masteral Dissertation of Beijing University of Chemical Technology, 2022.
(张耀花. 北京化工大学硕士论文, 2022.).
[1706]
Jiang Z F, Liang F, Liu Y W, Wu L. Ecological Economy, 2022, 38(4): 5.
(姜忠峰, 梁峰, 刘艳伟, 吴丽. 生态经济, 2022, 38(4): 5.).
[1707]
Zhao J, Wang Y F, Jiang J C, Ge H H, Jian X D, Lin J. Asian Journal of Ecotoxicology, 2020, 15(1): 72.
(赵静, 王燕飞, 蒋京呈, 葛海虹, 菅小东, 林军. 生态毒理学报, 2020, 15(1): 72.).
[1708]
Zimmerman J B, Anastas P T, Erythropel H C, Leitner W. Science, 2020, 367(6476): 397.
[1709]
Wang J Y, Wang Z Y, Chen J W, Liu W J, Cui Y H, Fu Z Q, Song G B. Asian Chinese Science Bulletin, 2022, 67: 267.
(王佳钰, 王中钰, 陈景文, 刘文佳, 崔蕴晗, 傅志强, 宋国宝. 科学通报, 2022, 67: 267.).
[1710]
Nian M, Luo K, Luo F, Aimuzi R, Huo X N, Chen Q, Tian Y, Zhang J. Environ. Sci. Technol., 2020, 54(13): 8291.
[1711]
Zhang H X, Zhou X J, Sheng N, Cui R N, Cui Q Q, Guo H, Guo Y, Sun Y, Dai J Y. Environ. Sci. Technol., 2018, 52(21): 12809.
[1712]
Wang B, Deng S B, Huang J, Yu G. Environ. Chem., 2013, 32(7): 1129.
(王斌, 邓述波, 黄俊, 余刚. 环境化学, 2013, 32(7): 1129.).
[1713]
Zhang C L, Liu B Y, Zhou X P, Xing Y, Huang B R. Environmental Protection, 2021, 49(10): 20.
(张丛林, 刘宝印, 邹秀萍, 邢颖, 黄宝荣. 环境保护, 2021, 49(10): 20.).
[1714]
Wang L, Xing W L, Fan D L, Shi L L. Environmental Impact Assessment, 2023, 45(2): 1.
(王蕾, 邢维龙, 范德玲, 石利利. 环境影响评价, 2023, 45(2): 1.).
[1715]
Olker J H, Elonen C M, Pilli A, Anderson A, Kinziger B, Erickson S, Skopinski M, Pomplun A, LaLone C A, Russom C L, Hoff D. Environ. Toxicol. Chem., 2022, 41(6): 1520.
[1716]
RAIS. The risk assessment information system[EB/OL]. (2022-11-15)[2024-07-01]. https://rais.ornl.gov/index.html.
[1717]
Li C M, Zhang L L, Zheng Y T, Lin J, Hu J J. Modern Chemical Industry, 2019, 39(S1): 1.
(李仓敏, 张丽丽, 郑玉婷, 林军, 胡俊杰. 现代化工, 2019, 39(S1): 1.).
[1718]
OECD. Assessment of chemicals-OECD[EB/OL]. (2022-11-15)[2024-07-01]. https://www.oecd.org/chemicalsafety/risk-assessment/.
[1719]
Danish. Danish (Q) SAR Database[EB/OL]. (2022-11-15)[2024-07-01]. https://qsardb.food.dtu.dk/db/index.html.
[1720]
Zhang D C, Gong L L, Ding S Z, Tian Y, Jia C C, Liu D L, Han M Y, Cheng X X, Sun D D, Cai P L, Tian Y, Yuan L, Tu W Z, Chen J N, Wu A B, Hu Q N. Food Chem., 2020, 318: 126470.
[1721]
Wen Y Y, Yu Y J, Sun Q, Xiang M D, Dong C Y, Dang Y, Yang J. Research of Environmental Sciences, 2022, 35(11): 2608.
(温宥越, 于云江, 孙强, 向明灯, 董辰寅, 党垚, 杨剑. 环境科学研究, 2022, 35(11): 2608.).
[1722]
Wu A M, Zhao X L, Feng Y, Zhao T H, Wang H, Wu F C, Chen R. Research of Environmental Sciences, 2017, 30(4): 636.
(吴爱明, 赵晓丽, 冯宇, 赵天慧, 汪浩, 吴丰昌, 陈瑞. 环境科学研究, 2017, 30(4): 636.).
[1723]
Xu L J, Qiao X. Journal of Green Science and Technology, 2023, 25(2): 166.
(许立杰, 乔旭. 绿色科技, 2023, 25(2): 166.).
[1724]
Zhou X P, Li Z W, Zhang C L, Xu Y L, Huang B R, Lou Z Y. Environmental Ecology, 2022, 4(2/3): 111.
(邹秀萍, 李振玮, 张丛林, 胥彦玲, 黄宝荣, 楼紫阳. 环境生态学, 2022, 4(2/3): 111.).
[1725]
Collins C, Depledge M, Fraser R, Johnson A, Hutchison G, Matthiessen P, Murphy R, Owens S, Sumpter J. Environ. Int., 2020, 137: 105463.
[1726]
Meng X Y, Huang B R. Environmental Protection, 2023, 51(7): 9.
(孟小燕, 黄宝荣. 环境保护, 2023, 51(7): 9.).

Funding

special fund of State Key Joint Laboratory of Environmental Simulation and Pollution Control (Peking University)(23Y03ESPCP)
National Natural Science Foundation of China(22136001)
National Natural Science Foundation of China(22076204)
National Natural Science Foundation of China(U23A205)
National Natural Science Foundation of China(21936007)
National Natural Science Foundation of China(22376204)
National Natural Science Foundation of China(22320102005)
National Natural Science Foundation of China(22276198)
National Key Research and Development Program of China(2022YFC3902100)
National Key Research and Development Program of China(2022YFC3703200)
Second Tibetan Plateau Scientific Expedition and Research Program (STEP)(2019QZKK0605)
Consultative Review Project of Academic Divisions of the Chinese Academy of Sciences(2023-HX01-B-006)
Strategic Priority Research Program of the Chinese Academy of Sciences(XDB0750400)
Program for the Top Young-aged Talents of Higher Learning Institutions of Hebei, China(BJK2022042)
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