Spatiotemporal distribution, source apportionment and risk assessment of typical hormones and phenolic endocrine disrupting chemicals in environmental and biological samples from the mariculture areas in the Pearl River Delta, China

The present work studied the levels, distribution, potential sources, ecological and human health risks of typical hormones and phenolic endocrine disrupting chemicals (EDCs) in the mariculture areas of the Pearl River Delta (PRD), China. The environmental levels of 11 hormones (6 estrogens, 4 proge...

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Veröffentlicht in:The Science of the total environment 2022-02, Vol.807 (Pt 1), p.150752-150752, Article 150752
Hauptverfasser: Chen, Yupeng, Xie, Haiwen, Junaid, Muhammad, Xu, Nan, Zhu, Youchang, Tao, Huchun, Wong, Minghung
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Sprache:eng
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Zusammenfassung:The present work studied the levels, distribution, potential sources, ecological and human health risks of typical hormones and phenolic endocrine disrupting chemicals (EDCs) in the mariculture areas of the Pearl River Delta (PRD), China. The environmental levels of 11 hormones (6 estrogens, 4 progestogens, and 1 androgen) and 2 phenolic EDCs were quantified in various matrices including water, sediment, cultured fish and shellfish. Ultrahigh performance liquid chromatography-triple quadrupole tandem mass spectrometry analyses showed that all the 13 target compounds were detected in biotic samples, whereas 10 were detected in water and sediment, respectively. The total concentrations ranged from 35.06–364.53 ng/L in water and 6.31–29.30 ng/g in sediment, respectively. The average contaminant levels in shellfish (Ostrea gigas, Mytilus edulis and Mimachlamys nobilis) were significantly higher than those in fish (Culter alburnus, Ephippus orbis and Ephippus orbis). Source apportionment revealed that the pollution of hormones and phenolic EDCs in PRD mariculture areas was resulted from the combination of coastal anthropogenic discharges and mariculture activities. The hazard quotient values of the contaminants were all less than 1, implying no immediate human health risk. Overall, the present study is of great significance for scientific mariculture management, land-based pollution control, ecosystem protection, and safeguarding human health. [Display omitted] •Hormones and phenolic EDCs were measured in matrices of the PRD mariculture areas.•Most of the chemicals were detected in water, sediment, and aquatic products.•Only E2β and EE2 posed high ecological risk to fish at several sites.•Human health was not affected via consumption of aquatic products from the PRD.
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2021.150752