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中国淮河江苏段有机氯农药及其混合物的分层水生生态风险评估

Tiered aquatic ecological risk assessment of organochlorine pesticides and their mixture in Jiangsu reach of Huaihe River, China.

作者信息

Wang Bin, Yu Gang, Huang Jun, Yu Yajuan, Hu Hongying, Wang Liansheng

机构信息

Department of Environmental Science and Engineering, POPs Research Centre, Tsinghua University, Beijing, 100084, China.

出版信息

Environ Monit Assess. 2009 Oct;157(1-4):29-42. doi: 10.1007/s10661-008-0512-2. Epub 2008 Aug 13.

Abstract

A tiered approach consisting of several probabilistic options was used to refine aquatic ecological risk assessment (ERA) of individuals and mixture of various Organochlorine Pesticides (OCPs) detected in Jiangsu reach of Huaihe River, China. The tiered approach ranged from determined Hazard Quotient (HQ) to Joint Probability Curve and Monte Carlo simulation based HQ-distribution. The results from all levels of ERA methods in the tiered framework are consistent with each other. The results show that Endrin, o,p'-Dichloro-Diphenyl-Trichloroethane (DDT), alpha-Endosulfan and beta-Endosulfan posed clear ecological risk; p,p'-DDT, p,p'-DDD, Aldrin, Heptachlorepoxide and Methoxychlor posed potential risk; while Hexachlorocyclohexanes, Heptachlor, Dieldrin and Hexachlorobenzene posed negligible risk. Further, based on the concept of total equivalent concentration, combined ecological risk caused by the mixture of all detected OCPs was calculated, and it proved to be significantly higher than the risk caused by any individual OCP. Despite inevitable uncertainties in current ERA, a comprehensive tiered approach can help to get a more credible result of risks of individuals and mixture of hazardous pollutants and screen the major risk pollutants contributing to the combined ecological risk.

摘要

采用了一种由几种概率选项组成的分层方法,以完善对中国淮河江苏段检测到的各种有机氯农药(OCPs)个体及混合物的水生生态风险评估(ERA)。该分层方法从确定的危害商(HQ)到联合概率曲线以及基于蒙特卡洛模拟的HQ分布。分层框架中各级ERA方法的结果相互一致。结果表明,异狄氏剂、o,p'-二氯二苯三氯乙烷(DDT)、α-硫丹和β-硫丹构成明显的生态风险;p,p'-DDT、p,p'-DDD、艾氏剂、环氧七氯和甲氧滴滴涕构成潜在风险;而六氯环己烷、七氯、狄氏剂和六氯苯构成的风险可忽略不计。此外,基于总等效浓度的概念,计算了所有检测到的OCPs混合物造成的综合生态风险,结果证明该风险显著高于任何单一OCP造成的风险。尽管当前的ERA存在不可避免的不确定性,但一种全面的分层方法有助于获得更可靠的有害污染物个体及混合物风险结果,并筛选出导致综合生态风险的主要风险污染物。

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