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Assessing Environmental Fate of β-HCH in Asian Soil and Association with Environmental Factors

机译:亚洲土壤中乙型六氯环己烷的环境命运评估及与环境因素的关系

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摘要

Chinese Gridded Pesticide Emission and Residue Model was applied to simulate long-term environmental fate of β-HCH in Asia spanning 1948-2009- The model captured well the spatiotemporal variation of β-HCH soil concentrations across the model domain. β-HCH use in different areas within the model domain was simulated respectively to assess the influence of the different sources of β-HCH on its environment fete. A mass center of soil residue (MCSR) was introduced and used to explore environmental factors contributing to the spatiotemporal variation of β-HCH soil residue. Results demonstrate that die primary emission dominates β- HCH soil residues during the use of this pesticide. After phase-out of the pesticide in 1999, the change in β-HCH soil residues has been associated with the Asian summer monsoon, featured by northward displacement of the MCSR The displacement from several major sources in China and northeastern Asia shows a downward trend at a 95% confidence level, largely caused by environmental degradation and northward delivery of β-HCH under cold condition in northern area. The MCSRs away from the India and southern and southeastern Asia sources show a rapid northward displacement at a 99% confidence level, featuring the cold trapping effect of the Tibetan Plateau.
机译:应用中国网格化农药排放和残留模型模拟了1948-2009年亚洲β-六氯环己烷的长期环境命运,该模型很好地捕捉了整个模型域中β-六氯环己烷土壤浓度的时空变化。分别模拟了模型域内不同区域中的乙型六氯环己烷使用情况,以评估不同来源的乙型六氯环己烷对其环境影响的影响。介绍了土壤残留物的质心(MCSR),并用于探索导致β-六氯环己烷土壤残留物时空变化的环境因素。结果表明,在使用这种农药的过程中,一次排放主要控制着β-六氯环己烷的土壤残留。自1999年淘汰该农药以来,β-六氯环己烷土壤残留量的变化与亚洲夏季风有关,其特征是MCSR向北位移。中国和东北亚的几个主要来源的位移在2006年呈下降趋势。 95%的置信水平,主要是由于北部地区在寒冷条件下环境退化和北六氯环己烷向北输送所致。远离印度以及南亚和东南亚资源的MCSRs以99%的置信度向北快速移位,具有青藏高原的冷阱效应。

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  • 来源
    《Environmental Science & Technology》 |2012年第17期|p.9525-9532|共8页
  • 作者单位

    Laboratory of Coastal Zone Environmental Processes, Yantai Institute of Coastal Zone Research(YIC), Chinese Academy of Sciences (CAS)j Shandong Provincial Key Laboratory of Coastal Zone Environmental Processes, YICCAS, Yantai Shandong 264003, China,State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, 510640, China;

    Laboratory of Coastal Zone Environmental Processes, Yantai Institute of Coastal Zone Research(YIC), Chinese Academy of Sciences (CAS)j Shandong Provincial Key Laboratory of Coastal Zone Environmental Processes, YICCAS, Yantai Shandong 264003, China;

    Air Quality Research Division, Science and Technology Branch, Environment Canada, 4905 DufFerin Street, Toronto, Ont, M3H 5T4, Canada;

    State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, 510640, China;

    Air Quality Research Division, Science and Technology Branch, Environment Canada, 4905 DufFerin Street, Toronto, Ont, M3H 5T4, Canada;

    State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, 510640, China;

    State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, 510640, China;

    Laboratory of Coastal Zone Environmental Processes, Yantai Institute of Coastal Zone Research(YIC), Chinese Academy of Sciences (CAS)j Shandong Provincial Key Laboratory of Coastal Zone Environmental Processes, YICCAS, Yantai Shandong 264003, China;

    Laboratory of Coastal Zone Environmental Processes, Yantai Institute of Coastal Zone Research(YIC), Chinese Academy of Sciences (CAS)j Shandong Provincial Key Laboratory of Coastal Zone Environmental Processes, YICCAS, Yantai Shandong 264003, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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