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Degradation and Transport of the Chiral Herbicide S-Metolachlor at the Catchment Scale: Combining Observation Scales and Analytical Approaches

机译:流域尺度上手性除草剂S-甲草胺的降解和运输:结合观察尺度和分析方法

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摘要

Evaluating pesticide degradation and transport in the soil-surface water continuum remains challenging at the catchment scale. Here we investigated the dissipation of the chiral herbicide S-metolachlor (SM) in soil in relation to its transport in runoff. Analyses of SM, transformation products (TPs, i.e, MESA and MOXA), and enantiomers were combined to determine SM degradation at plot and catchment scales. Assisted by modeling, we found that the main dissipation pathways of SM at the plot scale were degradation (7196), volatilization (596), leaching (8%) and runoff (396), while 1396 of SM persisted in topsoil. This highlights the relevance of degradation processes. TPs could trace the different discharge contributions: MOXA prevailed in runoff water, whereas MESA was associated with slower flowpaths. At the catchment outlet, 1196 of SM applied was exported in dissolved or particulate phases or as TPs (in SM mass equivalent). A single event 1 week after application exported 96% of SM, which underlined the potential importance of severe rainfall on seasonal SM export. Enantioselective degradation enriched SM in the R-enantiomer over longer periods and may be associated with slower flowpaths. Altogether, combining observation scales and analytical approaches enabled to quantify SM degradation and to identify how degradation controls SM export at the catchment scale.
机译:在集水区范围内,评估农药在土壤-地表水连续体中的降解和迁移仍然具有挑战性。在这里,我们调查了手性除草剂S-异丙甲草胺(SM)在土壤中的耗散与其在径流中的运输有关。对SM,转化产物(TPs,即MESA和MOXA)和对映异构体进行分析,以确定地块和集水区规模的SM降解情况。在建模的辅助下,我们发现在样地尺度上,SM的主要消散途径是降解(7196),挥发(596),淋失(8%)和径流(396),而SM的1396持续存在于表土中。这突出了降解过程的相关性。 TP可以追踪不同的排放贡献:径流水中普遍使用MOXA,而MESA与较慢的流路相关。在集水区出口处,以溶解相或颗粒相或以TP形式(以SM质量当量计)出口了1196吨施用的SM。施用后1周的一次事件出口了96%的SM,这突显了强降雨对季节性SM出口的潜在重要性。在更长的时间内,对映选择性降解会富集R-对映体中的SM,并且可能与较慢的流动路径有关。总而言之,将观察量表和分析方法结合起来可以量化SM退化并确定退化如何控制流域尺度SM的出口。

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  • 来源
    《Environmental Science & Technology》 |2017年第22期|13231-13240|共10页
  • 作者单位

    Laboratory of Hydrology and Geochemistry of Strasbourg (LHyGeS UMR 7517), University of Strasbourg, CNRS, ENGEES, 1 Rue Blessig, 67084 Strasbourg cedex, France ,LETG-Angers (UMR CNRS 6S54), University of Angers, 2 bd Lavoisier, 49045 Angers, France;

    Laboratory of Hydrology and Geochemistry of Strasbourg (LHyGeS UMR 7517), University of Strasbourg, CNRS, ENGEES, 1 Rue Blessig, 67084 Strasbourg cedex, France;

    Laboratory of Hydrology and Geochemistry of Strasbourg (LHyGeS UMR 7517), University of Strasbourg, CNRS, ENGEES, 1 Rue Blessig, 67084 Strasbourg cedex, France;

    Atmospheric Physical Chemistry Department (1CPEES UMR 7515), University of Strasbourg, CNRS, 1 rue Blessig, 67084 Strasbourg cedex, France;

    Laboratory of Hydrology and Geochemistry of Strasbourg (LHyGeS UMR 7517), University of Strasbourg, CNRS, ENGEES, 1 Rue Blessig, 67084 Strasbourg cedex, France;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 13:57:55

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