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首页> 外文期刊>SAR and QSAR in Environmental Research >Modelling peak exposure of pesticides in terrestrial and aquatic ecosystems: importance of dissolved organic carbon and vertical particle movement in soil
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Modelling peak exposure of pesticides in terrestrial and aquatic ecosystems: importance of dissolved organic carbon and vertical particle movement in soil

机译:陆地和水生生态系统杀虫剂的峰值暴露:溶解有机碳和垂直颗粒运动在土壤中的重要性

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In the present work, an existing vegetation/air/litter/soil model (SoilPlusVeg) was modified to improve organic chemical fate description in terrestrial/aquatic ecosystems accounting for horizontal and vertical particulate organic carbon (POC) transport in soil. The model was applied to simulate the fate of three pesticides (terbuthylazine, chlorpyrifos and etofenprox), characterized by increasing hydrophobicity (log K-OW from about 3 to 7), in the soil compartment and more specifically, their movement towards surface and groundwater through infiltration and runoff processes. The aim was to evaluate the role of dissolved organic carbon (DOC) and POC in the soil in influencing the peak exposure of pesticides in terrestrial/aquatic ecosystems. Simulation results showed that while terbuthylazine and chlorpyrifos dominated the free water phase (CW-FREE) of soil, etofenprox was mainly present in soil porewater as POC associated chemical. This resulted in an increase of this highly hydrophobic chemical movement towards groundwater and surface water, up to a factor of 40. The present work highlighted the importance of DOC and POC as an enhancer of mobility in the water of poor or very little mobile chemicals. Further studies are necessary to evaluate the bioavailability change with time and parameterize this process in multimedia fate models.
机译:在目前的工作中,修改了现有的植被/空气/垃圾/土壤模型(土壤Plusveg),以改善陆地/水生生态系统中的有机化学命运描述,核算土壤中水平和垂直微粒有机碳(POC)输送。应用该模型来模拟三种农药(Terbuthylazine,烟草和Etofenprox)的命运,其特征在于在土隔室中增加疏水性(从约3至7),更具体地,它们朝向表面和地下水的运动渗透和径流流程。目的是评估溶解的有机碳(DOC)和POC在土壤中的作用,影响陆地/水生生态系统中农药的峰值暴露。仿真结果表明,虽然Terbuthylazine和氯吡啶罗斯在土壤中占据了游离水相(无CW的),但Etofenprox主要存在于土壤沉积物中作为PoC相关化学品。这导致这种高度疏水性化学运动朝地下水和地表水的增加,高达40倍。目前的工作强调了DOC和POC作为穷人或非常小的移动化学品水中流动性的增强剂的重要性。需要进一步的研究来评估生物利用度随时间变化,并在多媒体命运模型中参数化这一过程。

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