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Environmental fate and impact assessment of thiobencarb application in California rice fields using RICEWQ

机译:使用RICEWQ在加利福尼亚稻田中施用硫代苯威的环境命运和影响评估

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Thiobencarb is a commonly used herbicide in Northern California rice fields. Released paddy water containing thiobencarb may pose ecological risks to non-targeted organisms. In this research, the Rice Water Quality Model (RICEWQ) is equilibrium tested and then calibrated using monitoring data at field level. Then it is employed to assess the environmental fate and impacts of thiobencarb in the Colusa Basin, and the effects of different management practices on water use and thiobencarb exposures. The model predicted thiobencarb concentrations from rice fields for multiple years throughout the Basin, using input from California Pesticide Use Reporting (PUR) database, and assessed both the temporal/spatial distribution of thiobencarb exposure and potential acute toxicity on non-target organisms.Our study indicated that RICEWQ can accurately reflect the initial partitioning of thiobencarb in both paddy water and soil phases and capture the dynamics of thiobencarb at field level after calibration. Mandatory water holding is critical for reducing thiobencarb exposure in released paddy water. A thirty-day holding time reduces thiobencarb concentrations by 64% relative to a 6-day holding practice. The geo-spatial pattern of exposure in the study domain indicates the differing extents of pollutant levels and their distribution over space. "Risk zones" for different species were identified based on the geospatial patterns of thiobencarb exposure and the species specific susceptibilities of various non-target species to thiobencarb. (C) 2019 Published by Elsevier B.V.
机译:硫苯威是北加州稻田中常用的除草剂。释放出的含有硫代苯甲酸的稻田水可能对非目标生物造成生态风险。在这项研究中,对稻米水质模型(RICEWQ)进行平衡测试,然后使用田间水平的监测数据进行校准。然后将其用于评估Colusa盆地中硫代苯甲酸的环境命运和影响,以及不同管理实践对用水和硫代苯甲酸暴露的影响。该模型使用加利福尼亚农药使用报告(PUR)数据库的输入预测了整个盆地多年稻田中的硫代苯甲醚浓度,并评估了硫代苯甲酸酯暴露的时间/空间分布以及对非目标生物的潜在急性毒性。表明RICEWQ可以准确反映稻田水中和土壤中硫代苯甲酸的初始分配,并在校准后在田间水平捕获硫代苯甲酸的动力学。强制持水量对于减少释放的稻田水中硫代苯甲酸的暴露至关重要。相对于6天的保存​​时间,30天的保存时间可将苯硫威的浓度降低64%。在研究领域中,暴露的地理空间格局表明污染物水平的不同程度及其在空间中的分布。根据硫代苯甲酸暴露的地理空间格局以及各种非目标物种对硫代苯甲酸的物种比敏感性,确定了不同物种的“风险区”。 (C)2019由Elsevier B.V.发布

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