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Organophosphate Pesticide Degradation Under Drinking Water Treatment Conditions: Modeling Perspectives

机译:饮用水处理条件下有机磷酸盐农药降解:建模视角

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The oxidation rate of chlorpyrifos was examined in the pH range of 6-11 in the presence of free chlorine. As pH decreased, the observed rate of chlorpyrifos oxidation increased. Hypochlorous acid appears to be the primary oxidant responsible for chlorpyrifos oxidation. The reaction order with respect to both free chlorine and chlorpyrifos was found to be first order. A simple model was developed to predict the apparent second order rate coefficient over the pH range examined. The objects of this work were to develop experimental approaches and a modeling philosophy to study degradation of organophosphate pesticides as a class under drinking water treatment conditions.
机译:在6-11的PH范围内检查氯吡啶的氧化速率在游离氯的存在下。作为pH降低,观察到的紫外氧化率升高。次氯酸似乎是负责紫外氧化的主要氧化剂。发现关于游离氯和氯吡啶的反应顺序是第一顺序。开发了一种简单的模型以预测所检查的pH范围内的表观二阶速率系数。这项工作的目的是制定实验方法和建模理念,以研究有机磷农药的降解作为饮用水处理条件下的课堂。

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