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Recovery of DDT, Kepone, and Permethrin Added to Soil and Sediment Suspensions Incubated under Controlled Redox Potential and pH Conditions (Journal Version)

机译:在受控氧化还原电位和pH条件下孵育的土壤和沉积物悬浮液中添加DDT,Kepone和氯菊酯的回收率(期刊版)

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The study demonstrated that pH and oxidation-reduction conditions affect the persistence of pesticide compounds and that different compounds may respond differently to a given physicochemical environment. The stability of kepone was little affected by altered pH and oxidation conditions, DDT was markedly affected by oxidation conditions, and the degradation of permethrin was strongly influenced by both pH and redox potential conditions. The mechanism by which pH or redox potential affected the degradation of two of the three pesticides studied was not determined. It could have involved purely chemical processes. The effect also could be secondary through the influence of physicochemical conditions on the population and activity of microorganisms present and the subsequent metabolic action of these microbes on the compounds. A combination of these processes also could have been involved. Information on the effects of physicochemical conditions on the adsorption and degradation of specific pesticides should contribute to improved predictive capability concerning the fate of pesticide residues in various compartments of the environment.

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