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Chlorination of organophosphorus pesticides in natural waters

机译:在天然水中氯化有机磷农药

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Unknown second-order rate constants for the reactions of three organophosphorus pesticides (chlorpyrifos, chlorfenvinfos and diazinon) with chlorine were determined in the present study, and the influence of pH and temperature was established. It was found that an increase in the pH provides a negative effect on the pesticides degradation rates. Apparent second-order rate constants at 20 ℃ and pH 7 were determined to be 110.9, 0.004 and 191.6 M~(-1) s~(-1) for chlorpyrifos, chlorfenvinfos and diazinon, respectively. A higher reactivity of chlorine with the phosphorothioate group (chlorpyrifos and diazinon) than with the phosphate moiety (chlorfenvinfos) could explain these results. Intrinsic rate constant for the elementary reactions of chlorine species with chlorpyrifos and diazinon were also calculated, leading to the conclusion that the reaction between hypochlorous acid and the pesticide is predominant at neutral pH. The elimination of these pesticides in surface waters was also investigated. A chlorine dose of 2.5 mg L~(-1) was enough to oxidize chlorpyrifos and diazinon almost completely, with a formation of trihalomethanes below the EU standard for drinking water. However, the removal of chlorfenvinfos was not appreciable. Therefore, chlorination is a feasible option for the removal of organophosphorus pesticides with phosphorothioate group during oxidation and disinfection processes, but not for the elimination of pesticides with phosphate moiety.
机译:本研究确定了三种有机磷农药(毒死rif,毒死v和二嗪农)与氯反应的未知二阶速率常数,并确定了pH和温度的影响。发现pH的升高对农药的降解速率具有负面影响。毒死rif,毒死v和重氮在20℃和pH 7下的表观二阶速率常数分别为110.9、0.004和191.6 M〜(-1)s〜(-1)。氯与硫代磷酸酯基(毒死rif和二嗪农)的反应性高于与磷酸基团(chlorfenvinfos)的反应性可以解释这些结果。还计算了氯类与毒死rif和二嗪农的基本反应的本征速率常数,从而得出结论,次氯酸与农药之间的反应在中性pH下占主导。还研究了消除地表水中这些农药的方法。 2.5 mg L〜(-1)的氯气量足以几乎完全氧化毒死and和二嗪农,并形成低于欧盟饮用水标准的三卤甲烷。但是,去除氯芬芬信息不明显。因此,氯化是在氧化和消毒过程中去除具有硫代磷酸酯基团的有机磷农药的可行选择,但对于消除具有磷酸盐部分的农药不是可行的选择。

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