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Fructose as a novel photosensitizer: Characterization of reactive oxygen species and an application in degradation of diuron and chlorpyrifos

机译:果糖作为新型光敏剂:活性氧的表征及其在敌草隆和毒死rif降解中的应用

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The objective of this study was to identify reactive oxygen species (ROS) generated from the exposure of fructose solution to the 254 nm ultraviolet (UV) light and evaluate whether fructose can be used as a photosensitizer for accelerated photo-degradation of diuron and chlorpyrifos. We demonstrated that hydrogen peroxide, singlet oxygen (O-1(2)) and acidic photolysis products were generated upon UV exposure of fructose. Consistent with these findings, UV induced degradation of chlorpyrifos and diuron was accelerated by the presence of 500 mM fructose. The average first order photo-degradation rate constants in the absence and presence of 500 mM fructose were 0.92 and 2.07 min(-1) respectively for diuron and 0.04 and 0.07 min(-1) for chlorpyrifos. The quantum yields (Phi) for direct photo-degradation of diuron and chlorpyrifos were 0.003 and 0.001 respectively. In the presence of 500 mM fructose, these values increased to 0.006 and 0.002 respectively. Thus, fructose may be an effective photosensitizer. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是确定果糖溶液在254 nm紫外线(UV)照射下产生的活性氧(ROS),并评估果糖是否可以用作光敏剂来加速敌草隆和毒死rif的光降解。我们证明过氧化氢,单线态氧(O-1(2))和酸性光解产物是果糖在紫外线下产生的。与这些发现一致,存在500 mM果糖可加快紫外线诱导的毒死rif和双嘧啶的降解。在不存在和存在500 mM果糖的情况下,对敌草隆的平均一阶光降解速率常数分别为0.92和2.07 min(-1),而毒死rif的平均降解速率常数分别为0.04和0.07 min(-1)。对敌草隆和毒死rif进行直接光降解的量子产率(Phi)分别为0.003和0.001。在存在500 mM果糖的情况下,这些值分别增加到0.006和0.002。因此,果糖可以是有效的光敏剂。 (C)2015 Elsevier Ltd.保留所有权利。

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