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Oxidation of carbaryl in aqueous solution by membrane anodic Fenton treatment

机译:膜阳极Fenton处理氧化水溶液中的甲萘威

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Carbaryl, a commonly used insecticide, was used in this study as a probe to investigate a new Fenton treatment technology, ion exchange membrane anodic Fenton treatment (membrane AFT). It was found that the degradation kinetics of carbaryl by membrane AFT obeys a previously published AFT model quite well. The NaCl (electrolyte) concentration in two half-cells was optimized for two kinds of membrane. Effects of the H2O2/Fe2+ ratio and the Fenton reagent delivery rate were also investigated. The treatment efficiency for anion membrane AFT is higher than for salt-bridge AFT under the same operating conditions. Decreasing the delivery rate of Fenton reagents and increasing the treatment temperature also increase the treatment efficiency. The activation energy for carbaryl degradation by anion membrane AFT was estimated to be 14.7 kJ(.)mol(-1). 1-Naphthol, 1,4-naphthoquinone, and (phthalic acid-O)yl N-methylcarbamate were detected by GC-MS as the degradation products of carbaryl by Fenton treatment. No decrease in carbaryl degradation rate was found during repeated use (100 times) of the anion exchange membrane. High and stable treatment efficiency can be achieved using an anion exchange membrane rather than a salt-bridge in the AFT system. Because of its effectiveness and convenience, the use of an ion exchange membrane as a substitute for the salt-bridge used in the previous AFT system has brought the AFT technology a major step closer to practical application.
机译:在本研究中,常用的杀虫剂甲萘威作为探针来研究新的Fenton处理技术,即离子交换膜阳极Fenton处理(膜AFT)。发现膜AFT对西芳基的降解动力学很好地遵循了先前发表的AFT模型。针对两种膜优化了两个半电池中的NaCl(电解质)浓度。还研究了H2O2 / Fe2 +比和Fenton试剂传输速率的影响。在相同的操作条件下,阴离子膜AFT的处理效率高于盐桥AFT。降低芬顿试剂的递送速率和提高处理温度也可以提高处理效率。阴离子膜AFT降解甲萘威的活化能估计为14.7 kJ(。)mol(-1)。通过GC-MS检测到1-萘酚,1,4-萘醌和(邻苯二甲酸-O)基N-甲基氨基甲酸酯作为芬顿处理的甲萘威的降解产物。在阴离子交换膜的重复使用(100次)过程中,未发现西维因降解速率降低。使用阴离子交换膜而不是AFT系统中的盐桥可以实现高而稳定的处理效率。由于它的有效性和便利性,使用离子交换膜代替以前的AFT系统中使用的盐桥,使AFT技术朝着实际应用迈出了重要的一步。

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