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Degradation of Methomyl by Fenton Process in Neutral Environment

机译:中性环境中FENTON工艺降解甲氨基

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The purpose of this study aims to investigate the chemical degradation of aqueous methomyl by Fenton process in neutral environment The initial methomyl concentration was 20 ppm for the degradation experiments with different Fenton reagent dosages (i.e., molar concentration ratio of H2O2 to Fe2+). The results showed that Fenton process is effective to degrade methomyl around pH 7. The optimal dosage of Fenton reagent for best methomyl removal was equal to 1, which resulted in 80% methomyl removal. At the Fenton reagent dosages of 1 and 2, the methomyl degradation at the humic acid concentrations of 2.5, 5.0 and 10.0 ppm were evaluated as well. The presence of humic substances was found to have apparent enhancing effect for methomyl degradation due to the formation of locally-acid environment, which is more favorable for Fenton reaction. The mass spectrometry results showed that the hydroxyl radical may attack the single bonds to break the methomyl molecule into smaller fractions which are more easily to degrade either through physio-chemical or biological processes.
机译:本研究的目的旨在研究中性环境中的FENTON工艺的甲氨基水性降解初始甲磺酰浓度为20ppm,用于不同的芬顿试剂剂量的降解实验(即,H2O2至Fe2 +的摩尔浓度比。结果表明,芬顿工艺有效降解pH 7周围的甲甲7.最佳甲瘤去除的最优剂量等于1,导致8​​0%的甲瘤去除。在芬顿试剂剂量为1和2的情况下,还评价腐殖酸浓度为2.5,5.0和10.0ppm的甲甲基降解。发现腐殖物质的存在对于由于局部酸环境的形成,对甲瘤降解具有明显的增强作用,这对于芬顿反应更有利。质谱结果表明,羟基自由基可以攻击单键将甲蛋白分解成较小的级分,这通过物理化学或生物方法更容易降解。

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