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Degradation of alachlor using an enhanced sono-Fenton process with efficient Fenton's reagent dosages

机译:使用增强的Fenton试剂剂量的增强的Sono-Fenton工艺降解甲草胺

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摘要

In this study, an enhanced sono-Fenton process for the degradation of alachlor is presented. At high ultrasonic power, low pH, and in the presence of adequate Fenton's reagent dosages, alachlor degradation can reach nearly 100%. The toxicity of treated alachlor wastewater, which was measured by changes in cell viability, slightly decreased after the Fenton or ultrasound/H_2O_2 process and significantly decreased after the enhanced sono-Fenton process. A satisfactory relationship was observed between the total organic carbon removal and cell viability increment, indicating that alachlor mineralization is a key step in reducing the toxicity of the solution. The formation of alachlor degradation byproducts was observed during the oxidation process, in which the first step was the substitution of a chloride by a hydroxyl group. In conclusion, the enhanced sono-Fenton process was effective in the degradation and detoxification of alachlor within a short reaction time. Thus, the treated wastewater can then be passed through a biological treatment unit for further treatment.
机译:在这项研究中,提出了一种增强的声-芬顿降解甲草胺的方法。在高超声功率,低pH值和适当的Fenton试剂剂量下,甲草胺的降解率可达到近100%。通过细胞活力的变化来衡量的已处理甲草胺废水的毒性,在Fenton或超声/ H_2O_2处理后略有降低,而在增强的Sono-Fenton处理后则显着降低。在总有机碳去除量和细胞活力增加之间观察到令人满意的关系,表明甲草胺矿化是降低溶液毒性的关键步骤。在氧化过程中观察到了甲草胺降解副产物的形成,其中第一步是用羟基取代氯化物。总之,增强的声-芬顿过程在短的反应时间内可以有效地降解甲草胺和使其解毒。因此,处理后的废水然后可以通过生物处理单元进行进一步处理。

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