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Treatment of Pesticide Wastewater by Physicochemical and Fenton Processes

机译:理化和芬顿法处理农药废水

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The process of pesticide removal from industrial wastewater using which chemical,vacuum-chemical and Fenton's reactions have been analyzed.Fenton process is attractive alternative to conventional oxidation processes in effluent treatment of recalcitrant compounds.The aim of this study is to evaluate the efficiency of chemical,vacuum and Fenton processes for the reduction of chemical oxygen demand in wastewaters from pesticide industry.In this study wastewater from pesticide industry was used.Whereas in the chemical procedure [Ca(OH)2 and KMnO4],the chemical oxygen demand removal efficiency is 94.9 %;in the vacuum-Ca(OH)2 + KMnO4 system (with 250 mg/L KMnO4,1 mL H2SO4,5 mg/L polyelectrolyte and 2000 mg/L CaOH application) this efficiency was 97.8 %;and a 99.8 % KOI removal efficiency was obtained by the Fenton process (the optimum ratio of [Fe~(2+)] to [H2O2] was 1: 1,56 (mM/mM),at pH 3.0).
机译:分析了化学,真空化学和芬顿反应的工业废水中农药去除过程。芬顿过程是难处理化合物的废水处理中常规氧化过程的有吸引力的替代方法。本研究的目的是评估化学物质的效率,真空和Fenton工艺来减少农药工业废水中的化学需氧量。本研究使用农药工业废水。而在化学程序[Ca(OH)2和KMnO4]中,化学需氧量去除效率为94.9%;在真空Ca(OH)2 + KMnO4系统(含250 mg / L KMnO4、1 mL H2SO4、5 mg / L聚电解质和2000 mg / L CaOH的应用中)的效率为97.8%;效率为99.8%通过Fenton工艺获得KOI去除效率(在pH 3.0下,[Fe〜(2+)]与[H2O2]的最佳比例为1:1.56(mM / mM))。

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