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Treatment of non-biodegradable cutting oil wastewater by ultrasonication-Fenton oxidation process

机译:超声-Fenton氧化法处理难降解的切削油废水

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摘要

To treat cutting oil wastewater produced in metal surface treatment industry, Ultrasonication (US)-Fenton process, which is one of the advanced oxidation processes, was used. The optimum conditions to treat non-biodegradable pollutants using the US-Fenton process were that the application rates of H2O2 and FeSO4 were 10% and 3 g/L, respectively, the value of pH was 3, and the ultrasonication time was 30 min. It identified non-degradable pollutants such as ethylene diamine tetraacetic acid (EDTA) and Triethanolamine (TEA) in the cutting oil wastewater. TLC analysis of two compounds of treated water by the coagulation process was similar to that of raw water. However, TLC analysis of two compounds of US-Fenton process was different from that of raw water, meaning that US-Fenton process decomposed the EDTA and TEA. To study the possibility of application with the US-Fenton process to pilot plant, the pollutants treatment efficiency of three different methods, such as US-Fenton process, activated sludge process and coagulation process, in continuous experiments were compared. The removal rate of pollutants by the US-Fenton process according to the effluent time was higher than any other processes. The removal rates of COD, SS, T-N and T-P by US-Fenton process were 98, 93, 75 and 95%, respectively.
机译:为了处理金属表面处理行业产生的切削油废水,使用了超声波(US)-Fenton工艺,这是一种先进的氧化工艺。使用US-Fenton工艺处理不可生物降解污染物的最佳条件是H2O2和FeSO4的施用率分别为10%和3 g / L,pH值为3,超声处理时间为30分钟。它确定了切削油废水中的不可降解污染物,例如乙二胺四乙酸(EDTA)和三乙醇胺(TEA)。通过混凝过程对两种处理后的水进行的TLC分析与原水相似。但是,对US-Fenton工艺中的两种化合物进行的薄层色谱分析不同于原水,这意味着US-Fenton工艺对EDTA和TEA进行了分解。为了研究将US-Fenton工艺应用于中试工厂的可能性,在连续实验中比较了US-Fenton工艺,活性污泥工艺和混凝工艺这三种不同方法的污染物处理效率。根据出水时间,US-Fenton工艺的污染物去除率高于其他任何工艺。 US-Fenton工艺去除COD,SS,T-N和T-P的去除率分别为98%,93%,75%和95%。

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