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Using electric flocculation to treat domestic laundry wastewater with different types of detergents

机译:使用电絮凝处理具有不同类型洗涤剂的家庭洗衣废水

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摘要

Laundry wastewater contains a large number of surfactants, suspended solids and other pollutants, and the COD value is high. If the wastewater is discharged into the water without harmless treatment, it will cause serious environmental pollution. The electrocoagulation process was selected as a promising environmentally friendly technology for treating domestic laundry wastewater. In this paper, the contribution of the liquid and powder detergents to the composition of domestic laundry wastewater was investigated. Combination of stainless steel and aluminum anode electrodes were compared. The effect of electrolysis time and current density on the removal of COD, LAS and turbidity of liquid detergent and powder detergent laundry wastewater were evaluated. The experimental results showed the electrocoagulation process has significant removal. It was found that the electrolysis time in 25 minute, current density in 5 mA/cm2 had optimum efficiency when considering efficient removal and economic energy consumption. For Liquid detergent laundry wastewater, COD, LAS and turbidity removal rates were 84%, 93% and 96%. For powder detergent laundry wastewater, COD, LAS and turbidity removal efficiency were 80%, 83% and 91%, respectively. Energy consumption in the optimum conditions for liquid detergent and powder detergent laundry wastewater by electrocoagulation were 7.324KWh/m~(3), 3.642KWh/m~(3), respectively, while using combination of stainless steel and aluminum anode electrodes equals 1 to 1.
机译:洗衣废水含有大量的表面活性剂,悬浮固体和其他污染物,COD值高。如果废水放入水中而无无害治疗,则会导致严重的环境污染。选择电凝工艺作为治疗国内洗衣废水的有前途的环保技术。本文研究了液体和粉末洗涤剂对国内衣物废水组成的贡献。比较不锈钢和铝阳极电极的组合。评价电解时间和电流密度对污染,LAS和粉末洗涤剂洗衣废水的去除的影响。实验结果表明,电凝过程具有显着的去除。发现电解时间在25分钟内,在考虑有效的去除和经济能耗时,5 mA / cm2的电流密度具有最佳效率。对于液体洗涤剂衣物废水,COD,LAS和浊度去除率为84%,93%和96%。对于粉末洗涤剂衣物废水,COD,LAS和浊度去除效率分别为80%,83%和91%。通过电凝使液体洗涤剂和粉末洗涤剂衣物废水的最佳条件下的能量消耗分别为7.324kWh / m〜(3),3.642kWh / m〜(3),同时使用不锈钢和铝阳极电极的组合等于1 1。

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