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首页> 外文期刊>Chemical Engineering and Processing >Integrated ozone-electrocoagulation process for the removal of pollutant from industrial effluent: Optimization through response surface methodology
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Integrated ozone-electrocoagulation process for the removal of pollutant from industrial effluent: Optimization through response surface methodology

机译:集成的臭氧电凝工艺,用于去除工业废水中的污染物:通过响应面法进行优化

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In this study, the efficiency of ozonation, electrocoagulation and ozone assisted electrocoagulation processes for removal of pollutants from effluent of distillery industry was compared. The experimental results showed that ozone assisted electrocoagulation process yielded higher pollutant removal than ozone and electrocoagulation processes alone. Response surface methodology based on central composite design was used to optimize various operating parameters of the ozone assisted electrocoagulation process for the treatment of industrial effluent. The effects of five independent parameters such as current density(X-1), COD concentration(X-2), effluent pH(X-3), inter-electrode distance (X-4) and electrolysis time(X-5) on the% COD removal and power consumption were investigated. A quadratic model was used to predict the COD removal and power consumption in different conditions. The significance of independent variables and their interaction were evaluated by ANOVA. In order to achieve the maximum COD removal and minimum power consumption, the optimum conditions were obtained by mathematical and statistical methods. The results showed that maximum COD removal efficiency could be achieved at optimum conditions of X-1 - 3A/dm(2), X-2 - 30 00 ppm, X-3 - 7, X-4 - 1.8 cm and X-5 - 5 h. In conclusion, hybrid electrocoagulation process could be applied successfully for removing pollutants from effluent. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项研究中,比较了臭氧化,电凝和臭氧辅助电凝工艺从酿酒厂废水中去除污染物的效率。实验结果表明,臭氧辅助电凝过程比单独使用臭氧和电凝过程产生的污染物去除率更高。基于中央复合设计的响应面方法用于优化臭氧辅助电凝工艺处理工业废水的各种操作参数。电流密度(X-1),化学需氧量浓度(X-2),废水pH(X-3),电极间距离(X-4)和电解时间(X-5)等五个独立参数对研究了COD去除率和功耗的百分比。二次模型用于预测不同条件下的COD去除和功耗。自变量的重要性及其相互作用通过方差分析评估。为了实现最大的COD去除和最小的功耗,通过数学和统计方法获得了最佳条件。结果表明,在最佳条件下,X-1-3A / dm(2),X-2-30 00 ppm,X-3-7,X-4-1.8 cm和X-5可实现最大的COD去除效率。 -5小时总之,混合电凝工艺可以成功地用于去除废水中的污染物。 (C)2016 Elsevier B.V.保留所有权利。

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