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Removal of ecotoxicological matters from tannery wastewater using electrocoagulation reactor: modelling and optimization

机译:使用电凝反应器去除制革废水中的生态毒理物质:建模和优化

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This study investigated the possibilities of electrocoagulation reactor to reduce the colour, oil and grease and chemical oxygen demand (COD) from tannery industry wastewater using stainless steel electrodes. Effects of pH, electrolysis time, current density and NaCl dose were investigated using four factors three-level Box-Behnken response surface design coupled with response surface methodology. From the experimental results, second-order polynomial mathematical models were developed to describe the treatment process statistically. Analysis of variance was used to evaluate the adequacy of developed mathematical models. Three-dimensional (3D) response surface plots were constructed to study the interactive effects of process variables on the treatment efficiency. Optimum operating conditions such as pH of 9, electrolysis time of 40min, current density 20 mAcm(-2) and sodium chloride (NaCl) dose of 1,016mgl(-1) show 92, 95 and 80% of colour, oil and grease, and COD removal, respectively. The electrical energy consumption of the present treatment process in optimum condition was found to be 6 KWhm(-3). The obtained results indicate that EC reactor is the best option to treat tannery industry wastewater in terms of removal efficiency and operating cost.
机译:这项研究调查了电凝反应器使用不锈钢电极减少制革工业废水中的颜色,油脂和化学需氧量(COD)的可能性。使用四因素三级Box-Behnken响应面设计和响应面方法,研究了pH,电解时间,电流密度和NaCl剂量的影响。从实验结果,发展了二阶多项式数学模型,以统计学方式描述处理过程。方差分析用于评估已开发的数学模型的适当性。构建了三维(3D)响应表面图,以研究过程变量对处理效率的交互作用。最佳操作条件,例如pH值为9,电解时间为40min,电流密度为20 mAcm(-2)和氯化钠(NaCl)剂量为1,016mgl(-1),可显示92%,95%和80%的颜色,油和油脂,和COD去除。发现本处理过程在最佳条件下的电能消耗为6 KWhm(-3)。获得的结果表明,就去除效率和运行成本而言,EC反应器是处理制革工业废水的最佳选择。

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