首页> 外文期刊>International Journal of Environmental Research >Box-Behnken Response Surface Design for Modeling and Optimization of Electrocoagulation for Treating Real Textile wastewater
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Box-Behnken Response Surface Design for Modeling and Optimization of Electrocoagulation for Treating Real Textile wastewater

机译:Box-Behnken响应面设计,用于处理真实纺织废水的电絮凝建模和优化

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摘要

The textile industry uses large amounts of water that becomes wastewater contaminated with salts, starches, acids, peroxides, enzymes, dyes, and other pollutants. Here, we optimized the treatment of textile industry wastewater by electrocoagulation (EC) using aluminum and iron electrodes employing a response surface methodology (RSM) approach. Hence, the effects and interactions of the variables of the process (pH, current density, and reaction time) on turbidity and chemical oxygen demand (COD) removal were evaluated using the Box-Behnken mathematical model in a monopolar batch reactor. Analyses of variance were also performed to estimate model responses and optimum conditions. After determining the mathematically optimized variables of the EC process, its efficiency in the removal of heavy metals and cations from textile wastewater was also evaluated for both the electrodes under study. Experimental data yielded 89.92 and 86.38 in COD removal, and 99.75 and 97.67 in turbidity removal for Al and Fe electrodes. Moreover, the theoretical maximum removals are 93.58 and 87.08 of COD for Al and Fe electrodes and 100 of TB for both electrodes. The removal of U, As, V, Si, P, and Pb was above 90 with both electrode materials. Although both electrodes removed part of the cations, the aluminum electrodes yielded higher removals of Ca+2 and Na+1 (46.19 and 31.94). Therefore, our study demonstrates that the RSM and Box-Behnken are suitable for optimizing the electrocoagulation process to treat textile wastewater and that the EC is an efficient technology for removing different organic and inorganic pollutants.
机译:纺织工业使用大量的水,这些水成为被盐、淀粉、酸、过氧化物、酶、染料和其他污染物污染的废水。在这里,我们采用响应面法(RSM)方法,使用铝和铁电极通过电絮凝(EC)优化了纺织工业废水的处理。因此,在单极间歇式反应器中使用 Box-Behnken 数学模型评估了过程变量(pH、电流密度和反应时间)对浊度和化学需氧量 (COD) 去除的影响和相互作用。还进行了方差分析以估计模型响应和最佳条件。在确定了EC工艺的数学优化变量后,还评估了其从纺织废水中去除重金属和阳离子的效率。实验数据显示,Al和Fe电极的COD去除率为89.92%和86.38%,浊度去除率为99.75%和97.67%。此外,Al和Fe电极的理论最大去除率分别为93.58%和87.08%的COD,以及两个电极的100%的TB。两种电极材料对U、As、V、Si、P和Pb的去除率均在90%以上。虽然两个电极都去除了部分阳离子,但铝电极的Ca+2和Na+1去除率更高(46.19%和31.94%)。因此,我们的研究表明,RSM和Box-Behnken适用于优化电絮凝工艺以处理纺织废水,并且EC是去除不同有机和无机污染物的有效技术。

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