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Electrocoagulation removal of Cr(VI) from simulated wastewater using response surface methodology

机译:响应面法电凝法去除模拟废水中的六价铬

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The present study envisages the performance of a laboratory scale electrocoagulation system for the removal of Cr(VI) from 100 mgl~(-1) solution using Al-Al electrodes with an effective surface area of 100cm~2, and placed 15 mm apart. The interaction between voltage × time, and amperage × time best explained the Cr(VI) reduction efficiency with the coefficient of determination (R~2) being 0.8873 and 0.9270 respectively. Similarly, the square root of energy consumption in Cr(VI) reduction had a linear correlation with voltage × time (R~2 -0.8949), whereas, amperage × time better explained energy consumption (R~2 = 0.9400). Response surface methodology was used for the optimization of process variables (pH, voltage and treatment time), response modeling and predictions. Maximum Cr(VI) reduction efficiency of 90.4% was achieved at pH 5, 24 V and 24min treatment time, and the treatment consumed 137.2 KWh m~(-3) of electrical energy. Multiple response optimization for maximizing Cr(VI) reduction efficiency and minimizing energy consumption showed 49.6% Cr(Vl) removal at pH 5, 12.8V and 24min treatment time. The response models developed explained 95.2% variability for Cr(VI) reduction efficiency and 99.4% variability for energy consumption. Results of the prediction models were validated through laboratory scale batch experiments.
机译:本研究设想了一种实验室规模的电凝系统的性能,该系统使用有效表面积为100cm〜2且相距15 mm的Al-Al电极从100 mgl〜(-1)溶液中去除Cr(VI)。电压×时间和安培×时间之间的相互作用最好地解释了Cr(VI)的还原效率,其测定系数(R〜2)分别为0.8873和0.9270。同样,Cr(VI)还原过程中能耗的平方根与电压×时间(R〜2- -0.8949)呈线性关系,而安培数×时间可以更好地说明能耗(R〜2 = 0.9400)。响应面方法用于优化过程变量(pH,电压和处理时间),响应模型和预测。在pH 5、24 V和24min的处理时间下,Cr(VI)的最大还原效率达到90.4%,处理消耗了137.2 KWh m〜(-3)的电能。用于最大化Cr(VI)还原效率和最小化能耗的多重响应优化显示,在pH 5、12.8V和24分钟的处理时间下,去除了49.6%的Cr(VI)。开发的响应模型解释了Cr(VI)还原效率的95.2%变异性和能耗的99.4%变异性。通过实验室规模的批处理实验验证了预测模型的结果。

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