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首页> 外文期刊>The Korean journal of chemical engineering >Statistical optimization of chemical oxygen demand removal from wastewater by electrochemical oxidation
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Statistical optimization of chemical oxygen demand removal from wastewater by electrochemical oxidation

机译:电化学氧化去除废水中化学需氧量的统计优化

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The independent and combined effects of four variables (current density, electrolyte concentration, air flow rate and pH) on COD removal from wastewater by electrochemical oxidation were optimized using 2~4 full factorial experimental design. ANOVA was conducted to test the combined effects of the independent variables (the four control factors and time) on COD removal. To determine the reaction order of COD removal, 1st, 2nd or 3rd reaction orders were considered; 1st order kinetics showed the highest average r~2 value. The backward elimination regression method was used to determine the 1st order k_(COD) equation, and main effects and 2-way interaction effects on the 1st order equation were investigated. Using this equation, k_(COD) values for the 16 experimental conditions were predicted and COD values were calculated with respect to time. Finally, we tried to determine optimal operating conditions using color and COD removal as endpoints using the multiple response surface method.
机译:使用2〜4个全因子实验设计优化了四个变量(电流密度,电解质浓度,空气流速和pH)对电化学氧化去除废水中COD的独立和综合影响。进行方差分析以测试独立变量(四个控制因素和时间)对COD去除的综合影响。为了确定去除COD的反应顺序,考虑了第一,第二或第三反应顺序。一阶动力学表现出最高的平均r〜2值。用向后消除回归法确定一阶k_(COD)方程,研究了一阶方程的主要效应和双向相互作用。使用该方程式,可以预测16种实验条件的k_(COD)值,并计算相对于时间的COD值。最后,我们尝试使用颜色和COD去除作为终点,并使用多重响应曲面方法确定最佳操作条件。

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