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Determination of optimum operating parameters for Acid Yellow 36 decolorization by electro-Fenton process using BDD cathode

机译:使用BDD阴极通过电芬顿法确定酸性黄36脱色的最佳操作参数

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摘要

The aim of this work was to apply an experimental response surface methodology (RSM) to optimization of the Acid Yellow 36 (Ay 36) decolorization procedure the electro-Fenton process (EFP) using boron-doped diamond (BDD) electrodes. RSM was used for the evaluation of different operation parameters, process modelling, optimization study, and model prediction analysis. Optimization of the electro-Fenton process for decolorization of 60 mg L~(-1) of synthetic azo dye solution was analyzed using a central composite design (CCD) in RSM. The response variable for the experimental design was a percentage of the color removal. The three considered factors, at two different levels, were current density 0 = 8 and 23 mA/cm~2), catalytic Fe~(2+) concentrations (0.1 and 0.3 mmol L~(-1)), and electrolysis time (10 and 50 min). According to RSM, the optimum operation conditions were Fe~(2+)=0.24 mmol L~(-1),j = 23 mA/cm2, and t=48min. The maximal decolorization efficiency of 98% was achieved under these conditions.
机译:这项工作的目的是将实验响应表面方法(RSM)应用到使用掺硼金刚石(BDD)电极的电子芬顿工艺(EFP)来优化酸性黄36(Ay 36)脱色程序。 RSM用于评估不同的操作参数,过程建模,优化研究和模型预测分析。在RSM中使用中央复合设计(CCD)分析了用于合成偶氮染料溶液60 mg L〜(-1)脱色的电子Fenton工艺的优化。实验设计的响应变量是颜色去除的百分比。在两个不同的水平上考虑的三个因素是:电流密度0 = 8和23 mA / cm〜2),催化的Fe〜(2+)浓度(0.1和0.3 mmol L〜(-1))以及电解时间( 10和50分钟)。根据RSM,最佳操作条件为Fe〜(2 +)= 0.24 mmol L〜(-1),j = 23 mA / cm2,t = 48min。在这些条件下可达到98%的最大脱色效率。

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