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Investigation of enhanced Fenton process (EFP) in color and COD removal of wastewater containing Acid Red 18 by response surface methodology: evaluation of EFP as post treatment

机译:通过响应面法研究增强的Fenton工艺(EFP)对酸性红18废水的颜色和COD去除:评估EFP作为后处理

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The purpose of this study was to investigate the application of enhanced Fenton process (EFP) using zero-valent iron combined with ultrasonic irradiation for treatment of wastewater containing acid red 18 (AR18) by response surface methodology. According to the analysis of variance results, the model presents high R-2-value of 98.2 and 98.3% for the COD and AR18 dye removal, respectively, indicating that the model was successful. In this paper, the results of the monitoring of oxidation reduction potential and dissolved oxygen were presented to obtain the reaction time. At the 60min of contact time, AR18 dye and COD removal efficiency raised more than 30 and 5% with the increase in Fenton reagents, respectively. Effluent without the presence of phosphate indicated 40% increment of AR18 dye removal in comparison to the influent with the presence of phosphate. Considering the EFP as post treatment of a sequencing batch reactor, the combination system improved the efficiency of high azo dye AR18 concentration wastewater treatment.
机译:这项研究的目的是通过响应表面方法研究零价铁结合超声辐照的增强Fenton工艺(EFP)在含酸性红18(AR18)废水处理中的应用。根据方差结果分析,该模型对于COD和AR18染料的去除分别具有98.2%和98.3%的高R-2-值,表明该模型是成功的。本文提出了监测氧化还原电位和溶解氧的结果,以求出反应时间。在接触时间的60分钟时,随着Fenton试剂的增加,AR18染料和COD的去除效率分别提高了30%和5%以上。与存在磷酸盐的进水相比,不存在磷酸盐的进水表明AR18染料去除率增加了40%。将EFP视为顺序批处理反应器的后处理,该组合系统提高了高偶氮染料AR18浓度废水的处理效率。

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