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首页> 外文期刊>International Journal of Electrochemical Science >Influence of Process Parameters on Electrochemical Removal of Indole: Response Surface Methodology, Mechanism and Energy Consumption
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Influence of Process Parameters on Electrochemical Removal of Indole: Response Surface Methodology, Mechanism and Energy Consumption

机译:工艺参数对吲哚电化学去除的影响:响应面方法,机构和能耗

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In this study, the degradation of indole wastewater by a tin-antimony anode (Ti/SnO2-Sb) modified by carbon nanotubes (CNTs) was evaluated in an electrochemical oxidation system. The Box-Behnken design with response surface methodology was proposed to evaluate the effects of current density, Na2SO4 concentration, and initial pH on the total organic carbon (TOC) removal rate. Subsequently, the process of indole degradation was optimized. Under optimal conditions (current density of 23.43 mA/cm2 , Na2SO4 concentration of 45.44 mmol/L, and initial pH of 9.49), the TOC removal rate reached 95.36%. Further, the electrochemical oxidation of indole at the Ti/SnO2-Sb-CNTs anode was determined to be caused by hydroxyl and sulfate radicals using radical scavenger experiments and a mechanism analysis. The energy consumption of the electrochemical oxidation of indole was 392.74 kWh/kgTOC, and the mineralization current efficiency at 10 min was 40.40%. It would provide a reference for the engineering application of advanced treatment of industrial wastewater.
机译:在该研究中,在电化学氧化体系中评价通过碳纳米管(CNT)改性的锡锑阳极(Ti / SnO2-Sb)通过氧锑阳极(Ti / SnO2-Sb)降解吲哚废水。提出了具有响应表面方法的Box-Behnken设计,以评估电流密度,Na 2 SO 4浓度和初始pH对总有机碳(TOC)去除率的影响。随后,优化了吲哚劣化的过程。在最佳条件下(电流密度为23.43mA / cm2,Na 2 SO 4浓度为45.44mmol / L,初始pH为9.49),TOC去除率达到95.36%。此外,通过使用自由基清除剂实验和机制分析,测定Ti / SnO2-Sb-CN-CNT阳极处的吲哚的电化学氧化是由羟基和硫酸盐自由基引起的。吲哚电化学氧化的能量消耗为392.74千瓦时/千克/千克,10分钟的矿化电流效率为40.40%。它将提供工业废水先进治疗的工程应用的参考。

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