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不同阳极材料对序批式电芬顿法和电絮凝法处理制革废水的影响。

Impact of different anode materials on electro-Fenton process and tannery wastewater treatment using sequential electro-Fenton and electrocoagulation.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Roorkee, Roorkee 247667, Uttarakhand, India.

出版信息

Chemosphere. 2023 Sep;336:139225. doi: 10.1016/j.chemosphere.2023.139225. Epub 2023 Jun 23.

Abstract

The influence of anode materials on the electrochemical treatment of tannery wastewater (TWW) was evaluated using Pt, Ti/RuO-IrO (DSA), Ti/SnO-Sb, Ti/PbO, and Ti/SnO-Sb/PbO electrodes. The comparison of the degradation mechanism of these electrodes in the electro-Fenton (EF) treatment was evaluated. The Ti/SnO-Sb/PbO anode was efficient, with high electrocatalytic activity, stability, and reproducibility of the degradation results. Further, the study was extended to define the ability of sequential EF and electrocoagulation (EC) processes to clean TWW. The EC treatment was conducted using Al electrodes, and the performance of the combined treatment was evaluated by the removal of chemical oxygen demand (COD), turbidity, total suspended solids (TSS), sulfide, and Cr removal. The role of chlorides and sulfate salts during both treatments was evaluated by monitoring the concentration changes of these anions during the whole treatment using ion chromatography (IC). A sequential 1.5 h EF and 1 h EC treatment were applied to achieve a satisfactory degradation of (81.2 ± 3.9)% COD, >98% Cr, >99% turbidity, TSS, and sulfide removal. Additionally, the combined treatment was found to be more efficient towards the COD removal, achieving about 22.5% higher COD removal consuming almost the same amount of electrical energy.

摘要

采用 Pt、Ti/RuO-IrO(DSA)、Ti/SnO-Sb、Ti/PbO 和 Ti/SnO-Sb/PbO 电极评估了阳极材料对制革废水(TWW)电化学处理的影响。评估了这些电极在电芬顿(EF)处理中的降解机制的比较。Ti/SnO-Sb/PbO 阳极具有高效、高电催化活性、稳定性和降解结果的可重复性。此外,研究扩展到定义顺序 EF 和电凝聚(EC)过程清洁 TWW 的能力。EC 处理使用 Al 电极进行,通过去除化学需氧量(COD)、浊度、总悬浮固体(TSS)、硫化物和 Cr 去除来评估组合处理的性能。通过使用离子色谱法(IC)监测这些阴离子在整个处理过程中的浓度变化,评估了在这两种处理过程中氯化物和硫酸盐盐的作用。应用顺序为 1.5 小时的 EF 和 1 小时的 EC 处理,实现了令人满意的(81.2±3.9)% COD、>98% Cr、>99%浊度、TSS 和硫化物去除。此外,组合处理对 COD 去除更有效,在消耗几乎相同电量的情况下,COD 去除率提高了约 22.5%。

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