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Electrochemical degradation of RB-5 dye by anodic oxidation, electro-Fenton and by combining anodic oxidation–electro-Fenton in a filter-press flow cell

机译:阳极氧化,电Fenton和阳极氧化 - 电 - Fenton在压滤流动池中电化学降解RB-5染料

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摘要

This paper reports the removal of a recalcitrant and toxic dye, Reactive Black 5 (RB-5) by threemethods; 1) anodic oxidation (AO) on Boron-Doped Diamond (BDD), 2) by electro-Fenton (EF) process where hydrogen peroxide was produced by oxygen reduction on reticulated vitreous carbon (RVC) electrodes and 3) by the combination of AO–EF. The BDD and RVC electrodes were fitted in a filter-press flow cell in recycle batch mode of operation. The experimental set-up for the AO and EF processes consisted of two electrolyte compartments separated by a Nafion membrane with the dye contained in the anolyte and the catholyte, respectively. The combined AO–EF process used only one electrolyte compartment. The colour and total organic carbon (TOC) removal were more efficientwhen the AO and EF processes were used separately than the combined process, AO–EF. The influence of current density and initial concentration of ferrous ions were examined. The lowest energy efficiency (208 kWh kg?1) with the EF process was found when ?0.4 V vs. Ag/AgCl was applied to a RVC electrode and the concentration of Fe2+ was 1.0 × 10?4 mol dm?3 achieving total colour and 74% of TOC removals in less than 90 min electrolysis. All proposed processeswere able to promote high percentages of TOC removal following a pseudo-first order kinetic oxidation. The BDD electrode was the most effective material to remove RB-5 dye within 7.5 min and presented the highest apparent rate constant (0.835 min?1) with 82% TOC removal within 30 min at an energy consumption of 291 kWh kg?1 and 41.1 mA cm?2 current density. In the case of the combined process AO–EF the electrodegradation rate of RB-5 was at least three times lower, apparent rate constant (0.269 min?1), and 32% of TOC was removed with a high EC (682 kWh kg?1). Therefore oxidation process applied separately was more efficient
机译:本文报道了用三种方法去除顽固和有毒染料活性黑5(RB-5)的方法。 1)在掺硼金刚石(BDD)上进行阳极氧化(AO),2)通过电芬顿(EF)工艺在网状玻璃碳(RVC)电极上通过氧还原产生过氧化氢,以及3)通过AO的组合–EF。 BDD和RVC电极以循环分批操作模式安装在压滤流通池中。 AO和EF工艺的实验装置由两个电解质隔室组成,两个电解质隔室由Nafion膜隔开,染料分别包含在阳极电解液和阴极电解液中。 AO-EF组合工艺仅使用一个电解液室。当分别使用AO和EF工艺时,去除颜色和总有机碳(TOC)的效率要高于AO-EF组合工艺。研究了电流密度和亚铁离子初始浓度的影响。当在RVC电极上施加0.4 V vs. Ag / AgCl时,EF工艺的能量效率最低(208 kWh kg?1),Fe2 +的浓度为1.0×10?4 mol dm?3,实现了全色在不到90分钟的电解时间内,去除了74%的TOC。在拟一级动力学氧化之后,所有提出的方法都能够促进高百分比的TOC去除。 BDD电极是在7.5分钟内去除RB-5染料的最有效材料,并且表现出最高的表观速率常数(0.835 min?1),在30分钟内TOC去除率达到82%,能耗为291 kWh kg?1和41.1。 mA cm?2电流密度。在AO-EF联合工艺的情况下,RB-5的电沉积速率至少降低了三倍,表观速率常数(0.269 min?1),并且以高EC(682 kWh kg?)去除了32%的TOC。 1)。因此,单独应用的氧化过程更有效

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