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Industrial wastewater treatment by electrocoagulation-electrooxidation processes powered by solar cells

机译:通过太阳能电池供电的电凝-电氧化工艺处理工业废水

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The goal of this research was the elimination of the chemical oxygen demand (COD), total organic carbon (TOC), color, and turbidity from the industrial wastewater from an industrial park by applying electrocoagulation (EC) and electrooxidation (EO) processes powered by solar cells. The EC process was carried out in a batch monopolar electrochemical cell; copper was used for the anode and cathode electrodes, with an area of 0.00125 m(2), and solar cells supplied the system with 1-3 A of current intensity. The COD reduction was 80% at pH 2 and 89% at pH 4, and a removal efficiency of 97% and 91% of color and turbidity, respectively, were achieved; however, TOC reduction achieved was only 48%. In order to improve the removal of TOC, an EO treatment was applied after the EC process. The EO was carried out in batch cells using a boron-doped diamond (BDD) anode and a copper cathode. The maximum removal efficiency was 70.26% of TOC and 99.7% of COD, with EC + EO processes. Color and turbidity removal were 100% and 95%, respectively. Aside from the strong oxidation capability of the hydroxyl radicals generated, the presence of active chlorine in the solution contributed to COD removal via indirect oxidation. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是通过应用电凝(EC)和电氧化(EO)工艺消除工业园区工业废水中的化学需氧量(COD),总有机碳(TOC),颜色和浊度。太阳能电池。 EC过程在批处理单极电化学电池中进行;铜用于阳极和阴极,面积为0.00125 m(2),太阳能电池为系统提供1-3 A的电流强度。在pH 2时,COD的减少率为80%,在pH 4时,COD的减少率为89%,去除率分别为颜色和浊度的97%和91%。但是,实现的TOC降低仅为48%。为了改善TOC的去除,在EC工艺之后进行了EO处理。使用硼掺杂金刚石(BDD)阳极和铜阴极在分批电池中进行EO。采用EC + EO工艺的最大去除效率为TOC的70.26%和COD的99.7%。去除颜色和浊度分别为100%和95%。除了生成的羟基具有强氧化能力外,溶液中活性氯的存在还有助于通过间接氧化去除COD。 (C)2014 Elsevier Ltd.保留所有权利。

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