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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Employing Microbial Electrochemical Technology-driven electro-Fenton oxidation for the removal of recalcitrant organics from sanitary landfill leachate
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Employing Microbial Electrochemical Technology-driven electro-Fenton oxidation for the removal of recalcitrant organics from sanitary landfill leachate

机译:采用微生物电化学技术驱动的电芬氧化氧化,从卫生垃圾填埋场渗滤液中去除醋醋酸有机物

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摘要

The feasibility of employing Microbial Electrochemical Technology (MET)-driven electro-Fenton oxidation was evaluated as a post-treatment of an anammox system treating sanitary landfill leachate. Two different MET configuration systems were operated using effluent from partial nitrification-anammox reactor treating mature leachate. In spite of the low organic matter biodegradability of the anammox's effluent (2401 +/- 562 mg COD L-1; 237 +/- 57 mg BOD5 L-1), the technology was capable to reach COD removal rates of 1077-1244 mg L-1 d(-1) with concomitant renewable electricity production (43.5 +/- 2.1 Am-3 NCC). The operation in continuous mode versus batch mode reinforced the removal capacity of the technology. The recirculation of acidic catholyte into anode chamber hindered the anodic efficiency due to pH stress on anodic electricigens. The obtained results demonstrated that the integrated system is a potentially applicable process to deal with bio-recalcitrant compounds present in mature landfill leachate. (C) 2017 Elsevier Ltd. All rights reserved.
机译:使用微生物电化学技术(MET)的电芬氧化的可行性评价为治疗卫生垃圾填埋场渗滤液的厌氧系统后处理。使用来自部分硝化 - 厌氧反应器治疗成熟渗滤液的流出物来操作两种不同的Met配置系统。尽管厌氧流出物的有机质生物降解性低(2401 +/- 562 mg COD L-1; 237 +/- 57mg BOD5 L-1),但该技术能够达到1077-1244 mg的COD去除率L-1 D(-1)伴随着可再生电力生产(43.5 +/- 2.1 AM-3 NCC)。连续模式的操作与批处理模式加强了该技术的去除容量。酸性阴极电解液进入阳极室的再循环阻碍了由于对阳极电解的pH胁迫引起的阳极效率。所获得的结果表明,综合系统是处理成熟垃圾渗滤液中存在的生物醋塑化合物的可能适用的方法。 (c)2017 Elsevier Ltd.保留所有权利。

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