渗滤液
厌氧氨氧化菌
流出物
废物管理
环境科学
阳极
废水
有机质
生物降解
生物反应器
制浆造纸工业
环境工程
化学
环境化学
反硝化
氮气
电极
工程类
反硝化细菌
有机化学
物理化学
作者
Muhammad Hassan,Narcís Pous,Bing Xie,Jesús Colprim,M. Dolors Balaguer,Sebastià Puig
标识
DOI:10.1016/j.biortech.2017.07.042
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±562mgCODL-1; 237±57mgBOD5L-1), the technology was capable to reach COD removal rates of 1077-1244mgL-1d-1 with concomitant renewable electricity production (43.5±2.1Am-3NCC). 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.
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