首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Development of a novel proton exchange membrane-free integrated MFC system with electric membrane bioreactor and air contact oxidation bed for efficient and energy-saving wastewater treatment
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Development of a novel proton exchange membrane-free integrated MFC system with electric membrane bioreactor and air contact oxidation bed for efficient and energy-saving wastewater treatment

机译:开发新型质子交换膜集成MFC系统,具有电膜生物反应器和空气接触氧化床,用于高效节能的废水处理

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A novel combined system integrating MFC and electric membrane bioreactor (EMBR) was developed, in which a quartz sand chamber (QSC) was used, replacing expensive proton exchange membrane (PEM). An air contact oxidation bed (ACOB) and embedded trickling filter (TF) with filled volcano rock, was designed to increase dissolved oxygen (DO) in cathodic EMBR to save aeration cost. Membrane fouling in EMBR was successful inhibited/reduced by the generated bioelectricity of the system. The combined system demonstrated superior effluent quality in removing chemical oxygen demand (>97%) and ammonia nitrogen (>93%) during the stable operation, and the phosphorus removal was about 50%. Dominant bacteria (Nitrosomonas sp.; Comamonas sp.; Candidatus Kuenenia) played important roles in the removal of organic matter and ammonia nitrogen. The system has good application prospects in the efficient use of water and the development of sustainable wastewater recycling technology. (C) 2017 Published by Elsevier Ltd.
机译:开发了一种新的组合系统,其结合了MFC和电膜生物反应器(IMB),其中使用了石英砂室(QSC),取代了昂贵的质子交换膜(PEM)。空气接触氧化床(ACOB)和嵌入式涓流过滤器(TF),填充火山岩石,设计用于在阴极的溶解中增加溶解的氧气(DO)以节省曝气成本。通过产生的系统的生物电性成功地抑制/减少膜污染。组合体系在稳定运行期间除去了化学需氧量(> 97%)和氨氮(> 93%),表现出优越的污水质量,磷去除约为50%。优势细菌(硝基菌菌Sp .; comamonas sp .; candidatus kuenenia)在去除有机物和氨氮中发挥了重要作用。该系统具有良好的应用前景,有效地利用水和可持续废水回收技术的发展。 (c)2017年由elestvier有限公司出版

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