| Literature DB >> 28475989 |
Changfei Gao1, Lifen Liu2, Fenglin Yang1.
Abstract
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.Entities:
Keywords: Membrane bioreactor; Membrane fouling; Micro electric field; Microbial fuel cells; Wastewater treatment
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Year: 2017 PMID: 28475989 DOI: 10.1016/j.biortech.2017.04.086
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642