杨凤林
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Enhanced electricity generation by triclosan and iron anodes in the three-chambered membrane bio-chemical reactor (TC-MBCR)
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Indexed by:期刊论文

Date of Publication:2013-11-01

Journal:BIORESOURCE TECHNOLOGY

Included Journals:SCIE、EI、PubMed

Volume:147

Page Number:409-415

ISSN No.:0960-8524

Key Words:Membrane bioreactor; Electricity generation; Bio-chemical fuel cell; Fouling reduction

Abstract:A three-chambered membrane bio-chemical reactor (TC-MBCR) was developed. The stainless steel membrane modules were used as cathodes and iron plates in the middle chamber served as the anode. The TC-MBCR was able to reduce fouling, remove triclosan (TCS) from a synthetic wastewater treatment and enhance electricity generation by similar to 60% compared with the cell voltage before TCS addition. The TC-MBCR system generated a relatively stable power output (cell voltage similar to 0.2 V) and the corrosion of iron plates contributed to electricity generation together with microbes on iron anode. The permeation flow from anode to cathode chamber was considered important in electricity generation. In addition, the negatively charged cathode membrane and Fe2+/Fe3+ released by iron plates mitigated membrane fouling by approximately 30%, as compared with the control. The removal of COD and total phosphorus was approximately 99% and 90%. The highest triclosan removal rate reached 97.9%. (C) 2013 Published by Elsevier Ltd.

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Gender:Male

Alma Mater:大连工学院

Degree:Master's Degree

School/Department:环境学院

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