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Electricity generation and brewery wastewater treatment from sequential anode-cathode microbial fuel cell

机译:阳极-阴极微生物燃料电池的发电和啤酒废水处理

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摘要

A sequential anode-cathode double-chamber microbial fuel cell (MFC), in which the effluent of anode chamber was used as a continuous feed for an aerated cathode chamber, was constructed in this experiment to investigate the performance of brewery wastewater treatment in conjugation with electricity generation. Carbon fiber was used as anode and plain carbon felt with biofilm as cathode. When hydraulic retention time (HRT) was 14.7 h, a relatively high chemical oxygen demand (COD) removal efficiency of 91.7%–95.7% was achieved under long-term stable operation. The MFC displayed an open circuit voltage of 0.434 V and a maximum power density of 830 mW/m3 at an external resistance of 300 Ω. To estimate the electrochemical performance of the MFC, electrochemical measurements were carried out and showed that polarization resistance of anode was the major limiting factor in the MFC. Since a high COD removal efficiency was achieved, we conclude that the sequential anode-cathode MFC constructed with bio-cathode in this experiment could provide a new approach for brewery wastewater treatment.
机译:本实验构建了一个顺序阳极-阴极双室微生物燃料电池(MFC),其中阳极室的流出物用作充气阴极室的连续进料,以研究啤酒废水与水混合处理的性能。发电。碳纤维被用作阳极,普通碳毡被生物膜作为阴极。当水力停留时间(HRT)为14.7 h时,在长期稳定运行下,化学需氧量(COD)去除效率达到91.7%– 95.7%。 MFC在300Ω的外部电阻下显示0.434 V的开路电压和830 mW / m 3 的最大功率密度。为了评估MFC的电化学性能,进行了电化学测量,结果表明阳极的极化电阻是MFC中的主要限制因素。由于获得了很高的COD去除效率,我们得出结论,本实验中使用生物阴极构造的顺序阳极-阴极MFC可为啤酒废水的处理提供一种新方法。

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