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在长期废水处理过程中,不同电极尺寸的微生物燃料电池耦合人工湿地中电极和偶氮染料的脱色性能。

Electrode and azo dye decolorization performance in microbial-fuel-cell-coupled constructed wetlands with different electrode size during long-term wastewater treatment.

机构信息

School of Energy and Environment, Southeast University, Nanjing 210096, China.

School of Energy and Environment, Southeast University, Nanjing 210096, China.

出版信息

Bioresour Technol. 2017 Aug;238:450-460. doi: 10.1016/j.biortech.2017.04.075. Epub 2017 Apr 21.

Abstract

Microbial-fuel-cell-coupled constructed wetlands (CW-MFCs) with various cathode layers were used for long-term azo dye wastewater treatment. Their performance was assessed using cathode diameters ranging from 20 to 27.5cm and the influence of plants at the cathode was also examined. Bioelectricity generation, ABRX3 decolorization, and chemical oxygen demand (COD) removal performances first increased and then decreased with increasing cathode diameter. The CW-MFCs with larger cathodes had an anoxic region at the cathode where ABRX3 was decolorized. This phenomenon has not been reported in previous research on MFCs using traditional air cathodes. Anode performance was influenced by the cathode. The CW-MFC with a cathode diameter of 25cm showed the best electrode performance, and the highest voltage and power density were 560mV and 0.88W/m, respectively. The highest ABRX3 decolorization and COD removal volumes were 271.53mg/L and 312.17mg/L, respectively.

摘要

微生物燃料电池耦合人工湿地(CW-MFC)采用不同的阴极层,用于长期偶氮染料废水处理。通过改变阴极直径(20-27.5cm)评估其性能,并考察阴极区植物的影响。生物电能的产生、ABRX3 脱色和化学需氧量(COD)的去除效率随阴极直径的增加先增加后降低。在具有较大阴极的 CW-MFC 中,阴极区存在缺氧区,ABRX3 在该区域被脱色。这一现象在使用传统空气阴极的 MFC 之前的研究中并未报道过。阳极性能受阴极的影响。阴极直径为 25cm 的 CW-MFC 表现出最佳的电极性能,最高电压和功率密度分别为 560mV 和 0.88W/m。ABRX3 的最大脱色量和 COD 的最大去除量分别为 271.53mg/L 和 312.17mg/L。

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