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Effects of electrode gap and wastewater condition on the performance of microbial fuel cell coupled constructed wetland

机译:电极间隙和废水条件对微生物燃料电池耦合人工湿地性能的影响

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The effects of electrode gap, PB solution concentration and azo dye on the wastewater treatment and electricity generation of microbial fuel cell coupled constructed wetland (CW-MFC) were studied. The electrode gap had obvious influence on the decolorization, while the influence of PB concentration on the decolorization was not obvious. The best decolorization efficiency was 91.05% and was gained when the electrode gap was 13.2 cm. The smaller the electrode gap, the smaller the ohmic resistance. However, a too small electrode gap would reduce the electricity generation. The best PB concentration in this study was 50 mM. In the glucose group, when the PB concentration was 50 mM, the power density was enhanced to 0.38 W/m(3), while the PB concentration was 5 mM, the power density was only 0.14 W/m(3). In the ABRX3 group, when the PB concentration was 50 mM, the power density was 0.18 W/m(3), while when the PB concentration was 5 mM, the power density was 0.12 W/m(3). The electricity generation performance of the CW-MFC was enhanced with an increase in running time. Long-time running CW-MFC got a higher cathode potential and a smaller internal resistance.
机译:研究了电极间隙,PB溶液浓度和偶氮染料对微生物燃料电池耦合人工湿地(CW-MFC)废水处理和发电的影响。电极间隙对脱色有明显影响,而PB浓度对脱色的影响不明显。最佳的脱色效率为91.05%,当电极间隙为13.2 cm时可获得最佳脱色效率。电极间隙越小,欧姆电阻越小。但是,电极间隙太小会减少发电量。这项研究中最佳的PB浓度为50 mM。在葡萄糖组中,当PB浓度为50 mM时,功率密度提高到0.38 W / m(3),而PB浓度为5 mM时,功率密度仅为0.14 W / m(3)。在ABRX3组中,当PB浓度为50 mM时,功率密度为0.18 W / m(3),而当PB浓度为5 mM时,功率密度为0.12 W / m(3)。随着运行时间的增加,CW-MFC的发电性能得到提高。长时间运行的CW-MFC具有较高的阴极电位和较小的内部电阻。

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