首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Performance and microbial diversity of microbial fuel cells coupled with different cathode types during simultaneous azo dye decolorization and electricity generation
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Performance and microbial diversity of microbial fuel cells coupled with different cathode types during simultaneous azo dye decolorization and electricity generation

机译:在偶氮染料脱色和发电的同时,不同阴极类型的微生物燃料电池的性能和微生物多样性

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摘要

To study the effect of cathode type on performance and microbial diversity of the MFC, aerobic biocathode and air-cathode were incorporated into microbial fuel cells (MFCs) which were explored for simultaneous azo dye decolorization and electricity generation. The electrochemical impedance spectroscopy (EIS) results demonstrated that the catalytic activity of the microorganisms on the biocathode surface was comparable with that of the platinum coated on the air-cathode. The power density achieved by using biocathode was lower than air-cathode, but the biocathode could greatly improve the Congo red decolorization rate. By using the biocathode, 96.4% decolorization of Congo red was obtained within 29. h, whereas, about 107. h was required to achieve the same decolorization efficiency with the air-cathode. 16S rRNA sequencing analysis demonstrated a phylogenetic diversity in the communities of the anode biofilm and showed clear differences between the anode-attached populations in the MFCs with a different cathode type.
机译:为了研究阴极类型对MFC性能和微生物多样性的影响,将好氧生物阴极和空气阴极掺入微生物燃料电池(MFCs)中,以探索同时偶氮染料脱色和发电的方法。电化学阻抗谱(EIS)结果表明,微生物在生物阴极表面的催化活性与涂覆在空气阴极上的铂的催化活性相当。使用生物阴极获得的功率密度低于空气阴极,但生物阴极可以大大提高刚果红的脱色率。通过使用生物阴极,在29. h内获得了96.4%的刚果红脱色,而需要约107. h才能实现与空气阴极相同的脱色效率。 16S rRNA测序分析表明,在阳极生物膜群落中的系统发育多样性,并且在具有不同阴极类型的MFC中,阳极附着的种群之间存在明显差异。

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