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Effect of enrichment procedures on performance and microbial diversity of microbial fuel cell for Congo red decolorization and electricity generation

机译:浓缩程序对刚果红脱色和发电的微生物燃料电池性能和微生物多样性的影响

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摘要

The purpose of this study was to determine the effect of enrichment procedure on the performance and microbial diversity of an air-cathode microbial fuel cell (MFC) which was explored for simultaneous azo dye decolorization and electricity generation. Two different enrichment procedures in which glucose and Congo red were added into the MFCs sequentially (EP1) or simultaneously (EP2) were tested by operating parallel MFCs independently for more than 6 months. The power density, electrode potential, Congo red decolorization, biofilm morphology, and bacterial diversity of the MFCs under the two enrichment procedures were compared and investigated. The results showed that the enrichment procedures have a negligible effect on the dye decolorization, but significantly affected the electricity generation. More than 90% decolorization at dye concentration of 300 mg/L was achieved within 170 h for the two tested enrichment procedures. However, the MFC with EP2 achieved a maximum power density of 192 mW/m2, which was 75% higher than that of the MFC with EP1 (110 mW/m2). The depressed surfaces of the bacteria in the MFC with EP1 indicated the allergic response caused by the subsequent addition of Congo red. 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 enrichment procedure. This study suggests that the enrichment procedure is important for the MFC explored for simultaneous dye decolorization and electricity generation.
机译:这项研究的目的是确定富集程序对空气阴极微生物燃料电池(MFC)的性能和微生物多样性的影响,该电池被研究用于同时偶氮染料脱色和发电。通过分别操作平行MFC超过6个月,测试了两种不同的富集程序,其中顺序地(EP1)或同时(EP2)将葡萄糖和刚果红添加到MFC中。比较和研究了两种富集程序下MFCs的功率密度,电极电位,刚果红脱色,生物膜形态和细菌多样性。结果表明,富集程序对染料脱色的影响可忽略不计,但显着影响了发电。对于两个测试的富集程序,在染料浓度为300 mg / L的情况下,在170 h内可实现90%以上的脱色。但是,具有EP2的MFC的最大功率密度为192 mW / m2,比具有EP1的MFC的最大功率密度(110 mW / m2)高75%。带有EP1的MFC中细菌的凹陷表面表明了随后添加刚果红引起的过敏反应。 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,并显示了采用不同富集程序的MFC中与阳极连接的种群之间的明显差异。这项研究表明,富集程序对于同时进行染料脱色和发电的MFC至关重要。

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