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Effects of azide on current generation and microbial community in air-cathode MFCs

机译:叠氮化物对空气阴极MFCs产生和微生物群落的影响

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Azide is known to be a respiratory inhibitor, which can disrupt electron transfer in the process of aerobic respiration. It has been proposed for preventing the reduction of oxygen in the anode compartment of MFC-based biosensors, but has also been found to function as an electron acceptor in recent research. However, there are few reports about the effects of azide on the structure and composition of the microbial community in air-cathode MFCs, as well as on their corresponding performance. Therefore, the current generation, electroactivity and community structure of anodic biofilms were investigated using air-cathode MFCs acclimated with (1.5 mM) and without azide. The enrichment process was much slower in the presence of azide compared to the control. Biofilms enriched with and without azide were found to produce similar voltammograms, but the difference lay in the current intensity of the predominant peaks. Pyrosequencing indicated that the distribution of microbes at the genus level was more uniform, with Geobacter and Ignavibacterium being the dominant genera on both biofilms, although the community of the azide-enriched film was less diverse than that of the control. These results demonstrate that the microbial community enriched with azide was not significantly altered compared to the control and the difference in the maximum current or peak current of cyclic voltammograms (CVs) was thought to be related to the amount of biomass.
机译:叠氮化物是一种呼吸抑制剂,可以在有氧呼吸过程中破坏电子传递。已经提出了防止基于MFC的生物传感器的阳极室中的氧还原的方法,但是在最近的研究中还发现其起电子受体的作用。但是,关于叠氮化物对空气阴极MFC中微生物群落结构和组成的影响及其相应性能的报道很少。因此,研究了使用(1.5 mM)无叠氮化物的空气阴极MFCs对阳极生物膜的产生,电活性和群落结构的研究。与对照相比,在叠氮化物存在下的富集过程要慢得多。发现富含或不含叠氮化物的生物膜可产生相似的伏安图,但不同之处在于主要峰的电流强度。焦磷酸测序结果表明,尽管富含叠氮化物的膜的群落多样性比对照的多样性低,但在属水平上微生物的分布更为均匀,其中两个细菌膜均以土生细菌和Ignavibacter为主导。这些结果表明,与对照相比,富含叠氮化物的微生物群落没有明显改变,循环伏安图(CV)的最大电流或峰值电流的差异被认为与生物量有关。

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