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Effect of different substrates on the performance, bacterial diversity, and bacterial viability in microbial fuel cells

机译:不同底物对微生物燃料电池性能,细菌多样性和细菌生存力的影响

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摘要

Four microbial fuel cells (MFCs) were inoculated with anaerobic sludge and fed four different substrates for over one year. The Coulombic efficiency (CE) and power output varied with different substrates, while the bacterial viability was similar. Acetate-fed-MFC showed the highest CE (72.3%), followed by butyrate (43.0%), propionate (36.0%) and glucose (15.0%). Glucose resulted in the lowest CE because of its fermentable nature implying its consumption by diverse non-electricity-generating bacteria. 16S rDNA sequencing results indicated phylogenetic diversity in the communities of all anode biofilms, and there was no single dominant bacterial species. A relative abundance of beta-Proteobacteria but an absence of gamma-Proteobacteria was observed in all MFCs except for propionate-fed system in which Firmicutes dominating. The glucose-fed-MFC showed the widest community diversity, resulting in the rapid generation of current without lag time when different substrates were suddenly fed. Geobacter-like species with the most representative Geobacter sulfurreducens PCA(T) were integral members of the bacterial community in all MFCs except for the propionate-fed system.
机译:四个微生物燃料电池(MFCs)接种了厌氧污泥,并喂食了四种不同的底物一年以上。库仑效率(CE)和功率输出随不同的底物而变化,而细菌生存力则相似。乙酸酯-MFC显示最高的CE(72.3%),其次是丁酸酯(43.0%),丙酸酯(36.0%)和葡萄糖(15.0%)。葡萄糖导致最低的CE,因为它具有可发酵的特性,暗示着其被各种非发电细菌消耗。 16S rDNA测序结果表明在所有阳极生物膜的群落中的系统发育多样性,并且没有单个优势细菌。在所有MFC中都观察到相对丰富的β变形杆菌,但没有γ变形杆菌,除了由丙酸菌为主的丙酸盐喂养系统。葡萄糖饲喂的MFC显示出最广泛的群落多样性,可在突然喂入不同的底物时快速产生电流而没有滞后时间。除丙酸盐喂养的系统外,所有MFC中具有最具代表性的减少细菌降解的PCA(T)的类杆菌属物种是细菌群落的组成部分。

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