首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enrichment of anodic biofilm inoculated with anaerobic or aerobic sludge in single chambered air-cathode microbial fuel cells
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Enrichment of anodic biofilm inoculated with anaerobic or aerobic sludge in single chambered air-cathode microbial fuel cells

机译:单腔空气阴极微生物燃料电池中接种厌氧或好氧污泥的阳极生物膜的富集

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Aerobic sludge after anaerobic pretreatment and anaerobic sludge were separately used as inoculum to start up air-cathode single-chamber MFCs. Aerobic sludge-inoculated MFCs arrived at 0.27 V with a maximum power density of 5.79Wm~(-3), while anaerobic sludge-inoculated MFCs reached 0.21 V with 3.66Wm~(-3). Microbial analysis with DGGE profiling and high-throughput sequencing indicated that aerobic sludge contained more diverse bacterial populations than anaerobic sludge. Nitrospira species dominated in aerobic sludge, while anaerobic sludge was dominated by Desulfurella and Acidithiobacillus species. Microbial community structure and composition in anodic biofilms enriched, respectively from aerobic and anaerobic sludges tended gradually to be similar. Potentially exoelectrogenic Geobacter and Anaeromusa species, biofilm-forming Zoogloea and Acinetobacter species were abundant in both anodic biofilms. This study indicated that aerobic sludge performed better for MFCs startup, and the enrichment of anodic microbial consortium with different inocula but same substrate resulted in uniformity of functional microbial communities.
机译:厌氧预处理后的好氧污泥和厌氧污泥分别用作接种物,以启动空气阴极单室MFC。需氧污泥接种的MFCs达到0.27 V,最大功率密度为5.79Wm〜(-3),而需氧污泥接种的MFCs达到0.21 V,达到3.66Wm〜(-3)。用DGGE分析和高通量测序进行的微生物分析表明,好氧污泥比厌氧污泥具有更多的细菌种群。硝化螺菌菌种在好氧污泥中占主导地位,而厌氧污泥则以脱硫杆菌属和嗜酸杆菌属为主。分别由好氧和厌氧污泥富集的阳极生物膜中的微生物群落结构和组成趋于逐渐相似。在这两个阳极生物膜中都存在潜在的放出电的Geobacter和Anaerosusa物种,形成生物膜的Zoogloea和Acinetobacter物种。这项研究表明,好氧污泥对于MFCs的启动表现更好,并且不同接种物,相同底物的阳极微生物群落的富集导致功能微生物群落的均匀性。

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