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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Unraveling interactive characteristics of microbial community associated with bioelectric energy production in sludge fermentation fluid-fed microbial fuel cells
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Unraveling interactive characteristics of microbial community associated with bioelectric energy production in sludge fermentation fluid-fed microbial fuel cells

机译:污泥发酵流体喂养微生物燃料电池中与生物电能产生相关的微生物群体的解开互动特征

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摘要

This first-attempt study deciphered the interactive characteristics of anodophilic microbial community-associated bioelectricity production in waste activated sludge (WAS) fermentation fluid-fed microbial fuel cells (MFCs). A novel schematic elucidation for illustrating synergistic interactions in anodic microbial consortia towards electrogenesis was proposed. Moreover, the specific genera of Pseudomonas, Desulfovibrio, Phyllobacterium, Desulfuromonas, Chelatococcus and Aminivibrio were dominant in anodic biofilms, leading to an electrogenesis efficiency of 1.254 kWh/kg COD and peak power density of 0.182 W/m(2) (at feeding level of 1.20 g COD/L). It was apparently higher than those MFCs fed with glucose/acetate. The fermentative species contributed positively in reorganizing microbial community structure in anodic biofilms, positively relating to electrogenesis via interactions with exoeletrogens in MFCs. Finally, a more electrogenesis was positively associated to larger anodic microbial diversity, relatively medium anodic community evenness, together with higher abundance of functional genes related to electrogenesis in functional species in MFCs fed with WAS fermentation fluid.
机译:该第一次尝试研究破坏了废物活性污泥(IS)发酵流体喂养的微生物燃料电池(MFC)中的促进嗜酚微生物群落相关的生物电性产生的互动特征。提出了一种用于说明阳极微生物联结对电生发生的协同相互作用的新颖示意性阐明。此外,在阳极生物膜中占优势的假鼠,脱硫,血糖杆菌,脱硫,切核,脱硫,螯盐,切尔孢菌,脱硫氧化物,切硫氧化物和氨基纤维,导致1.254千瓦时/千克COD和峰值功率密度为0.182 w / m(2)(在饲料水平时1.20克COD / L)。它显然高于用葡萄糖/醋酸填充的MFC。发酵物种在阳极生物膜中重组微生物群落结构呈正致贡献,通过与MFCs中的exoeletrogens相互作用正相关。最后,与较大的阳极微生物分集,相对较高的阳极群落均匀性呈正相关,均匀的阳极微生物群落呈正相关,以及较高丰富的常态基因与喂养的MFC中的功能物种中的电生成有关。

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