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Exploring characteristics of bioelectricity generation and dye decolorization of mixed and pure bacterial cultures from wine-bearing wastewater treatment

机译:探索含酒废水处理中混合细菌和纯细菌培养物的生物电产生和染料脱色特性

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摘要

This study uncovered microbial characteristics of bioelectricity generation and dye decolorization in single-chamber microbial fuel cells (MFCs) using activated sludge for wine-containing wastewater treatment. Phylogenetic tree analysis on 16S rRNA gene fragments indicated that the predominant strains on anodic biofilm in acclimatized MFCs were Gamma-Proteobacteria Aeromonas punctata NIU-P9, Pseudomonas plecoglossicida NIU-Y3, Pseudomonas koreensis NIU-X8, Acinetobacter junii NIU-Y8, Stenotrophomonas maltophila NIU-X2. Our findings showed that the current production capabilities of these pure strains were only ca. 10% of those of their mother activated sludge, indicating that synergistic interactions among microbes might be the most influential factor to maximize power generation in MFCs. Plus, these electrochemically active strains also performed reductive decolorization of C.I. reactive blue 160, suggesting that bioelectricity generation might be directly associated to azo dye decolorization to deal with electron transfer on anodic biofilm in MFCs.
机译:这项研究发现了使用活性污泥处理含酒废水的单室微生物燃料电池(MFCs)中生物发电和染料脱色的微生物特性。对16S rRNA基因片段的系统进化树分析表明,在适应的MFC中,阳极生物膜上的主要菌株是γ-变形杆菌气单胞菌NIU-P9,Pseudomonas plecoglossicida NIU-Y3,假单胞菌NUU-X8,嗜碱杆菌-X2。我们的发现表明,这些纯菌株的当前生产能力仅为约。他们的母亲活性污泥的10%,表明微生物之间的协同相互作用可能是使MFC发电最大化的最有影响力的因素。另外,这些电化学活性菌株还对C.I.进行了还原脱色。活性蓝160,表明生物电的产生可能与偶氮染料的脱色直接相关,以处理MFC中阳极生物膜上的电子转移。

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