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Microbial analysis of anodic biofilm in a microbial fuel cell using slaughterhouse wastewater

机译:屠宰场废水对微生物燃料电池中阳极生物膜的微生物分析

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The ability of dual-chambered microbial fuel cell, fed with slaughterhouse wastewater with an anaerobic mixed-sludge as initial source of bacteria, to generate power is investigated. MFC voltage generation across a fixed 100Ω load indicates power generation capability, with power production correlated to changes in anolyte VFA content. A maximum MFC power density of 578mW/m 2 is obtained for an MFC developed under 100Ω load, compared to a maximum power density of 277mW/m 2 for an MFC developed under higher resistance (1MΩ) control conditions. Voltammetry of the biofilm developed under 100Ω load displays a current-voltage signal indicative of bioelectrocatalytic oxidation of feed at a potential of -0.35V vs. Ag/AgCl, compared to negligible signals for biofilms developed under control conditions. Denaturing gradient gel electrophoresis of PCR amplified 16S rRNA gene fragments reveals that the anodic bacterial communities in reactors operated under 100Ω load result in communities of lower diversity than for the control condition, with Geovibrio ferrireducens dominant in the anodic biofilm community. These results indicate that in MFC reactors, functionally stable electroactive bacteria are enriched under 100Ω load compared to high resistance control conditions, and were able to sustain higher power in MFCs.
机译:研究了以厌氧混合污泥为初始细菌来源的屠宰场废水供入的双室微生物燃料电池发电的能力。固定100Ω负载上的MFC电压产生表明发电能力,发电量与阳极电解液VFA含量的变化相关。与在更高电阻(1MΩ)控制条件下开发的MFC的最大功率密度为277mW / m 2相比,在100Ω负载下开发的MFC的最大MFC功率密度为578mW / m 2。在100Ω负载下形成的生物膜的伏安法显示的电流-电压信号表明,在-0.35V相对于Ag / AgCl的电势下,饲料的生物电催化氧化,而在控制条件下形成的生物膜的信号可忽略不计。 PCR扩增的16S rRNA基因片段的变性梯度凝胶电泳显示,在100Ω负载下运行的反应堆中,阳极细菌群落的多样性低于对照条件,而铁还原弧菌在阳极生物膜群落中占优势。这些结果表明,与高电阻控制条件相比,在MFC反应器中,功能稳定的电活性细菌在100Ω负载下富集,并且能够维持更高的功率。

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