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Open circuit versus closed circuit enrichment of anodic biofilms in MFC: Effect on performance and anodic communities

机译:MFC中阳极生物膜的开路与闭路富集:对性能和阳极群落的影响

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摘要

The influence of various carbon anodes; graphite, sponge, paper, cloth, felt, fiber, foam and reticulated vitreous carbon (RVC); on microbial fuel cell (MFC) performance is reported. The feed was brewery wastewater diluted in domestic wastewater. Biofilms were grown at open circuit or under an external load. Microbial diversity was analysed as a function of current and anode material. The bacterial community formed at open circuit was influenced by the anode material. However at closed circuit its role in determining the bacterial consortia formed was less important than the passage of current. The rate and extent of organic matter removal were similar for all materials: over 95% under closed circuit. The biofilm in MFCs working at open circuit and in the control reactors, increased COD removal by up to a factor of nine compared with that for baseline reactors. The average voltage output was 0.6 V at closed circuit, with an external resistor of 300 kΩ and 0.75 V at open circuit for all materials except RVC. The poor performance of this material might be related to the surface area available and concentration polarizations caused by the morphology of the material and the structure of the biofilm. Peak power varied from 1.3 mW m~(-2) for RVC to 568 mW m~(-2) for graphite with biofilm grown at closed circuit.
机译:各种碳阳极的影响;石墨,海绵,纸,布,毡,纤维,泡沫和网状玻璃碳(RVC);报告了微生物燃料电池(MFC)的性能。进料是在生活废水中稀释的啤酒废水。生物膜在断路或外部负载下生长。分析微生物多样性与电流和阳极材料的关系。开路形成的细菌群落受到阳极材料的影响。然而,在闭合回路中,其在确定形成的细菌菌落中的作用不如电流通过重要。所有材料的有机物去除速率和程度均相似:在封闭回路下超过95%。与基线反应器相比,在开路运行和在控制反应器中运行的MFC中的生物膜将COD去除率提高了九倍。对于所有材料(RVC除外),在闭路时的平均电压输出为0.6 V,外部电阻为300kΩ,开路时为0.75V。这种材料的不良性能可能与可用的表面积以及由材料的形态和生物膜的结构引起的浓度极化有关。峰值功率从RVC的1.3 mW m〜(-2)到具有生物膜在闭合回路中生长的石墨的568 mW m〜(-2)不等。

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