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首页> 外文期刊>Electrochimica Acta >A Highly Efficient Mixed-culture Biofilm as Anodic Catalyst and Insights into Its Enhancement through Electrochemistry by Comparison with G. sulfurreducens
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A Highly Efficient Mixed-culture Biofilm as Anodic Catalyst and Insights into Its Enhancement through Electrochemistry by Comparison with G. sulfurreducens

机译:一种高效的混合培养生物膜作为阳极催化剂,并通过与G. sulfreducens的比较通过电化学方法增强其认识

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摘要

In this paper an efficient mixed-culture microbial biofilm with increased current density by 68.6% (1020.9 +/- 47 mu A cm(-2)) than that on typical culture of Geobacter sulfurreducens biofilm was firstly reported. The insights into the enhanced electricity-producing ability was investigated through evaluating the dependence of limiting current density on electroactive biomass coverage, replacing used growth medium, applying stirring and electron transfer kinetics. It was shown that the enhanced electricity generation ability of the mixed-culture biofilm is from population superiority of active molecules or electron shuttles from the biofilm. This work suggested that the optimized synergistic effect between interspecies in community could significantly improve electricity-producing performance than single strain. This study highlighted the potential synergistic role in special community on electricity generation capability. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在本文中,首次报道了一种有效的混合培养微生物生物膜,其电流密度比土细菌还原硫生物膜的典型培养物增加了68.6%(1020.9 +/- 47μA cm(-2))。通过评估限制电流密度对电活性生物质覆盖率的依赖性,替换用过的生长培养基,应用搅拌和电子转移动力学,研究了增强发电能力的见解。结果表明,混合培养生物膜的发电能力增强来自活性分子的种群优势或来自生物膜的电子穿梭。这项工作表明,社区中种间间的优化协同效应比单一菌株可以显着提高发电性能。这项研究强调了特殊社区在发电能力方面的潜在协同作用。 (C)2014 Elsevier Ltd.保留所有权利。

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