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Enrichment of microbial community generating electricity using a fuel-cell-type electrochemical cell

机译:使用燃料电池型电化学电池富集微生物群落发电

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A fuel cell was used to enrich a microbial consortium generating electricity, using organic wastewater as the fuel. Within 30 days of enrichment the maximum current of 0.2 mA was generated with a resistance of 1 kOmega. Current generation was coupled to a fall in chemical oxygen demand from over 1,700 mg l(-1) down to 50 mg l(-1). Denaturing gradient gel electrophoresis showed a different microbial population in the enriched electrode from that in the sludge used as the inoculum. Electron microscopic observation showed a biofilm on the electrode surface and microbial clumps. Nanobacteria-like particles were present on the biofilm surface. Metabolic inhibitors and electron acceptors inhibited the current generation. 16S ribosomal RNA gene analysis showed a diverse bacterial population in the enrichment culture. These findings demonstrate that an electricity-generating microbial consortium can be enriched using a fuel cell and that the electrochemical activity is a form of anaerobic electron transfer. [References: 37]
机译:使用有机废水作为燃料,使用燃料电池来富集微生物发电集团。在富集30天之内,产生的最大电流为0.2 mA,电阻为1 kOmega。当前的产生与化学需氧量从1,700 mg l(-1)下降到50 mg l(-1)下降有关。变性梯度凝胶电泳显示富集电极中的微生物数量与用作接种物的污泥中的微生物数量不同。电子显微镜观察显示电极表面和微生物团块上有生物膜。纳米细菌样颗粒存在于生物膜表面。代谢抑制剂和电子受体抑制了电流的产生。 16S核糖体RNA基因分析表明,在富集培养中细菌的数量众多。这些发现表明,可以使用燃料电池来富集发电微生物协会,并且电化学活性是厌氧电子转移的一种形式。 [参考:37]

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