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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Anode microbial communities produced by changing from microbial fuel cell to microbial electrolysis cell operation using two different wastewaters
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Anode microbial communities produced by changing from microbial fuel cell to microbial electrolysis cell operation using two different wastewaters

机译:通过使用两种不同的废水从微生物燃料电池转换为微生物电解池操作而产生的阳极微生物群落

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Conditions in microbial fuel cells (MFCs) differ from those in microbial electrolysis cells (MECs) due to the intrusion of oxygen through the cathode and the release of H2 gas into solution. Based on 16S rRNA gene clone libraries, anode communities in reactors fed acetic acid decreased in species richness and diversity, and increased in numbers of Geobacter sulfurreducens, when reactors were shifted from MFCs to MECs. With a complex source of organic matter (potato wastewater), the proportion of Geobacteraceae remained constant when MFCs were converted into MECs, but the percentage of clones belonging to G. sulfurreducens decreased and the percentage of G. metallireducens clones increased. A dairy manure wastewater-fed MFC produced little power, and had more diverse microbial communities, but did not generate current in an MEC. These results show changes in Geobacter species in response to the MEC environment and that higher species diversity is not correlated with current.
机译:微生物燃料电池(MFCs)中的条件与微生物电解电池(MECs)中的条件不同,这是由于氧气通过阴极侵入并释放H2到溶液中。基于16S rRNA基因克隆文库,当反应器从MFCs转移到MECs时,加入乙酸的反应器中的阳极群落物种丰富度和多样性降低,而减少地球还原细菌的数量增加。使用复杂的有机物源(马铃薯废水),当将MFCs转化为MEC时,土壤杆菌科的比例保持恒定,但是属于硫还原菌的克隆的百分比降低,而金属还原菌的克隆的百分比提高。奶牛粪便废水饲喂的MFC产生的功率很小,并且微生物群落更多样化,但在MEC中不产生电流。这些结果表明,响应于MEC环境,地细菌菌种发生了变化,并且更高的菌种多样性与当前情况无关。

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