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Characterizing the snorkeling respiration and growth of Shewanella decolorationis S12

机译:表征脱色希瓦氏菌S12的浮潜呼吸和生长

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摘要

Microbial electrochemical snorkel (MES) reactor is a simplified bioreactor based on microbial fuel cells (MFCs) and has been suggested to be a promising approach to solve many environmental problems. However, the microbial processes in MES reactors have not yet been characterized. This study shows that Shewanella decolorationis S12 can use the conductive snorkel as direct electron acceptor for respiration and growth. Similar with current-generating biofilms, cellular viability in MES biofilms decreased with the distance from snorkel. MES reactors showed more rapid cell growth and substrate consumption than MFCs. Although the biomass density of MES biofilm was higher than that of anode biofilms, the current-generating capacity and electrochemical activity of MES biofilm were lower, which could be attributed to the lower cytochrome c expression in MES biofilm caused by the higher redox potential of MES. These microbiological and electrochemical properties are essential for the further development of MES reactors.
机译:微生物电化学通气管(MES)反应器是一种基于微生物燃料电池(MFC)的简化生物反应器,已被认为是解决许多环境问题的有前途的方法。然而,MES反应器中的微生物过程尚未被表征。这项研究表明,希瓦氏菌S12可以使用导电通气管作为呼吸和生长的直接电子受体。与当前的生物膜相似,MES生物膜中的细胞活力随通气管距离的增加而降低。 MES反应器比MFC显示更快的细胞生长和底物消耗。尽管MES生物膜的生物量密度高于阳极生物膜,但MES生物膜的发电能力和电化学活性较低,这可能是由于MES较高的氧化还原电位导致MES生物膜中的细胞色素c表达较低。 。这些微生物和电化学性质对于MES反应器的进一步开发是必不可少的。

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