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Stratified microbial structure and activity within anode biofilm during electrochemically assisted brewery wastewater treatment

机译:电化学辅助啤酒废水处理中阳极生物膜中的分层微生物结构和活性

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摘要

In a bioelectrochemical system (BES), microbial community of anode biofilm is crucial to BES performance. In this study, the stratified pattern of community structure and activity of an anode-respiring biofilm in a BES fueled with brewery wastewater was investigated over time. The anode biofilm exhibited a superior performance in the removal of ethanol to that of an open-circuit system. The electrical current density reached a high level of 0.55mA/cm(2) with a Coulombic efficiency of 71.4%, but decreased to 0.18mA/cm(2) in the late stage of operation. A mature biofilm developed a more active outer layer covering a less active inner core, although the activities of the outer and inner layers of biofilm were similar in the early stage. More Geobacter spp., typical exoelectrogens, were enriched in the outer layer than in the inner layer of biofilm in the early stage, while more Geobacter spp. were distributed in the inner layer than in the outer layer in the late stage. The inactive and Geobacter-occupied inner layer of biofilm might be responsible for the decreased electricity generation from wastewater in the late stage of operation. This study provides better understanding of the effect of anode biofilm structure on BES performance.
机译:在生物电化学系统(BES)中,阳极生物膜的微生物群落对于性能至关重要。在该研究中,随着时间的推移,研究了在B BES中燃料中的群落结构和阳极呼吸生物膜活性的分层模式。阳极生物膜在去除乙醇中表现出优异的性能,以将乙醇除去开放式系统。电流密度达到0.55mA / cm(2)的高水平,库仑效率为71.4%,但在后期运行过程中降至0.18mA / cm(2)。成熟的生物膜开发了一种更具活性的外层,覆盖着较少的活性内芯,尽管生物膜的外层和内层的活性在早期相似。更多的Geobacter SPP。,典型的exoelectogens,富含在外层的外层,而在早期的生物膜内层,而更多的地形杆菌SPP。分布在内层中,而不是在后期的外层中。占用的生物膜的非活性和地形分子占用的内层可能负责从运行后期的废水中的电力减少。该研究更好地了解阳极生物膜结构对BES性能的影响。

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