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在双室微生物电解池(MEC)中阳极生物膜再形成过程中微生物群落的特性。

Characterization of microbial communities during anode biofilm reformation in a two-chambered microbial electrolysis cell (MEC).

机构信息

State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology (SKLUWRE, HIT), Harbin 150090, China.

出版信息

J Biotechnol. 2012 Feb 20;157(4):628-32. doi: 10.1016/j.jbiotec.2011.09.010. Epub 2011 Sep 16.

Abstract

GeoChip (II) and single strand conformation polymorphism (SSCP) were used to characterize anode microbial communities of a microbial electrolysis cell (MEC). Biofilm communities, enriched in a two-chamber MEC (R1, 0.6 V applied) having a coulombic efficiency (CE) of 35±4% and a hydrogen yield (Y(H₂))of 31±3%, were used as the inoculum for a new reactor (R2). After three months R2 achieved stable performance with CE=38±4% and (Y(H₂)). Few changes in the predominant populations were observed from R1 to R2. Unlike sludge inoculation process in R1 in the beginning, little further elimination was aroused by community competitions in anode biofilm reformation in R2. Functional genes detection of biofilm indicated that cytochrome genes enriched soon in new reactor R2, and four genera (Desulfovibrio, Rhodopseudomonas, Shewanella and Geobacter) were likely to contribute to exoelectrogenic activity. This work also implied that symbiosis of microbial communities (exoelectrogens and others) contribute to system performance and stability.

摘要

采用 GeoChip (II) 和单链构象多态性 (SSCP) 来表征微生物电解池 (MEC) 的阳极微生物群落。从库仑效率 (CE) 为 35±4%和产氢率 (Y(H₂))为 31±3%的具有两个腔室的 MEC (施加 0.6 V) 中富集的生物膜群落,被用作新反应器 (R2) 的接种物。在三个月后,R2 实现了稳定的性能,CE=38±4%和 (Y(H₂))。从 R1 到 R2,观察到主要种群的变化很小。与 R1 中的污泥接种过程不同,在 R2 中阳极生物膜再形成过程中的群落竞争引起的进一步淘汰很少。生物膜功能基因检测表明,新反应器 R2 中细胞色素基因很快得到富集,有四个属(脱硫弧菌、红假单胞菌、希瓦氏菌和地杆菌)可能有助于外源性活性。这项工作还表明,微生物群落(外源性菌和其他菌)的共生有助于系统性能和稳定性。

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