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Impact of Substratum Surface on Microbial Community Structure and Treatment Performance in Biological Aerated Filters

机译:曝气生物滤池中基质表面对微生物群落结构和处理性能的影响

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摘要

The impact of substratum surface property change on biofilm community structure was investigated using laboratory biological aerated filter (BAF) reactors and molecular microbial community analysis. Two substratum surfaces that differed in surface properties were created via surface coating and used to develop biofilms in test (modified surface) and control (original surface) BAF reactors. Microbial community analysis by 16S rRNA gene-based PCR-denaturing gradient gel electrophoresis (DGGE) showed that the surface property change consistently resulted in distinct profiles of microbial populations during replicate reactor start-ups. Pyrosequencing of the bar-coded 16S rRNA gene amplicons surveyed more than 90% of the microbial diversity in the microbial communities and identified 72 unique bacterial species within 19 bacterial orders. Among the 19 orders of bacteria detected, Burkholderiales and Rhodocyclales of the Betaproteobacteria class were numerically dominant and accounted for 90.5 to 97.4% of the sequence reads, and their relative abundances in the test and control BAF reactors were different in consistent patterns during the two reactor start-ups. Three of the five dominant bacterial species also showed consistent relative abundance changes between the test and control BAF reactors. The different biofilm microbial communities led to different treatment efficiencies, with consistently higher total organic carbon (TOC) removal in the test reactor than in the control reactor. Further understanding of how surface properties affect biofilm microbial communities and functional performance would enable the rational design of new generations of substrata for the improvement of biofilm-based biological treatment processes.
机译:使用实验室生物曝气过滤器(BAF)反应器和分子微生物群落分析研究了基质表面性质变化对生物膜群落结构的影响。通过表面涂层产生了两个表面性质不同的底层表面,并用于在测试(改性表面)和对照(原始表面)BAF反应器中显影生物膜。通过基于16S rRNA基因的PCR变性梯度凝胶电泳(DGGE)进行的微生物群落分析表明,在复制反应器启动过程中,表面性质的变化始终如一地导致了微生物种群的不同特征。条形码的16S rRNA基因扩增子的焦磷酸测序对微生物群落中90%以上的微生物多样性进行了调查,并在19个细菌群落中鉴定出72种独特的细菌。在检测到的19个细菌中,β变形杆菌类的Burkholderiales和Rhodocyclales在数量上占优势,占序列读数的90.5%至97.4%,并且在两个反应器中,测试和对照BAF反应器中它们的相对丰度在一致模式上不同初创企业。五个优势细菌物种中的三个也显示出在测试和对照BAF反应器之间一致的相对丰度变化。不同的生物膜微生物群落导致不同的处理效率,测试反应器中的总有机碳去除率始终高于对照反应器。进一步了解表面特性如何影响生物膜微生物群落和功能性能,将能够合理设计新一代基质,以改善基于生物膜的生物处理工艺。

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