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Sequentially aerated membrane biofilm reactors for autotrophic nitrogen removal: microbial community composition and dynamics

机译:依次气动膜生物膜反应器用于自养氮去除:微生物群落组成和动力学

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SummaryMembrane-aerated biofilm reactors performing autotrophic nitrogen removal can be successfully applied to treat concentrated nitrogen streams. However, their process performance is seriously hampered by the growth of nitrite oxidizing bacteria (NOB). In this work we document how sequential aeration can bring the rapid and long-term suppression of NOB and the onset of the activity of anaerobic ammonium oxidizing bacteria (AnAOB). Real-time quantitative polymerase chain reaction analyses confirmed that such shift in performance was mirrored by a change in population densities, with a very drastic reduction of the NOB Nitrospira and Nitrobacter and a 10-fold increase in AnAOB numbers. The study of biofilm sections with relevant 16S rRNA fluorescent probes revealed strongly stratified biofilm structures fostering aerobic ammonium oxidizing bacteria (AOB) in biofilm areas close to the membrane surface (rich in oxygen) and AnAOB in regions neighbouring the liquid phase. Both communities were separated by a transition region potentially populated by denitrifying heterotrophic bacteria. AOB and AnAOB bacterial groups were more abundant and diverse than NOB, and dominated by the r-strategists Nitrosomonas europaea and Ca. Brocadia anammoxidans, respectively. Taken together, the present work presents tools to better engineer, monitor and control the microbial communities that support robust, sustainable and efficient nitrogen removal.
机译:可以成功地施加进行自养氮去除的摘要膜 - 曝气的生物膜反应器以处理浓缩的氮气流。然而,由于亚硝酸盐氧化细菌(NOB)的生长严重阻碍了他们的过程性能。在这项工作中,我们记录了序列通气如何能够带来NOB的快速和长期抑制,以及厌氧铵氧化细菌(ANAOB)的活性的开始。实时定量聚合酶链反应分析证实,这种性能的变化因人口密度的变化而镜像,无氮氮血管和氮杆菌的变化减少,anaob数量增加了10倍。具有相关16S rRNA荧光探针的生物膜切片的研究揭示了培养了在邻近液相的区域(富含氧气)的生物膜表面(富含氧气)的生物膜区域中的有氧铵氧化细菌(AOB)的强烈的生物膜结构。两个社区都是通过潜在的过渡区域分开,可能通过反义诊断细菌填充。 AOB和Anaob细菌群体比NOB更丰富和多样化,并由R-orderstrist Nitrosomonaseuropaeaeaea和Ca主导。博会分别。一起携带,目前的工作提供了更好的工程师,监测和控制支持鲁棒,可持续和高效的氮气去除的微生物社区的工具。

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