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Hacking biofilm developed in a structured-bed reactor (SBRRIA) with integrated processes of nitrogen and organic matter removal

机译:黑攻击生物膜在结构型床反应器(旱氏)中,具有氮气和有机物质的综合方法

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Biomass samples from a structured-bed reactor subjected to recirculation and intermittent aeration (SBRRIA) were analyzed to investigate the bacterial community shift along with the changes in the C/N ratio. The C/N ratios tested were 7.6 +/- 1.0 (LNC) and 2.9 +/- 0.4 (HNC). The massive sequencing analyses revealed that the microbial community adjusted itself to different organic and nitrogenous applied loads, with no harm to reactor performance regarding COD and Total-N removal. Under LNC, conventional nitrification and heterotrophic denitrification steered the process, as indicated by the detection of microorganisms affiliated with Nitrosomonadaceae, Nitrospiraceae, and Rhodocyclaceae families. However, under HNC, the C/N ratio strongly affected the microbial community, resulting in the prevalence of members of Saprospiraceae, Chitinophagaceae, Xanthomonadaceae, Comamonadaceae, Bacillaceae, and Planctomycetaceae. These families include bacteria capable of using organic matter derived from cell lysis, ammonia-oxidizers under low DO, heterotrophic nitrifiers-aerobic denitrifiers, and non-isolated strains of Anammox. The DO profile confirmed that the stratification in aerobic, anoxic, and anaerobic zones enabled the establishment of different nitrogen degradation pathways, including the Anammox.
机译:分析来自进行再循环和间歇曝气(综合)的结构化床反应器的生物质样品进行分析,以研究细菌群落转变以及C / N比的变化。测试的C / N比为7.6 +/- 1.0(LNC)和2.9 +/- 0.4(HNC)。巨大测序分析显示,微生物群落自身调节到不同的有机和氮施加的载荷,对COD和总除去的反应器性能没有损害。在LNC下,常规硝化和异养脱氮引导了该过程,如通过亚硝基菌群,Nitrospireae和Rhodocyclaceae家族的隶属化的微生物检测。然而,在HNC下,C / N比强烈影响微生物群落,导致SAPRospireae,曲尼氏菌属,Xanthomonadaceae,番茄素,杆菌和Planctomycetaceae的患病率。这些家庭包括能够使用衍生自细胞裂解的有机物质的细菌,低于低,异逸氮化剂 - 有氧脱氮剂和非分离的厌氧菌株的氨氧化剂。 DO型材证实,有氧,缺氧和厌氧区的分层使得能够建立不同的氮气降解途径,包括厌氧毒素。

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