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首页> 外文期刊>Chemosphere >Performance and microbial community structure of a full-scale ANITA™Mox bioreactor for treating reject water located in Finland
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Performance and microbial community structure of a full-scale ANITA™Mox bioreactor for treating reject water located in Finland

机译:全规模Anita™MOX生物反应器的性能和微生物群落结构,用于治疗位于芬兰的拒绝水

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摘要

The aim of this work was to study the operational performance and the microbial community dynamics during the start-up of ANITA (TM) Mox technology implemented at full-scale wastewater treatment plant in Finland to treat reject water from anaerobic digesters. The average ammonium removal in the studied setup reached around 90%, withstanding ammonium loads up to 0.13 g N m(-2)h(-1). The nitrite concentration in the effluent did not exceed 10 mg L-1, and there was a slight accumulation of NO3--N during the operation which was controlled. Thus, the result showed a robust success to high ammonium loading in presence of organic matter. The sequencing showed a heterogeneous microbial population where Methanosaeta, WCHA1-57 genus, Sphingobacteriia, Chlorobia and diverse unknown fungi were found as dominant phylotypes. Moreover, members of the Brocadiaceae family were dominant in the adhered biomass, mostly represented by Candidatus Scalindua, rarely reported in WWTPs. Overall, the results demonstrated a drastic effect of region-specific operational conditions on carrier biofilm microbial communities as it was demonstrated by the microbial studies. (C) 2021 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是研究在芬兰全规模污水处理厂实施的Anita(TM)MOX技术启动期间研究业务绩效和微生物群体动态,以治疗厌氧消化器的废水。所研究的设置中的平均除去达到约90%,含铵载荷高达0.13g n m(-2)h(-1)。流出物中的亚硝酸盐浓度不超过10mg L-1,并且在控制的操作期间没有略微积聚NO3-N。因此,结果表明,在有机物质存在下对高铵载荷施加稳健的成功。测序显示出一种非均相微生物群,其中甲蛋白酶,WCHA1-57属,海狮,氯鸟和不同未知的真菌被认为是主要的文学型。此外,Brocadiaceae家族的成员在粘附的生物质中占主导地位,主要由Candidatus Scalindua表示,很少在WWTPS中报道。总体而言,结果表明,区域特异性运行条件对载体生物膜微生物微生物群落的剧烈作用,因为它被微生物研究证明。 (c)2021 elestvier有限公司保留所有权利。

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