首页> 外文期刊>Environmental Science: Water Research & Technology >Microbial population selection in integrated fixed-film sequencing batch reactors operated with different lengths of oxic and anoxic conditions
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Microbial population selection in integrated fixed-film sequencing batch reactors operated with different lengths of oxic and anoxic conditions

机译:微生物种群在集成的固定膜序表中选择,具有不同长度的氧和缺氧条件操作

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The paper assesses the impact of the duration of oxic and anoxic conditions on the selection of microbial populations in laboratory-scale integrated fixed-film sequencing batch reactors (IF-SBRs). IF-SBRs were fed anaerobically with glucose and sodium acetate based synthetic wastewater. Three IF-SBRs were operated with different lengths of oxic and anoxic periods, and a control IF-SBR was operated with continuous aeration during the react phase of the SBR cycle. Compact flocs were formed in the control bioreactor, whereas granular sludge developed rapidly within ten days in the IF-SBR operated with an extended anoxic phase (3.25 hours within the six-hour cycle). Filamentous bulking was observed in the IF-SBRs that were operated with relatively moderate anoxic periods. Confocal laser scanning microscopy of the granular sludge revealed that beta-polysaccharide and amyloid adhesins were predominant in the periphery and core of the granules, respectively. 16S rRNA gene sequencing (Illumina MiSeq) revealed rapid selection and increases in the relative abundance of Flavobacterium, Caulobacter, Dechloromonas, Zoogloea, and bacterial genera related to the family Comamonadaceae, that were predominant in the granular sludge. The functional capabilities of the bacteria that were predominant in the granular sludge include quorum sensing, formation of storage polymers, and denitrification. Optimizing the length of oxic and anoxic conditions in sequencing batch reactors, and in the configuration in this study which was a hybrid system consisting of flocs, biofilm and granular sludge, is an important consideration in the selection of bacterial populations important to the development of microbial structures, and granular sludge in particular.
机译:本文评估了氧和缺氧条件持续时间对实验室级集成固定膜测序批量反应器(IF-SBR)中的微生物群体的选择的影响。 IF-SBRS用葡萄糖和乙酸钠的合成废水厌氧。用不同长度的氧和缺氧时段操作三个IF-SBR,并且在SBR循环的反应阶段期间连续通气运行控制IF-SBR。在对照生物反应器中形成紧凑的絮状物,而IF-SBR在10天内发育的颗粒污泥在延长的缺氧相(六小时循环中3.25小时)内迅速开发。在具有相对中等的缺氧期操作的IF-SBR中观察到丝状膨胀。颗粒污泥的共聚焦激光扫描显微镜显示,β-多糖和淀粉样蛋白粘附素分别在颗粒的周边和核心中主要是占主导的。 16S RRNA基因测序(Illumina miseq)揭示了与颗粒污泥的家族污泥占主导地位的快速选择和增加的味道,大杆菌,脱氯,毒素和细菌属的迅速。在粒状污泥中占主导地位的细菌的功能能力包括测定的储存聚合物的形成和反硝化。在测序批量反应器中优化氧和缺氧条件的长度,并且在本研究中的构造中,该研究是由絮状物,生物膜和颗粒污泥组成的混合系统,是选择对微生物发育很重要的细菌种群的重要考虑因素结构,特别是颗粒污泥。

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    Queen's Univ Sch Environm Stud Kingston ON Canada;

    Queen's Univ Sch Environm Stud Kingston ON Canada;

    Queen's Univ Sch Environm Stud Kingston ON Canada|Ryerson Univ Dept Chem & Biol Off Vice President Res & Innovat Toronto ON M5B 2K3 Canada|Stellenbosch Univ Dept Microbiol Stellenbosch South Africa;

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