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Biofilm formation monitored by confocal laser scanning microscopy during startup of MBBR operated under different intermittent aeration modes

机译:在不同间歇曝气模式下运行的MBBR启动过程中,通过共聚焦激光扫描显微镜监测生物膜形成

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Three intermittent aeration moving bed biofilm reactors (IAMBBRs) with the cycles of oxic and anoxic conditions of 5 h/1 h, 3 h/3 h, 1 h/5 h and a continuous aeration MBBR (CAMBBR) were operated simultaneously to observe the similarities and differences between intermittent aeration and continue aeration during startup stage. Confocal laser scanning microscopy (CLSM) was adopted to study the process of biofilm formation. The IAMBBR accelerated the startup of MBBR effectively by enhancing the rate-limiting step of biofilm formation. The microbes tended to secrete polysaccharide preferentially after attachment, and the primary genus varied from aerobic bacteria to anaerobic bacteria with the reduction of aeration time and the dominant denitrifying bacterial genus also changed. Biomass concentration and the protein/polysaccharide (PN/PS) ratio of biofilm were the highest in the mode of 3h/3h, andSphaerotilus,Brevifollis, andSaccharibacteria_genera_incertae_sediswere the dominant genera. In brief, the intermittent aeration could accelerate the startup of MBBR effectively.
机译:同时运行三个间歇曝气移动床生物膜反应器(IAMBBR),其氧化和缺氧条件循环为5 h / 1 h,3,h / 3 h,1 h / 5 h和连续曝气MBBR(CAMBBR),同时观察在启动阶段间歇充气和连续充气之间的异同。共聚焦激光扫描显微镜(CLSM)被用来研究生物膜形成过程。 IAMBBR通过增强生物膜形成的限速步骤,有效地加速了MBBR的启动。微生物在附着后倾向于优先分泌多糖,并且随着曝气时间的减少,主要属从需氧菌变为厌氧菌,主要反硝化菌属也发生了变化。在3h / 3h的模式下,生物膜的生物量浓度和蛋白质/多糖(PN / PS)比最高,其中球形菌属,短叶泡囊菌和糖杆菌属属的优势属。简而言之,间歇曝气可以有效地加速MBBR的启动。

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