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Competition between planktonic and fixed microorganisms during the start-up of methanogenic biofilm reactors

机译:产甲烷生物膜反应器启动过程中浮游微生物与固定微生物之间的竞争

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The influence of the hydraulic retention time (HRT) on the start-up phase of a methanogenic inverse turbulent bed bioreactor was investigated. Two identical reactors were monitored, the only differing parameter being the HRT: one of the reactors was fed with a diluted wastewater at a constant HRT of 1 day, the organic loading rate (OLR) being increased by decreasing the substrate dilution; the second reactor was fed at a constant influent concentration of 20 g_(COD)L~(-1), the OLR being increased by decreasing the HRT from 40 days to 1 day. After 45 days of start-up, both reactors were operated at an OLR of 20 g_(COD)L~(-1)d~(-1) and a HRT of 1 day. However, strong differences were observed on biofilm growth. In the reactor operated at a constant short HRT, biofilm concentration was 4.5 as high as in the reactor operated at an increasing HRT. This difference was attributed to the competition between planktonic and biofilm microorganisms in the latter reactor, whereas suspended biomass was quickly washed out in the former reactor because of the low HRT.
机译:研究了水力停留时间(HRT)对产甲烷的逆湍床生物反应器启动阶段的影响。监测了两个相同的反应器,唯一不同的参数是HRT:一个反应器以1天的恒定HRT进料了稀释的废水,通过降低底物稀释度来增加有机负荷率(OLR);第二个反应器以恒定的进水浓度20 g_(COD)L〜(-1)进料,通过将HRT从40天减少到1天来增加OLR。启动45天后,两个反应器均以20 g_(COD)L〜(-1)d〜(-1)的OLR和1天的HRT运行。然而,在生物膜生长上观察到强烈差异。在恒定短HRT下运行的反应器中,生物膜浓度为4.5 HRT下运行的反应器中的生物膜浓度高。这种差异归因于后反应器中浮游生物和生物膜微生物之间的竞争,而悬浮反应的生物质由于HRT低而在前反应器中被快速洗掉。

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