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Granular biomass selection in a double-stage biogas collection UASB reactor: effects on SMA, abundance and diversity of the methanogenic population

机译:双级沼气收集UASB反应器中颗粒生物质的选择:对SMA,产甲烷菌种群的丰度和多样性的影响

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The present work aimed at investigating biomass selection in a pilot-scale double-stage biogas collection (DSBC) upflow anaerobic sludge bed (USAB) reactor treating domestic wastewater. Specific methanogenic activity (SMA) measurements and FISH countings were applied to sludge samples collected during 102 days of operation of the DSBC-UASB and of a control reactor. Results showed that both reactors presented similar SMA values in early stages of operation however the UASB-DSBC reactor showed much higher SMA after day 45, when the biomass was in granular stage. In terms of archaeal abundance, no statistical difference was observed between the reactors. Polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) revealed a similar composition of the archaeal communities in the two reactors and during the operational period, mainly constituted by Methanosaeta concilii. The results suggest that cell activity rather than archaeal abundance or diversity drive the methane production in the UASB reactors.
机译:目前的工作旨在研究处理生活污水的中试规模双级沼气收集(DSBC)上流厌氧污泥床(USAB)反应器中的生物量选择。将比产甲烷活性(SMA)测量值和FISH计数应用于在DSBC-UASB和对照反应器运行102天期间收集的污泥样品。结果表明,两个反应器在运行初期均表现出相似的SMA值,但是UASB-DSBC反应器在第45天(生物质处于颗粒阶段)后显示出更高的SMA。就古细菌丰度而言,在反应器之间未观察到统计学差异。聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)显示,两个反应器中和运行期间古细菌群落的组成相似,主要由固结甲烷菌构成。结果表明,细胞活动而不是古细菌的丰度或多样性驱动了UASB反应器中甲烷的产生。

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