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Microbial community structure and dynamics in anaerobic fluidized-bed and granular sludge-bed reactors: influence of operational temperature and reactor configuration

机译:厌氧流化床和颗粒污泥床反应器中的微生物群落结构和动力学:操作温度和反应器配置的影响

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摘要

Methanogenic community structure and dynamics were investigated in two different, replicated anaerobic wastewater treatment reactor configurations [inverted fluidized bed (IFB) and expanded granular sludge bed (EGSB)] treating synthetic dairy wastewater, during operating temperature transitions from 37°C to 25°C, and from 25°C to 15°C, over a 430-day trial. Non-metric multidimensional scaling (NMS) and moving-window analyses, based on quantitative real-time PCR data, along with denaturing gradient gel electrophoresis (DGGE) profiling, demonstrated that the methanogenic communities developed in a different manner in these reactor configurations. A comparable level of performance was recorded for both systems at 37°C and 25°C, but a more dynamic and diverse microbial community in the IFB reactors supported better stability and adaptative capacity towards low temperature operation. The emergence and maintenance of particular bacterial genotypes (phylum Firmicutes and Bacteroidetes) was associated with efficient protein hydrolysis in the IFB, while protein hydrolysis was inefficient in the EGSB. A significant community shift from a Methanobacteriales and Methanosaetaceae towards a Methanomicrobiales-predominated community was demonstrated during operation at 15°C in both reactor configurations.
机译:在从37°C到25°C的工作温度转变过程中,研究了两种不同的重复厌氧废水处理反应器配置[转化流化床(IFB)和膨胀颗粒污泥床(EGSB)]的甲烷化群落结构和动力学。 ,并在430天的试用期内从25°C到15°C。基于定量实时PCR数据的非度量多维标度(NMS)和移动窗口分析,以及变性梯度凝胶电泳(DGGE)分析,表明在这些反应器配置中产甲烷菌群落以不同的方式发展。在37°C和25°C时,两个系统的性能均达到了可比的水平,但是IFB反应器中更具活力和多样性的微生物群落为低温运行提供了更好的稳定性和适应能力。特定细菌基因型(硬毛门和拟杆菌)的出现和维持与IFB中有效的蛋白质水解有关,而EGSB中的蛋白质水解无效。在两种反应器配置中,在15°C下运行期间,都证明了从甲烷菌和甲烷藻科向以甲烷微粒子为主的群落发生了显着的群落转移。

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