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Microbial diversity in innovative mesophilic/thermophilic temperature-phased anaerobic digestion of sludge

机译:新型中温/嗜温污泥厌氧消化过程中的微生物多样性

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Anaerobic digestion (AD) is one of the few sustainable technologies that both produce energy and treat waste streams. Driven by a complex and diverse community of microbes, AD may be affected by different factors, many of which also influence the composition and activity of the microbial community. In this study, the biodiversity of microbial populations in innovative mesophilic/thermophilic temperature-phased AD of sludge was evaluated by means of fluorescence in situ hybridization (FISH). The increase of digestion temperature drastically affected the microbial composition and selected specialized biomass. Hydrogenotrophic Methanobacteriales and the protein fermentative bacterium Coprothermobacter spp. were identified in the thermophilic anaerobic biomass. Shannon-Weaver diversity (H') and evenness (E) indices were calculated using FISH data. Species richness was lower under thermophilic conditions compared with the values estimated in mesophilic samples, and it was flanked by similar trend of the evenness indicating that thermophilic communities may be therefore more susceptible to sudden changes and less prompt to adapting to operative variations.
机译:厌氧消化(AD)是为数不多的既产生能量又处理废物流的可持续技术之一。在复杂多样的微生物群落的驱动下,AD可能会受到不同因素的影响,其中许多因素也会影响微生物群落的组成和活性。在这项研究中,通过荧光原位杂交(FISH)评估了创新型中温/嗜温污泥AD中微生物种群的生物多样性。消化温度的升高极大地影响了微生物的组成和特定的生物质。氢营养型甲烷细菌和蛋白质发酵细菌Coprothermobacter spp。被鉴定为嗜热厌氧生物质。使用FISH数据计算Shannon-Weaver分集(H')和均匀度(E)指数。与嗜温样品估计的值相比,在嗜热条件下的物种丰富度要低,并且其侧翼具有相似的均匀性趋势,这表明嗜热群落因此可能更容易发生突然变化,而较不适应操作变异。

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