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首页> 外文期刊>International journal of applied mechanics >Comparative Analysis of Bacterial and Archaeal Community Structure in Microwave Pretreated Thermophilic and Mesophilic Anaerobic Digesters Utilizing Mixed Sludge under Organic Overloading
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Comparative Analysis of Bacterial and Archaeal Community Structure in Microwave Pretreated Thermophilic and Mesophilic Anaerobic Digesters Utilizing Mixed Sludge under Organic Overloading

机译:在有机超载下利用混合污泥的微波预处理嗜热嗜热嗜合厌氧消化器中细菌和古群落结构的比较分析

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The effects of microwave (MW) pretreatment were investigated by six anaerobic digesters operated under thermophilic and mesophilic conditions at high organic loading rates (4.9-5.7 g volatile solids/L/d). The experiments and analyses were mainly designed to reveal the impact of MW pretreatment and digester temperatures on the process stability and microbial community structure by correlating the composition of microbial populations with volatile fatty acid (VFA) concentrations. A slight shift from biogas production (with a reasonable methane content) to VFA accumulation was observed in the thermophilic digesters, especially in the MW-irradiated reactors. Microbial population structure was assessed using a high-throughput sequencing of 16S rRNA gene on the MiSeq platform. Microbial community structure was slightly affected by different MW pretreatment conditions, while substantially affected by the digester temperature. The phylum Bacteroidetes proliferated in the MW-irradiated mesophilic digesters by resisting high-temperature MW (at 160 degrees C). Hydrogenotrophic methanogenesis (mostly the genus of Methanothermobacter) was found to be a key route of methane production in the thermophilic digesters, whereas aceticlastic methanogenesis (mostly the genus of Methanosaeta) was the main pathway in the mesophilic digesters.
机译:通过在高有机加载率下在嗜热和中抚化条件下操作的六个厌氧消化器对微波(MW)预处理的影响(4.9-5.7g挥发固体/ L / D)。实验和分析主要设计用于揭示MW预处理和蒸煮温度对过程稳定性和微生物群落结构的影响,通过将微生物种群与挥发性脂肪酸(VFA)浓度相关联。在嗜热消化器中观察到从沼气生产(具有合理的甲烷含量)到VFA积聚的轻微转变,特别是在MW辐照反应器中。使用MISEQ平台上的16S rRNA基因的高通量测序评估微生物种群结构。微生物群落结构略微受到不同MW预处理条件的影响,同时受到消化泡温度的影响。通过抵抗高温Mw(160℃),在MW照射的化中消化器中增殖的Phylum Bacternetes。发现氢养型甲烷(大多是甲烷热杆菌属)是嗜热消化器中甲烷产生的关键途径,而醋酸甲烷发生(大多数甲基喹甲段)是嗜苯胺消化器中的主要途径。

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