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首页> 外文期刊>Applied Microbiology and Biotechnology >Microbial community composition and dynamics in high-temperature biogas reactors using industrial bioethanol waste as substrate
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Microbial community composition and dynamics in high-temperature biogas reactors using industrial bioethanol waste as substrate

机译:以工业生物乙醇废料为底物的高温沼气反应器中微生物群落组成和动力学

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Stillage, which is generated during bioethanol production, constitutes a promising substrate for biogas production within the scope of an integrated biorefinery concept. In this study, a microbial community was grown on thin stillage as mono-substrate in a continuous stirred tank reactor (CSTR) at a constant temperature of 55 °C, at an organic loading rate of 1.5 g_(oTS)/L*d and a retention time of 25 days. Using an amplicon-based dataset of 17,400 high-quality sequences of 16S rRNA gene fragments (V2-V3 regions), predominance of Bacteria assigned to the families Thermotogaceae and Elusimicrobiaceae was detected. Dominant members of methane-producing Euryarchaeota within the CSTR belonged to obligate acetoclastic Methanosaetaceae and hydrogenotrophic Methanobacteriaceae. In order to investigate population dynamics during reactor acidification, the organic loading rate was increased abruptly, which resulted in an elevated concentration of volatile fatty acids. Acidification led to a decrease in relative abundance of Bacteria accompanied with stable numbers of Archaea. Nevertheless, the abundance of Methanosaetaceae increased while that of Methanobacteriales decreased successively. These findings demonstrate that a profound intervention to the biogas process may result in persistent community changes and reveals uncommon bacterial families as process-relevant microorganisms.
机译:在生物乙醇生产过程中产生的釜馏物构成了在综合生物精炼概念范围内沼气生产的有前途的基质。在这项研究中,在连续搅拌釜反应器(CSTR)中,在55℃的恒定温度下,以1.5 g_(oTS)/ L * d的有机负荷速率和保留时间为25天。使用基于扩增子的数据集,该数据集包含17400个16S rRNA基因片段(V2-V3区域)的高质量序列,可检测到分配给嗜热菌科和Elusimicrobiaceae的细菌的优势。 CSTR中产甲烷的Euryarchaeota的主要成员属于专性的乙酰碎屑甲烷菌科和氢营养型甲烷菌科。为了研究反应器酸化过程中的种群动态,有机负载率突然增加,这导致挥发性脂肪酸浓度升高。酸化导致细菌相对丰度降低,同时古细菌数量稳定。尽管如此,甲烷藻科的丰度却增加了,而甲烷细菌的丰度却逐渐下降了。这些发现表明,对沼气过程的深刻干预可能导致持续的群落变化,并揭示了与过程相关的微生物的罕见细菌家族。

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