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Process performance and microbial community structure in thermophilic trickling biofilter reactors for biogas upgrading

机译:嗜热滴滤生物滤池反应器的工艺性能和微生物群落结构,用于沼气升级

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This study evaluated the process performance and determined the microbial community structure of two lab-scale thermophilic trickling biofilter reactors used for biological methanation of hydrogen and carbon-dioxide for a total period of 94 days. Stable and robust operation was achieved by means of a single-pass gas flow. The quality of the output gas (97%) was comparable to the methane purity achieved by commercial biogas upgrading systems fulfilling the specifications to be used as substitute to natural gas. The reactors' methane productivity reached 1.7 L-CH4/(L-R center dot d) at hydrogen loading rate of 7.2 L-H2/(L-R center dot d). The spatial distribution of the microbial consortia localized in the liquid media and biofilm enabled us to gain a deeper understanding on how the microbiome is structured inside the trickling biofilter. Sequencing results revealed a significant predominance of Methanothermobacter sp. in the biofilm. Unknown members of the class Clostridia were highly abundant in biofilm and liquid media, while acetate utilising bacteria predominated in liquid samples. (C) 2018 Elsevier B.V. All rights reserved.
机译:这项研究评估了过程性能,并确定了两个实验室规模的,用于氢气和二氧化碳的生物甲烷化的嗜热滴流式生物滤池反应器的微生物群落结构,共计94天。通过单次通过气流可以实现稳定而稳定的运行。输出气体的质量(> 97%)与通过商业沼气提纯系统达到的甲烷纯度相当,该沼气提纯系统符合可替代天然气的规格。在7.2 L-H2 /(L-R中心点d)的氢加载速率下,反应器的甲烷生产率达到> 1.7 L-CH4 /(L-R中心点d)。微生物菌落在液体介质和生物膜中的空间分布使我们对滴滤式生物滤池内部微生物组的结构有了更深入的了解。测序结果显示,甲烷杆菌属甲烷菌占显着优势。在生物膜中。梭状芽胞杆菌属的未知成员在生物膜和液体培养基中含量很高,而乙酸盐利用在液体样品中占优势的细菌。 (C)2018 Elsevier B.V.保留所有权利。

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