合成气
合成气制汽油
生物量(生态学)
产甲烷菌
二氧化碳
化学
甲烷
气体成分
制浆造纸工业
废物管理
化学工程
环境科学
氢
有机化学
蒸汽重整
制氢
生态学
工程类
物理
热力学
生物
作者
Chunxing Li,Xinyu Zhu,Irini Angelidaki
标识
DOI:10.1016/j.biortech.2021.125997
摘要
The concept of syngas biomethanation is attractive, however, it still needs improvement in optimizing the operational conditions. In the present study, syngas fermentations under different carbon monoxide (CO), carbon dioxide (CO2) and hydrogen (H2) compositions were conducted under two different biomass-gas ratio (BGR) systems. The results showed that high BGR enhanced the CO consumption rate, achieving a 60% enhancement with CO as the sole substrate. Stoichiometric H2 addition could successfully convert all the CO and CO2 to pure methane, however, higher H2 partial pressure might decline the CO consumption due to pH inhibition from consumption of bicarbonate. Microbial analysis showed different syngas composition could affect the bacteria community, while, archaea community was only slightly affected with Methanothermobacter as the dominant methanogen. This study provided strategy for efficient syngas biomethanation and deeper insight into effect of H2 addition on CO conversion under different BGR systems.
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