产甲烷
氨
火用反应
厌氧消化
丙酸盐
化学
吉布斯自由能
无氧运动
生物化学
甲烷
食品科学
生物
热力学
有机化学
催化作用
物理
生理学
作者
Fengqin Liu,Yifan Zhang,Yuxin Zhang,Jiale Yang,Wenyan Shen,Shuilian Yang,Zhiyu Quan,Bingshan Liu,Zhiliang Yuan,Yupeng Zhang,Zhiliang Yuan,Yupeng Zhang,Yupeng Zhang
标识
DOI:10.1016/j.biortech.2023.129919
摘要
Ammonia inhibition is a major challenge in anaerobic digestion processes, affecting the activity and performance of functional floras, including syntrophic butyrate oxidation (FSBO), syntrophic propionate oxidation (FSPO), acetoclastic methanogenesis (FAMs), and hydrogenotrophic methanogenesis (FHMs). FHMs was more tolerant to ammonia, with a half maximal inhibitory concentration (IC50) of 18.80 g/L, followed by FSBO (IC50 = 14.26 g/L) and FSPO (IC50 = 10.47 g/L), and FAMs was the most sensitive to ammonia with the lowest IC50 (1.74 g/L). The order of ammonia tolerance (IC50) was found to be correlated with the Gibbs free energy of metabolic reactions in each functional flora. The results suggested the functional flora with higher energy availability (exergonic capacity) exhibited enhanced ammonia resistance ability. These findings provide insights into the thermodynamic restrictions and ammonia tolerance mechanisms of functional floras, which can guide the optimization and operation of anaerobic digestion systems for efficient methane production.
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