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古菌群落组成是生物甲烷化过程启动时 H2 消耗速率的关键驱动因素。

Archaeal community composition as key driver of H2 consumption rates at the start-up of the biomethanation process.

机构信息

INRAE, Univ. Montpellier, LBE, 102 Avenue des étangs, F-11100 Narbonne, France; ENGIE, Lab CRIGEN, 4 Rue Joséphine Baker, 93240 Stains, France.

ENGIE, Lab CRIGEN, 4 Rue Joséphine Baker, 93240 Stains, France.

出版信息

Sci Total Environ. 2024 Jun 25;931:172922. doi: 10.1016/j.scitotenv.2024.172922. Epub 2024 May 1.

DOI:10.1016/j.scitotenv.2024.172922
PMID:38701927
Abstract

The performance of hydrogen consumption by various inocula derived from mesophilic anaerobic digestion plants was evaluated under ex situ biomethanation. A panel of 11 mesophilic inocula was operated at a concentration of 15 g.L at a temperature of 35 °C in batch system with two successive injections of H:CO (4:1 mol:mol). Hydrogen consumption and methane production rates were monitored from 44 h to 72 h. Hydrogen consumption kinetics varies significantly based on the inoculum origin, with no accumulation of volatile fatty acids. Microbial community analyses revealed that microbial indicators such as the increase in Methanosarcina sp. abundance and the increase of the Archaea/Bacteria ratio were associated to high initial hydrogen consumption rates. The improvement in the hydrogen consumption rate between the two injections was correlated with the enrichment in hydrogenotrophic methanogens. This work provides new insights into the early response of microbial communities to hydrogen injection and on the microbial structures that may favor their adaptation to the biomethanation process.

摘要

在体外生物甲烷化条件下,评估了源自中温厌氧消化厂的各种接种物对氢气消耗的性能。在分批系统中,使用 11 种中温接种物在 35°C 的温度下以 15 g.L 的浓度进行操作,并用两次 H:CO(4:1 mol:mol)连续注入。从 44 h 到 72 h 监测氢气消耗和甲烷生成速率。基于接种物的来源,氢气消耗动力学有很大差异,没有挥发性脂肪酸的积累。微生物群落分析表明,微生物指标如 Methanosarcina sp.丰度的增加和古菌/细菌比例的增加与高初始氢气消耗率相关。两次注射之间氢气消耗率的提高与产氢甲烷菌的富集有关。这项工作为微生物群落对氢气注入的早期响应以及可能有利于它们适应生物甲烷化过程的微生物结构提供了新的见解。

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