State Key Laboratory of Pollution Control and Resources Reuse, Key Laboratory of Yangtze River Water Environment, College of Environmental Science and Engineering, Tongji University, 1239 Siping Road, Shanghai 200092, PR China.
Department of Molecular Biosciences and Bioengineering (MBBE), University of Hawai'i at Mānoa, 1955 East-West Road, Agricultural Science Building 218, Honolulu, HI 96822, USA.
Bioresour Technol. 2018 Oct;266:364-373. doi: 10.1016/j.biortech.2018.03.092. Epub 2018 Mar 30.
Coke oven gas is considered as a potential hydrogen source for biogas bio-upgrading. In this study, the effects of CO on biomethanation performance and microbial community structure of hydrogenotrophic mixed cultures were investigated under thermophilic (55 °C) and extreme-thermophilic (70 °C) conditions. 5% (v/v) CO did not inhibit hydrogenotrophic methanogenesis during semi-continuous operation, and 83-97% CO conversion to CH was achieved. Methanothermobacter thermoautotrophicus was the dominant methanogen at both temperatures and was the main functional archaea associated with CO biomethanation. Specific methanogenic activity test results showed that long-term 5% CO acclimation shortened the lag phase from 5 h to 1 h at 55 °C and 15 h to 3 h at 70 °C. CO was the preferred carbon source over CO for hydrogenotrophic methanogens and CO consumption only started when CO was completely depleted. M. thermoautotrophicus dominated mixed cultures showed a great potential in simultaneous hydrogenotrophic methanogenesis and CO biomethanation.
焦炉煤气被认为是沼气生物强化的潜在氢源。在这项研究中,考察了 CO 在高温(55°C)和极端高温(70°C)条件下对氢营养混合培养物生物甲烷化性能和微生物群落结构的影响。5%(v/v)CO 不会在半连续运行中抑制氢营养型产甲烷作用,并且 83-97%的 CO 转化为 CH。在这两种温度下,产甲烷菌 Methanothermobacter thermoautotrophicus 均为优势产甲烷菌,是与 CO 生物甲烷化相关的主要功能古菌。特定的产甲烷活性测试结果表明,5% CO 的长期驯化将 55°C 时的滞后期从 5 小时缩短至 1 小时,70°C 时的滞后期从 15 小时缩短至 3 小时。CO 是氢营养型产甲烷菌的首选碳源,只有当 CO 完全耗尽时才开始消耗 CO。以产甲烷菌 Methanothermobacter thermoautotrophicus 为主的混合培养物在同时进行氢营养型产甲烷作用和 CO 生物甲烷化方面具有很大的潜力。