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Bioconversion Pathway of CO2 in the Presence of Ethanol by Methanogenic Enrichments from Production Water of a High-Temperature Petroleum Reservoir

机译:通过高温石油储层生产水的甲醇富含乙醇存在二氧化碳的生物转化途径

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摘要

Transformation of CO2 in both carbon capture and storage (CCS) to biogenic methane in petroleum reservoirs is an attractive and promising strategy for not only mitigating the greenhouse impact but also facilitating energy recovery in order to meet societal needs for energy. Available sources of petroleum in the reservoirs reduction play an essential role in the biotransformation of CO2 stored in petroleum reservoirs into clean energy methane. Here, the feasibility and potential on the reduction of CO2 injected into methane as bioenergy by indigenous microorganisms residing in oilfields in the presence of the fermentative metabolite ethanol were assessed in high-temperature petroleum reservoir production water. The bio-methane production from CO2 was achieved in enrichment with ethanol as the hydrogen source by syntrophic cooperation between the fermentative bacterium Synergistetes and CO2-reducing Methanothermobacter via interspecies hydrogen transfer based upon analyses of molecular microbiology and stable carbon isotope labeling. The thermodynamic analysis shows that CO2-reducing methanogenesis and the methanogenic metabolism of ethanol are mutually beneficial at a low concentration of injected CO2 but inhibited by the high partial pressure of CO2. Our results offer a potentially valuable opportunity for clean bioenergy recovery from CCS in oilfields.
机译:在这两个碳捕获和储存(CCS)在油藏生物甲烷二氧化碳转化为不仅减轻温室效应的影响,但也有利于以满足对能源的社会需要能量回收一个有吸引力和有前途的战略。在水库减少石油的可用资源存储在油气藏成清洁能源甲烷二氧化碳的生物转化中发挥重要作用。在这里,对CO 2的减少的可行性和潜在注入甲烷作为由驻留在发酵代谢物乙醇的存在下油田土著微生物生物能源在高温石油储层生产用水进行了评估。从CO2生物甲烷产生在富集以乙醇为通过发酵细菌Synergistetes和CO 2减少通过基于分子微生物学稳定的碳同位素标记的分析种间氢转移Methanothermobacter之间互养合作氢源来实现的。热力学分析表明,CO 2减少甲烷和乙醇的产甲烷代谢是在注入的二氧化碳的浓度低的互利而是由CO 2的分压高的抑制。我们的研究结果提供油田从CCS清洁生物能源回收潜在的宝贵机会。

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