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Microbial redox processes in deep subsurface environments and the potential application of (per)chlorate in oil reservoirs

机译:地下深层环境中的微生物氧化还原过程及其在油藏中的潜在应用

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摘要

The ability of microorganisms to thrive under oxygen-free conditions in subsurface environments relies on the enzymatic reduction of oxidized elements, such as sulfate, ferric iron, or CO2, coupled to the oxidation of inorganic or organic compounds. A broad phylogenetic and functional diversity of microorganisms from subsurface environments has been described using isolation-based and advanced molecular ecological techniques. The physiological groups reviewed here comprise iron-, manganese-, and nitrate-reducing microorganisms. In the context of recent findings also the potential of chlorate and perchlorate [jointly termed (per)chlorate] reduction in oil reservoirs will be discussed. Special attention is given to elevated temperatures that are predominant in the deep subsurface. Microbial reduction of (per)chlorate is a thermodynamically favorable redox process, also at high temperature. However, knowledge about (per)chlorate reduction at elevated temperatures is still scarce and restricted to members of the Firmicutes and the archaeon Archaeoglobus fulgidus. By analyzing the diversity and phylogenetic distribution of functional genes in (meta)genome databases and combining this knowledge with extrapolations to earlier-made physiological observations we speculate on the potential of (per)chlorate reduction in the subsurface and more precisely oil fields. In addition, the application of (per)chlorate for bioremediation, souring control, and microbial enhanced oil recovery are addressed.
机译:微生物在地下环境中在无氧条件下生长的能力取决于与无机或有机化合物的氧化偶联的氧化元素(如硫酸盐,三价铁或CO2)的酶促还原。使用基于隔离的先进分子生态技术,已经描述了来自地下环境的微生物的广泛的系统发育和功能多样性。此处回顾的生理学组包括还原铁,锰和硝酸盐的微生物。在最新发现的背景下,还将讨论油藏中氯酸盐和高氯酸盐(统称为(全氯酸盐))还原的潜力。特别注意深部地下的高温。同样在高温下,微生物(高)氯酸盐的还原是热力学上有利的氧化还原过程。但是,关于在高温下还原(过)氯酸盐的知识仍然很少,并且仅限于Firmicutes和古细菌Archaeoglobus fulgidus的成员。通过分析(元)基因组数据库中功能基因的多样性和系统发育分布,并将此知识与外推结合到较早进行的生理观察中,我们推测地下(更确切地说是油田)中的(过氯酸盐)还原的潜力。另外,解决了(高)氯酸盐在生物修复,酸控制和微生物提高油回收方面的应用。

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