Carbon dioxide concentration dictates alternative methanogenic pathways in oil reservoirs.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 23759740.
- Also identified by DOI 10.1038/ncomms2998 and PMC identifier 3709511.
- Licence recorded as CC BY-NC-SA.
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Abstract
Deep subsurface formations (for example, high-temperature oil reservoirs) are candidate sites for carbon capture and storage technology. However, very little is known about how the subsurface microbial community would respond to an increase in CO2 pressure resulting from carbon capture and storage. Here we construct microcosms mimicking reservoir conditions (55 °C, 5 MPa) using high-temperature oil reservoir samples. Methanogenesis occurs under both high and low CO2 conditions in the microcosms. However, the increase in CO2 pressure accelerates the rate of methanogenesis to more than twice than that under low CO2 conditions. Isotope tracer and molecular analyses show that high CO2 conditions invoke acetoclastic methanogenesis in place of syntrophic acetate oxidation coupled with hydrogenotrophic methanogenesis that typically occurs in this environment (low CO2 conditions). Our results present a possibility of carbon capture and storage for enhanced microbial energy production in deep subsurface environments that can mitigate global warming and energy depletion.
Medical subject headings
- Carbon Dioxide
- Methane
- Microbiota
- Oil and Gas Fields