Intramolecular isotopic evidence for bacterial oxidation of propane in subsurface natural gas reservoirs
Внутримолекулярные изотопные свидетельства бактериального окисления пропана в подземных залежах природного газа
2019-03-18
SCID: 54.1/bzbdne9v
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anaerobic bacterial oxidationcarbon cycleposition-specific isotope analysispropane biodegradationsubsurface natural gas reservoirs
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Abstract (AI)
Significance Microorganisms can oxidize hydrocarbons anaerobically, but the detection and quantification of this process in natural settings remains difficult, impeding reliable estimation of these processes at the global scale. We have used the technique of position-specific isotope analysis of propane and show that anaerobic biological degradation of propane leads to a specific signature that differs from that of propane produced from thermal decomposition of higher hydrocarbons. When applied to natural gas reservoirs, we show that anaerobic bacterial oxidation of propane can be detected and quantified, which is not the case with the use of conventional methods. Our findings are thus of importance for the detection of subsurface biology, for the understanding of the carbon cycle, and more broadly for environmental sciences.
Key Findings
1
Applied to natural gas reservoirs, the method detects and quantifies anaerobic bacterial oxidation of propane.
2
Conventional analytical methods cannot detect anaerobic bacterial propane oxidation in these natural gas reservoirs.
3
Position-specific isotope analysis of propane identifies a distinctive signature of anaerobic biological propane degradation.
4
The approach enables improved detection of subsurface biology and informs understanding of carbon cycling and environmental processes.
5
The isotopic signature of biologically degraded propane differs from propane generated by thermal decomposition of higher hydrocarbons.
Research Object
Propane in subsurface natural gas reservoirs
Research Subject
Intramolecular isotopic signatures and quantification of anaerobic bacterial oxidation of propane, distinguishing it from thermogenic propane formation
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2019-03-18
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