Petroleum Science >2026, Issue9: 5497-5508 DOI: https://doi.org/10.1016/j.petsci.2026.03.052
In-situ anaerobic microbial oxidation of alkane gases within tight shale reservoir in the Ordos Basin: Evidence from intramolecular isotope compositions of desorbed propane Open Access
文章信息
作者:Rui-Liang Guo, Juske Horita, Ji-Hong Li, Yun-Chao Hou, Jun-Lin Chen, Peng Liu
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引用方式:Guo, R.L., Horita, J., Li, J.H., et al., 2026. In-situ anaerobic microbial oxidation of alkane gases within tight shale reservoir in the Ordos Basin: Evidence from intramolecular isotope compositions of desorbed propane. Petrol. Sci. 23 (9), 5497–5508. https://doi.org/10.1016/j.petsci.2026.03.052.
文章摘要
Anaerobic microbial oxidation of hydrocarbons is a key biogeochemical process influencing hydrocarbon compositions and the carbon cycle in subsurface systems. In this study, the microbial oxidation of propane within the Chang 7 shale of the Ordos Basin was investigated through intramolecular carbon isotope analysis of thermally desorbed gases. The results show that samples affected by microbial activity exhibit elevated ΔC-T values (3.9‰–7.9‰), δ13Ccentral values ranging from −27.2‰ to −22.9‰, and δ13Cterminal values from −31.1‰ to −30.5‰, significantly higher than non-degraded samples. These isotopic characteristics indicate that microorganisms preferentially oxidize the central carbon atom in propane, while the terminal carbon retains its original isotopic signature. The distinct position-specific isotopic patterns serve as sensitive indicators of microbial degradation in shale reservoirs. Furthermore, sedimentological data suggest that microbial degradation potential is closely linked to the sand supply from different sedimentary facies. Toward deeper lacustrine settings, reductions in sandy interlayer thickness and grain size, along with enhanced nanoconfinement effects, restrict nutrient diffusion and microbial mobility, resulting in limited degradation despite favorable thermal conditions. This study confirms that intramolecular-level isotopic techniques provide powerful tools for identifying microbial processes in low-permeability shales and contribute to a better understanding of shale oil and gas reservoir evolution.
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Microbial anaerobic oxidation; Propane; Position-specific carbon isotope; Chang 7 shale; The Ordos basin