Tracing Shale-Gas Migration in Complex Tectonic Settings: Evidence from Carbon-Isotope Fractionation Patterns

Abstract Late-stage tectonic deformation strongly influences shale-gas preservation and redistribution, but conventional methods rarely resolve gas-migration pathways and directions. Here, we test whether the direction of spatial carbon-isotope gradients can indicate the dominant direction of gas migration. We examine carbon isotopes of methane and ethane in the Jiaoshiba, Dongxi, and Pengshui blocks of the southeastern Sichuan Basin. These blocks have contrasting tectonic configurations but share the Wufeng–Longmaxi shale-gas system. We integrate the isotope data with multiscale pore-structure characterization and formation-pressure measurements. In the three selected shale samples, diffusion-dominated nanopores below 25 nm accounted for 7.8–13.2% of the measured pore volume and provided the physical basis for interpreting isotope fractionation. At Jiaoshiba, methane δ13C becomes heavier toward faults, consistent with preferential vertical escape of 12CH4. At Dongxi, ethane δ13C differs markedly between structural highs and deep sags, whereas methane δ13C remains comparatively uniform. This contrast is consistent with migration-related separation of oil-cracking and kerogen-cracking gas. At Pengshui, the well closer to the outcrop has lighter methane δ13C, defining a preliminary two-well pattern opposite to that at Jiaoshiba. Together, these observations support the use of spatial isotope patterns, interpreted in light of formation pressure and tectonic context, as potential indicators of gas migration pathways and preservation conditions.

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Publication Details

Journal
Energy & Fuels
Published
2026-10-09
DOI
https://doi.org/10.1021/acs.energyfuels.6c03853
Primary Topic
Hydrocarbon exploration and reservoir analysis
Type
article
Field-Weighted Citation Impact
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article

Tracing Shale-Gas Migration in Complex Tectonic Settings: Evidence from Carbon-Isotope Fractionation Patterns

Zhenxue Jiang, Hu Li, Yan Song, Hengfeng Gou et al.
Energy & Fuels
Hydrocarbon exploration and reservoir analysis
article

Tracing Shale-Gas Migration in Complex Tectonic Settings: Evidence from Carbon-Isotope Fractionation Patterns

Zhenxue Jiang, Hu Li, Yan Song, Hengfeng Gou, Kun Zhang, Shu Jiang, Hulin Niu, Lin Jiang
article en

Abstract

Abstract Late-stage tectonic deformation strongly influences shale-gas preservation and redistribution, but conventional methods rarely resolve gas-migration pathways and directions. Here, we test whether the direction of spatial carbon-isotope gradients can indicate the dominant direction of gas migration. We examine carbon isotopes of methane and ethane in the Jiaoshiba, Dongxi, and Pengshui blocks of the southeastern Sichuan Basin. These blocks have contrasting tectonic configurations but share the Wufeng–Longmaxi shale-gas system. We integrate the isotope data with multiscale pore-structure characterization and formation-pressure measurements. In the three selected shale samples, diffusion-dominated nanopores below 25 nm accounted for 7.8–13.2% of the measured pore volume and provided the physical basis for interpreting isotope fractionation. At Jiaoshiba, methane δ13C becomes heavier toward faults, consistent with preferential vertical escape of 12CH4. At Dongxi, ethane δ13C differs markedly between structural highs and deep sags, whereas methane δ13C remains comparatively uniform. This contrast is consistent with migration-related separation of oil-cracking and kerogen-cracking gas. At Pengshui, the well closer to the outcrop has lighter methane δ13C, defining a preliminary two-well pattern opposite to that at Jiaoshiba. Together, these observations support the use of spatial isotope patterns, interpreted in light of formation pressure and tectonic context, as potential indicators of gas migration pathways and preservation conditions.

Energy & Fuels
Southwest Petroleum University (CN), China University of Petroleum, Beijing (CN), China University of Geosciences (CN), Research Institute of Petroleum Exploration and Development (CN), China National Chemical Corporation (China) (CN), Sichuan University of Science and Engineering (CN), China National Petroleum Corporation (China) (CN)
Openalex Percentile: Top 22%
Hydrocarbon exploration and reservoir analysis
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