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May 15, 2026Journal of Petroleum Geology1 citations

Unconventional Lower Middle Jurassic Source Rock Evaluation Prospects in the Indus Basin, Pakistan: An Integrated Petrographic, Geochemical, and Maturity Modeling Investigation

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FAFahad AliNENazan Yalçın ErikSZShiqi Zhang

Key Points

  • The aim is to evaluate the hydrocarbon generation potential of Lower and Middle Jurassic source rocks in the Indus Basin using integrated geochemical and maturity modeling methods.
  • Employs geochemical techniques such as total organic content analysis, vitrinite reflectance measurement, and maturity modeling.
  • Utilizes scanning electron microscopy and x-ray diffraction analysis to assess rock characteristics.
  • Integrates petroleum system modeling to determine the timing and viability of hydrocarbon generation.
  • Total organic content ranges from 1.10% to 7.45% in Lower Jurassic rocks and 1.06% to 5.43% in Middle Jurassic rocks.
  • Vitrinite reflectance values indicate maturity levels between 0.97% and 1.53%, falling within the oil-to-wet gas window.
  • The study ascertains that petroleum generation potential initiated during the Late Cretaceous to Paleocene era, highlighting economic viability.

Abstract

ABSTRACT The fluvial‐dominated deltaic to shallow marine depositional systems were studied by utilizing integrated approach of organic and inorganic geochemistry and petroleum system modeling (PSM). Employing an integrated approach encompassing through scanning electron microscopy (SEM), x‐ray diffraction analysis (XRD), I D maturity modeling, vitrinite reflectance (VRr%), total organic contents (TOC%), and rock–eval analysis (RE), with techniques used for volumetric calculation in the current study, sheds light on the region's hydrocarbon generation potential. The TOC% in the Lower Jurassic rocks is 1.10%–7.45%, and in the Middle Jurassic, it is 1.06%–5.43%, having II and III kerogens from cross‐plots, that is, RE temperature ( T max ) versus productive index (PI) and T max versus hydrogen index (HI). The VRr% is 0.97%–1.53%, demonstrating that the mature unconventional oil prospects and falls in oil‐to‐wet gas window. The PSM demonstrates that petroleum generation from the studied succession was started during the Late Cretaceous to Paleocene era for Jurassic and Cretaceous source rocks inferred from burial history, indicating the economic viability of unconventional prospect. Although the combined use of geochemistry and stratigraphy determined the values of the original old total organic contents (TOC o , i.e., 2.39 and 1.69) and old HI (HI o , i.e., 282 and 251) in the Upper Indus Basin (UIB) as well as TOC o (3.07) with HI o (625) in Lower Indus Basin (LIB) were used for the volumetric calculations. Besides the good values of TOC, TOC o , kerogen subtypes, RE parameters, I D maturity modeling, and VRr%, the XRD and SEM analyses indicated good suitability for fracability under hydraulic stimulation. However, the oil shale potential of the studied strata shows a good correlation with the People's Republic of China, the United States (US), and Canada primarily based on criteria of depositional setting, TOC%, VRr%, and mineralogy. The key comparative indicators of oil shale potential in Indus Basin with international cases are TOC% >1, VRr% >0.6, and shale thickness >30 m with characteristics of mineral composition supportive of brittle features.

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Cite This Study

Ali et al. (2026) studied this question.

synapsesocial.com/papers/6a06b888e7dec685947aaf0dhttps://doi.org/10.1111/jpg.70073
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