4.5 Article

Assessment of petroleum biodegradation using stable hydrogen isotopes of individual saturated hydrocarbon and polycyclic aromatic hydrocarbon distributions in oils from the Upper Indus Basin, Pakistan

Journal

ORGANIC GEOCHEMISTRY
Volume 40, Issue 3, Pages 301-311

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.orggeochem.2008.12.007

Keywords

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Funding

  1. Higher Education Commission, Islamabad [IRSIP-5-Ps-20]
  2. ARC [DP0211875, DP0877167]
  3. Australian Research Council [DP0211875, DP0877167] Funding Source: Australian Research Council

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The stable hydrogen isotopic compositions (delta D) of selected aliphatic hydrocarbons (n-alkanes and isoprenoids) in eight crude oils of similar source and thermal maturity from the Upper Indus Basin (Pakistan) were measured. The oils are derived from a source rock deposited in a shallow marine environment. The low level of biodegradation under natural reservoir conditions was established on the basis of biomarker and aromatic hydrocarbon distributions. A plot of pristane/n-C-17 alkane (Pr/n-C-17) and/or phytane/n-C-18 alkane (Ph/n-C-18) ratios against American Petroleum Institute (API) gravity shows an inverse correlation. High Pr/n-C-17 and Ph/n-C-18 values and low API gravity values in some of the oils are consistent with relatively low levels of biodegradation. For the same oils, delta D values for the n-alkanes relative to the isoprenoids are enriched in deuterium (D). The data are consistent with the removal of D-depleted low molecular weight (LMW) n-alkanes (C-14-C-22) from the oils. The delta D values of isoprenoids do not change with progressive biodegradation and are similar for all the samples. The average D enrichment for n-alkanes with respect to the isoprenoids is found to be as much as 35 parts per thousand for the most biodegraded sample. For example, the moderately biodegraded oils show an unresolved complex Mixture (UCM), loss of LMW n-alkanes (

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