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Geoscience ›› 2020, Vol. 34 ›› Issue (06): 1144-1152.DOI: 10.19657/j.geoscience.1000-8527.2020.06.085

• Petroleum Geology • Previous Articles     Next Articles

Geochemical Characteristics and Controlling Factors of Organic Matter Enrichment of Wufeng Formation Shale in ZY3 Well, Northwestern Hunan Province

LIN Donglin1,2,3(), TANG Shuheng1,2,3(), XI Zhaodong1,2,3, ZHANG Songhang1,2,3, ZHOU Shulin4   

  1. 1. School of Energy Resources, China University of Geosciences, Beijing 100083, China
    2. Key Laboratory of Marine Reservoir Evolution and Hydrocarbon Enrichment Mechanism, Ministry of Education, Beijing 100083, China
    3. Beijing Key Laboratory of Unconventional Natural Gas Geological Evaluation and Development Engineering, Beijing 100083, China
    4. Science and Technology Museum,Zhejiang Normal University, Jinhua, Zhejiang 321004, China
  • Received:2020-04-14 Revised:2020-06-03 Online:2020-12-22 Published:2020-12-22
  • Contact: TANG Shuheng

Abstract:

Based on the analyses on graptolite, lithological characteristics, GR curve and TOC content in the Wufeng Formation (Fm.) shale in ZY3 well in northwestern Hunan, the study area clearly belongs to the sedimentary period of WF2-WF3 shale graptolite belt. 20 samples from the WF2-WF3 in ZY3 well were selected to measure their trace elements and organic carbon isotopes compositions, and their vertical variation trends to reveal the controlling factors of organic matter enrichment in the Wufeng Fm. shale in northwestern Hunan were analyzed. The results showed that the organic carbon content in the shale was lower in WF2 (0.17% to 0.86%) and higher in WF3 (0.57% to 2.28%). The V/Cr, Ni/Co, V/(V+Ni) and U/Th values indicate that WF2 and the late-stage of WF3 were suboxic, whereas the early-stage of WF3 was anoxic. The P/Al value and Baxs content in shale indicate that WF2 and WF3 have relatively high paleoproductivity. However, the weak correlation between TOC and P/Al values and Baxs content, and the strong positive TOC vs. redox environmental index correlation indicate that the organic matter enrichment is mainly controlled by redox environment. Cerium anomaly and Mo/TOC values indicate the effects of frequent sea-level fluctuations and restricted basins on the paleoredox environment of the Wufeng Formation. Due to the sea-level rise in the early-stage of back bulge basin, WF2 may have formed in a sub-oxic environment. The coupling of sea-level rise and confined retention basin in the early-stage of WF3 resulted in hypoxia in the bottom water. In the late-stage of WF3, relative sea-level dropped due to the elevation peak of the Hunan-Hubei underwater upland, resulting in a sub-oxic environment that was not permissive to organic matter preservation. The results show that the redox environment was controlled by tectonic activity and paleo-sea-level change, which further affected organic matter accumulation in the Wufeng Fm. shale.

Key words: northwestern Hunan, Wufeng Formation, depositional environment, organic matter enrichment, trace element

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