ZHU Yang-ming. CALCULATION OF HYDROCARBON-GENERATING TEMPERATURE AND ITS APPLICATION TO EXPLORATION[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2000, 22(2): 167-171. doi: 10.11781/sysydz200002167
Citation: ZHU Yang-ming. CALCULATION OF HYDROCARBON-GENERATING TEMPERATURE AND ITS APPLICATION TO EXPLORATION[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2000, 22(2): 167-171. doi: 10.11781/sysydz200002167

CALCULATION OF HYDROCARBON-GENERATING TEMPERATURE AND ITS APPLICATION TO EXPLORATION

doi: 10.11781/sysydz200002167
  • Received Date: 1999-09-12
  • Rev Recd Date: 2000-01-26
  • Publish Date: 2000-04-25
  • According to the steady-state catalytic model for the origin of light hydrocarbon proposed by Mango,2,4-/2,3-dimethylpentane ratio is a pure temperature parameter.Based on the paleogeotemperature, the thermal history and the analytical data of light hydrocarbon for source rocks, Bement and Mango et al. established the functional equation between the light hydrocarbon temperature parameter and the burial temperature and applied it to the calculation of hydrocarbon-generating temperature. The hydrocarbon-generating temperature has broad application to the research fields of oil & gas exploration and reservoir geochemistry. It can be used to study the evolutionary degree, migration distance,pool-forming time,the property of self-generation and self-accumulation,the threshold of hydrocarbon expulsion etc.In this paper, the generating temperature of the marine and continental hydrocarbons from the Tarim Basin are calculated, and their generating depth and maturity are estimated. They are verified by other geological and geochemical data.

     

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  • [1]
    Mango F D. An invariance in the isoheptanes of petroleum[J]. Science, 1987, 237: 514~517.
    [2]
    Mango F D. The light hydrocarbons in petroleum: a critical review[J]. Organic Geochemistry, 1997, 26(7/8):417~440.
    [3]
    Mango F D. The origin of light hydrocarbons in petroleum: a kinetic test of the steady-state catalytic hypothesis[J]. Geochimica et Cosmochimica Acta, 1990, 54: 1315~1323.
    [4]
    Bement W O, et al. The temperature of oil generation as defined with C7 chemistry maturity parameter (2,4-DMP/2,3-DMP ratio)[A].Grimalt J O,Dorronsoro C.Organic Geochemistry: Developments and Applications to Energy, Climate, Environment and Human History[C]. Donostian-San Sebastian:European Association of Organic Geochemists. 505~507.
    [5]
    Radke M,et al.Maturity parameters based on aromatic hydrocarbons: influence of the organic matter type [J]. Organic Geochemistry, 1986,10:51~63.
    [6]
    Alexander R,et al.Heating rate effects on aromatic maturity indicators[J].Organic Geochemistry,1986,10:997~1003.
    [7]
    Barker C E, et al. Calculation of vitrinite reflectance from thermal histories and peak temperatures[A].Mukhopadhyay P K, Dow W G.Vitrinite Reflectance as A Maturity Parameter [C]. Washington D C:American Chemical Society,1994.216~222.
    [8]
    Alexander R, et al. Geosynthesis of organic compounds: Ⅱ Methylation of phenanthrene and alkylphenanthrenes[J]. Geochimica et Cosmochimica Acta, 1995, 59(20):4259~4266.
    [9]
    周中毅,等.沉降盆地古地温测定方法及其应用[M].广州:广东科技出版社,1992.
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