Study on kinetics of hydrocarbon generation from coals in the Qinshui Basin
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  • 作者:Duan Yi (1)
    Wu Baoxiang (1) (2)
    Zheng Chaoyang (1) (2)
    Wang Chuanyuan (1) (2)
    Zhang Hui (1)
    Tao Mingxin (1)
    Liu Jinzhong (3)
    Zhang Xiaojun (1) (2)
  • 关键词:Qinshui Basin ; hydrocarbon generation of coal ; kineticsimulation ; prediction for the amount of coal ; derived gas generation
  • 刊名:Chinese Science Bulletin
  • 出版年:2005
  • 出版时间:September 2005
  • 年:2005
  • 卷:50
  • 期:17
  • 页码:1904-1911
  • 全文大小:1051KB
  • 参考文献:1. Kotarba, M. J., Isotopic geochemistry and habitat of the natural gases from the Upper Carboniferous zacIer coal-bearing formation in the Nowa Ruda coal district (Lower Silesia, Poland), Organic Geochemistry, 1990, 16: 549-60. CrossRef
    2. Clayton, J. L., Geochemistry of coal-bed gas—A review, Interna- tional Journal of Coal Geology, 1998, 35: 159-73. CrossRef
    3. Liu, D. M., Yang Q., Tang, D. Z., Reaction kinetics of coalification in Ordos Basin, China, in Geology of Fossil Fuel-Coal (ed. Yang Q,), Utrecht: The Netherlands, 1997, 147-59.
    4. Schaefer, R. G., Schenk H. J., Hardelauf H. et al., Determination of gross kinetic parameters for petroleum formation from Jurrassic source rocks of different maturity levels by means of laboratory experiments, Organic Geochemistry, 1990, 16: 115-20. CrossRef
    5. Behar, F., Tang Y., Liu J., Comparison of rate constants for some molecular tracers generated during artificial maturation of kerogens: influence of kerogen type, Organic Geochemistry, 1997, 26: 281-87. CrossRef
    6. Tang, Y., Jenden P. D., Nigrini A. et al., Modeling early methane generation in coal, Energy and Fuels, 1996, 10: 659-71. CrossRef
    7. Tang, D. Z., Lin S. Y., Wang J. L. et al., Kinetic characteristics of hydrocarbon generation on the Paleozoic coal in the east margin of the Ordos basin, Experimental Petroleum Geology (in Chinese), 1999, 21(4): 328-35.
    8. Burnham, A. K., Myyongsook S. O., Richard W. C., Pyrolysis of Argonne Premium coals: activation energy distributions and related chemistry, Energy and Fuels, 1987, 3: 42-5. CrossRef
    9. John, G. R., Alan, K., Comparison of kinetic analysis of source rocks and kerogen concentrates, Organic Geochemistry, 1995, 23: 11-9. CrossRef
    10. Tang, Y., Behar, F, Rate constants of n-alkanes generation from type III kerogen in open and closed pyrolysis systems, Energy and Fuels, 1995, 3: 507-12. CrossRef
    11. Espitalié, J. P., Ungerer, I. I., Marquis F.Primary cracking of kero- gens: Experimenting and modeling C1, C2-C5, C6-C15 and C15+ classes of hydrocarbons formed, Organic Geochemistry, 1988, 13: 893-99. CrossRef
    12. Fu, S. Y., Peng, P. A., Zhang, W. Z. et al., Kinetic study of the hy- drocarbon generation from UpperPaleozoic coals in Ordos Basin, Science in China, Ser. D, 2003, 46(4): 333-41.
    13. Xiong, Y. Q., Geng, A. S., Wang, Y. P. et al., Simulation experimental study of the kinetics of the secondary hydrocarbon generation, Science in China, Ser. D, 2002, 45(1): 13-0.
    14. Zhang, J. B., Wang, H. Y., Prediction for the Beneficial Tracts of Coal-bed Gases in the Qinshui Basin (in Chinese), Xuzhou: China University of Mining and Technology Press, 1999, 19-03.
    15. Liu, J. Z., Tang, Y. C., An example of predicting the production of methane using the kinetic method for hydrocarbon generation from kerogen, Chinese Science Bulletin (in Chinese), 1998, 43(11): 1187-191.
    16. Qin, Y., Song, D. Y., Wang, C., Coalification of the upper Paleozoic coal and its control to the generation and preservation of coalbed methane in the southern Shanxi, J. China Coal Society (in Chinese), 1997, 22(3): 230-35.
    17. Wang, Y. C., Pang, X. Q., Lu, S. F., Recovery of the content of coal macerais at any geochemistry time and its significance, Acta Sedi- mentologic Sinica (in Chinese), 1998, 12(4): 510-13.
    18. Sun, X. G., Wang, G. Y., Jin, K. L., The Kinetic features of hydro- carbon generation of desm ocollinite, Scientia Geologica Sinica, 1999, 34(4):485-91.
    19. Qin, Y., Liu, H. J., Fan, B. H. et al., The studied on gas-bearing characteristics of the upper Paleozoic coal seam in the southern Shanxi, China, Coal Geology and Exploration (in Chinese), 1997, 25(6): 18-2.
  • 作者单位:Duan Yi (1)
    Wu Baoxiang (1) (2)
    Zheng Chaoyang (1) (2)
    Wang Chuanyuan (1) (2)
    Zhang Hui (1)
    Tao Mingxin (1)
    Liu Jinzhong (3)
    Zhang Xiaojun (1) (2)

    1. Institute of Geology and Geophysics, Chinese Academy of Sciences, Lanzhou 730000, China
    2. Graduate School of Chinese Academy of Sciences, 100039, Beijing, China
    3. Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China
  • ISSN:1861-9541
文摘
A new method for the quantitative assessment of hydrocarbon generation potential from coals by means of the chemical reaction kinetics has been developed gradually over the recent years. In this paper, the kinetic parameters of hydrocarbon gas generation are determined by high temperature and pressure, and closed- system thermal simulation for Late Paleozoic coals in the Qinshui Basin and the kinetic characteristics and the histories of hydrocarbon gas generation were studied using the parameters obtained. Results show that during the longer period from the Triassic (T) to the Middle Jurassic (J2), the coal-derived methane yield increased more slowly under lower palaeogeotemperature in the Qinshui Basin; however, the shorter period from Late Jurassic to Early Cretaceous, the coal-derived methane yield increased more rapidly under higher palaeogeotemperature. The correlation between the thermal simulation and the factual data shows that C1/ (C1+C2?) coefficients computed by the histories of methane and C2-C4 hydrocarbon generation can provide evidence for the identification of the genesis of coal bed gas in the different areas of the Qinshui Basin. The kinetic simulating experiment of hydrocarbon generation for the peat considered as the original matter of coal formation was performed for the first time and the simulated results were compared with the characteristics of hydrocarbon generation from coals undergoing various palaeogeotemperature in the Qinshui Basin. The result indicates that the peat has a higher potential of hydrocarbon generation than that of coals. Therefore, the hydrocarbon generation results obtained from kinetic simulation for coal with higher maturation rank could not stand for their original hydrocarbon generation potential and thus would lead to an underestimation for coal-bed gas resource. The generative amount of coal-derived gas in the Qinshui Basin was predicted using kinetic simulation results for the peat and their maximum was estimated. The calculation shows that the generative amount of coal-derived gas from Taiyuan Formation and Shanxi Formation coal-beds in the Qinshui Basin is the highest in Yangcheng area, higher in Qinyuan area and the lowest in Huoshan area. Therefore, the conditions of coal-bed gas generation are the best in Yangcheng area, the second in Qinyuan area and not very good in Huoshan area.

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