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Ying Guangguo, Zhang Baisheng, Ji Liming. Study on Thermal Simulated Peat──A Discussion on the Genetic Mechanism of Transitional Zone Gas[J]. Acta Sedimentologica Sinica, 1995, 13(2): 44-47.
Citation: Ying Guangguo, Zhang Baisheng, Ji Liming. Study on Thermal Simulated Peat──A Discussion on the Genetic Mechanism of Transitional Zone Gas[J]. Acta Sedimentologica Sinica, 1995, 13(2): 44-47.

Study on Thermal Simulated Peat──A Discussion on the Genetic Mechanism of Transitional Zone Gas

  • Received Date: 1994-10-15
  • Publish Date: 1995-06-10
  • This paper made a thermally simulating experiment on modern peat under low temperatures and longer time, and discussed the genetic mechanism of transitional zone gas. Gannan peat has relatively higher yields of gaseous and liquid hydrocarbons under simulation. Liquid hydrocarbons are made up of thermolytic oil and residual chloroform "A". The former is dominated by C6-C14 light hydrocarbons, and the latter is dominated by NSO compounds and asphaltenes. With increasing thermal evolution, the relative content of saturated and aromatic hydrocarbons increases whereas that of NSO compounds and asphaltenes decreases rapidly. Gas compositions for simulated peat are dominated by non- hydrocarbon gases, such as CO2 and N2. With increasing simulation temperatures, gaseous hydrocarbon yields increase rapidly. Gaseous hydrocarbons include C1 -C5 hydrocarbon gases, mainly methane. Carbon isotope values of mathane produced at temperature of 200~400℃ are-53. 82~-33. 62‰.The research indicates that at low thermal evolution stage associated with humic acid decomposition and kerogen rearrangement, bio - thermal catalytic transitional zone gas with lighter carbon isotope value of methane can be generated.
  • [1] 1.徐永昌等,1990,一种新的天然气类型—生物热催化过渡带气,中国科学(B辑),(9):975-980。

    2.程克明、关德师,1993,烃源岩生烃过程的热压模拟实验,中国科学院兰州地质所气体地球化学国家重点实验室年报,兰州:甘肃科学技术出版杜,145-163。

    3.Rohrback,B.G. et al.,1984, Geochemistry of artificially heated humic and sapropelic sediments一I.oil and gas gener-ation. AAPG Bull.,68:961一970.

    4.Peters, K. E. et al.。1981, Geochemistry of artificially heated humic and sapropelic sediments一I .Protokerogen. AAPG Bull.,65:688一705.

    5.Galimov,E. M.,1988, Sources and mechanisms of formation of gaseous hydrocarbons in sedimentary rock. Chem.Gad.71(1/3):77一95.
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  • Received:  1994-10-15
  • Published:  1995-06-10

Study on Thermal Simulated Peat──A Discussion on the Genetic Mechanism of Transitional Zone Gas

Abstract: This paper made a thermally simulating experiment on modern peat under low temperatures and longer time, and discussed the genetic mechanism of transitional zone gas. Gannan peat has relatively higher yields of gaseous and liquid hydrocarbons under simulation. Liquid hydrocarbons are made up of thermolytic oil and residual chloroform "A". The former is dominated by C6-C14 light hydrocarbons, and the latter is dominated by NSO compounds and asphaltenes. With increasing thermal evolution, the relative content of saturated and aromatic hydrocarbons increases whereas that of NSO compounds and asphaltenes decreases rapidly. Gas compositions for simulated peat are dominated by non- hydrocarbon gases, such as CO2 and N2. With increasing simulation temperatures, gaseous hydrocarbon yields increase rapidly. Gaseous hydrocarbons include C1 -C5 hydrocarbon gases, mainly methane. Carbon isotope values of mathane produced at temperature of 200~400℃ are-53. 82~-33. 62‰.The research indicates that at low thermal evolution stage associated with humic acid decomposition and kerogen rearrangement, bio - thermal catalytic transitional zone gas with lighter carbon isotope value of methane can be generated.

Ying Guangguo, Zhang Baisheng, Ji Liming. Study on Thermal Simulated Peat──A Discussion on the Genetic Mechanism of Transitional Zone Gas[J]. Acta Sedimentologica Sinica, 1995, 13(2): 44-47.
Citation: Ying Guangguo, Zhang Baisheng, Ji Liming. Study on Thermal Simulated Peat──A Discussion on the Genetic Mechanism of Transitional Zone Gas[J]. Acta Sedimentologica Sinica, 1995, 13(2): 44-47.
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