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Guo Shaohui, Qin Kuangzong, Qian Jialin. Formation Chemistry of the Fmmature coal gas[J]. Acta Sedimentologica Sinica, 1997, 15(2): 54-57.
Citation: Guo Shaohui, Qin Kuangzong, Qian Jialin. Formation Chemistry of the Fmmature coal gas[J]. Acta Sedimentologica Sinica, 1997, 15(2): 54-57.

Formation Chemistry of the Fmmature coal gas

  • Received Date: 1996-09-12
  • Publish Date: 1997-04-10
  • The Fanzhi brown coal (R°% 0. 28) was subjected to hydrous pyrolysis. The brown coal and solidpyrolyer residues (R°% 0.32y-0.68) were studied by 13 Cnmr. The Shulan(R°% 0.32) and Huangxianbrown coal(R°% 0. 68) were also analyzed by 13C nmr. The results indicated that progressive changesin the chemistry of early coal evolution are likely.(1) demethylation of guaiacyl units to form catechollike structures that are dominant components of the brown coal,(2) cleavage of aryl ether linkages toform phenols and reactive carbocations that alkylate the catechol rings and(3) dehydration of the cate-chol-like structuens to form alkyl phenols. Aromatic ring substitution index(σ)was nearly constant inthe early evolution. The results suggested that aromatic ring in ligin structure did not fuse to form pol-yaromatic rings beforeR°% 0. 7 and CH4was one of the main products in the early coalification process.
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    2 王万春刘文汇.徐永昌等.辽河盆地天然气地球化学特征.中国科学院兰州地质研究所生物气体地球化学开放研究实验室年报(1987).兰州:甘肃科学技术出版社.1988.30-46.

    3 徐永昌.天然气形成的新认识,.第五届全国有机地球化学会议论文集.南京:江苏科学技术出版社.1994.123-128.

    4 Trewhella M ,J, Poplett I,J Fand Grim A. Structure of GreenRiver oil shale kerogeri determination using solid state 13Cnmr spectroscopy. fuel 1986,(65): 541-546. Hatcher P G Chemical struckure models for coalified wood inlowrankcoal Org. Geochem. 1990,(16): 959-968.

    6 秦匡宗.干酪根热演化反应的物理化学基础.见:傅家漠秦匡宗.I-酪根地球化学.广州:广东科技出版社.1995. 254.

    7 秦匡宗.陈德玉.李振广等.用有机碳结构组成表征干酪根的演化一固体C-13核磁技术的应用二第四届全国有机地球化学会议论文集.武汉:中国地质人学出版社.1990. 164-174.

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  • Received:  1996-09-12
  • Published:  1997-04-10

Formation Chemistry of the Fmmature coal gas

Abstract: The Fanzhi brown coal (R°% 0. 28) was subjected to hydrous pyrolysis. The brown coal and solidpyrolyer residues (R°% 0.32y-0.68) were studied by 13 Cnmr. The Shulan(R°% 0.32) and Huangxianbrown coal(R°% 0. 68) were also analyzed by 13C nmr. The results indicated that progressive changesin the chemistry of early coal evolution are likely.(1) demethylation of guaiacyl units to form catechollike structures that are dominant components of the brown coal,(2) cleavage of aryl ether linkages toform phenols and reactive carbocations that alkylate the catechol rings and(3) dehydration of the cate-chol-like structuens to form alkyl phenols. Aromatic ring substitution index(σ)was nearly constant inthe early evolution. The results suggested that aromatic ring in ligin structure did not fuse to form pol-yaromatic rings beforeR°% 0. 7 and CH4was one of the main products in the early coalification process.

Guo Shaohui, Qin Kuangzong, Qian Jialin. Formation Chemistry of the Fmmature coal gas[J]. Acta Sedimentologica Sinica, 1997, 15(2): 54-57.
Citation: Guo Shaohui, Qin Kuangzong, Qian Jialin. Formation Chemistry of the Fmmature coal gas[J]. Acta Sedimentologica Sinica, 1997, 15(2): 54-57.
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