新疆石油地质 ›› 2004, Vol. 25 ›› Issue (4): 351-354.

• 油气勘探 •    下一篇

煤结构组成与成烃作用

程克明1, 熊英1, 孙万高2, 杨智明2   

  1. 1.中国石油石油勘探开发科学研究院实验研究中心,北京100083;
    2.玉门油田公司勘探开发研究院,甘肃玉门735200
  • 收稿日期:2004-03-10 发布日期:2021-01-06
  • 作者简介:程克明(1935-).男,四川南充人,教授级高级工程师.博士生导师,油气地球化学、联系电话:010-62098350

Composition of Coal Structure and Its Effect on Hydrocarbon Generation

CHENG Ke-ming1, XIONG Ying1, SUN Wan-gao2, YANG Zhi-ming2   

  1. 1. Research Institute of Petroleum Exploration and Development, PetroChina, Beijing 100083. China;
    2. Reserch Institute of Exploration aud Development, Turmen Oilfield Conpany, PetroChina, Yumen, Cansu 735200, China
  • Received:2004-03-10 Published:2021-01-06

摘要: 在论述煤中存在共价键 交联结构和非共价键缔合结构的基础上,进一步提出水进相成煤环境有利于煤中类脂物的保存和煤的非共价键缔合结构发育,有利于煤成烃。应用固体13C核磁波谱分析技术,采用自然演化与热压模拟相结合探讨了干酪根热演化过程中碳骨架与官能团的变化规律,提出脂碳是生烃主要贡献者。在对比研究不同母质类型的湖相泥岩、煤和煤系泥岩干酪根中碳骨架与官能团组成属性及其在热演化“液态窗”阶段的倾油倾气性,进而提出亚甲基[(-CH2-)n]是干酪根官能中生油的主体,煤成油的实质就是煤干酪根中存在一定数量的亚甲基官能团。这一认识.适用于湖相生油和海相生油的研究。

关键词: 共价键交联结构, 非共价键缔合结构, 13C核磁波谱, 油潜力碳, 气潜力碳

Abstract: On the basis of described covalent bond cross.linked slructure and non-covalent bond associated struc:ture in coal leasures, this pa-per fiurther presents the water invasion phase coal-forning environmnent is favorable for preservation of coal lipids, development of non-covalent bond associated structure of coal measures and formation of coal-derived hydrocarbons. Solid 13C muclear magnetic resonance spectrometer and natural evolution combining with thernocompression simulator are used for analysis of variation of carbon matrix and functional group in the course of kerogen thermal evolution, showing that lipid carbons mainly contrbnte to the hydrocarbon generation. lhis paper also makes a corre-lation of carbon matrix and functional group composition attributes in different parent materials like lacustrine facies shale, coal and coal mea-sure shale kerogen. as well as their tendencies of oil or gas generation during the period of thermal evolution of liquid window. indicating that methylene[(-CH2-)n] is a dominant funetion of hydroearbou generation from kerogen and the key factor for coal-derived crudc oil is hat a cer-Lain number of methylene functional groups existing in coal-formed kerogen. This knowledge is appicable for rescarch of lacustrine and/ or ma-rine hydrocarbon generation.

Key words: covalent bond cross-linked structure, noncovalenl bond associaled structure, 13C nuclear magnetic spectrum, carbon with oil polential, carbon with gas potential

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