天然气地球化学

煤岩显微组分模拟实验气态产物碳氢同位素特征

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  • 1.中国科学院油气资源研究重点实验室,甘肃 兰州 730000;
    2.中国科学院研究生院,北京 100049
王晓瑜(1985-),女,辽宁大连人,硕士研究生,主要从事有机地球化学研究

收稿日期: 2009-09-28

  修回日期: 2009-12-21

  网络出版日期: 2010-04-10

基金资助

国家科技重大专项“大型油气田及煤层气开发”项目(编号:2008ZX05008-002-002)资助.

Carbon and Hydrogen Isotopes of Gaseous Products from Coal Maceral in Simulation Experiments

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  • 1.Key Laboratory of Petroleum Resources Research, Institute of Geology and Geophysics,
    Chinese Academy of Sciences, Lanzhou 730000, China;
    2. Graduate University of Chinese Academy of Sciences, Beijing 100049,China

Received date: 2009-09-28

  Revised date: 2009-12-21

  Online published: 2010-04-10

摘要

碳氢同位素研究是油气地球化学研究的一个重要方面。通过对神山褐煤镜质组与丝质组中碳氢同位素的分析得出:同一温阶,镜质组和丝质组气体产物中甲烷及其同系物具有与天然气相似的碳同位素分布特征,随烷烃分子碳数增加而逐渐增高,即δ13C1<δ13C2<δ13C3;不同温阶时,气体产物中甲烷及其同系物的δ13C具有明显的同位素分馏特征,即随温度的增加δ13C1、δ13C2、δ13C3值相应增高。而对镜质组与丝质组气体产物中的δD而言:同一温阶,具有δDH2<δD1<δD2<δD3<δD4的规律;不同温阶,随温度的增加,δDH2、δD1、δD2、δD3、δD4值相应增高,也表现出明显的同位素分馏特征。

本文引用格式

王晓瑜, 马素萍, 邱军利, 雷天柱, 夏燕青 . 煤岩显微组分模拟实验气态产物碳氢同位素特征[J]. 天然气地球科学, 2010 , 21(2) : 338 -344 . DOI: 10.11764/j.issn.1672-1926.2010.02.338

Abstract

Carbon and hydrogen isotope is an important tool for gas geochemistry. In this paper, carbon and hydrogen isotopes of gas products from vitrinite and fusinite isolated from lignite coal in Shenshan were measured. The result showed that δ13C values of methane and its homologues in gaseous products have a similar tendency of carbon isotope of alkane gases in natural gas at the same temperature, in which δ13C values become heavier with carbon number, i.e. δ13C1<δ13C2<δ13C3. Meanwhile, δ13C values of methane and its homologue (δ13C1, δ13C2, δ13C3) in gaseous products become heavier with increase of simulation temperature. In addition, δD values in  gaseous products generated from vitrinite and fusinite has a serial of δDH2<δD1<δD2<δD3<δD4 at the same temperature, and the same change of δD values in gaseous products is observed with increasing ,temperature, i.e. δDH2, δD1, δD2, δD3, δD4

参考文献

[1]  Liu Dehan, Zhang Huizhi, Dai Jinxing,et al. Research and evaluation on experiment of generating hydrocarbons  of coal macerals[J].Chinese Science Bullentin, 2000, 45(4): 346 -352.[刘德汉,张惠之,戴金星,等.煤岩显微组分的成烃实验研究与评价[J].科学通报,2000,45(4):346 -352.]
 [2]  Fu Jiamo,Sheng Guoying,Liu Dehan.Geochemistry of Coal -generating [JP]Hydrocarbons[M].Beijing:Science Press, 1990:7 -28.[傅家谟,盛国英,刘德汉.煤成烃地球化学[M].北京:科学出版社,1990:7 -28.]
 [3] Huang Difan, Qin Kuangzong, Wang Tieguan,et al.Generation and Hydrocarbon -Forming Mechanism of Coal -Derived Oil[M].Beijing:Peroleum Industry Press, 1995:55 -90.[黄第藩,秦匡宗,王铁冠,等.煤成油的形成和成烃机理[M].北京:石油工业出版社,1995:55 -90.]
 [4] Tu Jianqi, Jin Kuili. On the separation of organic maceral during thermal simulation of hydrocarbons from coal[J].Experimental Petroleum Geology, 1997, 19(3): 289 -291.[涂建琪,金奎励.煤成烃热模拟中的有机显微组分分离研究[J].石油实验地质,1997,19(3):289 -291]
 [5] Liu Quanyou, Liu Wenhui, Qin Shengfei,et al. Geochemical study of thermal simulation on coal and coal with different mediums:Yielding rate of gaseous and organic liquid products and their evolution[J].Acta Sedimentologica Sinica, 2001, 19(3): 465 -468.[刘全有,刘文汇,秦胜飞,等.煤岩及煤岩加不同介质的热模拟地球化学实验——气态和液态产物的产率以及演化特征[J].沉积学报,2001,19(3):465 -468.]
 [6] Li Rongxi, Jin Kuili. Simulation of the hydrocarbon generation and expulsion of coal by hydrous pyrolysis[J].Acta Sedimentologica Sinica,1998,16(1):98 -102.[李荣西,金奎励.煤成烃生成及排驱加水热模拟实验[J].沉积学报,1998,16(1):98 -102.]
 [7] Qiu Junli, Lei Tianzhu, Xia Yanqing. Significance of hydrogen and gaseous hydrocarbon in study of coal -type gas generation and evolution[J].Coal Geology & Exploration, 2005, 33(3): 26 -29.[邱军利,雷天柱,夏燕青. 氢气和气态烃在煤成气形成演化研究中的意义[J].煤田地质与勘探,2005,33(3):26 -29.]
 [8] Maciej  J, Kotarba. Composition and origin of coalbed gases in the upper Silesian and Lublin basins[J].Organic Geochemistry, 2001, 32: 163 -180.
 [9]  Smith J W,Pallasser R J.Microbial origin of australian coalbed [JP]methane[J].AAPG Bulletin,1996,80: 891 -897.
[10] Zou Yanrong, Shuai Yanhua, Kong Feng,et al. Mathematic models of stable carbon isotope composition of coal -derived methane and their applications[J].Natural Gas Geoscience, 2003, 14(2): 92 -96.[邹艳荣,帅燕华,孔枫,等. 煤成甲烷碳同位素演化的数学模型与应用[J].天然气地球科学,2003,14(2):92 -96.]
[11] Liu Wenhui, Xu Yongchang.  A two stage model of carbon isotopic fractionation in coal gas[J].Geochimica, 1999, 28(4): 359 -366.[刘文汇,徐永昌. 煤型气碳同位素演化二阶段分馏模式及机理[J].地球化学,1999,28(4):359 -366.]
[12] Liu Quanyou, Liu Wenhui, Wang Changhua. Mathematical simulation of coal -generating hydrocarbons based on pyrolysis products from coal macerals under closed system[J].Natural Gas Geoscience, 2009, 20(1): 20 -25.[刘全有,刘文汇,王长华. 依据热模拟实验动态建立煤成烃模式[J].天然气地球科学,2009,20(1):20 -25.]
[13] Sun Xuguang, Li Rongxi, Du Meili. Discussion on the method of coal maceral separation[J].Coal Geology of China, 1997, 9(3): 26 -27.[孙旭光,李荣西,杜美利. 煤显微组分分离富集[J].中国煤田地质,1997,9(3):26 -27.]
[14]  Liu Wenhui, Song Yan, Liu Quanyou,et al. Evolution of carbon [JP]isotopic composition in pyrolytic gases generated from coal and its main macerals[J].Acta Sedimentologica Sinica, 2003, 21(1): 183 -190.[刘文汇,宋岩,刘全有,等. 煤岩及其主显微组份热解气碳同位素组成的演化[J].沉积学报,2003,21(1):183 -190.]
[15]  Zhang Huquan,Wang Tingdong,Wei Pingsheng,et al.Study on [JP]the origins of coal -bed gas[J]. Acta Petrolei Sinica, 2007, 28(2): 29 -34.[张虎权,王廷栋,卫平生,等.  煤层气成因研究[J].石油学报,2007,28(2):29 -34.]
[16] Dai Jinxing. Characteristics of hydrogen isotopes of paraffinic gas in China[J]. Petroleum Expoloration and Development, 1990, 17(5): 27 -32.[戴金星.我国有机烷烃气的氢同位素的若干特征[J].石油勘探与开发,1990,17(5):27 -32.]
[17] Wang Xiaofeng, Liu Wenhui, Xu Yongchang,et al. Research about thermal simulation experiment of the role about evolution of water in the process of organic matter forming gaseous hydrocarbons[J]. Progress in Natural Science, 2006,16(10):1275 -1282.[王晓峰,刘文汇,徐永昌,等. 水在有机质形成气态烃演化中作用的热模拟实验研究[J].自然科学进展,2006,16(10):1275 -1282.]
[18] Chen Jianfa, Li Chunyuan, Shen Ping,et al. Carbon and hydrogen isotopic characteristics of hydrocarbons in coal type gas from China[J].Acta Sedimentologica Sinica, 1995, 13(2): 59 -69.[陈践发,李春园,深平,等. 煤型气烃类组分的稳定碳、氢同位素组成研究[J].沉积学报,1995,13(2):59 -69.]

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