天然气地球科学 ›› 2006, Vol. 17 ›› Issue (1): 7–13.doi: 10.11764/j.issn.1672-1926.2006.01.7

• 非生物(无机)气 • 上一篇    下一篇

论天然气形成机制与相关地球科学问题

王先彬,妥进才, 周世新,李振西,张铭杰,闫宏   

  1. (中国科学院地质与地球物理研究所兰州油气研究中心,甘肃 兰州  730000)
  • 收稿日期:2005-12-09 修回日期:2005-12-23 出版日期:2006-02-20 发布日期:2006-02-20
  • 通讯作者: 王先彬xbwang@ns.lzb.ac.cn. E-mail:xbwang@ns.lzb.ac.cn.
  • 作者简介:王先彬(1942-),男,四川 洪雅人,研究员,博导,从事天然气地球化学和非生物成因天然气研究.
  • 基金资助:

    国家自然科学基金项目(编号:40572087);国家重点基础研究发展计划“973”项目( 编号:2003CB214606)联合资助.

THE FORMATION MECHANISM OF NATURAL AND RELATIVE TO PROBLEMS IN EARTH SCIENCE

WANG Xian-bin, TUO Jin-cai, ZHOU Shi-xin, LI Zhen-xi, ZHANG Ming-jie, YAN Hong   

  1. (Institute  of Geology & Geophysics, Chinese Academy of Sciences, Lanzhou 730000, China)
  • Received:2005-12-09 Revised:2005-12-23 Online:2006-02-20 Published:2006-02-20

摘要:

论述了细菌成因气、热成因气、深层气和非生物成因气的物质来源和成气机制,指出,不同物质来源、不同成气机制和成气环境,构成了天然气的多种成因类型和不连续成气特征。评述了深层气、非生物成因气研究进展和它们的资源前景。讨论了形成非生物成因气的聚合反应和同位素动力学分馏效应以及鉴别非生物成因气的地球化学指标的有效性。认为松辽盆地诸多气井天然气的非生物成因特征,为研究和寻找非生物成因天然气资源提供了一个典型实例;松辽盆地昌德-肇州西和徐家围子深层气勘探的重大突破,使该盆地非生物成因气的储量超过500×108m3,展现了松辽盆地非生物成因气的良好资源前景。

关键词: 成气机制, 不连续成气特征, 聚合反应, 同位素动力学分馏效应, 非生物成因天然气资源

Abstract:

The paper discusses sources and formation mechanism of microbial gas,thermogenic gas,deep gas and abiogenic gas.Pointing out deferent source,deferent formation mechanism and gas formation environment make various origin types and a non-continue characteristics,support to a broad prospect for investigating and seeking natural gas resources.Reviewing advances in abiogenic natural gas studies and a prospect for abiogenic gas resource.Discussing the mechanism an abiogenic origin via polymerization and kinetic.

Key words: Formation mechanism, Non-continue characteristics, Poly merization, Kinetic fractionation effect, Abiogenic gas resource.

中图分类号: 

  • TE122.1

[1]WIESE K, KVENVOLDEN K.Introduction to micrcbial and thermal  methame[C]//HOWELL D G.The future of energy gases. US Geological Survey Profes ional Paper 1770,1993:13-20.
[2] TISSOT P B, WELTE D H.Petrolium Formation and Occurrence( 2nd)[M].New York:Springer-Verlag, 1984:1-699.
[3] WANG X B. The consideration and choice on exploiting energy source[J].Chinese Sciences Bulletin,1999,44(18):1717-1728.
[4] 妥进才,王先彬,陈晓东.深层油气研究进展与前景展望,“九五”天然气科 技攻关成果论文集[C].北京:石油工业出版社,2000.
[5] 妥进才,王先彬,周世新.渤海湾盆地深层油气资源前景分析[J].天然气地 球科学,1999,10(6):25-31.
[6] 徐永昌,王先彬.天然气中的稀有气体同位素[J].地球化学,1979,(4):2 71-282.
[7] WANG X B.The nature gas from deep in the earth[J].Kexue Tongba o,1982,28(11):1515-1518.
[8] 王先彬.非生物成因天然气探索[J].地球科学信息,1987,(3):14-16.
[9] 王先彬.稀有气体同位素地球化学和宇宙化学[M].北京:科学出版社,1989 .
[10] 王先彬.非生物成因天然气的宇宙化学依据[J].天然气地球科学,1990,1(1):4-8.
[11] 王先彬.非生物成因天然气[M]//徐永昌.天然气成因理论及应用.北京:科学出版社,1994:317-343.
[12]郭占谦,王先彬.松辽盆地非生物成因气的探讨[J].中国科学,1994,24( 3):303-309.
[13] GUO Z Q, WANG X B, LIU W L. Reservoir-forming feat ures of abi otic origin gas in Songliao Basin[J].Science in China(Series D), 1997,40(6):62 1-626.
[14] HU G X, OUYANG Z Y, WANG X B, et al.Carbon isotopic fractionation in  the process of Fischer-Tropsch reaction in primitive solar nebula[J]. Sci Ch ina, 1998,41:202-207.
[15]WANG X B, LI C Y, CHEN J F, et al. On abiogenic natural gas[J ]. Chinese Sci Bull,1997,42:1327-1337.
[16] 王先彬.非生物成因天然气[M]//李喜先.21世纪100个交叉科学难题.北京:科学 出版杜,2005:359-365.
[17]BURRUSS R C.Stability and flux of methane in the deep crust-A rev iew[C]//HOWELL D G.The future of energy gases.US Geology Survey Profesional Pa per 1570,1993:21-30.
[18] BAI Z H, WANG X B.Thermodynamic study on the comp-   ositions of f luid phases in the C-H-O system under hight-   emperature and pressure[J].Chinese Journal of Geochemist-   ry, 1998,17(2):103-113.
[19] BARKER C, TADACH N E.Prediction of natural gas comp-   osition in  ultradeep sandstone reservoirs[J]. AAPG,1992,76:1859-1873.
[20] HOUSEKNECHT D W, SPOTL C. Empirical observations regarding methane deadl ines in deep basibs and thrust belts[C]//HOWELL D G.The future of energy gases .US Geol Survey Professional Paper 1570, 1993:217-231.
[21] 陈晓东,王先彬.压力对有机质成熟和油气生成的影响[J].地球科学进展,1999 ,14(1):31-35.
[22]MANGO F D.Transition metal catalysis in the generation of petr oleum and natural gas[J].GCA,1992,56:553-555.
[23] MANGO F D. Role of transition metal catalysis in the form-   ation  of natural gas[J].Nature,1994,368:536-538.
[24][KG*8/9]MANGO F D.The carbon isotopic composition of catalytic gas: A comp arative analysis with natural gas[J].GCA,1999,63(7/8):1097-1106.
[25] SHERWOOD B L, WESTGATE T D, WARD J A, et al.Abiogenic formation of a lkanes in the Earth's crust as a minor source for global hydrocarbon reservoirs[J].Nature,2002,416:522-524.
[26] 李立武,王先彬,张铭杰.橄榄石热解氢释放过程的分析[J].地球化学,1998, 27(5):514-515.
[27] ZHANG MINGJIE, HU PEIQING, ZHENG PENG, et al.The occurrence modes of  H-2 in mantle-derived rocks[M]//MAO J, Bierlein F P. Mineral deposit resear ch(chapter1-19). New York: Springer, 2005:73-76.
[28] 张铭杰,王先彬,刘刚,等.中国东部新生代玄武岩及其幔源捕虏体中的流体组成[J].地质学报,1999,73(2):162-166.
[29] ZHANG M J, WANG X B, LIU G. Fluid compositions and carbon & oxygen isoto pe geochemistry of Cenozoic alkali basalts in eastern China[J].Chinese J Geoch emistry, 1999,18(3):276-282.
[30] ZHANG MINGJIE, WANG XIANBIN, LIU GANG, et al.The compositions of upp er mantle fluids beneath Eastern China: Implications for mantle evolution[J].  Acta Geologica Sinica, 2004,78(1):125-130.
[31] 吕功煊,丑凌军,张兵,等.深层及非生物成烃的催化机制[J].天然气地球科学 ,2006,17(1):14-17.
[32] GOLD T, SOTER S.The deep-earth gas hypothesis[J].Scientific  Amerrican, 1980,242(6):154-161.
[33]GOLD T.The origin of methane in the crust of the Earth[C]//HOWEL L D G.The future of energy gases.US Geological Survey Profesional Paper 1570, 19 93:57-80.
[34] JENDEN P D, HILTON D R, KAPLAN I R, et al.Abiogenic hydroc arbon an d mantle helium in oil and gas field[C]//HOWELL D G.The future of energy gases .US Geological Survey Profesional Paper 1570, 1993:31-56.
[35] APPS J A, KEMP P C.Energy gases of Abiogenic origin in the Earth's crus t[C]//HOWELL D G.The future of energy gases.US Geol Survey  Professional Paper  1570,1993:81-132.
[36] 戴金星,宋岩,戴春生,等.中国东部无机成因气及其气藏形成条件[M].北京: 科学出版社,1995:1-213.
[37] 杜乐天.地幔流体与软流层(体)地球化学[M].北京:地质出版社,1996:1-465.
[38] 张景廉.论石油的无机成因[M].北京:石油工业出版社,2001:1-303.
[39]HORITA J, BERNDT M E.Abiogenic methane formation and isotopic frac tionation under hydrothermal conditions[J].Science,1999,285:1055-1057.
[40] 德米特里也夫斯基.地球排气作用:地球动力学,地球流体,石油和天然气[C]// 纪念克罗泡金甫 恩院士国际会议资料.莫斯科,2002.
[41] AAPG Research Conference.Origin of petroleum[C]. Canada,2005 .
[42] SEEWALD J, WHELAN J. Isotopic and chemical composi-   tion of natu ral gas from the Potato Hills Field,Southeastern Oklahoma: Evidence for an Abiogenic Origi n?[C]//AAPG Research Conference, Origin of Petroleum.2005.
[43] 刘刚,王先彬.地幔气体地球化学[M]//杜乐天.地幔流体与软流层(体)地球化学.北京:地质出版社,1996:380-408.
[44] 王先彬,刘刚,陈践发,等.地球内部流体研究的若干关键问题[J].地学前缘,1 996,3(3):105-118.
[45] LIU G, WANG X B, WEN Q B.Carbon isotopic composition of mantle xenoliths  inalkali basalt from Damaping Hebei[J].Chinese Sciences Bulletin, 1998,43(24) :2095-2098.
[46] 王先彬.深部气体地球化学[M]//陈.寸丹集.北京:科学出版社,1998:846-85 5.
[47] LIU G, WANG X B, LI L W.Chemical composition of gas from mantle xenolit hs in alkali basalt from damaping[J]. Chinese Sciences Bulletin, 1997,42(6):47 0-472.
[48] WANG X B, LI C Y, CHEN J F, et al.Mantle-derived met-   hane  homologue, carbon dioxide and helium in natural gases from Songliao Basin,China[J].Mineralogical Magazine,1998,62(Parts1-3):1665-1666.
[49] XU S, NAKAI S, WAKITA H, et al. Mantle-derived noble gases in natur al gases from Songliao basin, China[J].Geochimica et Cosmochimica Acta, 1995,5 9(22):4675-4683.
[50]XU S, NAKAI S, WAKITA H, et al.Helium isotopes in sedimentary  basins in China[J]. Applied Geochemistry, 1995,10:4321-332.
[51] WANG X B. Volcanic activity Revealed by isotope systematics of  gases from hydrothermal springs in Tengchong, China[M]//Matsuda.Noble gas geo chemistry and cosmochemistry. Tokyo:Terra Scientific Publishing Compan y,1994:293-304.
[52] XU S, NAKAI S, WAKITA H, et al. Helium isotopic compositio ns in Quaternary volcanic geothermal area near Indo-Eurasian collisional Margin  at Tengchong, China[M]//Matsuda. Noble gas geochemisrtry and cosmochemistry.T okyo:Terra Scientific Publishing Company, 1994:305-313.
[53]CRAIG H, LUPTON J E.Helium-3 and mantle volatiles in the ocean an d The oceanic crust[M]//Emiliani C d. The sea.New York:John Wiley and Sons,198 1:391-428.
[54]李春园,王先彬,夏新宇.甲烷及其同系物13C值反序排列的数值 模拟与非生物成因天然气藏探讨[J].沉积学报,1999,17(2):303-311.
[55] 陈晓东.大庆肇西-昌德地区过成熟源岩的地球化学特征及高温热解生烃模拟[D]. 博士学位论文,1999:1-90.
[56]王先彬,妥进才,周世新,等.地球深部有机质演化与油气资源[J].石油勘探与开发,1999,32(4):159-164.
[57]王先彬.研究与寻找新的油气资源,开拓勘探新领域[J].矿物岩石地球化学通报,2002,21(1):22-25.
[58]王先彬.天然气成因理论探索——拓宽领域,寻找新资源[J].天然气地球科学,2003,14(1):30-34.
[59]王先彬,妥进才,周世新,等.地球深部有机质演化与油气资源[J].石油勘探与开发,2005,32(4):159-164.
[60] 赵文智,窦立荣.中国陆上剩余油气资源潜力及其分布和勘探对策[J].石油勘探与开发,2001,28(1):1-5.
[61]刘荒.中国天然气勘探获重大进展 大庆发现第五大气田[N].中国新闻网, 2005-11-15.

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