油气勘探

煤成气在产气大国中的重大作用

  • 戴金星 ,
  • 倪云燕 ,
  • 廖凤蓉 ,
  • 洪峰 ,
  • 姚立邈
展开
  • 中国石油勘探开发研究院,北京 100083
戴金星(1935-),男,浙江温州人,中国科学院院士,中国石油勘探开发研究院教授级高级工程师,从事天然气地质与地球化学研究工作。地址:北京市海淀区学院路20号,中国石油勘探开发研究院院部,邮政编码:100083。E-mail: djx@petrochina.com.cn

收稿日期: 2019-03-12

  修回日期: 2019-04-18

  网络出版日期: 2019-05-25

基金资助

国家自然科学基金(41472120);中国石油天然气股份有限公司科技项目(2013B-0601)

The significance of coal-derived gas in major gas producing countries

  • DAI Jinxing ,
  • NI Yunyan ,
  • LIAO Fengrong ,
  • HONG Feng ,
  • YAO Limiao
Expand
  • Research Institute of Petroleum Exploration and Development, PetroChina, Beijing 100083, China

Received date: 2019-03-12

  Revised date: 2019-04-18

  Online published: 2019-05-25

摘要

煤成气核心理论是煤系为气源岩,煤系成烃以气为主以油为辅,故与其相关盆地发现以气田为主。发现与开发大气田,特别是可采储量大于1×1012 m3超大型气田,是决定一个国家成为年产500×108 m3以上产气大国的主要途径和关键。世界煤资源和煤成气储量丰富而分布广泛,在世界天然气储量、产量上煤成气占有重要地位。截至2017年底世界发现煤成超大型气田13个,总原始可采储量49.995 28×1012 m3,为该年世界总剩余可采储量193.5×1012 m3的25.8%;2017年世界有产气大国15个,共产气28 567×108 m3,其中6个以产煤成气为主的国家共产气11 369×108 m3,占产气大国总产量的39.8%。煤成超大型气田乌连戈伊气田是目前世界上累产气最多的气田,2015年底累产气63 043.96×108 m3,并是世界上年产气量最高的气田,1989年产气3 300×108 m3,分别占当年俄罗斯和世界产量的41.4%和15.7%。此外,分别详细介绍俄罗斯、土库曼斯坦、荷兰、莫桑比克和中国等煤成超大型气田所在盆地气源岩特征等,以及对所在国成为世界产气大国的重大作用。图8表4参95

本文引用格式

戴金星 , 倪云燕 , 廖凤蓉 , 洪峰 , 姚立邈 . 煤成气在产气大国中的重大作用[J]. 石油勘探与开发, 2019 , 46(3) : 417 -432 . DOI: 10.11698/PED.2019.03.01

Abstract

The core of coal-derived theory is that coal measure is the gas source, and the hydrocarbon generation of coal measure is dominated by gas and supplemented by oil, so discoveries in related basins are dominated by gas fields. Discovering and developing giant gas fields, especially those super giant gas fields with recoverable reserves more than 1×1012 m3, plays a key role in determining whether a country can be a major gas producing country of annual output over 500×108 m3. The coal resource and coal-derived gas reserves are abundant and widespread in the world, and coal-derived gas makes a major contribution to the gas reserves and gas production in the world. By the end of 2017, 13 super giant coal-derived gas fields have been discovered in the world. The total initial recoverable reserves were 49.995 28×1012 m3, accounting for 25.8% of the total remaining recoverable reserves (193.5×1012 m3) in that year in the world. In 2017, there were 15 giant gas producing countries in the world, with a total gas yield of 28 567×108 m3. Among them, six major coal-derived gas producing countries had a total gas yield of 11 369×108 m3, accounting for 39.8% of total gas yield of major gas producing countries. The Urengoi gas field is a super giant coal-derived gas field with the most cumulative gas production in the world. By the end of 2015, the Urengoi gas field had cumulative gas production of 63 043.96×108 m3, with the highest annual gas yield in the world. Its gas output was 3 300×108 m3 in 1989, accounting for 41.4% and 15.7% of the gas output of Russia and the world, respectively. This study introduces the gas source rocks of the basins with super giant coal-derived gas fields in Russia, Turkmenistan, Netherlands, Mozambique and China, and their significances for these countries becoming giant gas producing countries in the world.

参考文献

[1] 戴金星. 煤成气涵义及其划分[J]. 地质论评, 1982, 28(4): 370-372.
DAI Jinxing.The meaning of coal derived gas and its division[J]. Geological Review, 1982, 28(4): 370-372.
[2] 戴金星, 邹才能, 李伟. 中国煤成大气田及气源[M]. 北京: 科学出版社, 2014: 42-50.
DAI Jinxing, ZOU Caineng, LI Wei.Giant coal derived gas fields and their gas sources in China[M]. Beijing: Science Press, 2014: 42-50.
[3] 戴金星, 倪云燕, 吴小奇. 中国致密砂岩气及在勘探开发上的重要意义[J]. 石油勘探与开发, 2012, 39(3): 275-264.
DAI Jinxing, NI Yunyan, WU Xiaoqi.Tight gas in China and its significance in exploration and exploitation[J]. Petroleum Exploration and Development, 2012, 39(3): 275-264.
[4] ZOU C N.Unconventional petrolume geology[M]. Amsterdam: Elsevier, 2013: 99-108.
[5] 杨华, 付金华, 刘新社, 等. 苏里格大型致密砂岩气藏形成条件及勘探技术[J]. 石油学报, 2012, 33(S1): 27-36.
YANG Hua, FU Jinhua, LIU Xinshe, et al.Formation conditions and exploration technology of large-scale tight sandstone gas reservoir in Sulige[J]. Acta Petrolei Sinica, 2012, 33(S1): 27-36.
[6] FU J H, FAN L Y, LIU X S, et al.Gas accumulation conditions and key technologies for exploration and development of Sulige gasfield[J]. Petroleum Research, 2018, 3(2): 91-109.
[7] 戴金星. 成煤作用中形成的天然气和石油[J]. 石油勘探与开发, 1979, 6(1): 10-17.
DAI Jinxing.Petroleum and natural gas generation in coalification[J]. Petroleum Exploration and Development, 1979, 6(1): 10-17.
[8] 戴金星. 煤成气及鉴别理论研究进展[J]. 科学通报, 2018, 63(14): 1290-1305.
DAI Jinxing.Coal-derived gas theory and its discrimination[J]. Chinese Science Bulletin, 2018, 63(14): 1290-1305.
[9] 孙鸿烈. 20世纪中国知名科学家学术成就概览: 地学卷地质分册: 卷二[M]. 北京: 科学出版社, 2013: 53-56.
SUN Honglie.20th century academic overview of chinese renowned scientists: Earth science, geology: Vol. 2[M]. Beijing: Science Press, 2013: 53-56.
[10] 戴金星, 戚厚发, 王少昌, 等. 我国煤系的气油地球化学特征、煤成气藏形成条件及资源评价[M]. 北京: 石油工业出版社, 2001.
DAI Jinxing, QI Houfa, WANG Shaochang, et al.Geochemical features of hydrocarbon from coal measures, formation and resource evaluation of coal-formed gas reservoir in China[M]. Beijing: Petroleum Industry Press, 2001.
[11] 赵文智, 王红军, 钱凯. 中国煤成气理论发展及其在天然气工业发展中的地位[J]. 石油勘探与开发, 2009, 36(3): 280-289.
ZHAO Wenzhi, WANG Hongjun, QIAN Kai.Progress of coal-formed gas geological theory and its status in natural gas industry in China[J]. Petroleum Exploration and Development, 2009, 36(3): 280-289.
[12] 祝厚勤, 赵文芳, 白振华, 等. 澳大利亚西北大陆架石油地质特征[M]. 北京: 石油工业出版社, 2018.
ZHU Houqin, ZHAO Wenfang, BAI Zhenhua, et al.Petroleum geology of Northwest Shelf in Australia[M]. Beijing: Petroleum Industry Press, 2018.
[13] 朱伟林, 胡平, 季洪泉, 等. 澳大利亚含油气盆地[M]. 北京: 科学出版社, 2013: 1-4, 112-153.
ZHU Weilin, HU Ping, JI Hongquan, et al.Australian petroliferous basin[M]. Beijing: Science Press, 2013: 1-4, 112-153.
[14] 王启军, 陈建渝. 油气地球化学[M]. 武汉: 中国地质大学出版社, 1988: 75-79.
WANG Qijun, CHEN Jianyu.Oil and gas geochemistry[M]. Wuhan: China University of Geosciences Press, 1988: 75-79.
[15] 戴金星, 倪云燕, 黄士鹏, 等. 煤成气研究对中国天然气工业发展的重要意义[J]. 天然气地球科学, 2014, 25(1): 1-22.
DAI Jinxing, NI Yunyan, HUANG Shipeng, et al.Significant function of coal-derived gas study for natural gas industry development in China[J]. Natural Gas Geoscience, 2014, 25(1): 1-22.
[16] 傅家谟, 刘德汉, 盛国英. 煤成烃地球化学[M]. 北京: 科学出版社, 1990: 31-32, 37-76, 103-113.
FU Jiamo, LIU Dehan, SHENG Guoying.Coal-generated hydrocarbon geochemistry[M]. Beijing: Science Press, 1990: 31-32, 37-76, 103-113.
[17] 戴金星, 钟宁宁, 刘德汉, 等. 中国煤成大中型气田地质基础和主控因素[M]. 北京: 石油工业出版社, 2000: 24-76.
DAI Jinxing, ZHONG Ningning, LIU Dehan, et al.Geologic bases and major controlling factors of large and medium humic gas fields in China[M]. Beijing: Petroleum Industry Press, 2000: 24-76.
[18] 杨天宇, 王涵云. 褐煤干酪根煤化作用成气的模拟实验及其地质意义[J]. 石油勘探与开发, 1983, 10(6): 29-36.
YANG Tianyu, WANG Hanyun.Simulation experiment of thermo-coalificative natural gas genesis and its significance[J]. Petroleum Exploration and Development, 1983, 10(6): 29-36.
[19] 方祖康, 陈章明, 庞雄奇, 等. 大雁褐煤在煤化模拟实验中的产物特征[J]. 大庆石油学院学报, 1984, 8(3): 1-9.
FANG Zukang, CHEN Zhangming, PANG Xiongqi, et al.Characteristics of coalification modeling experiment products of Dayan brown coal[J]. Journal of Daqing Petroleum Institute, 1984, 8(3): 1-9.
[20] 张文正, 刘桂霞, 陈安定, 等. 低阶煤岩显微组分的成烃模拟实验[M]. 北京: 石油工业出版社, 1987: 222-228.
ZHANG Wenzheng, LIU Guixia, CHEN Anding, et al.Laboratory simulation of hydrocarbon generation of lower rank coals and macerals[M]. Beijing: Petroleum Industry Press, 1987: 222-228.
[21] 关德师, 戚厚发, 甘利灯. 煤和煤系泥岩产气率实验结果讨论[M]. 北京: 石油工业出版社, 1987: 182-193.
GUAN Deshi, QI Houfa, GAN Lideng.Discussion on pyrolytic- simulation results of gas productivity from coals and mudstones of coal series[M]. Beijing: Petroleum Industry Press, 1987: 182-193.
[22] 张文正, 徐正球. 低阶煤热演化生烃的模拟试验研究[J]. 天然气工业, 1986, 6(2): 1-7.
ZHANG Wenzheng, XU Zhengqiu.Modeling experiment research of hydrocarbon generation from the thermal evaluation of low grade coal[J]. Natural Gas Industry, 1986, 6(2): 1-7.
[23] 程克明, 王铁冠, 钟宁宁, 等. 煤成烃地球化学[M]. 北京: 科学出版社, 1995: 108-111.
CHENG Keming, WANG Tieguan, ZHONG Ningning, et al.Source rocks geochemistry[M]. Beijing: Science Press, 1995: 108-111.
[24] 秦建中. 中国烃源岩[M]. 北京: 科学出版社, 2005: 311-334.
QIN Jianzhong.Source rocks in China[M]. Beijing: Science Press, 2005: 311-334.
[25] DAI J X, QI H F.Gas pores in coal measures and their significance in gas exploration[J]. Chinese Science Bulletin, 1982, 27(12): 1314-1318.
[26] HUNT J.Petroleum geochemistry and geology[M]. New York: W H Freeman and Company, 1979: 109-110, 178.
[27] FENG Z Q, LIU D, HUANG S P, et al.Geochemical characteristics and genesis of natural gas in the Yan’an gas field, Ordos Basin, China[J]. Organic Geochemistry, 2016, 102: 67-76.
[28] 戴金星. 我国煤系地层含气性的初步研究[J]. 石油学报, 1980, 1(4): 27-37.
DAI Jinxing.Preliminary research on natural gas in coal series in China[J]. Acta Petrolei Sinica, 1980, 1(4): 27-37.
[29] 戴金星, 戚厚发, 郝石生. 天然气地质学概论[M]. 北京: 石油工业出版社, 1984: 163-180.
DAI Jinxing, QI Houfa, HAO Shisheng.An introduction to natural gas geology[M]. Beijing: Petroleum Industry Press, 1984: 163-180.
[30] 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: 83-84, 294-309.
HUANG Difan, QIN Kuangzong, WANG Tieguan, et al.Formation and mechanism of oil from coal[M]. Beijing: Petroleum Industry Press, 1995: 83-84, 294-309.
[31] 戴金星. 加强天然气地学研究, 勘探更多大气田[J]. 天然气地球科学, 2003, 14(1): 3-14.
DAI Jinxing.Enhance the studies on natural gas geology and find more large gas fields in China[J]. Natural Gas Geoscience, 2003, 14(1): 3-14.
[32] 戴金星, 夏新宇, 秦胜飞, 等. 中国天然气勘探开发的若干问题[C]//中国石油天然气股份有限公司2000年勘探技术座谈会报告. 北京: 石油工业出版社, 2001: 186-192.
DAI Jinxing, XIA Xinyu, QING Shengfei, et al.Some problems of natural gas exploration and development in China[C]//Exploration technology symposium report of PetroChina in 2000. Beijing: Petroleum Industry Press, 2001: 186-192.
[33] 王昌桂, 程克明, 徐永昌, 等. 吐哈盆地侏罗系煤成烃地球化学[M]. 北京: 科学出版社, 1998: 60-66.
WANG Changgui, CHENG Keming, XU Yongchang, et al.Coal derived hydrocarbon geochemistry of Jurassic in Tuha Basin[M]. Beijing: Science Press, 1998: 60-66.
[34] 程克明. 吐哈盆地油气生成[M]. 北京: 石油工业出版社, 1994: 6-14.
CHENG Keming.Oil and gas generation in Tuha Basin[M]. Beijing: Petroleum Industry Press, 1994: 6-14.
[35] SMITH G C, COOK A C.Petroleum occurrence in the Gippsland Basin and its relationship to rank and organic matter type[J]. APPEA Journal, 1984, 24: 196-216.
[36] PANGGABEAN H.Tertiary source rocks, coals and reservoir potential in the Asem Asem and Barito Basins, Southeastern Kalimantan, Indonesia. Doctor Dissertation[J]. New South Wales: University of Wollongong, 1991.
[37] GONG D Y, CAO Z L, NI Y Y, et al.Origins of Jurassic oil reserves in the Turpan-Hami Basin, northwest China: Evidence of admixture from source and thermal maturity[J]. Journal of Petroleum Science and Engineering, 2016, 146: 788-802.
[38] 戴金星. 我国台湾油气地质梗概[J]. 石油勘探与开发, 1980, 7(1): 31-39.
DAI Jinxing.Geological outline of Taiwan oil and gas in China[J]. Petroleum Exploration and Development, 1980, 7(1): 31-39.
[39] 戴金星, 倪云燕, 周庆华, 等. 中国天然气地质与地球化学研究对天然气工业的重要意义[J]. 石油勘探与开发, 2008, 35(5): 513-525.
DAI Jinxing, NI Yunyan, ZHOU Qinghua, et al.Significances of studies on natural gas geology and geochemistry for natural gas industry in China[J]. Petroleum Exploration and Development, 2008, 35(5): 513-525.
[40] 李明诚. 石油与天然气运移: 第4版[M]. 北京: 石油工业出版社, 2013: 56-58.
LI Mingcheng.Petroleum migration: 4th Edition[M]. Beijing: Petroleum Industry Press, 2013: 56-58.
[41] 陈锦石, 陈文正. 碳同位素地质学概论[M]. 北京: 地质出版社, 1983: 128-129.
CHEN Jinshi, CHEN Wenzheng. An introduction to carbon isotope geology[M]. Beijing: Geological Publishing House, 1983: 128-129.
[42] 陈义才, 沈忠民, 李延均, 等. 大宛齐油田溶解气扩散特征及其扩散量的计算[J]. 石油勘探与开发, 2002, 29(2): 58-60.
CHEN Yicai, SHEN Zhongmin, LI Yanjun, et al . Significances of diffusion quantity of solution gas in Dawanqi oil field[J]. Petroleum Exploration and Development, 2002, 29(2): 58-60.
[43] 戴金星, 陈践发, 钟宁宁, 等. 中国大气田及其气源[M]. 北京: 科学出版社, 2003: 1-3.
DAI Jinxing, CHEN Jianfa, ZHONG Ningning, et al.Large gas fields and their gas sources in China[M]. Beijing: Science Press, 2003: 1-3.
[44] 戴金星. 中国从贫气国正迈向产气大国[J]. 石油勘探与开发, 2005, 32(1): 1-5.
DAI Jinxing.Chinese great advance: From a gas-shortage country to a giant gas-producer[J]. Petroleum Exploration and Development, 2005, 32(1): 1-5.
[45] 戴金星. 加强天然气地学研究勘探更多大气田[J]. 天然气地球科学, 2003, 14(1): 3-14.
DAI Jinxing.Enhance the studies on natural gas geology and find more large gas fields in China[J]. Natural Gas Geoscience, 2003, 14(1): 3-14.
[46] IHS. Field general report of the IHS International database[DB/OL]. (2018-06-01)[2019-04-09]. https://ihsmarkit.com/index.html
[47] 李国玉, 金之钧. 新编世界含油气盆地图集(下册)[M]. 北京: 石油工业出版社, 2005: 416-417.
LI Guoyu, JIN Zhijun.New: World atlas of oil and gas basin: Volume Ⅱ[M]. Beijing: Petroleum Industry Press, 2005: 416-417.
[48] STAHL W J U A. Geochemische daten nordwest-deutscher Obrekarbor, Zechstein and Bunt sand stein gas[J]. Erdoel and Kohle-Erdgas-Petrochemic, 1979, 32: 65-70.
[49] KROUSE H R.Stable isotope geochemistry of nonhydrocarbon constituents of natural gases[R]. Bucharest, Romania: 10th world Petroleum Congress, 1979.
[50] ULMISHEK G F. Petroleum geology and resources of West Siberian Basin, Russia[J]. US Geological Survey Bulletin, 2003, 2201-G: 1-53.
[51] KOHTOROVICH A E.Oil and gas geology in West Siberia[M]. Mineral Press, 1975.
[52] 朱伟林, 王志欣, 宫少波, 等. 俄罗斯含油气盆地[M]. 北京: 科学出版社, 2012: 121-202.
ZHU Weilin, WANG Zhixin, GONG Shaobo, et al.Russian petroliferous basins[M]. Beijing: Science Press, 2012: 121-202.
[53] 甘克文, 李国玉, 张亮成. 世界含油气盆地图集[M]. 北京: 石油工业出版社, 1982.
GAN Kewen, LI Guoyu, ZHANG Liangcheng, et al. World atlas of oil and gas basin[M]. Beijing: Petroleum Industry Press, 1982.
[54] ZHABREV I P, ERMAKOV V I, ORYOL V E, et al.Genesis of gas and gas potention prediction[J]. Oil and Gas Geology, 1974, 9: 1-8.
[55] BANDLOWA T.Zim Auftreter von Erdgas in verbreitungs gebieten kohlefuhrendes Albagerungen[J]. Zeitschrift for Augarmotle Geologic, Baud 1975, 21(10):10-20.
BANDLOWA T.Zim occurrence of natural gas in spreads kohlenfuhrendes Albagerungen[J]. Magazine for Augarmotle Geologic, 1975, 21(10):10-20.
[56] 何登发, 童晓光, 温志新, 等. 全球大油气田形成条件与分布规律[M]. 北京: 科学出版社, 2015: 299-368.
HE Dengfa, TONG Xiaoguang, WEN Zhixin, et al.The formation condition and distribution pattern of giant oil and gas fields in the world[M]. Beijing: Science Press, 2015: 299-368.
[57] 白国平, 殷进垠. 中亚卡拉库姆盆地油气分布特征与成藏模式[J]. 古地理学报, 2007, 9(3): 209-301.
BAI Guoping, YIN Jinyin.Distribution characteristics and accumulation model for oil and gas in Kalakum Basin, Central Asia[J]. Journal of palaeogeography, 2007, 9(3): 209-301.
[58] 何登发, 童晓光, 杨福忠, 等. 中亚含油气区构造演化与油气聚集[M]. 北京: 科学出版社, 2016: 73-159.
HE Dengfa, TONG Xiaoguang, YANG Fuzhong, et al.Tectonic evolution and hydrocarbon accumulation of the petroliferous area in central Asia[M]. Beijing: Science Press, 2016: 73-159.
[59] AKSENOV A A.Amu-Darya gas oil province[J]. Petroleum Geology, 1986, 22(2): 69-75.
[60] UMISHEK G F. Petroleum geology and resources of the Amu-Darya Basin, Turkmenistan, Uzbekistan, Afghanistan and Iran[J]. US Geological Survey Bulletin, 2004, 2201-H: 1-84.
[61] CLARKE J W.Petroleum geology of the Amu-Darya gas oil province of Soviet Central Asia[R]. Virginia: United States Geological Survey, 1988.
[62] 中俄土合作研究项目组. 中俄土天然气地质研究新进展[M]. 北京: 石油工业出版社, 1995: 164-208.
China-Russia-Turkey Cooperative Research Project Team. New progress in geology research of natural gas in China-Russia- Turkmenistan[M]. Beijing: Petroleum Industry Press, 1995: 164-208.
[63] 戴金星, 何斌, 孙永祥, 等. 中亚煤成气聚集域形成及其源岩: 中亚煤成气聚集域研究之一[J]. 石油勘探与开发, 1995, 22(3): 1-6.
DAI Jinxing, HE Bin, SUN Yongxiang, et al.Formation of the central-Asia coal-formed gas accumulation domain and its source rocks: Series study Ⅰon the Central-Asia coal-formed gas accumulation domain[J]. Petroleum Exploration and Development, 1995, 22(3): 1-6.
[64] EPMAKOV V I.The formation of hydrocarbon natural gas in coal-bearing and sub-coal-bearing strata[M]. Moscow: Mineral Press, 1984: 23-67.
[65] 戴金星. 国外的煤成气和主要的聚煤气盆地[J]. 煤田地质情报, 1982, 10(1): 1-5.
DAI Jinxing.Coal-derived gas and major gas-bearing basins abroad[J]. Coal field geological information, 1982, 10(1): 1-5.
[66] 杨俊杰, 裴锡古. 中国天然气地质学: 卷四[M]. 北京: 石油工业出版社, 1996: 1-8.
YANG Junjie, PEI Xigu.Natural Gas Geology in China: Vol. 4[M]. Beijing: Petroleum Industry Press, 1996: 1-8.
[67] 何自新, 费安琦, 王同和, 等. 鄂尔多斯盆地演化与油气[M]. 北京: 石油工业出版社, 2003: 155-173.
HE Zixin, FEI Anqi, WANG Tonghe, et al.Evolution of the Ordos Basin and its hydrocarbon[M]. Beijing: Petroleum Industry Press, 2003: 155-173.
[68] 戴金星, 李剑, 罗霞, 等. 鄂尔多斯盆地大气田的烷烃气碳同位素组成特征及其气源对比[J]. 石油学报, 2005, 26(1): 18-26.
DAI Jinxing, LI Jian, LUO Xia, et al.Alkane carbon isotopic composition and gas source in giant gas fields of Ordos Basin[J]. Acta Petrolei Sinica, 2005, 26(1): 18-26.
[69] 赵文智, 卞从胜, 徐兆辉. 苏里格气田与川中须家河组气田成藏共性与差异[J]. 石油勘探与开发, 2013, 40(4): 400-408.
ZHAO Wenzhi, BIAN Congsheng, XU Zhaohui.Similarities and differences between natural gas accumulations in Sulige gas field in Ordos Basin and Xujiahe gas field in central Sichuan Basin[J]. Petroleum Exploration and Development, 2013, 40(4): 400-408.
[70] 邹才能, 陶士振, 侯连华, 等. 非常规油气地质: 2版[M]. 北京: 地质出版社, 2013: 114-117.
ZOU Caineng, TAO Shizhen, HOU Lianhua, et al.Unconventional petroleum geology: 2nd edition[M]. Beijing: Geological Publishing House, 2013: 114-117.
[71] 李贤庆, 冯松宝, 李剑, 等. 鄂尔多斯盆地苏里格大气田天然气成藏地球化学研究[J]. 岩石学报, 2012, 28(3): 836-846.
LI Xianqing, FENG Songbao, LI Jian, et al.Geochemistry of natural gas accumulation in Sulige large gas field in Ordos Basin[J]. Acta Petrologica Sinica, 2012, 28(3): 836-846.
[72] ZOU C N, YANG Z, TAO S Z, et al.Continuous hydrocarbon accumulation over a large area as a distinguishing characteristic of unconventional petroleum: The Ordos Basin, North-Central China[J]. Earth Science Reviews, 2013, 126: 358-369.
[73] DAI J X, LI J, LUO X, et al.Stable carbon isotope compositions and source rock geochemistry of the giant gas accumulations in the Ordos Basin, China[J]. Organic Geochemistry, 2005, 36: 1617-1635.
[74] 于聪, 黄士鹏, 龚德瑜, 等. 天然气碳、氢同位素部分倒转成因: 以苏里格气田为例[J]. 石油学报, 2013, 34(S1): 92-101.
YU Cong, HUANG Shipeng, GONG Deyu, et al.Partial reversal cause of carbon and hydrogen isotope compositions of natural gas: A case study in Sulige gas field, Ordos Basin[J]. Acta Petrolei Sinica, 2013, 34(S1): 92-101.
[75] HU G Y, LI J, SHAN X Q, et al.The origin of natural gas and the hydrocarbon charging history of the Yulin gas field in the Ordos Basin[J]. International Journal of Coal Geology, 2010, 81(4): 381-191.
[76] HUANG S P, FANG X, LIU D, et al.Natural gas genesis and sources in the Zizhou gas field in the Ordos Basin, China[J]. International Journal of Coal Geology, 2015, 152: 132-140.
[77] LIU Q Y, JIN Z J, MENG Q Q, et al.Genetic types of natural gas and filling patterns in Daniudi gas field, Ordos Basin, China[J]. Journal of Asian Earth Sciences, 2015, 107: 1-11.
[78] WU Xiaoqi, LIU Quanyou, ZHU Jianhui, et al.Geochemical characteristics of tight gas and gas-source correlation in the Daniudi gas field, the Ordos Basin, China[J]. Marine and Petroleum Geology, 2017, 79: 412-425.
[79] 胡安平, 李剑, 张文正, 等. 鄂尔多斯盆地上、下古生界和中生界天然气地球化学特征及成因类型对比[J]. 中国科学: 地球科学, 2007, 37(增刊Ⅱ): 157-166.
HU Anping, LI Jian, ZHANG Wenzheng, et al.Geochemical characteristics and origin of gases from the Upper, Lower Paleozoic and the Mesozoic reservoirs in the Ordos Basin, China[J]. SCIENCE CHINA Earth Sciences, 2008, 51(Supp. I): 183-194.
[80] FENG Z Q, LIU D, HUANG S P, et al.Geochemical characteristics and genesis of natural gas in the Yan’an gas field, Ordos Basin, China[J]. Organic Geochemistry, 2016, 102: 67-76.
[81] 倪春华, 刘光祥, 朱建辉, 等. 鄂尔多斯盆地杭锦旗地区上古生界天然气成因及来源[J]. 石油实验地质, 2018, 40(2): 193-199.
NI Chunhua, LIU Guangxiang, ZHU Jianhui, et al.Origin and source of natural gas in the Upper Paleozoic in Hangjinqi area, Ordos Basin[J]. Petroleum Geology & Experiment, 2018, 40(2): 193-199.
[82] 何自新, 付金华, 席胜利, 等. 苏里格大气田成藏地质特征[J]. 石油学报, 2003, 24(2): 6-12.
HE Zixin, FU Jinhua, XI Shengli, et al.Geological features of reservoir formation of Sulige gas field[J]. Acta Petrolei Sinica, 2003, 24(2): 6-12.
[83] 李延钧, 陈义才, 杨远聪, 等. 鄂尔多斯下古生界碳酸盐烃源岩评价与成烃特征[J]. 石油与天然气地质, 1999, 20(4): 349-353.
LI Yanjun, CHEN Yicai, YANG Yuancong, et al.Source rock evaluation and characteristics of hydrocarbon generation from lower Paleozoic carbonate in Ordos Basin[J]. Oil & Gas Geology, 1999, 20(4): 349-353.
[84] 夏新宇. 碳酸盐岩生烃与长庆气田气源[M]. 北京: 石油工业出版社, 2000: 28-122.
XIA Xinyu.Hydrocarbon potential of carbonate source rocks and gas-source carrelation of the Changqing gas field[M]. Beijing: Petroleum Industry Press, 2000: 28-122.
[85] 涂建琪, 董义国, 张斌, 等. 鄂尔多斯盆地奥陶系马家沟组规模性有效烃源岩的发现及其地质意义[J]. 天然气工业, 2016, 36(5): 15-24.
TU Jianqi, DONG Yiguo, ZHANG Bin, et al.Discovery of effective scale source rocks of the Ordovician Majiagou Fm in the Ordos Basin and its geological significance[J]. Natural Gas Industry, 2016, 36(5): 15-24.
[86] 李伟, 涂建琪, 张静, 等. 鄂尔多斯盆地奥陶系马家沟组自源型天然气聚集与潜力分析[J]. 石油勘探与开发, 2017, 44(4): 521-530.
LI Wei, TU Jianqi, ZHANG Jing, et al.Accumulation and potential analysis of self-sourced natural gas in the Ordovician Majiagou Formation of Ordos Basin, NW China[J]. Petroleum Exploration and Development, 2017, 44(4): 521-530.
[87] 刘丹, 张文正, 孔庆芬, 等. 鄂尔多斯盆地下古生界烃源岩与天然气成因[J]. 石油勘探与开发, 2016, 43(4): 540-549.
LIU Dan, ZHANG Wenzheng, KONG Qingfen, et al.Lower Paleozoic source rocks and natural gas origins in Ordos Basin, NW China[J]. Petroleum Exploration and Development, 2016, 43(4): 540-549.
[88] 黄第藩, 熊传武, 杨俊杰, 等. 鄂尔多斯盆地中部气田气源判识和天然气成因类型[J]. 天然气工业, 1996, 16(6): 1-6.
HUANG Difan, XIONG Chuanwu, YANG Junjie, et al.Gas source discrimination and natural gas genetic types of central gas field in Ordos Basin[J]. Natural Gas Industry, 1996, 16(6): 1-6.
[89] 陈安定. 论鄂尔多斯盆地中部气田混合气的实质[J]. 石油勘探与开发, 2002, 29(2): 33-38.
CHEN Anding.Feature of mixed gas in central gas field of Ordos Basin[J]. Petroleum Exploration and Development, 2002, 29(2): 33-38.
[90] DANFORTH A, CRANATH J W, GROSS J S, et al.Deepwater gas across a transform margin, offshore East Africa[J]. Geo ExPro, 2012, 9(4): 72-74.
[91] 张光亚, 刘小兵, 温志新, 等. 东非被动大陆边缘盆地构造-沉积特征及其对大气田富集的控制作用[J]. 中国石油勘探, 2015, 20(4): 71-80.
ZHANG Guangya, LIU Xiaobing, WEN Zhixin, et al . Structural and sedimentary characteristics of passive continental margin basins in East Africa and their effect on the formation of giant gas fields[J]. China Petroleum Exploration, 2015, 20(4): 71-80.
[92] 曹全斌, 唐鹏程, 吕福亮, 等. 东非鲁伍马盆地深水浊积砂岩气藏成藏条件及控制因素[J]. 海相油气地质, 2018, 23(3): 65-72.
CAO Quanbin, TANG Pengcheng, LU Fuliang, et al.Formation conditions and controlling factors of gas-bearing turbidite sand reservoirs in deep water deposits in the Rovuma Basin, East Africa[J]. Marine Origin Petroleum Geology, 2018, 23(3): 65-72.
[93] 孔祥宇. 东非鲁武马盆地油气地质特征与勘探前景[J]. 岩性油气藏, 2013, 25(3): 21-27.
KONG Xiangyu.Petroleum geologic characteristics and exploration prospect in Rovuma Basin, East Africa[J]. Litologic Reservoirs, 2013, 25(3): 21-27.
[94] CATUNEANU O, WOPFENR H, ERIKSSON P G, et al.The Karoo Basins of South-Central Africa[J]. Journal of African Earth Sciences, 2005, 43: 211-253.
[95] 金宠, 陈安清, 楼章华, 等. 东非构造演化与油气成藏规律初探[J]. 吉林大学学报(地球科学版), 2012, 42(S2): 121-130.
JIN Chong, CHEN Anqing, LOU Zhanghua, et al.Tectonic evolution and hydrocarbon accumulation principle[J]. Journal of Jilin University (Earth Science Edition), 2012, 42(S2): 121-130.
文章导航

/