Acta Petrolei Sinica ›› 2026, Vol. 47 ›› Issue (5): 993-1013,1093.DOI: 10.7623/syxb202605004
• PETROLEUM EXPLORATION • Previous Articles
Li Yong1, Xu Weikai1, Wang Yanbin1, Jing Zhenhua2, An Xiaokang1, Liu Le1
Received:2025-04-30
Revised:2025-11-20
Published:2026-06-09
李勇1, 许卫凯1, 王延斌1, 荆振华2, 安晓康1, 刘乐1
通讯作者:
李勇,男,1988年4月生,2015年获中国地质大学(北京)博士学位,现为中国矿业大学(北京)教授,主要从事煤层气和非常规油气开发地质教学和科研工作。Email:liyong@cumtb.edu.cn
作者简介:李勇,男,1988年4月生,2015年获中国地质大学(北京)博士学位,现为中国矿业大学(北京)教授,主要从事煤层气和非常规油气开发地质教学和科研工作。Email:liyong@cumtb.edu.cn
基金资助:CLC Number:
Li Yong, Xu Weikai, Wang Yanbin, Jing Zhenhua, An Xiaokang, Liu Le. Geological characteristics of coal accumulation and occurrence patterns of coalbed methane in China[J]. Acta Petrolei Sinica, 2026, 47(5): 993-1013,1093.
李勇, 许卫凯, 王延斌, 荆振华, 安晓康, 刘乐. 中国成煤地质特征与煤层气分布规律[J]. 石油学报, 2026, 47(5): 993-1013,1093.
Add to citation manager EndNote|Ris|BibTeX
| [1] 邹才能,李士祥,熊波,等. 新质生产力下"能源绿色转型"革命及意义——兼论"能源三角"理论认识[J].石油勘探与开发,2024,51(6):1395-1408. ZOU Caineng,LI Shixiang,XIONG Bo,et al.Revolution and significance of "Green Energy Transition" in the context of new quality productive forces:a discussion on theoretical understanding of "Energy Triangle"[J].Petroleum Exploration and Development,2024,51(6):1395-1408. [2] 康红普,王国法,王双明,等.煤炭行业高质量发展研究[J].中国工程科学,2021,23(5):130-138. KANG Hongpu,WANG Guofa,WANG Shuangming,et al.High-quality development of China’s coal industry[J].Strategic Study of CAE,2021,23(5):130-138. [3] IEA.Coal 2024:analysis and forecast to 2027[R].Paris:IEA,2024. [4] 葛世荣,刘淑琴,刘金昌,等.能源强国目标下煤炭安全保供及高效降碳效力研究[J].中国工程科学,2024,26(4):40-51. GE Shirong,LIU Shuqin,LIU Jinchang,et al.Effectiveness of secure supply and carbon reduction in the coal sector for strengthening the energy power of China[J].Strategic Study of CAE,2024,26(4):40-51. [5] 李勇,潘松圻,宁树正,等.煤系成矿学内涵与发展——兼论煤系成矿系统及其资源环境效应[J].中国科学:地球科学,2022,52(10): 1948-1965. LI Yong,PAN Songqi,NING Shuzheng,et al.Coal measure metallogeny:metallogenic system and implication for resource and environment[J].Science China Earth Sciences,2022,65(7):1211-1228. [6] S HAO Longyi,WANG Xuetian,WANG Dongdong,et al.Sequence stratigraphy,paleogeography,and coal accumulation regularity of major coal -accumulating periods in China[J].International Journal of Coal Science & Technology,2020,7(2):240-262. [7] 中华人民共和国自然资源部.中国矿产资源报告2024[M].北京:地质出版社,2024. Ministry of Natural Resources of the People’s Republic of China.China mineral resources (2024)[M].Beijing:Geological Publishing House,2024. [8] 宁树正.中国赋煤构造单元与控煤特征[D].北京:中国矿业大学(北京),2013. NING Shuzheng.The coal occurrence tectonic units and coal-controlling characteristics in China[D].Beijing:China University of Mining and Technology,2013. [9] 张道勇,朱杰,赵先良,等.全国煤层气资源动态评价与可利用性分析[J].煤炭学报,2018,43(6):1598-1604. ZHANG Daoyong,ZHU Jie,ZHAO Xianliang,et al.Dynamic assessment of coalbed methane resources and availability in China[J].Journal of China Coal Society,2018,43(6):1598-1604. [10] 张嘉琪,刘曾勤,申宝剑,等.国内外深层煤层气勘探开发进展与启示[J].石油实验地质,2025,47(1):1-8. ZHANG Jiaqi,LIU Zengqin,SHEN Baojian,et al.Progress and insights from worldwide deep coalbed methane exploration and development[ J].Petroleum Geology & Experiment,2025,47(1):1-8. [11] 吴裕根,门相勇,娄钰.我国"十四五"煤层气勘探开发新进展与前景展望[J].中国石油勘探,2024,29(1):1-13. WU Yugen,MEN Xiangyong,LOU Yu.New progress and prospect of coalbed methane exploration and development in China during the 14th Five-Year Plan Period[J].China Petroleum Exploration,2024,29(1):1-13. [12] 罗平亚,朱苏阳.中国建立千亿立方米级煤层气大产业的理论与技术基础[J].石油学报,2023,44(11):1755-1763. LUO Pingya,ZHU Suyang.Theoretical and technical fundamentals of a 100 billion-cubic-meter-scale large industry of coalbed methane in China[J].Acta Petrolei Sinica,2023,44(11):1755-1763. [13] 周立宏,熊先钺,丁蓉,等.煤岩气内涵、富集机理及实践意义[J].天然气工业,2025,45(3):1-15. ZHOU Lihong,XIONG Xianyue,DING Rong,et al.Connotation,enrichment mechanism and practical significance of coal-rock gas[J].Natural Gas Industry,2025,45(3):1-15. [14] 陈世达,汤达祯,侯伟,等.煤储层流体特征、聚气主控因素及富气模式——以鄂尔多斯盆地中东部上古生界为例[J].石油勘探与开发,2025,52(2):385-394. CHEN Shida,TANG Dazhen,HOU Wei,et al.Fluid characteristics,gas accumulation controlling factors and gas enrichment modes in coal reservoirs:a case study of the Upper Paleozoic in the central-eastern Ordos Basin,NW China[J].Petroleum Exploration and Development,2025,52(2):385-394. [15] 曹代勇,琚宜文,夏玉成,等.中国煤田构造研究的史实概览、主要进展与前景展望[J].煤田地质与勘探,2025,53(5):1-23. CAO Daiyong,JU Yiwen,XIA Yucheng,et al.Historical overview,advancements,and future prospects of coalfield structure research in China[J].Coal Geology & Exploration,2025,53(5):1-23. [16] 琚宜文,王巍,任战利,等.鄂尔多斯盆地的多阶段演化:盆山耦合系统和能源资源[J].中国科学:地球科学,2025,55(8):2537-2582. JU Yiwen,WANG Wei,REN Zhanli,et al.Multi-stage evolution of the Ordos Basin:its coupled basin-mountain systems and energy resources[J].Science China Earth Sciences,2025,68(8):2426-2473. [17] 曹代勇,宁树正,郭爱军,等.中国煤田构造格局与构造控煤作用[M].北京:科学出版社,2018. CAO Daiyong,NING Shuzheng,GUO Aijun,et al.Tectonic framework of coalfields and tectonic control of coalseams in China[M].Beijing:Science Press,2018. [18] 韩德馨,杨起.中国煤田地质学-下册-中国聚煤规律[M].北京:煤炭工业出版社,1980. HAN Dexin,YANG Qi.Coalfield geology of China-volume II-coal accumulation patterns in China[M].Beijing:China Coal Industry Publishing House,1980. [19] NELSEN M P,DIMICHELE W A,PETERS S E,et al.Delayed fungal evolution did not cause the Paleozoic peak in coal production[J].Proceedings of the National Academy of Sciences of the United States of America,2016,113(9):2442-2447. [20] LESLIE A B,SIMPSON C,MANDER L.Reproductive innovations and pulsed rise in plant complexity[J].Science,2021,373(6561): 1368-1372. [21] 邹常玺,张培礎.煤田地质学[M].北京:煤炭工业出版社,1987. ZOU Changxi,ZHANG Peichu.Coalfield geology[J].Beijing:China Coal Industry Publishing House,1987. [22] DAI Shifeng,ZHENG Xue,WANG Xibo,et al.Stone coal in China:a review[J].International Geology Review,2018,60(5/6):736-753. [23] WANG Jun.Late Paleozoic macrofloral assemblages from Weibei coalfield,with reference to vegetational change through the Late Paleozoic ice-age in the North China block[J].International Journal of Coal Geology,2010,83(2/3):292-317. [24] CLEAL C J,THOMAS B A.Palaeozoic tropical rainforests and their effect on global climates:is the past the key to the present?[J].Geobiology,2005,3(1):13-31. [25] 秦勇.中国煤系矿产近现代地质研究进展与走向[J].煤田地质与勘探,2025,53(1):12-35. QIN Yong.Advances and trends of modern and contemporary research on the geology of coal-measure minerals in China[J].Coal Geology & Exploration,2025,53(1):12-35. [26] 曹代勇,宁树正,郭爱军,等.中国煤田构造格局及其基本特征[J].矿业科学学报,2016,1(1):1-8. CAO Daiyong,NING Shuzheng,GUO Aijun,et al.Basic characteristics of coalfield tectonic framework in China[J].Journal of Mining Science and Technology,2016,1(1):1-8. [27] 张功成,李增学,王东东,等.中国南海海域煤地质特征[J].煤炭学报,2020,45(11):3864-3878. ZHANG Gongcheng,LI Zengxue,WANG Dongdong,et al.Characteristics of coal geology in South China Sea[J].Journal of China Coal Society,2020,45(11):3864-3878. [28] 杨柳.中国海域新生代聚煤规律与控煤模式[D].徐州:中国矿业大学,2017. YANG Liu.Cenozoic coal accumulation regularity and controlling pattern in China offshore[D].Xuzhou:China University of Mining and Technology,2017. [29] 何发岐,王付斌,郭利果,等.鄂尔多斯盆地古生代原型盆地演化与构造沉积格局变迁[J].石油实验地质,2022,44(3):373-384. HE Faqi,WANG Fubin,GUO Liguo,et al.Evolution of prototype basin and change of tectonic-sedimentary pattern in Paleozoic,Ordos Basin[J].Petroleum Geology & Experiment,2022,44(3):373-384. [30] 何登发,成祥,张国伟,等.地质历史时期鄂尔多斯盆地的范围、性质及其勘探意义[J].石油勘探与开发,2025,52(4):757-771. HE Dengfa,CHENG Xiang,ZHANG Guowei,et al.Scope,nature,and exploration significance of Ordos Basin during geological historical periods,NW China[J].Petroleum Exploration and Development,2025,52(4):757-771. [31] 沈树忠,张华,张以春,等.中国二叠纪综合地层和时间框架[J].中国科学:地球科学,2019,49(1):160-193. SHEN Shuzhong,ZHANG Hua,ZHANG Yichun,et al.Permian integrative stratigraphy and timescale of China[J].Science China Earth Sciences,2019,62(1):154-188. [32] XU W,LI Y,ALGEO T J.Stepwise aridification of the Late Paleozoic North China craton[J].Geoscience Frontiers,2025,16(5): 102114. [33] 邵龙义,张超,闫志明,等.华南晚二叠世层序——古地理及聚煤规律[J].古地理学报,2016,18(6):905-919. S HAO Longyi,ZHANG Chao,YAN Zhiming,et al.Sequence-palaeogeography and coal accumulation of the Late Permian in South China[J].J ournal of Palaeogeography,2016,18(6):905-919. [34] 夏玉成,王佟,王传涛,等.新疆早-中侏罗世聚煤期同沉积构造及其控煤效应[J].煤田地质与勘探,2016,44(2):1-7. XIA Yucheng,WANG Tong,WANG Chuantao,et al.Synsedimentary structures of Early-Middle Jurassic coal-accumulating period and their control on coal in Xinjiang[J].Coal Geology & Exploration,2016,44(2):1-7. [35] 李猛,李昕,HESSELBO S P,等.冰室—(超)温室气候动荡期湖平面演化及天文轨道气候作用[J].中国科学:地球科学,2024,54(1):264-280. LI Meng,LI Xin,HESSELBO S P,et al.Orbital pacing and secular evolution of lake-level changes reconstructed by sedimentary noise modeling during the Early Jurassic icehouses-(super)greenhouses[J].Science China Earth Sciences,2024,67(1):252-267. [36] 徐小涛,宁树正,孙杰,等.准噶尔盆地东部西山窑组煤地球化学特征及古环境意义[J].煤炭科学技术,2024,52(增刊1):153-163. XU Xiaotao,NING Shuzheng,SUN Jie,et al.Geochemical characteristics and paleoenvironmental significance of the Xishanyao Formation coal in the eastern Junggar Basin[J].Coal Science and Technology,2024,52(S1):153-163. [37] 王佟,田野,邵龙义,等.新疆准噶尔盆地早—中侏罗世层序—古地理及聚煤特征[J].煤炭学报,2013,38(1):114-121. WANG Tong,TIAN Ye,SHAO Longyi,et al.Sequence-paleogeography and coal accumulation of the Early and Middle Jurassic in the Junggar Basin[J].Journal of China Coal Society,2013,38(1):114-121. [38] J UDD E J,TIERNEY J E,LUNT D J,et al.A 485-million-year history of Earth’s surface temperature[J].Science,2024,385(6715): eadk3705. [39] 王帅,董涛,李雅楠,等.东北地区早白垩世古野火事件及其对深时生态系统影响[J].地学前缘,2025,32(4):497-509. WANG Shuai,DONG Tao,LI Ya’nan,et al.Early cretaceous wildfire events in NE China and implications on deep-time ecosystems[J].Earth Science Frontiers,2025,32(4):497-509. [40] 王帅,邵龙义,孙钦平,等.内蒙古二连盆地巴彦宝力格煤田下白垩统赛汉塔拉组层序—古地理与聚煤作用[J].古地理学报,2018,20(2):325-336. WANG Shuai,SHAO Longyi,SUN Qinping,et al.Sequence-palaeogeography and coal accumulation of the Lower Cretaceous Saihantala Formation in the Bayanbaolige coalfield,Erlian Basin,Inner Mongolia[J].Journal of Palaeogeography,2018,20(2):325-336. [41] 刘磊,邵龙义,黄继,等.西藏措勤盆地川巴地区下白垩统沉积相及含煤性研究[J].中国地质,2016,43(3):1016-1025. LIU Lei,SHAO Longyi,HUANG Ji,et al.Sedimentary facies and coal-bearing property of the Lower Cretaceous strata of Chuanba area in Coqen Basin,Tibet[J].Geology in China,2016,43(3):1016-1025. [42] P ENG Heng,DING Lin,LIU Chiyang,et al.Middle Triassic transcontinental connection between the North China craton and the Paleo-Teth ys Ocean[J].Communications Earth & Environment,2024,5(1):775. [43] ZHAI Mingguo,HU Peiyuan,LIU Yiming,et al.Final closure of the Paleo-Tethys Ocean:insights from Triassic granitoids in the central Qiangtang area,northern Tibetan Plateau[J].GSA Bulletin,2024,136(11/12):5075-5090. [44] WANG Wenjia,WANG Chao,ALLEN M B,et al.Tectonic transition in the North China Craton during Paleo-Pacific subduction:Evidence from Jurassic-Cretaceous dike swarms[J].GSA Bulletin,2025,137(7/8):3389-3408. [45] 朱日祥,徐义刚.西太平洋板块俯冲与华北克拉通破坏[J].中国科学:地球科学,2019,49(9):1346-1356. ZHU Rixiang,XU Yigang.The subduction of the west Pacific plate and the destruction of the North China craton[J].Science China Earth Sciences,2019,62(9):1340-1350. [46] 朱日祥,朱光,李建威,等.华北克拉通破坏[M].北京:科学出版社,2020. ZHU Rixiang,ZHU Guang,LI Jianwei,et al.The North China craton destruction[M].Beijing:Science Press,2020. [47] 何登发.中国多旋回叠合沉积盆地的形成演化、地质结构与油气分布规律[J].地学前缘,2022,29(6):24-59. HE Dengfa.Multi-cycle superimposed sedimentary basins in China:formation,evolution,geologic framework and hydro-carbon occurrence[J].Earth Science Frontiers,2022,29(6):24-59. [48] 董大啸,邵龙义,李明培.华北地台晚石炭世—早二叠世含煤岩系聚煤规律研究[J].煤炭科学技术,2017,45(9):175-181. DONG Daxiao,SHAO Longyi,LI Mingpei.Study on coal accumulating law of Late Carboniferous-Early Permian coal-bearing strata in North China platform[J].Coal Science and Technology,2017,45(9):175-181. [49] WU Qiong,RAMEZANI J,ZHANG Hua,et al.High-precision U-Pb age constraints on the Permian floral turnovers,paleoclimate change,and tectonics of the North China block[J].Geology,2021,49(6):677-681. [50] 陈世悦,马帅,贾贝贝,等.渤海湾盆地石炭—二叠系含煤岩系沉积环境及其展布规律[J].煤炭学报,2018,43(增刊2):513-523. CHEN Shiyue,MA Shuai,JIA Beibei,et al.Sedimentary environment and distribution law of Carboniferous-Permian coal-bearing series in Bohai Bay Basin[J].Journal of China Coal Society,2018,43(S2):513-523. [51] 邵龙义,潘浩,王学天,等.三角洲分类及浅水三角洲定义问题探讨[J].沉积学报,2025,43(5):1592-1604. SHAO Longyi,PAN Hao,WANG Xuetian,et al.Discussion on classification of deltas and definition of shallow-water deltas[J].Acta Sedimentologica Sinica,2025,43(5):1592-1604. [52] 邵龙义,徐小涛,王帅,等.中国含煤岩系古地理及古环境演化研究进展[J].古地理学报,2021,23(1):19-38. SHAO Longyi,XU Xiaotao,WANG Shuai,et al.Research progress of palaeogeography and palaeoenvironmental evolution of coal-bearing series in China[J].Journal of Palaeogeography,2021,23(1):19-38. [53] 李勇,邹才能,梁天琦,等.成煤环境分类及煤岩形成演化[J].石油勘探与开发,2026,53(1):107-118. LI Yong,ZOU Caineng,LIANG Tianqi,et al.Classification of coal-forming environments and evolution of coal petrology[J].Petroleum Exploration and Development,2026,53(1):107-118. [54] 梁新权,周云,蒋英,等.二叠纪东吴运动的沉积响应差异:来自扬子和华夏板块吴家坪组或龙潭组碎屑锆石LA-ICPMS U-Pb年龄研究[J].岩石学报,2013,29(10):3592-3606. LIANG Xinquan,ZHOU Yun,JIANG Ying,et al.Difference of sedimentary response to Dongwu Movement:study on LA-ICPMS U-Pb ages of detrital zircons from Upper Permian Wujiaping or Longtan Formation from the Yangtze and Cathaysia blocks[J].Acta Petrologica Sinica,2013,29(10):3592-3606. [55] 赵勇.以事件层为约束的黔西六盘水地区晚二叠世煤系高频层序地层[D].徐州:中国矿业大学,2021. ZHAO Yong.High frequency sequence stratigraphy of Late Permian coal measures in Liupanshui area western Guizhou constrained by event layers[D].Xuzhou:China University of Mining and Technology,2021. [56] 黄磊,张晓晶,李钢柱,等.鄂尔多斯东北部中侏罗世孢粉化石及古气候意义[J].地质学报,2023,97(5):1390-1406. HUANG Lei,ZHANG Xiaojing,LI Gangzhu,et al.Sporopollen assemblage from the Middle Jurassic of the northeastern Ordos Basin,Inner Mongolia,and their paleoclimatic implications[J].Acta Geologica Sinica,2023,97(5):1390-1406. [57] 李勇,曹代勇,魏迎春,等.准噶尔盆地南缘中低煤阶煤层气富集成藏规律[J].石油学报,2016,37(12):1472-1482. LI Yong,CAO Daiyong,WEI Yingchun,et al.Middle to low rank coalbed methane accumulation and reservoiring in the southern margin of Junggar Basin[J].Acta Petrolei Sinica,2016,37(12):1472-1482. [58] 常嘉,陈世悦,王琼,等.低可容空间浅水三角洲沉积层序及聚煤模式:以渤海湾地区下二叠统山西组为例[J].古地理学报,2022,24(2):361-374. CHANG Jia,CHEN Shiyue,WANG Qiong,et al.Sequence stratigraphy and coal accumulation of shallow water delta systems under low accommodation conditions:a case study from the Lower Permian Shanxi Formation in Bohai Bay region[J].Journal of Palaeogeography,2022,24(2):361-374. [59] 贺小标,李鑫,魏永恒,等.塔里木盆地北缘库拜煤田陡倾斜煤储层纳米孔隙特征及其地质控制[J].地质科学,2021,56(3):740-757. HE Xiaobiao,LI Xin,WEI Yongheng,et al.Nano-pore characteristics and their geological control of the steeply inclined coal reservoir in the Cubey coalfield,the northern Tarim Basin[J].Chinese Journal of Geology,2021,56(3):740-757. [60] 李玲,唐淑玲,王斌,等.库车坳陷北部构造带克孜勒努尔组煤层煤岩学特征及煤相约束作用[J].煤炭科学技术,2025,53(3):124-138. LI Ling,TANG Shuling,WANG Bin,et al.Coal petrography characteristics and coal facies constraints of Kezilenur Formation coal seams in the northern tectonic belt of Kuqa depression[J].Coal Science and Technology,2025,53(3):124-138. [61] 王迪,田继军,冯烁,等.塔里木盆地东南缘下—中侏罗统煤层煤岩、煤质特征分析[J].现代地质,2018,32(5):975-984. WANG Di,TIAN Jijun,FENG Shuo,et al.Petrography and quality characteristics of Lower-Middle Jurassic coal seam in the southeastern Tarim Basin[J].Geoscience,2018,32(5):975-984. [62] 赵盼,徐备,陈岩.蒙古—鄂霍茨克洋:演化过程和最终闭合[J].中国科学:地球科学,2023,53(11):2541-2559. ZHAO Pan,XU Bei,CHEN Yan.Evolution and final closure of the Mongol-Okhotsk Ocean[J].Science China Earth Sciences,2023,66(11):2497-2513. [63] 林海涛,李玲,唐淑玲,等.二连盆地富气凹陷低阶煤煤层气成因及成藏机制[J].煤田地质与勘探,2024,52(2):60-69. LIN Haitao,LI Ling,TANG Shuling,et al.Origin and accumulation mechanisms of coalbed methane in low-rank coals in gas-rich sags in the Erlian Basin[J].Coal Geology & Exploration,2024,52(2):60-69. [64] 王帅.中国东北地区早白垩世层序格架内聚煤模式研究[D].北京:中国矿业大学(北京),2018. WANG Shuai.Model of coal-accumulation in the sequence stratigraphic framework of the Early Cretaceous in northeastern China[D].Beijing:China University of Mining and Technology,2018. [65] 贾荣坤.海拉尔盆地煤的物质组成特征及其对区域地质过程的响应机制[D].徐州:中国矿业大学,2024. JIA Rongkun.Materials composition of coal in the Hailar Basin and its response to the regional geological processes[D].Xuzhou:China University of Mining and Technology,2024. [66] 孙钦平.二连盆地低煤阶煤层气富集特征与开发工艺优选——以霍林河、吉尔嘎朗图凹陷为例[D].武汉:中国地质大学,2018. SUN Qinping.The enrichment characteristics of low-rank coalbed methane and optimal suitable development technologies in Erlian Basin:a case study of Huolinhe and Jiergalangtu sags[D].Wuhan:China University of Geosciences,2018. [67] 明盈,孙豪飞,汤达祯,等.四川盆地上二叠统龙潭组深-超深部煤层气资源开发潜力[J].煤田地质与勘探,2024,52(2):102-112. MING Ying,SUN Haofei,TANG Dazhen,et al.Potential for the production of deep to ultradeep coalbed methane resources in the Upper Permian Longtan Formation,Sichuan Basin[J].Coal Geology & Exploration,2024,52(2):102-112. [68] 赵仕华.新疆北部准噶尔和伊犁盆地主要煤田煤质特征及其地质控制因素分析[D].武汉:中国地质大学,2019. ZHAO Shihua.The coal quality and its controlling factors in the main coalfields of Junggar and Yili basins,northern Xinjiang Province[D].Wuhan:China University of Geosciences,2019. [69] 高北斗.塔里木盆地北缘库拜煤田中区煤层气成藏模式研究[D].乌鲁木齐:新疆大学,2020. GAO Beidou.Study on coalbed methane accumulation model of the middle of Kuqa-Bay coalfield locating in the northern margin of the Tarim Basin[D].Urumqi:Xinjiang University,2020. [70] 林雨涵.中国南方晚二叠世树皮煤地球化学特征及成煤环境[D].北京:中国矿业大学(北京),2022. LIN Yuhan.Geochemical characteristics and forming environment of Late Permian bark coal in southern[D].Beijing:China University of Mining and Technology,2022. [71] 崔晓南.鄂尔多斯盆地南缘煤地球化学特征研究[D].北京:中国地质大学(北京),2018. CUI Xiaonan.The study of geochemistry of coals in the southern margin of Ordos Basin[D].Beijing:China University of Geosciences,2018. [72] 刘东娜.大同煤田石炭二叠纪煤的煤岩学和煤地球化学研究[D].太原:太原理工大学,2007. LIU Dongna.The study of coal petrology and coal geochemistry in permo-carboniferous coal from Datong coalfield[D].Taiyuan:Taiyuan University of Technology,2007. [73] 侯永杰.沁水盆地北部晚古生代煤中关键金属元素赋存与富集机理[D].北京:中国矿业大学(北京),2023. HOU Yongjie.Occurrence and enrichment mechanism of critical metals in the Late Paleozoic coal from the northern Qinshui Basin[D].Beijing:China University of Mining and Technology,2023. [74] 李宝庆.黔西上二叠统龙潭组煤的矿物学及地球化学特征研究[D].武汉:中国地质大学,2015. LI Baoqing.Mineralogy and geochemistry of Longtan Formaiton coals of Late Permian in the western Guizhou Province,Southwest China[D].Wuhan:China University of Geosciences,2015. [75] 周铭轩.四川盆地东北部煤中关键金属元素富集机理研究[D].北京:中国矿业大学(北京),2022. ZHOU Mingxuan.Study on enrichment mechanism of critical metals in coals from the northeastern Sichuan Basin[D].Beijing:China University of Mining and Technology,2022. [76] 叶建平.中国煤层气勘探开发及其科技进步历程回顾与思考[J].煤田地质与勘探,2025,53(1):114-127. YE Jianping.China’s CBM exploration and production and associated technological advancements:a review and reflections[J].Coal Geology & Exploration,2025,53(1):114-127. [77] 任战利,祁凯,李进步,等.鄂尔多斯盆地热动力演化史及其对油气成藏与富集的控制作用[J].石油与天然气地质,2021,42(5):1030-1042. REN Zhanli,QI Kai,LI Jinbu,et al.Thermodynamic evolution and hydrocarbon accumulation in the Ordos Basin[J].Oil & Gas Geology,2021,42(5):1030-1042. [78] 李勇,熊先钺,徐立富,等.中国煤层气商业开发典型案例及启示[J].煤炭科学技术,2025,53(3):31-46. LI Yong,XIONG Xianyue,XU Lifu,et al.Inspirations of typical commercially developed coalbed methane cases in China[J].Coal Science and Technology,2025,53(3):31-46. [79] 李勇,徐凤银,唐书恒,等.鄂尔多斯盆地煤层(岩)气勘探开发进展及发展方向[J].天然气工业,2024,44(10):63-79. LI Yong,XU Fengyin,TANG Shuheng,et al.Progress and development direction of coalbed methane (coal-rock gas) exploration and development in the Ordos Basin[J].Natural Gas Industry,2024,44(10):63-79. [80] 牛小兵,范立勇,闫小雄,等.鄂尔多斯盆地煤岩气富集条件及资源潜力[J].石油勘探与开发,2024,51(5):972-985. NIU Xiaobing,FAN Liyong,YAN Xiaoxiong,et al.Enrichment conditions and resource potential of coal-rock gas in Ordos Basin,NW China[J].Petroleum Exploration and Development,2024,51(5):972-985. [81] 杨延辉,王玉婷,张辉,等.沁水盆地典型中深层高阶煤层气开发关键技术[J].天然气工业,2025,45(7):108-121. Y ANG Yanhui,WANG Yuting,ZHANG Hui,et al.Key technologies for development of typical medium-deep high-rank coalbed methane in the Qinshui Basin[J].Natural Gas Industry,2025,45(7):108-121. [82] 杨延辉,张鹏豹,刘忠,等.沁水盆地南部深层高阶煤层气成藏特征[J].中国石油勘探,2024,29(5):107-119. YANG Yanhui,ZHANG Pengbao,LIU Zhong,et al.Gas accumulation characteristics of high-rank coal in deep formations in the southern Qinshui Basin[J].China Petroleum Exploration,2024,29(5):107-119. [83] 李国欣,贾承造,赵群,等.煤岩气成藏机理与煤系全油气系统[J].石油勘探与开发,2025,52(1):29-43. LI Guoxin,JIA Chengzao,ZHAO Qun,et al.Coal-rock gas accumulation mechanism and the whole petroleum system of coal measures[J].Petroleum Exploration and Development,2025,52(1):29-43. [84] 朱苏阳,刘伟,王运峰,等.四川盆地煤层气勘探开发现状与前景[J].油气藏评价与开发,2025,15(2):185-193. ZHU Suyang,LIU Wei,WANG Yunfeng,et al.Current situation and prospects of coalbed methane exploration and development in Sichuan Basin[J].Reservoir Evaluation and Development,2025,15(2):185-193. [85] 单长安,梁兴,张卓,等.川南地区筠连复杂山地浅层改造区薄互煤层气勘探开发关键技术与创新实践[J].石油学报,2025,46(6):1056- 1073. SHAN Chang’an,LIANG Xing,ZHANG Zhuo,et al.Key technologies and innovative practices for exploration and development of thin interbedded coalbed methane in the shallow transformation zone of Junlian complex mountainous region,southern Sichuan Basin[J].Acta Petrolei Sinica,2025,46(6):1056-1073. [86] 梁兴,单长安,李兆丰,等.山地煤层气勘探创新实践及有效开采关键技术——以四川盆地南部筠连煤层气田为例[J].天然气工业,2022,42(6):107-129. LIANG Xing,SHAN Chang’an,LI Zhaofeng,et al.Exploration innovation practice and effective exploitation key technology of mountain coalbed methane—Taking the Junlian coalbed methane field in southern Sichuan Basin as an example[J].Natural Gas Industry,2022,42(6):107-129. [87] 毛新军,李艳平,梁则亮,等.准噶尔盆地侏罗系煤岩气成藏条件及勘探潜力[J].中国石油勘探,2024,29(4):31-43. MAO Xinjun,LI Yanping,LIANG Zeliang,et al.Hydrocarbon accumulation conditions and exploration potential of the Jurassic coal measure gas in Junggar Basin[J].China Petroleum Exploration,2024,29(4):31-43. [88] 高庚,谢颖逸,侯蓓蓓,等.断陷盆地深层煤岩储层特征、发育主控因素及其勘探领域——以海拉尔盆地呼和湖凹陷白垩系南屯组二段为例[J].石油实验地质,2025,47(1):89-103. G AO Geng,XIE Yingyi,HOU Beibei,et al.Characteristics,controlling factors of development and exploration areas of deep coal-rock reservoirs in rift basins:a case study of the second member of Cretaceous Nantun Formation in Huhehu sag,Hailar Basin[J].Petroleum Geology & Expe riment,2025,47(1):89-103. [89] 孟芹,李玲,李杰,等.二连盆地巴彦花凹陷煤层气成因类型及生气潜力[J].煤田地质与勘探,2023,51(11):24-33. MENG Qin,LI Ling,LI Jie,et al.Genetic type and gas-generating potential of coalbed methane in the Bayanhua sag,Erlian Basin[J].Coal Geology & Exploration,2023,51(11):24-33. [90] 陈立超,姚忠岭,张艳秋,等.海拉尔盆地低煤阶煤储层压裂地质特征与改造效果评价[J/OL].煤炭科学技术,(2025-09-03).https://link.cnki.net/urlid/11.2402. td.20250902.1411.011. CHEN Lichao,YAO Zhongling,ZHANG Yanqiu,et al.Fracturing geological characteristics and evaluation of fracturing effects in low-rank coal reservoirs in Hailar Basin[J/OL].Coal Science and Technology,(2025-09-03).https://link.cnki.net/urlid/11.2402. td.20250902.1411.011. [91] 李勇,郭涛,刘欣妍,等.中国低煤阶煤层气资源潜力及发展方向[J].石油与天然气地质,2024,45(6):1537-1554. LI Yong,GUO Tao,LIU Xinyan,et al.Resource potential and exploration targets of low-rank coalbed methane in China[J].Oil & Gas Geology,2024,45(6):1537-1554. [92] 李国欣,何新兴,赵群,等.中国煤岩气理论技术、勘探开发进展与前景展望[J].中国石油勘探,2025,30(4):1-17. L I Guoxin,HE Xinxing,ZHAO Qun,et al.Theory,technology,exploration and development progress and prospects of coal-rock gas in China[J ].China Petroleum Exploration,2025,30(4):1-17. [93] 沈柏坪,李荣相,白洪涛,等.鄂尔多斯盆地宜川地区本溪组8号煤岩特征及成煤环境分析[J].特种油气藏,2024,31(6):32-38. SHEN Baiping,LI Rongxiang,BAI Hongtao,et al.Analysis of coal rock characteristics and coal-forming environment of the No.8 coal seam in the Benxi Formation in Yichuan area,Ordos Basin[J].Special Oil & Gas Reservoirs,2024,31(6):32-38. |
| [1] | Zhang Lei, Zhao Baoshan, Sun Xiaoguang, Li Yongchen, Yin Siyu, Zhao Gang, Hou Wei, Shang Yanjie, Zhang Jikun, Zhen Huaibin, Yang Gan. Development practice and insights of hundred-million-cubic-meter level CBM platform in subsurface-surface complex areas:a case study of the Bao 8 well block, Baode area,eastern margin of Ordos Basin [J]. Acta Petrolei Sinica, 2026, 47(4): 866-880. |
| [2] | Liu Fuwei, Gao Hong, Jia Jianghong, Song Fangnian, Xiang Junke, Li Jianxiong, Ji Mengjia, Wu Xiaoding. Mechanical properties of deep coal rocks under high temperature and high pressure triaxial creep conditions [J]. Acta Petrolei Sinica, 2026, 47(4): 893-904. |
| [3] | Ding Rong, Cao Yimin, Zhao Peihua, Xiang Shuzheng, Tian Wenguang, Hu Xinyou, Tian Chong, Liu Zhong, Wang Jianwei, Huang Shuangquan, Li Yun, Xu Weikai, Li Yong. Challenges,results and industrial implications of coalbed methane resource evaluation during the 14th Five-Year Plan period(2021—2025) [J]. Acta Petrolei Sinica, 2026, 47(2): 330-338. |
| [4] | Li Yong, Zou Caineng, Yang Yaxin, Li Yujie, Xu Weikai, Wang Shan. Connotation,pathway,and development of the Whole Coal Energy System [J]. Acta Petrolei Sinica, 2026, 47(1): 95-104. |
| [5] | Yang Zhaobiao, Lu Benju, Zhou Guoxiao, Chen Heqing, Yan Xia, Li Cunlei, Ma Xingzhi, Gao Wei, Liu Changqing, Zhang Baoxin, Wang Huaichang, Feng Shuailong, Wang Jianan, Liang Yuhui, Wang Yuqiang. Geological particularities and desorption-production patterns of deep coalbed methane [J]. Acta Petrolei Sinica, 2025, 46(8): 1464-1476. |
| [6] | Zhou Lihong, Li Shuguang, Wang Yuan, Wang Feng, Zhang Lei, Wang Wei, Hou Wei, Chen Ming, Wang Yubin. Key technologies and practices for cost-effective development of deep coal-rock gas: a case study of the Daning-Jixian block in Ordos Basin [J]. Acta Petrolei Sinica, 2025, 46(8): 1536-1549. |
| [7] | Wang Haige, Xia Yan, Ding Jiping, Long Yifu, Lin Shengjie, Wang Yuan, Yang Xiong, Cao Zhenyi, Chang Yixing, Xie Jiangfeng. Current status and prospect of CNPC’s deep coal-rock gas drilling and completion engineering technologies [J]. Acta Petrolei Sinica, 2025, 46(8): 1576-1588. |
| [8] | Li Guoxin, Zhang Bin, Zhang Junfeng, Zhao Qun. Major basic scientific issues and research directions for exploration and development of deep coal-rock gas in China [J]. Acta Petrolei Sinica, 2025, 46(6): 1025-1036. |
| [9] | Shan Chang'an, Liang Xing, Zhang Zhuo, Luo Yufeng, Peng Lisha, Yuan Xiaojun, Fei Yue, Fan Xiaodong, Yu Baoshi, Zhang Yongqiang, Dang Wei. Key technologies and innovative practices for exploration and development of thin interbedded coalbed methane in the shallow transformation zone of Junlian complex mountainous region,southern Sichuan Basin [J]. Acta Petrolei Sinica, 2025, 46(6): 1056-1073,1125. |
| [10] | Hou Yuting, Yu Jian, Zhang Chunyu, Zhang Daofeng, Zhang Haifeng, Li Yong, He Zhitong, Yang Pu, Lin Dafei. Geological characteristics and exploration prospects of deep coalbed methane enriched in Carboniferous Benxi Formation,Ordos Basin [J]. Acta Petrolei Sinica, 2025, 46(5): 857-874. |
| [11] | Ding Rong, Pang Xiongqi, Jia Chengzao, Deng Ze, Tian Wenguang, Song Yan, Wang Lei, Bao Liyin, Xu Zhi, Cui Xinxuan, Zhao Zhencheng, Li Caijun, Xiao Huiyi, Shi Kanyuan, Hu Tao, Pang Hong, Chen Junqing. Methods, principles and case study of evaluating deep coalbed methane based on Whole Petroleum System theory [J]. Acta Petrolei Sinica, 2025, 46(3): 532-546. |
| [12] | Xu Fengyin, Xiong Xianyue, Hou Wei, Wang Feng, Ma Pengfei, Zhang Lei, Yun Jian, Yu Yueyu, Yan Xia, Xu Borui, Li Jianwei, Dai Youjin, Zeng Wenting, Wang Bo, Zhen Huaibin, Wang Yuan, Li Zhongbai, Deng Junyao. Upgrading of deep coalbed methane industry and establishment of the "Eight-in-One" system [J]. Acta Petrolei Sinica, 2025, 46(2): 289-305. |
| [13] | Ma Yong, Chen Jianfa, Xin Zhiyuan, Luo Qingyong, Luo Chao, Zhang Haipeng, Zhong Kesu, Che Shiqi, Ma Jianbin, Qin Changcai. Helium resource potential and enrichment mechanism of unconventional gas [J]. Acta Petrolei Sinica, 2025, 46(2): 440-455,482. |
| [14] | Jiao Fangzheng, Zhao Qun, Xiao Yuhang, Liu Dan. A major transformation from coalbed methane to coal-rock gas leading the "coal-rock gas revolution" [J]. Acta Petrolei Sinica, 2025, 46(12): 2211-2225. |
| [15] | Bao Yuan, Chen Xueru, Ju Yiwen, Xu Fengyin, Hou Enke. Genetic responses of coalbed methane in different types of coal-bearing basins and their geological implications [J]. Acta Petrolei Sinica, 2025, 46(12): 2286-2300. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
Copyright © 2021 Editorial Office of ACTA PETROLEI SINICA
Address:No. 6 Liupukang Street, Xicheng District, Beijing, P.R.China, 100724
Tel: 86-010-62067128, 86-010-62067137, 86-010-62067139
Fax: 86-10-62067130
Email: syxb@cnpc.com.cn
Support byBeijing Magtech Co.ltd, E-mail:support@magtech.com.cn