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    范雨辰, 杨智, 辛红刚, 郝振舸, 余喆, 2026. 基于源储配置的陆相页岩层系储层中烃类多尺度多类型赋存机制. 地球科学. doi: 10.3799/dqkx.2026.177
    引用本文: 范雨辰, 杨智, 辛红刚, 郝振舸, 余喆, 2026. 基于源储配置的陆相页岩层系储层中烃类多尺度多类型赋存机制. 地球科学. doi: 10.3799/dqkx.2026.177
    FAN Yuchen, YANG Zhi, XIN Honggang, HAO Zhenge, YU Zhe, 2026. The multi-scale and multi-type hydrocarbon occurrence mechanism in continental shale strata reservoirs based on source-reservoir configuration. Earth Science. doi: 10.3799/dqkx.2026.177
    Citation: FAN Yuchen, YANG Zhi, XIN Honggang, HAO Zhenge, YU Zhe, 2026. The multi-scale and multi-type hydrocarbon occurrence mechanism in continental shale strata reservoirs based on source-reservoir configuration. Earth Science. doi: 10.3799/dqkx.2026.177

    基于源储配置的陆相页岩层系储层中烃类多尺度多类型赋存机制

    doi: 10.3799/dqkx.2026.177
    基金项目: 

    国家重点研发计划项目(2023YFF0804303)

    中国石油天然气股份有限公司前瞻性基础性重大研究项目(2024DJ8704)资助。

    详细信息
      作者简介:

      范雨辰(1995-),男,中国石油勘探开发研究院博士后,博士,主要从事页岩油地质综合研究与勘探开发工作。E-mail:fanyuchen614@163.com,ORCID:0009-0006-0159-4797

      通讯作者:

      杨智(1980-),男,中国石油勘探开发研究院教授级高级工程师,博士,主要从事常规-非常规油气地质理论和勘探评价研究工作。E-mail:yangzhi2009@petrochina.com.cn

    • 中图分类号: TE122.1

    The multi-scale and multi-type hydrocarbon occurrence mechanism in continental shale strata reservoirs based on source-reservoir configuration

    • 摘要: 陆相页岩层系石油储层中烃类赋存机制复杂,烃类赋存及其与多尺度、多类型储集空间的配置关系是制约甜点预测与高效开发的关键科学问题。本文选取鄂尔多斯盆地长7段与渤海湾盆地沧东凹陷孔二段两类典型陆相页岩层系石油富集区,综合运用岩石学分析、微观结构表征、有机地球化学分析及流体状态测试等研究手段,系统揭示了不同源储配置模式下烃类的赋存机制及其与储集空间的耦合关系。研究发现:(1)在鄂尔多斯盆地长71+2亚段“源储分离”型夹层砂岩储层中,烃类主要“游离”赋存于微米级的无机孔隙中,富集总量由储层孔隙度决定。(2)在渤海湾盆地沧东凹陷孔二段“源储共生”型混积页岩储层中,烃类赋存于纳-微米级的有机-无机复合孔隙系统,烃类常以“吸附”形式赋存于运移沥青二次热解形成的次生有机孔内,富集程度受有机质热成熟度调控。(3)在鄂尔多斯盆地长73亚段“源储一体”型富有机质页岩储层中,页岩干酪根内存在烃类“溶胀”赋存机制,富集规模受总有机碳含量(TOC)控制。原本均质饱满的干酪根在经有机溶剂抽提后其表面可见大量因体积收缩形成的网状裂缝,为干酪根内烃类溶胀赋存机制提供了直接图像证据。(4)在页岩油“生-排-运-聚”过程中,从烃源岩核心到外围储层,烃类赋存形式遵循“溶胀-吸附-游离”的垂向连续分布序列,储集空间由纳米级有机孔向微米级无机孔系统演变,构成一个从“原位滞留”到“规模运移”、从“纳米束缚”到“微米可动”的完整地质谱系。本研究深化了对陆相页岩油地质理论的认识,为不同类型页岩油储层的勘探目标优选与开发方案设计提供了重要理论依据。

       

    • [1] Atchley, S. C., Crass, B. T., Prince, K. C., 2021. The Prediction of Organic-Rich Reservoir Facies within the Late Pennsylvanian Cline Shale (Also Known as Wolfcamp D), Midland Basin, Texas.AAPG Bulletin, 105: 29-52. doi: 10.1306/07272020010
      [2] 804(22)60334-3
      [3] Fu, J. H., Li, S. X., Hou, Y. T., et al., 2020. Breakthrough of Risk Exploration of Class Ⅱ Shale Oil in Chang 7 Member of Yanchang Formation in the Ordos Basin and Its Significance.China Petroleum Exploration, 25(1): 78-92 (in Chinese with English abstract).
      [4] Fu, J. H., Li, S. X., Guo, Q. H., et al., 2022. Enrichment Conditions and Favorable Area Optimization of Continental Shale Oil in Ordos Basin.Acta Petrolei Sinica, 43(12): 1702-1716 (in Chinese with English abstract).
      [5] Fu, J. H., Wang, L., Chen, X., et al., 2023. Progress and Prospects of Shale Oil Exploration and Development in the Seventh Member of Yanchang Formation in Ordos Basin.China Petroleum Exploration, 28(5): 1-14 (in Chinese with English abstract).
      [6] Gao, Z. Y., Bai, L. X., Hu, Q. H., et al., 2024. Shale Oil Migration across Multiple Scales: A Review of Characterization Methods and Different Patterns.Earth-Science Reviews, 254: 104819. doi: 10.1016/j.earscirev.2024.104819
      [7] Guo, X., Ma, X. X., Li, M. W., et al., 2023. Mechanisms for Lacustrine Shale Oil Enrichment in Chinese Sedimentary Basins.Oil & Gas Geology, 44(6):1333-1349 (in Chinese with English abstract).
      [8] Guo, X. S., Shen, B. J., Li, M. W., et al., 2025. Research Progress and Key Research Directions of Shale Oil in Lacustrine Rift Basins.Petroleum Exploration and Development, 52(5): 983-996 (in Chinese with English abstract).
      [9] Hackley, P. C., Cardott, B. J., 2016. Application of Organic Petrography in North American Shale Petroleum Systems: A Review.International Journal of Coal Geology, 163: 8-51. doi: 10.1016/j.coal.2016.06.010
      [10] Han, W. Z., Zhao, X. Z., Jin, F. M., et al., 2021. Sweet Spots Evaluation and Exploration of Lacustrine Shale Oil of the Second Member of Paleogene Kongdian Formation in Cangdong Sag, Bohai Bay Basin.Petroleum Exploration and Development, 48(4): 777-786 (in Chinese with English abstract).
      [11] He, W. Y., 2022. Discovery and Significance of Nano Pores and Nano Fractures of Clay in Gulong Shale Oil Reservoir in Songliao Basin.Petroleum Geology & Oilfield Development in Daqing, 41(3): 1-13 (in Chinese with English abstract).
      [12] Hou, Y. T., Yang, Z. Y., Zhang, Z. Y., et al., 2024. Geological Understanding and Exploration Potential of Shale Oil in the Third Sub-Member of the Seventh Member of Yanchang Formation in Ordos Basin.China Petroleum Exploration, 29(6): 16-28 (in Chinese with English abstract).
      [13] Hu, T., Jiang, F. J., Pang, X. Q., et al., 2024. Identification and Evaluation of Shale Oil Micro-Migration and Its Petroleum Geological Significance.Petroleum Exploration and Development, 51(1): 114-126 (in Chinese with English abstract).
      [14] Hui, X., Hou, Y. C., Qu, T., et al., 2025. Progradational Sequence Stratigraphic Architecture of the Triassic Yanchang Formation and a Case Study of Qingcheng Oilfield, Ordos Basin, NW China.Petroleum Exploration and Development, 52(5): 1028-1040 (in Chinese with English abstract).
      [15] Jia, C. Z., Pang, X. Q., Song, Y., 2021. The Mechanism of Unconventional Hydrocarbon Formation: Hydrocarbon Self-Containment and Intermolecular Forces.Petroleum Exploration and Development, 48(3): 437-452 (in Chinese with English abstract).
      [16] Jia, C. Z., Jiang, L., Zhao, W., 2023. The Shale Revolution and Basic Geological Theory Problems of Shale and Tight Oil and Gas.Petroleum Science Bulletin, 8(6): 695-706 (in Chinese with English abstract).
      [17] Jin, Z. J., Wang, G. P., Liu, G. X., et al., 2021. Research Progress and Key Scientific Issues of Continental Shale Oil in China.Acta Petrolei Sinica, 42(7): 821-835 (in Chinese with English abstract).
      [18] Kuang, L. C., Hou, L. H., Yang, Z., et al., 2021. Key Parameters and Methods of Lacustrine Shale Oil Reservoir Characterization.Acta Petrolei Sinica, 42(1): 1-14 (in Chinese with English abstract).
      [19] Kumar, S., Chandra, D., Hazra, B., et al., 2025. Integration of Fluid-Invasive, Scattering, and Imaging Methods in Resolving Pore Structures in Coal and Shale.Fuel, 395: 135185. doi: 10.1016/j.fuel.2025.135185
      [20] Li, M. W., Ma, X. X., Jin, Z. J., et al., 2022. Diversity in the Lithofacies Assemblages of Marine and Lacustrine Shale Strata and Significance for Unconventional Petroleum Exploration in China.Oil & Gas Geology, 43(1): 1-25 (in Chinese with English abstract).
      [21] Li, S. X., Guo, Q. H., P, S. Q., et al., 2023. Influence of Intrasource Micro-Migration of Hydrocarbons on the Differential Enrichment of Laminated Type Shale Oil: A Case Study of the Third Sub-Member of the Seventh Member of the Triassic Yanchang Formation In Ordos Basin.China Petroleum Exploration, 28(4): 46-54 (in Chinese with English abstract).
      [22] Liu, B., Shi, J. X., Fu, X. F., et al., 2018. Petrological Characteristics and Shale Oil Enrichment of Lacustrine Fine-Grained Sedimentary System: A Case Study of Organic-Rich Shale in First Member of Cretaceous Qingshankou Formation in Gulong Sag, Songliao Basin, NE China.Petroleum Exploration and Development, 45(5): 828-838 (in Chinese with English abstract).
      [23] Liu, X. Y., Liu, J. Y., Wang, X. J., et al., 2025. Mechanisms of Fine-Grained Sedimentation and Reservoir Characteristics of Shale Oil in Continental Freshwater Lacustrine Basin: A Case Study from Chang 73Sub-Member of Triassic Yanchang Formation in Southwestern Ordos Basin, NW China.Petroleum Exploration and Development, 52(1): 84-98 (in Chinese with English abstract).
      [24] Ma, Y. S., Cai, X. Y., Zhao, P. R., et al., 2022. Geological Characteristics and Exploration Practices of Continental Shale Oil in China.Acta Geologica Sinica, 96(1): 155-171 (in Chinese with English abstract).
      [25] Niu, X. B., Fan, J. M., Zhang, C., et al., 2025. Practices and Research for Enhanced Shale Oil Recovery in the Qingcheng Oilfield, Ordos Basin.Oil & Gas Geology, 46(5): 1664-1681 (in Chinese with English abstract).
      [26] Niu, X. B., Lv, C. F., Feng, S. B., et al., 2025. Lamina Combination Characteristics and Differential Shale Oil Enrichment Mechanisms of Continental Organic-Rich Shale: A Case Study of Triassic Yanchang Formation Chang 73Sub-Member, Ordos Basin, NW China.Petroleum Exploration and Development, 52(2): 279-291 (in Chinese with English abstract).
      [27] Pu, X. G., Jin, F. M., Han, W. Z., et al., 2019. Sweet Spots Geological Characteristics andKey Exploration Technologies of Continental Shale Oil: A Case Study of Member 2 of Kongdian Formation in Cangdong Sag.Acta Petrolei Sinica, 40(8): 997-1012 (in Chinese with English abstract).
      [28] 62. doi: 10.1007/s11242-017-0877-1
      [29] Xi, K. L., Li, K., Cao, Y. C., et al., 2020. Laminae Combination and Shale Oil Enrichment Patterns of Chang 73Sub-Member Organic-Rich Shales in the Triassic Yanchang Formation, Ordos Basin, NW China.Petroleum Exploration and Development, 47(6): 1244-1255 (in Chinese with English abstract).
      [30] Li, S. X., Guo, Q. H., Zhou, X. P., et al., 2022. Reservoir Characteristics and Exploration Direction of Pure Shale-Type Shale Oil in the 3rd Sub-Member, 7th Member of Yanchang Formation in Ordos Basin.Acta Petrolei Sinica, 43(11): 1509-1519 (in Chinese with English abstract).
      [31] Xiao, Y. Y., Niu, X. B., Lv, C. F., et al., 2025. Lamina Types and Mechanisms of Differences in Reservoir Properties of Organic-Rich Shale in the Chang 73Sub-Member, Ordos Basin.Natural Gas Geoscience, 36(10): 1868-1883 (in Chinese with English abstract).
      [32] Xin, H. G., Tian, Y., Feng, S. B., et al., 2023. Geological Characteristics and Potential Evaluation of Typical Interlayer Shale Oil in the Ordos Basin: A Case Study of the Chang 7 Member of Well Ning228.Bulletin of Geological Science and Technology, 42(3): 114-124 (in Chinese with English abstract).
      [33] Yang, Z., Hou, L. H., Lin, S. H., et al., 2018. Geologic Characteristics and Exploration Potential of Tight Oil and Shale Oil in Lucaogou Formation in Jimsar Sag. China Petroleum Exploration, 23(4): 76-85 (in Chinese with English abstract).
      [34] Yang, Z., Zou, C. N., 2019. Exploring Petroleum Inside Source Kitchen: Connotation and Prospects of Source Rock Oil and Gas.Petroleum Exploration and Development, 46(1): 173-184 (in Chinese with English abstract).
      [35] Yang, Z., Zou, C. N., Wu, S. T., et al., 2021. From Source Control Theory to Source-Reservoir Symbiosis System: On the Theoretical Understanding and Practice of Source Rock Strata Oil and Gas Geology in China.Acta Geologica Sinica, 95(3): 618-631 (in Chinese with English abstract).
      [36] Yang, Z., Zou, C. N., 2022. Orderly "Symbiotic Enrichment" of Conventional and Unconventional Oil and Gas: Discussion on the Theory and Technology of Conventional and Unconventional Petroleum Geology.Acta Geologica Sinica, 96(5): 1635-1653 (in Chinese with English abstract).
      [37] Yang, Z., Zou, C. N., Wu, S. T., et al., 2022. Reservoir Fracturing or Hydrocarbon Generating?-On the Reservoir and Source Rock Properties of Source Rock Strata Oil and Gas.Acta Geologica Sinica, 96(1): 183-194 (in Chinese with English abstract).
      [38] Yang, Z., Zou, C. N., Fan, Y. C., et al., 2023. Basic Properties and Exploitation Strategies of Source Rock Strata.Advances in Geo-Energy Research, 10(2): 77-83. doi: 10.46690/ager.2023.11.02
      [39] Yang, Z., Zou, C. N., Fan, Y. C., et al., 2026. Source Rock Oil and Gas: The New Engine of the Ordos Super Energy Basin.World Petroleum Industry, 33(1-2): 142-159 (in Chinese with English abstract).
      [40] Zhao, W. Z., Zhu, R. K., Hu, S. Y., et al., 2020. Accumulation Contribution Differences between Lacustrine Organic-Rich Shales and Mudstones and Their Significance in Shale Oil Evaluation.Petroleum Exploration and Development, 47(6): 1079-1089 (in Chinese with English abstract).
      [41] Zhao, W. Z., Bian, C. S., L, Y. X., et al., 2024. “Component Flow” Conditions and Its Effect on Enhancing Production of Continental Medium-to-High Maturity Shale Oil.Petroleum Exploration and Development, 51(4): 720-730 (in Chinese with English abstract).
      [42] Zhao, X. Z., Pu, X. G., Han, W. Z., et al., 2017. A New Method for Lithology Identification of Fine Grained Deposits and Reservoir Sweet Spot Analysis: A Case Study of Kong 2 Member in Cangdong Sag, Bohai Bay Basin, China.Petroleum Exploration and Development, 44(4): 492-502 (in Chinese with English abstract).
      [43] Zhao, X. Z., Zhou, L. H., Pu, X. G, et al., 2019. Favorable Formation Conditions and Enrichment Characteristics of Lacustrine Facies Shale Oil in Faulted Lake Basin: A Case Study of Member 2 of Kongdian Formation in Cangdong Sag, Bohai Bay Basin.Acta Petrolei Sinica, 40(9): 1013-1029 (in Chinese with English abstract).
      [44] Zhao, Z., Bai, B., Liu, C., et al., 2024. Current Status, Advances, and Prospects Of CNPC’s Exploration of Onshore Moderately to Highly Mature Shale Oil Reservoirs.Oil & Gas Geology, 45(2): 327-340 (in Chinese with English abstract).
      [45] Zhou, L. H., Zhao, X. Z., Chai, G. Q., et al., 2020. Key Exploration&Development Technologies and Engineering Practice of Continental Shale Oil: A Case Study of Member 2 of Paleogene Kongdian Formation in Cangdong Sag, Bohai Bay Basin, East China.Petroleum Exploration and Development, 47(5): 1059-1066 (in Chinese with English abstract).
      [46] Zhu, H. J., Li, S. J., Hu, Z. Q., et al., 2023. Microstructural Observations of Clay-Hosted Pores in Black Shales: Implications for Porosity Preservation and Petrophysical Variability.Clay Minerials, 58(3): 310-323. doi: 10.1180/clm.2023.28
      [47] Zhu, L. W., Xin, H. G., Feng, S. B., et al., 2025. Lithofacies Assemblage and Depositional Models of Shale Oil Reservoir in the Chang 73Sub-Member, Yanchang Formation, Longdong Area, Ordos Basin.Natural Gas Geoscience, 36(7): 1275-1290 (in Chinese with English abstract).
      [48] Zou, C. N., Zhu, R. K., Dong, D. Z., et al., 2022. Scientific and Technological Rogress, Development Strategy and Policy Suggestion Regarding Shale Oil and Gas.Acta Petrolei Sinica, 43(12): 1675-1686 (in Chinese with English abstract).
      [49] Zou, C. N., Li, S. X., Xiong, B., et al., 2026. The Concept, Connotation, Pathways, and Significance of the Integrated Whole-Energy Integrated System. Acta Petrolei Sinica, 47(1): 1-20 (in Chinese with English abstract).
      [50] 付金华, 李士祥, 侯雨庭, 等, 2020. 鄂尔多斯盆地延长组7段Ⅱ类页岩油风险勘探突破及其意义. 中国石油勘探, 25(1): 78-92.
      [51] 付金华, 李士祥, 郭芪恒, 等, 2022. 鄂尔多斯盆地陆相页岩油富集条件及有利区优选. 石油学报, 43(12): 1702-1716.
      [52] 付金华, 王龙, 陈修, 等, 2023. 鄂尔多斯盆地长7页岩油勘探开发新进展及前景展望. 中国石油勘探, 28(5): 1-14.
      [53] 郭旭升, 马晓潇, 黎茂稳, 等, 2023. 陆相页岩油富集机理探讨. 石油与天然气地质, 44(6): 1333-1349.
      [54] 郭旭升, 申宝剑, 黎茂稳, 等, 2025. 陆相断陷湖盆页岩油研究进展与重点攻关方向. 石油勘探与开发, 52(5): 983-996.
      [55] 韩文中, 赵贤正, 金凤鸣, 等, 2021. 渤海湾盆地沧东凹陷孔二段湖相页岩油甜点评价与勘探实践. 石油勘探与开发, 48(4): 777-786.
      [56] 何文渊, 2022. 松辽盆地古龙页岩油储层黏土中纳米孔和纳米缝的发现及其意义. 大庆石油地质与开发, 41(3): 1-13.
      [57] 侯雨庭, 杨兆钰, 张忠义, 等, 2024. 鄂尔多斯盆地延长组长73页岩油地质认识与勘探前景. 中国石油勘探, 29(6): 16-28.
      [58] 胡涛, 姜福杰, 庞雄奇, 等, 2024. 页岩油微运移识别、评价及其石油地质意义. 石油勘探与开发, 51(1): 114-126.
      [59] 惠潇, 侯云超, 屈童, 等, 2025. 鄂尔多斯盆地延长组前积型层序地层结构及庆城油田实例分析. 石油勘探与开发, 52(5): 1028-1040.
      [60] 贾承造, 庞雄奇, 宋岩, 2021. 论非常规油气成藏机理: 油气自封闭作用与分子间作用力. 石油勘探与开发, 48(3): 437-452.
      [61] 贾承造, 姜林, 赵文, 2023. 页岩油气革命与页岩油气、致密油气基础地质理论问题. 石油科学通报, 8(6): 695-706.
      [62] 金之钧, 王冠平, 刘光祥, 等, 2021. 中国陆相页岩油研究进展与关键科学问题. 石油学报, 42(7): 821-835.
      [63] 匡立春, 侯连华, 杨智, 等, 2021. 陆相页岩油储层评价关键参数及方法. 石油学报, 42(1): 1-14.
      [64] 黎茂稳, 马晓潇, 金之钧, 等, 2022. 中国海、陆相页岩层系岩相组合多样性与非常规油气勘探意义. 石油与天然气地质, 43(1): 1-25.
      [65] 李士祥, 郭芪恒, 周新平, 等, 2022. 鄂尔多斯盆地延长组7段3亚段页岩型页岩油储层特征及勘探方向. 石油学报, 43(11): 1509-1519.
      [66] 李士祥, 郭芪恒, 潘松圻, 等, 2023. 烃类源内微运移对页理型页岩油差异富集的影响: 以鄂尔多斯盆地三叠系延长组长73亚段为例. 中国石油勘探, 28(4): 46-54.
      [67] 刘显阳, 刘江艳, 王秀娟, 等, 2025. 陆相淡水湖盆细粒沉积成因机制及页岩油储集特征: 以鄂尔多斯盆地西南部三叠系延长组长73亚段为例. 石油勘探与开发, 52(1): 84-98.
      [68] 柳波, 石佳欣, 付晓飞, 等, 2018. 陆相泥页岩层系岩相特征与页岩油富集条件--以松辽盆地古龙凹陷白垩系青山口组一段富有机质泥页岩为例. 石油勘探与开发, 45(5): 828-838.
      [69] 马永生, 蔡勋育, 赵培荣, 等, 2022. 中国陆相页岩油地质特征与勘探实践. 地质学报, 96(1): 155-171.
      [70] 牛小兵, 樊建明, 张超, 等, 2025. 鄂尔多斯盆地庆城页岩油提高采收率实践及探索. 石油与天然气地质, 46(5): 1664-1681.
      [71] 牛小兵, 吕成福, 冯胜斌, 等, 2025. 陆相富有机质页岩纹层组合特征与页岩油差异富集机理: 以鄂尔多斯盆地三叠系延长组长73亚段为例. 石油勘探与开发, 52(2): 279-291.
      [72] 蒲秀刚, 金凤鸣, 韩文中, 等, 2019. 陆相页岩油甜点地质特征与勘探关键技术--以沧东凹陷孔店组二段为例. 石油学报, 40(8): 997-1012.
      [73] 葸克来, 李克, 操应长, 等, 2020. 鄂尔多斯盆地三叠系延长组长73亚段富有机质页岩纹层组合与页岩油富集模式. 石油勘探与开发, 47(6): 1244-1255.
      [74] 肖月也, 牛小兵, 吕成福, 等, 2025. 鄂尔多斯盆地长73亚段富有机质页岩纹层类型及其储集性差异机制. 天然气地球科学, 36(10): 1868-1883.
      [75] 辛红刚, 田杨, 冯胜斌, 等, 2023. 鄂尔多斯盆地典型夹层型页岩油地质特征及潜力评价: 以宁228井长7段为例. 地质科技通报, 42(3): 114-124.
      [76] 杨智, 侯连华, 林森虎, 等, 2018. 吉木萨尔凹陷芦草沟组致密油、页岩油地质特征与勘探潜力. 中国石油勘探, 23(4): 76-85.
      [77] 杨智, 邹才能, 2019. “进源找油”:源岩油气内涵与前景. 石油勘探与开发, 46(1): 173-184.
      [78] 杨智, 邹才能, 吴松涛, 等, 2021. 从源控论到源储共生系统: 论源岩层系油气地质理论认识及实践. 地质学报, 95(3): 618-631.
      [79] 杨智, 邹才能, 2022. 论常规-非常规油气有序“共生富集”--兼论常规-非常规油气地质学. 理论与技术地质学报,96(5):1635-1653.
      [80] 杨智, 邹才能, 吴松涛, 等, 2022. 造缝产烃还是改质造烃?-论含油气源岩层系的储集层属性和烃源岩属性. 地质学报, 96(1): 183-194.
      [81] 赵文智, 卞从胜, 李永新, 等, 2024. 陆相中高成熟页岩油“组分流动”条件及其在提高页岩油产量中的作用. 石油勘探与开发, 51(4): 720-730.
      [82] 杨智, 邹才能, 范雨辰, 等, 2026. 非常规源岩油气: 鄂尔多斯能源超级盆地的新引擎. 世界石油工业, 33(1-2): 142-159.
      [83] 赵文智, 朱如凯, 胡素云, 等, 2020. 陆相富有机质页岩与泥岩的成藏差异及其在页岩油评价中的意义. 石油勘探与开发, 47(6): 1079-1089.
      [84] 赵贤正, 蒲秀刚, 韩文中, 等, 2017. 细粒沉积岩性识别新方法与储集层甜点分析--以渤海湾盆地沧东凹陷孔店组二段为例. 石油勘探与开发, 44(4): 492-502.
      [85] 赵贤正, 周立宏, 蒲秀刚, 等, 2019. 断陷湖盆湖相页岩油形成有利条件及富集特征--以渤海湾盆地沧东凹陷孔店组二段为例. 石油学报, 40(9): 1013-1029.
      [86] 赵喆, 白斌, 刘畅, 等, 2024. 中国石油陆上中-高成熟度页岩油勘探现状、进展与未来思考. 石油与天然气地质, 45(2): 327-340.
      [87] 周立宏, 赵贤正, 柴公权, 等, 2020. 陆相页岩油效益勘探开发关键技术与工程实践--以渤海湾盆地沧东凹陷古近系孔二段为例. 石油勘探与开发, 47(5): 1059-1066.
      [88] 朱立文, 辛红刚, 冯胜斌, 等, 2025. 鄂尔多斯盆地陇东地区延长组73亚段页岩油岩相组合特征及沉积模式. 天然气地球科学, 36(7): 1275-1290.
      [89] 邹才能, 朱如凯, 董大忠, 等, 2022. 页岩油气科技进步、发展战略及政策建议. 石油学报, 43(12): 1675-1686.
      [90] 邹才能, 李士祥, 熊波, 等, 2026. 全能源系统概念、内涵、路径及意义. 石油学报, 47(1): 1-20.
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    出版历程
    • 收稿日期:  2026-01-18
    • 网络出版日期:  2026-06-29

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