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    东营凹陷北部陡坡带稠油成藏机理与油气运聚特征

    李素梅 庞雄奇 邱桂强 高永进 孙锡年

    李素梅, 庞雄奇, 邱桂强, 高永进, 孙锡年, 2004. 东营凹陷北部陡坡带稠油成藏机理与油气运聚特征. 地球科学, 29(4): 451-456.
    引用本文: 李素梅, 庞雄奇, 邱桂强, 高永进, 孙锡年, 2004. 东营凹陷北部陡坡带稠油成藏机理与油气运聚特征. 地球科学, 29(4): 451-456.
    LI Su-mei, PANG Xiong-qi, QIU Gui-qiang, GAO Yong-jin, SUN Xi-nian, 2004. Oil Migration and Accumulation Mechanisms for Heavy Oils in North Steep Slope of Dongying Depression, Eastern China. Earth Science, 29(4): 451-456.
    Citation: LI Su-mei, PANG Xiong-qi, QIU Gui-qiang, GAO Yong-jin, SUN Xi-nian, 2004. Oil Migration and Accumulation Mechanisms for Heavy Oils in North Steep Slope of Dongying Depression, Eastern China. Earth Science, 29(4): 451-456.

    东营凹陷北部陡坡带稠油成藏机理与油气运聚特征

    基金项目: 

    国家重点基础发展规划项目 G199943310

    国家“十五”攻关课题 2001BA605A09

    详细信息
      作者简介:

      李素梅(1968-),女,博士,副教授,主要从事有机地球化学、油气成藏地球化学研究.E-mail:smLi8888@yahoo.com.cn

    • 中图分类号: P618.1

    Oil Migration and Accumulation Mechanisms for Heavy Oils in North Steep Slope of Dongying Depression, Eastern China

    • 摘要: 东营凹陷北部陡坡带的王庄—宁海地区发现了大量稠油, 但原油的成因及其成藏机理仍不甚了解.在以往原油成因与油源调查基础上, 利用非烃含氮化合物及包裹体均一化温度对该区进行油气运移方向与相对距离、成藏时间与期次的分析.结果表明, 东营凹陷北部带原油具有由南而北的运移分馏效应, 反映北部陡坡带原油来自南部的利津洼陷; 王庄—宁海地区原油总体具有由东而西的运移分馏效应, 其东、西两侧各有一主要油气注气点.王庄—宁海原油烃类与非烃组成与分布特征揭示该区油气具有混合聚集特征.包裹体测试反映王庄—宁海地区油藏主要为晚期成藏, 距今小于5Ma; 而靠近生油中心地带包裹体具有早期成藏的记录(± 36Ma).

       

    • 图  1  原油中1, 8-/2, 3-DMC指示的运移分馏效应

      Fig.  1.  Migration fractionation effect based on 1, 8-/2, 3-DMC of the oils

      图  2  原油1, 8-/1, 3-DMC (a)、1, 8-/ (1, 4+1, 5) -DMC (b) 分布特征

      Fig.  2.  Distribution characteristics of 1, 8-/1, 3-DMC (a), 1, 8-/ (1, 4+1, 5) -DMC (b), in the oils

      图  3  原油1, 8-/ (1, 4+1, 5) -DMC、1, 8-/1, 3-DMC分布特征

      Fig.  3.  Fig. 3 Distribution characteristics of 1, 8-/ (1, 4+1, 5) -DMC, 1, 8-/1, 3-DMC in the oils

      图  4  原油2, 6-/2, 7-DMC (a)、1, 4-/1, 5-DMC (b) 分布特征

      Fig.  4.  Distribution characteristics of 2, 6-/2, 7-DMC (a), 1, 4-/1, 5-DMC (b) in oils of Wangzhuang-Ninghai area

      图  5  原油2, 6-/2, 7-DMC、1, 4-/1, 5-DMC分布特征

      Fig.  5.  Distribution characteristics of 2, 6-/2, 7-DMC, 1, 4-/1, 5-DMC in oils of Wangzhuang-Ninghai area

      图  6  东营凹陷北部陡坡带油气运聚成藏模式

      Fig.  6.  Hydrocarbons migration and accumulation model for the north steep slope in Dongying depression

      表  1  部分原油主要含氮化合物运移指标

      Table  1.   Migration parameters of nitrogen compounds in the oils of the north steep slope in Dongying depression

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      [2] Chen, M., 1995. Response of pyrrolic and phenolic compounds to petroleum migration and in-reservoir processes[Dissertation]. University of Newcastle, U.K. .
      [3] Li, M., Larter, S.R., 1993. Interactions of organic nitrogen species with mineral, water and organic networks: Implications to petroleum geochemistry. Paper presented at the 205th American Chemical Society Meeting(Denver), Division of Geochemistry, American Chemical Society, Abstract Paper, 89.
      [4] Li, M., Larter, S. R., Stoddart, D., et al., 1992. Practical liquid chromatographic separation schemes for pyrrolic and pyridinic nitrogen aromatic heterocycle fractions from crude oils suitable for rapid characterisation of geochemical samples. Analytical Chemistry, 64: 1337-1344. doi: 10.1021/ac00037a007
      [5] Li, M., Larter, S.R., Stoddart, D., et al., 1995. Fractionation of pyrrolic nitrogen compounds in petroleum during migration: Derivation of migration-related geochemical parameters. In: Cubit, J.M., England, W.A., eds., The Geochemistry of Reservoirs. Geol. Soc. Spec. Publ., 86: 103-123.
      [6] Li, S.M., 1999. Nonhydrocarbons geochemistry: Isolation, distribution and application of NSO compounds. Geological Publishing House, Beijing, 74-86(in China).
      [7] Li, S. M., Wang, T. G., Zhang, A. Y., et al., 1999. Characteristics of pyrrolic compound in crude oils and its significane. Acta Sedimentologic Sinica, 17 (2): 312-317 (in Chinese with English abstract).
      [8] Li, S. M., Pang, X. Q., Li, M. W., et al., 2002. Characteristics of pyrrolic nitrogen compounds and their geochemical significance in oils and rocks of Bamianhe oilfield, eastern China. Geochimila, 31 (1): 1-7 (in Chinese with English abstract).
      [9] Li, S. M., Wang, T. G., Zhang, A. Y., 2000. Effect of maturity on pyrrolic nitrogen compounds. Scientia Geologica Sinica, 9 (2): 227-236.
      [10] Snyder, L. R., Buell, B. E., 1968. Nitrogen and oxygen compound types in petroleum: A general separation scheme. Analytical Chemistry, 40: 1295-1302. doi: 10.1021/ac60264a004
      [11] Wang, T. G., Li, S. M., Zhang A. Y., et al., 2000. Application of pyrrolic compound in oil-gas migration at Lunnan oil- field. Acta Geologica Sinica, 74 (1): 85-92 (in Chinese with English abstract).
      [12] Zhu, Y. M., Fu, J. M., Sheng, G. Y., et al., 1997. Geochemical significance of pyrrolic nitrogen compounds in the oils of Tarim basin. Chinese Science Bulletin, 42 (23): 2528-2531 (inChinese). doi: 10.1360/csb1997-42-23-2528
      [13] 陈建渝, 刘从印, 张树林, 等, 1997. 原油中生物标志物的组成是成藏史的反映. 地球科学———中国地质大学学报, 22 (6): 97-102. https://www.cnki.com.cn/Article/CJFDTOTAL-DQKX801.021.htm
      [14] 李素梅, 1999. 非烃(吡咯类、酚类) 地球化学研究: 方法、分布特征与应用. 北京: 地质出版社, 74-86.
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    出版历程
    • 收稿日期:  2004-03-12
    • 刊出日期:  2004-07-25

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