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    鄂尔多斯盆地上古生界灰岩烃源岩生烃潜力评价

    韩文学 麻伟娇 陶士振 姚泾利 刘新社

    韩文学, 麻伟娇, 陶士振, 姚泾利, 刘新社, 2018. 鄂尔多斯盆地上古生界灰岩烃源岩生烃潜力评价. 地球科学, 43(2): 599-609. doi: 10.3799/dqkx.2017.529
    引用本文: 韩文学, 麻伟娇, 陶士振, 姚泾利, 刘新社, 2018. 鄂尔多斯盆地上古生界灰岩烃源岩生烃潜力评价. 地球科学, 43(2): 599-609. doi: 10.3799/dqkx.2017.529
    Han Wenxue, Ma Weijiao, Tao Shizhen, Yao Jingli, Liu Xinshe, 2018. Hydrocarbon Generation Potential Evaluation of Upper Paleozoic Limestone in Ordos Basin. Earth Science, 43(2): 599-609. doi: 10.3799/dqkx.2017.529
    Citation: Han Wenxue, Ma Weijiao, Tao Shizhen, Yao Jingli, Liu Xinshe, 2018. Hydrocarbon Generation Potential Evaluation of Upper Paleozoic Limestone in Ordos Basin. Earth Science, 43(2): 599-609. doi: 10.3799/dqkx.2017.529

    鄂尔多斯盆地上古生界灰岩烃源岩生烃潜力评价

    doi: 10.3799/dqkx.2017.529
    基金项目: 

    国家科技重大专项 2016ZX05046-001

    详细信息
      作者简介:

      韩文学(1989-), 男, 博士, 主要从事天然气地球化学及油气成藏方面的研究

      通讯作者:

      陶士振

    • 中图分类号: P618.13

    Hydrocarbon Generation Potential Evaluation of Upper Paleozoic Limestone in Ordos Basin

    • 摘要: 对于鄂尔多斯盆地上古生界海陆过渡相灰岩能否生烃及生烃潜力有多大,目前研究较少.通过岩石热解、总有机碳测定、干酪根碳同位素及有机显微组分的测定实验,同时结合镜质体反射率的测定,综合评价了灰岩烃源岩,并分析了其生排烃特征.结果显示:从有机质丰度角度,本溪组为差的烃源岩,山西组为差-一般的烃源岩、太原组为一般-好的烃源岩;从有机质类型角度,本溪组为Ⅲ型,山西组以Ⅲ型为主同时混有少量Ⅱ2型,太原组为Ⅱ2-Ⅲ型;从有机质成熟度角度,本溪组处于成熟-高成熟阶段,太原组及山西组均处于高成熟阶段.根据排烃门限理论,认为Ro为1.6%时,天然气大量生成.考虑到灰岩烃源岩的特殊性、成熟度及其排烃特征,综合认为太原组灰岩可以成为天然气的有效烃源岩.

       

    • 图  1  鄂尔多斯盆地构造单元划分及气田分布(a)和上古生界岩性综合柱状图(b)

      1.下古生界探明储量面积,2.上古生界探明储量面积,3.上古生界基本探明储量面积,4.二级构造单元,5.断层,6.地名;底图据戴金星(2014)

      Fig.  1.  Tectonic units division and gas fields distribution (a) and the integrated histogram of Upper Paleozoic (b) in Ordos basin

      图  2  鄂尔多斯盆地上古生界太原组灰岩平面分布

      1.1层灰岩,2.2层灰岩,3.3层灰岩,4.4层灰岩,5.尖灭线,6.地名,7.井名,8.地名,9.尖灭线,10.等值线(m);a.灰岩层数平面分布,b.灰岩厚度平面分布

      Fig.  2.  Distribution of limestone of Taiyuan Formation of Upper Paleozoic in Ordos basin

      图  3  鄂尔多斯盆地上古生界灰岩有机质丰度分布

      Fig.  3.  Distribution of organic matter abundance of Upper Paleozoic limestone in Ordos basin

      图  4  IO-IH判断有机质类型

      Fig.  4.  Determination of organic matter type using IO-IH

      图  5  干酪根热解分类X形图解

      底图据黄第藩和李晋超(1982)

      Fig.  5.  X-Diagram of kerogen classification

      图  6  鄂尔多斯盆地上古生界灰岩烃源岩干酪根碳同位素分布特征

      Fig.  6.  Distribution of carbon isotope of kerogen of limestone source rocks of Upper Paleozoic in Ordos basin

      图  7  鄂尔多斯盆地上古生界灰岩烃源岩有机质显微组分特征

      Fig.  7.  Characteristics of organic maceral of limestone source rocks of Upper Paleozoic in Ordos basin

      图  8  鄂尔多斯盆地上古生界灰岩烃源岩有机质成熟度分布

      Fig.  8.  Distribution of organic matter maturity of limestone source rocks of Upper Paleozoic in Ordos basin

      图  9  鄂尔多斯盆地上古生界灰岩热解生烃潜力指数与Ro关系

      Fig.  9.  The relationship between hydrocarbon generating potential index and Ro of Upper Paleozoic limestone in Ordos basin

      图  10  鄂尔多斯盆地上古生界灰岩Ro分布饼状图

      Fig.  10.  Pie chart of Ro values from Upper Paleozoic limestone in Ordos basin

      表  1  海相碳酸盐岩烃源岩评价标准

      Table  1.   Evaluation standard for marine carbonate source rocks

      烃源岩级别 TOC(%) S1+S2(mg/g) 氯仿沥青“A”(%) 总烃(10-6)
      ≥0.40 ≥0.30 >0.03 600~1 200
      0.20~0.40 0.10~0.30 0.02~0.03 300~600
      0.10~0.20 0.06~0.10 0.01~0.02 100~300
      < 0.10 < 0.06 < 0.01 < 100
      下载: 导出CSV
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