首页> 外文期刊>Fuel >Investigating the role of water on CO_2-Utica Shale interactions for carbon storage and shale gas extraction activities - Evidence for pore scale alterations
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Investigating the role of water on CO_2-Utica Shale interactions for carbon storage and shale gas extraction activities - Evidence for pore scale alterations

机译:调查水对碳储存和页岩气提取活动的CO_2-UTICA页岩相互作用的作用 - 孔隙尺度变化的证据

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摘要

In this work, we probed the physical and chemical alteration of the carbonate-rich Utica Shale following CO2 exposure when thin films of water were present at the shale surface. All reaction conditions were examined at 40 degrees C and CO2 pressures up to 10.3 MPa for 14 days. CO2 dissolution in the water layer at 2342 cm(-1) and carbonate dissolution and precipitation at 1424, 874, and 712 cm(-1) were discerned with in-situ Fourier Transform infrared spectroscopy (FT-IR). Significant etching and pitting from exposure to CO2 and water were observed with feature relocation scanning electron microscopy (SEM). Application of the density function theory (DFT) for pore size analysis showed that micropores between approximately 0.9 and 2 nm disappeared while the mesopore volume increased after dissolution of carbonate. These results may provide new insights that carbonate rich shales such as the Utica may have a greater potential for alterations of pore space due to the reactivity of CO2 which may affect 1) how CO2 storage in shale formations plays a role in Carbon Capture and Storage (CCS) activities, 2) if CO2 can be utilized as a potential fracturing agent, and 3) whether CO2 is an effective fluid for enhanced hydrocarbon extraction.
机译:在这项工作中,当在页岩表面存在薄膜时,我们探讨了CO2暴露后的碳酸盐的富锡页岩的物理和化学改变。将所有反应条件在40℃,CO 2压力下检查,高达10.3MPa的14天。用原位傅里叶变换红外光谱(FT-IR)辨别在2342cm(-1)和1424,874和712cm(-1)下碳酸盐溶解和沉淀的水层中的CO 2溶解。观察到从暴露于CO 2和水的显着蚀刻和点蚀,具有特征迁移扫描电子显微镜(SEM)。密度函数理论(DFT)用于孔径分析显示,在碳酸酯溶解后,中孔体积增加,微孔在大约0.9和2nm之间消失。这些结果可以提供新的见解,即诸如utica的碳酸盐富罗斯可能具有可能影响1)的二氧化碳的反应性引起的孔隙空间改变的潜力,这是如何在碳捕获和储存中发挥作用( CCS)活性,2)如果CO 2可用作潜在的压裂剂,并且3)CO 2是否是增强烃萃取的有效流体。

著录项

  • 来源
    《Fuel》 |2019年第15期|744-755|共12页
  • 作者单位

    US DOE Natl Energy Technol Lab POB 10940 Pittsburgh PA 15236 USA;

    US DOE Natl Energy Technol Lab POB 10940 Pittsburgh PA 15236 USA|AECOM Corp Pittsburgh PA 15236 USA;

    US DOE Natl Energy Technol Lab POB 10940 Pittsburgh PA 15236 USA;

    US DOE Natl Energy Technol Lab POB 10940 Pittsburgh PA 15236 USA|Univ Pittsburgh Dept Chem & Petr Engn Pittsburgh PA 15261 USA;

    US DOE Natl Energy Technol Lab POB 10940 Pittsburgh PA 15236 USA;

    US DOE Natl Energy Technol Lab POB 10940 Pittsburgh PA 15236 USA|Univ Pittsburgh Dept Chem & Petr Engn Pittsburgh PA 15261 USA;

    US DOE Natl Energy Technol Lab POB 10940 Pittsburgh PA 15236 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CO2 storage; Shale; CO2; Geochemistry; Fluid; Pore scale;

    机译:CO2储存;页岩;二氧化碳;地球化学;液体;孔隙率;

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