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An Experimental Study of the Effect of CO2 Water-Mancos Shale Interactions on Permeability

Yıl 2022, Cilt: 4 Sayı: 1, 26 - 31, 01.11.2021

Öz

When CO2 water contacts with a split shale rock, it dissolves some mineral components, making the fracture (split) opening wider and the increase in the rock flow capability (apparent permeability) higher. Meanwhile, some dissolved particles move with the flowing water, thus blocking some pore throats and decreasing the rock apparent permeability. Whether the rock apparent permeability can be increased or decreased, depending on these two competitive phenomena. The issue is critical in a carbon capture, utilization, and sequestration project; it is also very important in an enhanced oil recovery project by CO2 injection. In this study, a split Mancos Shale core was used to investigate this issue. It was found that the apparent permeability was decreased. More research is needed to address this issue.

Kaynakça

  • Andreani, M., Gouze, P., Luquot, L., Jouanna, P., 2008. Changes in seal capacity of fractured claystone caprocks induced by dissolved and gaseous CO2 seepage. Geophysical Research Letters 35, L14404.
  • Dávila, G., Cama, J., Luquot, L., Soler, J. M., Ayora, C., 2017. Experimental and modeling study of the interaction between a crushed marl caprock and CO2-rich solutions under different pressure and temperature conditions. Chemical Geology 448, 26-42.
  • Deng, H., Steefel, C., Molins, S., DePaolo, D., 2018. Fracture evolution in multimineral systems: The role of mineral composition, flow rate, and fracture aperture heterogeneity. ACS Earth and Space Chemistry 2 (2), 112-124.
  • Deng, H., Voltolini, M., Molins, S., Steefel, C., DePaolo, D., Ajo-Franklin, J., Yang, L., 2017. Alteration and erosion of rock matrix bordering a carbonate-rich shale fracture. Environmental Science & Technology 51 (15), 8861-8868.
  • Fatah, A., Bennour, Z., Mahmud, H.B., Gholami, R., Hossain, M.M., 2020. A Review on the Influence of CO2/Shale Interaction on Shale Properties: Implications of CCS in Shales. Energies 13 (12), 3200.
  • Garing, C., Gouze, P., Kassab, M., Riva, M., Guadagnini, A., 2015. Anti-correlated porosity–permeability changes during the dissolution of carbonate rocks: experimental evidences and modeling. Transport in Porous Media 107 (2), 595-621.
  • Lu, J., Nicot, J.P., Mickler, P. J., Ribeiro, L.H., Darvari, R., 2016. Alteration of Bakken reservoir rock during CO2-based fracturing - An autoclave reaction experiment. Journal of Unconventional Oil and Gas Resources 14, 72-85.
  • Luquot, L., Gouze, P., Niemi, A., Bensabat, J., Carrera, J., 2016. CO2-rich brine percolation experiments through Heletz reservoir rock samples (Israel): Role of the flow rate and brine composition. International Journal of Greenhouse Gas Control 48, 44-58.
  • Noiriel, C., Madé, B., Gouze, P., 2007. Impact of coating development on the hydraulic and transport properties in argillaceous limestone fracture. Water Resources Research 43, W09406.
  • Sanguinito, S., Goodman, A., Tkach, M., Kutchko, B., Culp, J., Natesakhawat, S., Fazio, J., Fukai, I., Crandall, D., 2018. Quantifying dry supercritical CO2-induced changes of the Utica Shale. Fuel 226, 54-64.
  • Tutolo, B.M., Luhmann, A.J., Kong, X.Z., Saar, M.O., Seyfried, W.E., 2015. CO2 sequestration in feldspar-rich sandstone: coupled evolution of fluid chemistry, mineral reaction rates, and hydrogeochemical properties. Geochimica et Cosmochimica Acta 160, 132-154.
Yıl 2022, Cilt: 4 Sayı: 1, 26 - 31, 01.11.2021

Öz

Kaynakça

  • Andreani, M., Gouze, P., Luquot, L., Jouanna, P., 2008. Changes in seal capacity of fractured claystone caprocks induced by dissolved and gaseous CO2 seepage. Geophysical Research Letters 35, L14404.
  • Dávila, G., Cama, J., Luquot, L., Soler, J. M., Ayora, C., 2017. Experimental and modeling study of the interaction between a crushed marl caprock and CO2-rich solutions under different pressure and temperature conditions. Chemical Geology 448, 26-42.
  • Deng, H., Steefel, C., Molins, S., DePaolo, D., 2018. Fracture evolution in multimineral systems: The role of mineral composition, flow rate, and fracture aperture heterogeneity. ACS Earth and Space Chemistry 2 (2), 112-124.
  • Deng, H., Voltolini, M., Molins, S., Steefel, C., DePaolo, D., Ajo-Franklin, J., Yang, L., 2017. Alteration and erosion of rock matrix bordering a carbonate-rich shale fracture. Environmental Science & Technology 51 (15), 8861-8868.
  • Fatah, A., Bennour, Z., Mahmud, H.B., Gholami, R., Hossain, M.M., 2020. A Review on the Influence of CO2/Shale Interaction on Shale Properties: Implications of CCS in Shales. Energies 13 (12), 3200.
  • Garing, C., Gouze, P., Kassab, M., Riva, M., Guadagnini, A., 2015. Anti-correlated porosity–permeability changes during the dissolution of carbonate rocks: experimental evidences and modeling. Transport in Porous Media 107 (2), 595-621.
  • Lu, J., Nicot, J.P., Mickler, P. J., Ribeiro, L.H., Darvari, R., 2016. Alteration of Bakken reservoir rock during CO2-based fracturing - An autoclave reaction experiment. Journal of Unconventional Oil and Gas Resources 14, 72-85.
  • Luquot, L., Gouze, P., Niemi, A., Bensabat, J., Carrera, J., 2016. CO2-rich brine percolation experiments through Heletz reservoir rock samples (Israel): Role of the flow rate and brine composition. International Journal of Greenhouse Gas Control 48, 44-58.
  • Noiriel, C., Madé, B., Gouze, P., 2007. Impact of coating development on the hydraulic and transport properties in argillaceous limestone fracture. Water Resources Research 43, W09406.
  • Sanguinito, S., Goodman, A., Tkach, M., Kutchko, B., Culp, J., Natesakhawat, S., Fazio, J., Fukai, I., Crandall, D., 2018. Quantifying dry supercritical CO2-induced changes of the Utica Shale. Fuel 226, 54-64.
  • Tutolo, B.M., Luhmann, A.J., Kong, X.Z., Saar, M.O., Seyfried, W.E., 2015. CO2 sequestration in feldspar-rich sandstone: coupled evolution of fluid chemistry, mineral reaction rates, and hydrogeochemical properties. Geochimica et Cosmochimica Acta 160, 132-154.
Toplam 11 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Yer Bilimleri ve Jeoloji Mühendisliği (Diğer)
Bölüm Research Article
Yazarlar

James Sheng Bu kişi benim

Jiahui Zhao Bu kişi benim

Ping Yue Bu kişi benim

Yayımlanma Tarihi 1 Kasım 2021
Yayımlandığı Sayı Yıl 2022 Cilt: 4 Sayı: 1

Kaynak Göster

AMA Sheng J, Zhao J, Yue P. An Experimental Study of the Effect of CO2 Water-Mancos Shale Interactions on Permeability. IJESKA. Kasım 2021;4(1):26-31.