4.7 Article

Zeta Potential of a Natural Clayey Sandstone Saturated With Carbonated NaCl Solutions at Supercritical CO2 Conditions

期刊

GEOPHYSICAL RESEARCH LETTERS
卷 49, 期 15, 页码 -

出版社

AMER GEOPHYSICAL UNION
DOI: 10.1029/2022GL099277

关键词

zeta potential; intact natural sandstone; carbonated NaCl solutions; supercritical CO2 conditions; effect of clays; streaming potential method

资金

  1. Aberdeen-Curtin PhD studentship
  2. Spanish Ministry of Science, Innovation and Universities [BEAGAL18/00259]

向作者/读者索取更多资源

The zeta potential of clayey sandstone saturated with NaCl solutions at supercritical CO2 conditions differs significantly from measurements conducted under ambient conditions or with clean sandstones, mainly due to the presence and exposure of clays and feldspars.
The zeta potential is a measure of electric potential at the mineral-electrolyte interfaces. The zeta potential of natural sandstones depends on mineralogy, electrolyte pH, concentration, composition, amount of dissolved CO2, and temperature. We report for the first time the zeta potential measured on clayey sandstone comprising quartz, kaolinite, illite, albite and microcline saturated with NaCl solutions at supercritical CO2 conditions. Our results demonstrate that zeta potentials in clayey sandstone samples at supercritical CO2 conditions are significantly different from similar measurements conducted under ambient conditions and from those obtained with clean sandstones. Supercritical CO2 zeta potential remains negative but is influenced by clays and feldspars due to their significant presence and exposure to large pores, which yields less negative zeta potential compared to quartz, under identical conditions. Our results have significant implications to natural subsurface systems such as CO2 geo-sequestration sites, aquifers, geothermal sources and hydrocarbon reservoirs.

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