The Effect of Salinity on the Dielectric Permittivity of Nanoconfined Geofluids

Publication date

2024-11-21

Authors

Chogani, AlirezaISNI 0000000518011557
King, HelenISNI 0000000355993460
Zivkovic, AleksandarORCID 0000-0003-1347-6203ISNI 0000000485090198
Plümper, OliverISNI 000000048530204X

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Document Type

Article
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Abstract

Nanoporosity is a characteristic feature of geological formations that provides potential pathways for geofluids to meander and interact with minerals. Confinement of water within nanopores leads to unique phenomena. The dielectric constant of water becomes anisotropic and adopts tensorial properties rather than remaining a scalar value. In such nanoconfinement, it has been found that the permittivity of water decreases perpendicularly and increases parallel to the interface. As geofluids are rarely pure water in nature, being a water-salt(−gas) mixture within the Earth, it becomes pivotal to examine how these additional constituents of water affect the permittivity of fluids confined within the nanopores of rocks. In this study, we present the calculation of the permittivity of saline water in calcite slit nanopores using molecular dynamics simulations under low-pressure-temperature conditions. The dielectric properties are weakly dependent on salinity for both the perpendicular and parallel dielectric permittivity components. We analyzed the atomic charge and polarization density of the fluid perpendicular to the nanochannel walls and the orientation of water molecules’ dipole inside the nanochannel. From our analysis, most of these factors were generally not altered significantly in the presence of salinity. These findings are significant because they enable us to use well-studied pure water properties under nanoconfinement to determine the geochemical behavior of fluids within natural nanoporous systems.

Keywords

molecular dynamics, nanoconfinement, nanoporosity, salt concentration, water permittivity, Geochemistry and Petrology, Atmospheric Science, Space and Planetary Science

Citation

Chogani, A, King, H E, Živković, A & Plümper, O 2024, 'The Effect of Salinity on the Dielectric Permittivity of Nanoconfined Geofluids', ACS Earth and Space Chemistry, vol. 8, no. 11, pp. 2284-2293. https://doi.org/10.1021/acsearthspacechem.4c00210