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- W3092034750 endingPage "72" @default.
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- W3092034750 abstract "Measurements of the streaming potential coefficient (SPC) and the zeta potential are presented for both natural and artificial samples saturated by various types of electrolytes at different electrolyte concentrations. From experimental data, it is shown that the SPC strongly depends on permeability of porous media for low fluid electrical conductivity only if the variation of zeta potential between the samples is taken into account. When the fluid electrical conductivity is larger than a certain threshold, the SPC is completely independent of permeability. The observed behavior is then quantitatively explained by a theoretical model. Additionally, the experimental results show that the SPC and the zeta potential strongly depend on the mineral composition and types of electrolytes (mainly types of cation). For silica-based samples, the experimental results are explained by the theoretical models that are related to the rock-fluid interface parameters, such as the surface site density, the disassociation constant, the binding constant, and the shear plane distance. For 1:1 electrolytes or 1:2 electrolytes, we develop another model for the zeta potential. The comparison shows that the theoretical models are able to reproduce the main behavior of the zeta potential against types of electrolytes and types of samples. For a given electrolyte, the difference in the zeta potential can be explained by the difference in the surface site density, the disassociation constant for difference kinds of porous rocks (mineral composition). For a given sample, the difference in the zeta potential can be explained by the difference in the binding constant and in types of cations." @default.
- W3092034750 created "2020-10-15" @default.
- W3092034750 creator A5032188408 @default.
- W3092034750 creator A5079004999 @default.
- W3092034750 date "2020-09-17" @default.
- W3092034750 modified "2023-09-26" @default.
- W3092034750 title "Streaming Potential Measurements in Natural and Artificial Porous Samples" @default.
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