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- W2600202012 abstract "Flooding sandstone oil reservoirs with low salinity water can lead to a significant increase in oil recovery, a phenomenon called “the low salinity effect”. Although there are many factors that contribute to this response, the surface tension on the pore walls is an important one. Sandstone is composed predominantly of quartz with some clay, but feldspar grains are often also present. While the wettability of quartz and clay surfaces has been thoroughly investigated, little is known about the adhesion properties of feldspar. We explored the interaction of model oil compounds, molecules that terminate with carboxyl, −COO(H), and alkyl, −CH3, with freshly cleaved, museum quality perthitic microcline, KxNa(1–x)AlSi3O8, a K-feldspar. Microcline is a member of the orthoclase family, a type of feldspar that weathers more slowly than the plagioclase series, and thus is more likely to be preserved in well sorted sandstone. Adhesion forces, measured with the chemical force mapping (CFM) mode of atomic force micros..." @default.
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- W2600202012 date "2017-04-11" @default.
- W2600202012 modified "2023-10-17" @default.
- W2600202012 title "Salinity-Dependent Adhesion Response Properties of Aluminosilicate (K-Feldspar) Surfaces" @default.
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- W2600202012 doi "https://doi.org/10.1021/acs.energyfuels.6b02969" @default.
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