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- W2941109491 abstract "The formation of scale deposits is an inevitable problem in many industrial processes including water resources such as oilfields and cooling systems. Fortunately, this problem can be controlled by adding special materials (called antiscalants) to scaling media to mitigate the detrimental effects resulting from the accumulation of these insoluble minerals in pipelines, which hinder the smooth flow of fluids inside them. Such antiscaling materials should have the ability to get adsorbed on scale growing crystals and hinder their further growth. To achieve that, these materials should contain certain functional groups that facilitate the adsorption process such as π-systems and/or heteroatoms. Herein, three Gemini ionic liquids, achieving these criteria, have been theoretically investigated as antiscalants for both calcite and anhydrite minerals using Monte Carlo simulation. This study has proved that the ionic liquid with the shortest spacer is more preferred than those of long spacers for adsorption on growing crystals of both calcite and anhydrite scales, but with the preference of anhydrite over calcite. • Monte Carlo simulation was done to study antiscaling performance of three ionic liquids. • The studied ionic liquids belong to Gemini surfactants and differ in the spacer chain length. • The ionic liquid with shortest spacer shows highest tendency for adsorption on calcite and anhydrite. • Dilution enhances the adsorbabilty of the studied ionic liquids on the two studied minerals." @default.
- W2941109491 created "2019-05-03" @default.
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- W2941109491 date "2019-07-01" @default.
- W2941109491 modified "2023-09-24" @default.
- W2941109491 title "Monte Carlo simulation for the antiscaling performance of Gemini ionic liquids" @default.
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- W2941109491 doi "https://doi.org/10.1016/j.molliq.2019.04.117" @default.
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