4.7 Article

Mineral Interfaces and Oil Recovery: A Microscopic View on Surface Reconstruction, Organic Modification, and Wettability Alteration of Carbonates

Journal

ENERGY & FUELS
Volume 34, Issue 5, Pages 5611-5622

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.energyfuels.0c00118

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While it is generally known that aging protocols have an important impact on the interaction between crude oil (CRO), brines, and mineral surfaces, the microscopic consequences of the various steps of aging have hardly been described. In this study, we characterize the properties of fluids and carbonate mineral surfaces throughout a series of equilibration steps at 95 degrees C and correlate these microscopic observations with macroscopic contact angle measurements. Chemical equilibration of CRO (eqCRO) and FW (eqFVV) leads to transfer of organic molecules from the former to the latter, causing also a pH change in the eqFVV. Confocal Raman microscopy, atomic force microscopy, and infrared spectroscopy are used to reveal how consecutive aging of calcite in eqFVV and eqCRO induces: first, in eqFVV, considerable surface reconstruction and precipitation of mineral particles with colocalized organic species, and second, upon exposure to eqCRO, the formation of a second adlayer primarily composed of polyaromatic hydrocarbon-rich particles. Our results show how these interconnected microscopic chemical and topographical surface modifications give rise to more oil wetting contact angles after the two-step aging procedure.

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