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Atomic Force Microscopy (AFM) investigation on the surfactant wettability alteration mechanism of aged mica mineral surfaces

By: Publication details: ene./feb. 2011Description: 6 p. ; 183-188 In: Energy & fuels 25Summary: Transcripción del resumen del autor. In this study, the mica samples aged in crude oil were treated by two types of surfactants: Triton X-100 and C16TAB, to find the mechanisms of wettability alteration. The contact angle measurements were conducted stepwise to check the wettability alteration of the mica surfaces. Atomic force microscopy (AFM) topographies and phase images were obtained and used to investigate the effects of aging in crude oil and surfactant treatment of the mica surface. The results show that the solution of Triton X-100/brine changes the wettability of the mica surface aged in crude oil to water-wet; however, the solution of C16TAB/brine alters the aged mica surface to more oil-wet conditions. Fractal measurement was used to check the AFM images for quantitative assessment of the surface roughness for wettability alteration investigation. Two different mechanisms proposed here are the surface cleaning and the surfactant adsorption for Triton X-100 and C16TAB, respectively.
Item type: Artículo de Revista
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Biblioteca Alejandro Angel Bulgheroni Not for loan 200052407

Transcripción del resumen del autor. In this study, the mica samples aged in crude oil were treated by two types of surfactants: Triton X-100 and C16TAB, to find the mechanisms of wettability alteration. The contact angle measurements were conducted stepwise to check the wettability alteration of the mica surfaces. Atomic force microscopy (AFM) topographies and phase images were obtained and used to investigate the effects of aging in crude oil and surfactant treatment of the mica surface. The results show that the solution of Triton X-100/brine changes the wettability of the mica surface aged in crude oil to water-wet; however, the solution of C16TAB/brine alters the aged mica surface to more oil-wet conditions. Fractal measurement was used to check the AFM images for quantitative assessment of the surface roughness for wettability alteration investigation. Two different mechanisms proposed here are the surface cleaning and the surfactant adsorption for Triton X-100 and C16TAB, respectively.

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