Interfacial Interaction of Cationic Surfactants and Its Effect on Wettability Alteration of Oil-Wet Carbonate Rock

Межфазное взаимодействие катионных поверхностно-активных веществ и его влияние на изменение смачиваемости карбонатной породы, смачиваемой нефтью
Sunil Kumar, Ajay Mandal, Rohit Kumar Saw, Priyanka Panigrahi
2016-03-21

cationic surfactantsinterfacial tensionoil-wet carbonate rocksurfactant adsorptionwettability alteration
Oil recovery by water flooding from carbonate reservoirs is considered ineffective because of the capillary forces in naturally fractured oil-wet carbonate formations. Surfactant solutions are often recommended to enhance the oil recovery by both wettability alteration and reduction of interfacial tension (IFT). In this study, the effects of cationic surfactants from the trimethylammonium bromide (C n TAB) family, viz., C 10 TAB (BTAB), C 15 TAB (DTAB), C 16 TAB (TBAB), and C 19 TAB (CTAB), on the surface tension, IFT, and wettability alteration of a carbonate rock along with adsorption of the surfactant on the carbonate rock were investigated. Different analyses, including X-ray diffraction (XRD), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDAX), and Fourier transform infrared spectroscopy (FTIR), were conducted to study the mechanism for wettability alteration of the oil-wet carbonate surface. Results demonstrated that, among the four surfactants used, C 15 TAB and C 19 TAB presented a better effect on reduction of the surface tension, IFT between oil and water, and wettability alteration of the oil-wet carbonate rock surface. Adsorption of surfactants on the carbonate rock was studied, and the results were analyzed by Langmuir and Freundlich models. A comparative study of FTIR analysis of crude oil and rock in the presence of different surfactants was performed to investigate the interactions between different phases.
1
Among the tested surfactants, C15TAB (DTAB) and C19TAB (CTAB) produced the strongest reductions in surface tension and oil–water interfacial tension.
2
C15TAB and C19TAB also showed the greatest effectiveness in altering the wettability of the oil-wet carbonate surface.
3
Cationic trimethylammonium bromide surfactants were evaluated for surface-tension reduction, oil–water IFT reduction, and wettability alteration of oil-wet carbonate rock.
4
Surfactant adsorption on carbonate rock was characterized using Langmuir and Freundlich isotherm models.
5
XRD, SEM, EDAX, and FTIR analyses were used to investigate surfactant-induced interfacial interactions and the mechanism of wettability alteration.

oil-wet carbonate rock surface in contact with aqueous cationic trimethylammonium bromide surfactant solutions and crude oil

surfactant adsorption and interfacial interactions governing surface tension, oil–water IFT, and wettability alteration

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2016-03-21
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Sunil Kumar
Ajay Mandal
Rohit Kumar Saw
Priyanka Panigrahi
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