Physicochemical Interactions During Surfactant Flooding of Fractured Carbonate Reservoirs

Физико-химические взаимодействия при заводнении трещиноватых карбонатных коллекторов с применением поверхностно-активных веществ
Anita Seethepalli, Bhargaw Adibhatla, Kishore K. Mohanty
2004-12-01

fractured carbonate reservoirsinterfacial tensionspontaneous imbibitionsurfactant floodingwettability alteration
Summary Recovery from fractured, oil-wet/mixed-wet, carbonate reservoirs by waterflooding is poor. Dilute surfactant methods are being developed to improve oil recovery from fractured carbonates. This paper investigates the interactions of dilute alkaline anionic surfactant solutions with crude oil on carbonate mineral surfaces. Wettability, phase behavior, interfacial tension, and adsorption experiments have been conducted. Anionic surfactants have been identified that can change the wettability of the calcite surface to intermediate/water-wet condition as well or better than the cationic surfactant dodecyl trimethyl ammonium bromide (DTAB) with a west Texas crude oil. All the carbonate surfaces (lithographic limestone, marble, dolomite, and calcite) show similar behavior with respect to wettability alteration with an anionic surfactant. Anionic surfactants, which lower the interfacial tension with the crude oil to very low values (<10−2 mN/m), have also been identified. The adsorption of the sulphonate surfactants can be suppressed significantly by the addition of Na2CO3, because the addition of carbonate can change the zeta potential of calcite to a negative value. Greater than 50% OOIP can be recovered from oil-wet carbonate cores by spontaneous imbibition of 0.05 wt% anionic surfactant solutions in the laboratory scale.
1
Adding Na2CO3 significantly suppresses sulphonate-surfactant adsorption by shifting calcite zeta potential to negative values.
2
Certain anionic surfactants reduce crude-oil interfacial tension to ultralow values below 10−2 mN/m.
3
Dilute alkaline anionic surfactants can alter oil-wet carbonate surfaces to intermediate or water-wet conditions, matching or outperforming DTAB with west Texas crude oil.
4
Lithographic limestone, marble, dolomite, and calcite exhibit similar wettability-alteration behavior when treated with anionic surfactants.
5
Spontaneous imbibition of 0.05 wt% anionic surfactant solutions recovered more than 50% OOIP from oil-wet carbonate cores in laboratory experiments.

Dilute alkaline anionic surfactant solutions interacting with crude oil on carbonate mineral surfaces in fractured oil-wet/mixed-wet carbonate reservoirs

Wettability alteration, interfacial tension reduction, phase behavior, and surfactant adsorption governing oil recovery from carbonate surfaces and cores

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2004-12-01
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Anita Seethepalli
Bhargaw Adibhatla
Kishore K. Mohanty
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