Chemical EOR Formulation for a Clay-Rich Sandstone Reservoir with Reduced Surfactant Consumption
Состав для химического повышения нефтеотдачи пласта с пониженным расходом поверхностно-активного вещества для песчаникового коллектора с высоким содержанием глины
2024-12-22
SCID: 54.1/dc2rs2zu
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alkali-surfactant-polymer floodingclay-rich sandstone reservoircore floodingsurfactant adsorptionultralow interfacial tension
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Abstract (AI)
Alkali-surfactant-polymer (ASP) flooding can reduce oil-water interfacial tension to ultralow values and mobilize oil in petroleum reservoirs. Surfactant is consumed by adsorption/retention which is significant in clay-rich reservoirs. Alkali can be added to surfactant-polymer formulations to minimize surfactant adsorption. The goal of this work is to study the effect of alkali and surfactant concentrations on surfactant-brine-oil phase behavior and minimize the amount of surfactant and alkali while mobilizing oil in a clay-rich sandstone reservoir (at a temperature of 75 °C). Many surfactants were studied for ASP formulations, and a mixture of two surfactants was identified that can produce ultralow IFT (∼0.001 mN/m) with the oil at low surfactant concentrations. Ten different ultralow IFT formulations were identified, but only two formulations were evaluated for oil recovery and surfactant retention in core floods. The optimal salinity decreased when the surfactant concentration was reduced. The cumulative oil recovery was high (>94%) for three types of cores (Berea sandstone, Leopard sandstone, and a reservoir core). The surfactant retention was in the range of 0.11-0.22 mg/g of rock for high clay content (>8%) cores due to the presence of alkali. Decreasing the surfactant concentration (while keeping the total amount of surfactant the same) did not change the surfactant adsorption or oil recovery but delayed the oil production.
Key Findings
1
A two-surfactant mixture achieved ultralow oil-water interfacial tension of approximately 0.001 mN/m at low surfactant concentrations.
2
Alkali-containing formulations limited surfactant retention to 0.11–0.22 mg/g rock in cores with more than 8% clay.
3
Cumulative oil recovery exceeded 94% in Berea sandstone, Leopard sandstone, and reservoir cores.
4
Optimal salinity decreased as surfactant concentration was reduced in the studied clay-rich sandstone system at 75 °C.
5
Reducing surfactant concentration while maintaining the same total surfactant amount did not alter adsorption or oil recovery, but delayed oil production.
6
Ten ultralow-IFT ASP formulations were identified, with two selected for core-flood evaluation of oil recovery and surfactant retention.
Research Object
alkali-surfactant-polymer (ASP) formulations and their flooding of clay-rich sandstone reservoirs at 75 °C
Research Subject
the effects of alkali and surfactant concentrations on phase behavior, surfactant retention, and oil recovery, with the aim of minimizing chemical consumption while mobilizing oil
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2024-12-22
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