Title of article :
Fluid–fluid interactions in a system of CO2, oil, surfactant solution, and brine at high pressures and temperatures – A Malaysian reservoir case
Author/Authors :
Talebian، نويسنده , , Seyedeh Hosna and Tan، نويسنده , , Isa Mohd and Masoudi، نويسنده , , Rahim and Onur، نويسنده , , Mustafa، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Abstract :
In this study, the interactions of fluids involved in foam assisted CO2 enhanced oil recovery process are studied at the prevailing conditions of a shallow Malaysian (sandstone) oil reservoir (pressure of 70–200 bar, and temperature of 102 °C). The equilibrium CO2 solubility into the reservoir brine, and crude oil, and the effect of foaming agent surfactants on the CO2 solubility into the aqueous phase are measured by using an equilibrium high pressure cell. The interfacial tension (IFT) measurements of gas–liquid and liquid–liquid systems are accomplished by utilizing the axisymmetric drop shape analysis (ADSA) adapted in a pendant drop tensiometer.
-house developed surfactants (FomaxII and FomaxVII) are compared with the industrial bench-mark surfactant, alpha olefin sulfonate (AOS), for the structure–property analysis. FomaxVII is a blend of anionic and amphoteric surfactants, with a short-branched chain structure which contains CO2-philic groups. FomaxII is a blend of anionic surfactants, with long, straight-tail hydrocarbon structure.
sults show that the dissolution of CO2 into the aqueous phase increased significantly in the presence of 1 wt% surfactants at the reservoir prevailing conditions. A relationship was also observed between the surfactant molecular structure and its effect on the CO2/aqueous phase interface. The results of this study are useful to evaluate the mechanisms of immiscible CO2 flooding as well as to design the foam assisted CO2-EOR applications for the case Malaysian or similar oil reservoir.
Keywords :
CO2/aqueous IFT , equilibrium CO2 solubility , reservoir formation brine , oil/aqueous IFT , surfactant , Malaysian crude oil
Journal title :
Journal of Petroleum Science and Engineering
Journal title :
Journal of Petroleum Science and Engineering