Abstract Enhanced oil recovery (EOR) from carbonates is obtained by injection of controlled ionic strength brines containing “active ions” (e.g., SO4 2−, Mg2+, Ca2+). It is generally believed that this occurs through the interaction of the active ions at the carbonate-brine interface (e.g., within a thin brine layer separating the petroleum and the carbonate phases). Here, in-situ observations show how one active ion, SO4 2−, alters behavior at the carbonate-petroleum interface. Displacement of petroleum from initially oil-wet carbonate rocks using brines with variable SO4 concentrations systematically changes oil recovery, in situ contact angles, and connectivity of the oil phase, confirming that the active ion alters interactions at the o...
The advanced waterflooding technologies through salinity and ionic content adjustment can make favor...
Understanding the effect of injection water chemistry is becoming crucial, as it has been recently s...
Reprinted (adapted) with permission from Fathi, S J., Austad, T., Strand S. (2011) Water-Based Enhan...
Several studies conducted mainly on the laboratory scale indicate that in carbonate rocks oil displa...
Wettability of oil-brine-carbonate system is an important petro-physical parameter, which governs su...
This thesis was previously held under moratorium from 22/08/19 to 22/08/21Carbonate rock reservoirs ...
Brine-dependent recovery, which involves injected water ionic composition and strength, has seen muc...
Wettability alteration appears to be the main mechanism of low salinity water flooding in carbonate ...
Low salinity water flooding has received strong interest recently. It has been reported that injecti...
Oil recovery by water flooding is usually not effective because of capillary forces in fractured, oi...
Wettability of the oil/brine/rock system is an essential petro-physical parameter which governs subs...
© Copyright 2016, Society of Petroleum Engineers. Low-salinity waterflooding (LSW) is ineffective wh...
The impact of ionic association with the carbonate surface and its influence toward carbonate wettab...
Oil recovery yields from sandstone reservoirs strongly depend on the wetting properties of the rock....
© 2018 Elsevier B.V. Wettability of oil/brine/carbonate system is a critical parameter to govern sub...
The advanced waterflooding technologies through salinity and ionic content adjustment can make favor...
Understanding the effect of injection water chemistry is becoming crucial, as it has been recently s...
Reprinted (adapted) with permission from Fathi, S J., Austad, T., Strand S. (2011) Water-Based Enhan...
Several studies conducted mainly on the laboratory scale indicate that in carbonate rocks oil displa...
Wettability of oil-brine-carbonate system is an important petro-physical parameter, which governs su...
This thesis was previously held under moratorium from 22/08/19 to 22/08/21Carbonate rock reservoirs ...
Brine-dependent recovery, which involves injected water ionic composition and strength, has seen muc...
Wettability alteration appears to be the main mechanism of low salinity water flooding in carbonate ...
Low salinity water flooding has received strong interest recently. It has been reported that injecti...
Oil recovery by water flooding is usually not effective because of capillary forces in fractured, oi...
Wettability of the oil/brine/rock system is an essential petro-physical parameter which governs subs...
© Copyright 2016, Society of Petroleum Engineers. Low-salinity waterflooding (LSW) is ineffective wh...
The impact of ionic association with the carbonate surface and its influence toward carbonate wettab...
Oil recovery yields from sandstone reservoirs strongly depend on the wetting properties of the rock....
© 2018 Elsevier B.V. Wettability of oil/brine/carbonate system is a critical parameter to govern sub...
The advanced waterflooding technologies through salinity and ionic content adjustment can make favor...
Understanding the effect of injection water chemistry is becoming crucial, as it has been recently s...
Reprinted (adapted) with permission from Fathi, S J., Austad, T., Strand S. (2011) Water-Based Enhan...