© 2017 Elsevier Ltd Nanofluids, liquid suspensions of nanoparticles (Np), are an effective agent to alter the wettability of oil-wet reservoirs to water-wet thus promoting hydrocarbon recovery. It can also have an application to more efficient carbon storage. We present a series of contact angle (?) investigations on initially oil-wet calcite surfaces to quantify the performance of hydrophilic silica nanoparticles for wettability alteration. These tests are conducted at typical in-situ high pressure (CO 2 ), temperature and salinity conditions. A high pressure–temperature (P/T) optical cell with a regulated tilted surface was used to measure the advancing and receding contact angles at the desired conditions. The results showed that silica ...
The use of engineered water (EW) nanofluid flooding in carbonates is a new enhanced oil recovery (EO...
The use of engineered water (EW) nanofluid flooding in carbonates is a new enhanced oil recovery (EO...
The stability of nanoparticles at reservoir conditions is a key for a successful application of nano...
Nanofluid treatment of oil reservoirs is being developed to enhance oil recovery and increase residu...
Nanofluids, liquid suspensions of nanoparticles (NPs) dispersed in deionized (DI) water, brine, or s...
Nanofluids are proven to be efficient agents for wettability alteration in subsurface applications i...
Changing oil-wet surfaces toward higher water wettability is of key importance in subsurface enginee...
In recent years, unconventional oils have shown a huge potential for exploitation. Abundant reserves...
Traditional concepts of simple liquid spreading may not apply to nanoparticle-fluids. Most investiga...
Traditional concepts of simple liquid spreading may not apply to nanoparticle-fluids. Most investiga...
The increasing demand for hydrocarbons has led to a hope of developing more efficient recovery techn...
Recent developments propose renewed use of surface-modified nanoparticles (NPs) for enhanced oil rec...
Many gas condensate reservoirs suffer a loss in productivity owing to accumulation of liquid in near...
Many gas condensate reservoirs suffer a loss in productivity owing to accumulation of liquid in near...
Many gas condensate reservoirs suffer a loss in productivity owing to accumulation of liquid in near...
The use of engineered water (EW) nanofluid flooding in carbonates is a new enhanced oil recovery (EO...
The use of engineered water (EW) nanofluid flooding in carbonates is a new enhanced oil recovery (EO...
The stability of nanoparticles at reservoir conditions is a key for a successful application of nano...
Nanofluid treatment of oil reservoirs is being developed to enhance oil recovery and increase residu...
Nanofluids, liquid suspensions of nanoparticles (NPs) dispersed in deionized (DI) water, brine, or s...
Nanofluids are proven to be efficient agents for wettability alteration in subsurface applications i...
Changing oil-wet surfaces toward higher water wettability is of key importance in subsurface enginee...
In recent years, unconventional oils have shown a huge potential for exploitation. Abundant reserves...
Traditional concepts of simple liquid spreading may not apply to nanoparticle-fluids. Most investiga...
Traditional concepts of simple liquid spreading may not apply to nanoparticle-fluids. Most investiga...
The increasing demand for hydrocarbons has led to a hope of developing more efficient recovery techn...
Recent developments propose renewed use of surface-modified nanoparticles (NPs) for enhanced oil rec...
Many gas condensate reservoirs suffer a loss in productivity owing to accumulation of liquid in near...
Many gas condensate reservoirs suffer a loss in productivity owing to accumulation of liquid in near...
Many gas condensate reservoirs suffer a loss in productivity owing to accumulation of liquid in near...
The use of engineered water (EW) nanofluid flooding in carbonates is a new enhanced oil recovery (EO...
The use of engineered water (EW) nanofluid flooding in carbonates is a new enhanced oil recovery (EO...
The stability of nanoparticles at reservoir conditions is a key for a successful application of nano...