ABSTRACT: Wettability of reservoir minerals and rocks is a critical factor controlling CO2 mobility, residual trapping, and safe-storage in geologic carbon sequestration, and currently is the factor imparting the greatest uncertainty in predicting capillary behavior in porous media. Very little information on wettability in supercritical CO2 (scCO2)− mineral-brine systems is available. We studied pore-scale wettability and wettability alteration in scCO2−silica-brine systems using engineered micromodels (transparent pore networks), at 8.5 MPa and 45 °C, over a wide range of NaCl concentrations up to 5.0 M. Dewetting of silica surfaces upon reactions with scCO2 was observed through water film thinning, water droplet formation, and contact an...
We measure the residual non-wetting phase saturation of super-critical carbon dioxide in a Berea san...
The ambiguity of contact angle experimental measurements due to surface chemistry changes resulted f...
Geologic CO2 storage has been identified as key to avoiding dangerous climate change. Carbon dioxide...
How the wettability of pore surfaces affects supercritical (sc) CO2 capillary trapping in geologic c...
Wettability is an important factor controlling the displacement of immiscible fluids in porous media...
Geological carbon storage (GCS) involves unstable drainage processes, the formation of patterns in a...
AbstractThe wetting properties of CO2-brine-rock systems will have a major impact on the management ...
Geologic carbon sequestration (GCS) in deep saline aquifers results in chemical and transport proces...
Geologic carbon sequestration (GCS) in deep saline aquifers results in chemical and transport proces...
Capillary pressure (Pc)-saturation (Sw) relations are essential for predicting equilibrium and flow ...
Wettability is a key reservoir characteristic influencing geological carbon sequestration (GCS) proc...
Wettability is a key reservoir characteristic influencing geological carbon sequestration (GCS) proc...
Geologic CO2 storage has been identified as a key to avoiding dangerous climate change. Storage in o...
Geological carbon storage in deep aquifers involves displacement of resident brine by supercritical ...
AbstractChanges in wettability have been quantified by measuring the CO2 contact angle on some selec...
We measure the residual non-wetting phase saturation of super-critical carbon dioxide in a Berea san...
The ambiguity of contact angle experimental measurements due to surface chemistry changes resulted f...
Geologic CO2 storage has been identified as key to avoiding dangerous climate change. Carbon dioxide...
How the wettability of pore surfaces affects supercritical (sc) CO2 capillary trapping in geologic c...
Wettability is an important factor controlling the displacement of immiscible fluids in porous media...
Geological carbon storage (GCS) involves unstable drainage processes, the formation of patterns in a...
AbstractThe wetting properties of CO2-brine-rock systems will have a major impact on the management ...
Geologic carbon sequestration (GCS) in deep saline aquifers results in chemical and transport proces...
Geologic carbon sequestration (GCS) in deep saline aquifers results in chemical and transport proces...
Capillary pressure (Pc)-saturation (Sw) relations are essential for predicting equilibrium and flow ...
Wettability is a key reservoir characteristic influencing geological carbon sequestration (GCS) proc...
Wettability is a key reservoir characteristic influencing geological carbon sequestration (GCS) proc...
Geologic CO2 storage has been identified as a key to avoiding dangerous climate change. Storage in o...
Geological carbon storage in deep aquifers involves displacement of resident brine by supercritical ...
AbstractChanges in wettability have been quantified by measuring the CO2 contact angle on some selec...
We measure the residual non-wetting phase saturation of super-critical carbon dioxide in a Berea san...
The ambiguity of contact angle experimental measurements due to surface chemistry changes resulted f...
Geologic CO2 storage has been identified as key to avoiding dangerous climate change. Carbon dioxide...