High temperature and high salinity (HTHS) and extreme pH conditions can significantly affect the stability of polymers and deteriorate the performance of polymers in enhanced oil recovery (EOR). This work advances polymer flooding in harsh environments on two fronts: engineering polymers with improved temperature tolerance and dispersing suitable nanoparticles in the synthesized polymers to further improve their capabilities to withstand temperature, salinity, and different pH conditions. Different modified acrylamide copolymers (polymers synthesized from two different monomers) and terpolymers (polymers synthesized from three different monomers) are produced via free-radical polymerization, and multiwall carbon nanotubes (MWCNTs) were intr...
The aging of the existing reservoirs makes the hydrocarbon extraction shift toward newer reserves, a...
Due to the growing demand for oil and the large number of mature oil fields, Enhanced Oil Recovery (...
Polymer flooding is a commercially viable chemical enhanced oil recovery (cEOR) method. It includes ...
High temperature and high salinity (HTHS) and extreme pH conditions can significantly affect the sta...
High temperature and high salinity (HTHS) and extreme pH conditions can significantly affect the sta...
High temperature and high salinity (HTHS) and extreme pH conditions can significantly affect the sta...
Due to increased energy demand, it is vital to enhance the recovery from existing oilfields. Polymer...
Due to increased energy demand, it is vital to enhance the recovery from existing oilfields. Polymer...
Polymers play a significant role in enhanced oil recovery (EOR) due to their viscoelastic properties...
This work aims to improve the rheological properties and stability of multiwalled carbon nanotubes (...
Water-soluble polymers are highly applied to increase the recovery from oil reservoirs. The applicat...
Polymer flooding is a commercially verified technology to enhance the recovery of residual oil from ...
Polyacrylamide (HPAM) and other traditional polymers have poor temperature resistance and salinity t...
Polymer flooding plays an essential role in Enhanced Oil Recovery by means of achieving a more favor...
In search of robust polymers for enhanced oil recovery (EOR) application in reservoirs with harsh co...
The aging of the existing reservoirs makes the hydrocarbon extraction shift toward newer reserves, a...
Due to the growing demand for oil and the large number of mature oil fields, Enhanced Oil Recovery (...
Polymer flooding is a commercially viable chemical enhanced oil recovery (cEOR) method. It includes ...
High temperature and high salinity (HTHS) and extreme pH conditions can significantly affect the sta...
High temperature and high salinity (HTHS) and extreme pH conditions can significantly affect the sta...
High temperature and high salinity (HTHS) and extreme pH conditions can significantly affect the sta...
Due to increased energy demand, it is vital to enhance the recovery from existing oilfields. Polymer...
Due to increased energy demand, it is vital to enhance the recovery from existing oilfields. Polymer...
Polymers play a significant role in enhanced oil recovery (EOR) due to their viscoelastic properties...
This work aims to improve the rheological properties and stability of multiwalled carbon nanotubes (...
Water-soluble polymers are highly applied to increase the recovery from oil reservoirs. The applicat...
Polymer flooding is a commercially verified technology to enhance the recovery of residual oil from ...
Polyacrylamide (HPAM) and other traditional polymers have poor temperature resistance and salinity t...
Polymer flooding plays an essential role in Enhanced Oil Recovery by means of achieving a more favor...
In search of robust polymers for enhanced oil recovery (EOR) application in reservoirs with harsh co...
The aging of the existing reservoirs makes the hydrocarbon extraction shift toward newer reserves, a...
Due to the growing demand for oil and the large number of mature oil fields, Enhanced Oil Recovery (...
Polymer flooding is a commercially viable chemical enhanced oil recovery (cEOR) method. It includes ...