Heavy crude oil has poor solubility and a high density, making recovery and transport much more difficult and expensive than for light crude oil. Emulsifiers can be used to produce low viscosity oil-in-water emulsions for recovery and transport, but subsequent demulsification can be challenging. Here, we develop and implement interfacially active, pH-responsive polymer-coated nanoparticles (PNPs) to reversibly stabilize, recover, and break oil/water emulsions through variation of solution pH. Silica particles with poly(2-(dimethylamino)ethyl methacrylate) (DMAEMA) chains covalently grafted to the surface are prepared although a reversible addition fragmentation chain transfer grafting-through technique. The resulting DMAEMA PNPs can stabi...
Emulsifiers have been extensively studied for various applications, the most common of which is poss...
We experimentally investigated nanoparticle-stabilized emulsions for enhanced oil recovery (EOR) app...
With the increasing global demand for crude oil, it is essential to increase the oil production in e...
Nanoparticles (NPs) have been proposed for enhanced oil recovery (EOR). The research has demonstrate...
Polymer flooding based enhanced oil recovery (EOR) has been proven to be effective and successful fo...
Enhanced-oil-recovery (EOR) processes are used to recover bypassed and residual oil trapped in the r...
The demulsification process has grown in significance due to the rapid development of oil and gas in...
Recently, polymer-coated nanoparticles were proposed for enhanced oil recovery (EOR) due to their im...
Numerous cationic magnetic nanoparticles (MNPs) have previously been developed for demulsifying oil-...
The study to improve hydrocarbon recovery has attracted a great deal of research at-tention in many ...
Oil/water emulsions are usually stabilized either by interfacial modification using nanoparticles an...
Extraction of oil trapped after primary and secondary oil production stages still poses many challen...
A new Enhanced Oil Recovery (EOR) method is proposed by combining the effects of a traditional polym...
Extraction of oil trapped after primary and secondary oil production stages still poses many challen...
Chemically enhanced oil recovery methods are utilized to increase the oil recovery by improving the ...
Emulsifiers have been extensively studied for various applications, the most common of which is poss...
We experimentally investigated nanoparticle-stabilized emulsions for enhanced oil recovery (EOR) app...
With the increasing global demand for crude oil, it is essential to increase the oil production in e...
Nanoparticles (NPs) have been proposed for enhanced oil recovery (EOR). The research has demonstrate...
Polymer flooding based enhanced oil recovery (EOR) has been proven to be effective and successful fo...
Enhanced-oil-recovery (EOR) processes are used to recover bypassed and residual oil trapped in the r...
The demulsification process has grown in significance due to the rapid development of oil and gas in...
Recently, polymer-coated nanoparticles were proposed for enhanced oil recovery (EOR) due to their im...
Numerous cationic magnetic nanoparticles (MNPs) have previously been developed for demulsifying oil-...
The study to improve hydrocarbon recovery has attracted a great deal of research at-tention in many ...
Oil/water emulsions are usually stabilized either by interfacial modification using nanoparticles an...
Extraction of oil trapped after primary and secondary oil production stages still poses many challen...
A new Enhanced Oil Recovery (EOR) method is proposed by combining the effects of a traditional polym...
Extraction of oil trapped after primary and secondary oil production stages still poses many challen...
Chemically enhanced oil recovery methods are utilized to increase the oil recovery by improving the ...
Emulsifiers have been extensively studied for various applications, the most common of which is poss...
We experimentally investigated nanoparticle-stabilized emulsions for enhanced oil recovery (EOR) app...
With the increasing global demand for crude oil, it is essential to increase the oil production in e...