Application of Polymers for Chemical Enhanced Oil Recovery: A Review

Применение полимеров для химического повышения нефтеотдачи: обзор
Shirish Patil, Muhammad Shahzad Kamal, Augustine Agi, Afeez Gbadamosi, Ahmad A. Adewunmi, Adeyinka Sikiru Yusuff, Jeffrey O. Oseh
2022-03-31

biopolymerschemical enhanced oil recoveryhydrolyzed polyacrylamidepolymer floodingpolymeric nanofluid flooding
Polymers play a significant role in enhanced oil recovery (EOR) due to their viscoelastic properties and macromolecular structure. Herein, the mechanisms of the application of polymeric materials for enhanced oil recovery are elucidated. Subsequently, the polymer types used for EOR, namely synthetic polymers and natural polymers (biopolymers), and their properties are discussed. Moreover, the numerous applications for EOR such as polymer flooding, polymer foam flooding, alkali-polymer flooding, surfactant-polymer flooding, alkali-surfactant-polymer flooding, and polymeric nanofluid flooding are appraised and evaluated. Most of the polymers exhibit pseudoplastic behavior in the presence of shear forces. The biopolymers exhibit better salt tolerance and thermal stability but are susceptible to plugging and biodegradation. As for associative synthetic polyacrylamide, several complexities are involved in unlocking its full potential. Hence, hydrolyzed polyacrylamide remains the most coveted polymer for field application of polymer floods. Finally, alkali-surfactant-polymer flooding shows good efficiency at pilot and field scales, while a recently devised polymeric nanofluid shows good potential for field application of polymer flooding for EOR.
1
Biopolymers provide superior salt tolerance and thermal stability but are vulnerable to plugging and biodegradation.
2
Hydrolyzed polyacrylamide remains the leading field-applied polymer, while alkali-surfactant-polymer flooding and polymeric nanofluids show strong field-scale potential.
3
Most polymers exhibit pseudoplastic behavior under shear forces, affecting their flow and injection performance.
4
Polymer EOR relies on viscoelastic properties and macromolecular structure to improve oil-displacement mechanisms.
5
The review evaluates synthetic and natural polymers across polymer, foam, alkali-polymer, surfactant-polymer, alkali-surfactant-polymer, and polymeric nanofluid flooding.

Polymeric materials used for chemical enhanced oil recovery

The mechanisms, polymer types and properties, and flooding applications governing the efficiency and field applicability of polymer-based enhanced oil recovery

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Publication Date
2022-03-31
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Authors
Shirish Patil
Muhammad Shahzad Kamal
Augustine Agi
Afeez Gbadamosi
Ahmad A. Adewunmi
Adeyinka Sikiru Yusuff
Jeffrey O. Oseh
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