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- W4313430081 endingPage "2304" @default.
- W4313430081 startingPage "2282" @default.
- W4313430081 abstract "Boosted by economic development and rising living standards, the world's carbon dioxide emissions remain high. Maintaining temperature rises below 1.5 °C by the end of the century requires rapid global carbon capture and storage implementation. The successful application of carbon capture, utilization, and storage (CCUS) technology in oilfields has become the key to getting rid of this predicament. Foam flooding, as an organic combination of gas and chemical flooding, became popular in the 1950s. Notwithstanding the irreplaceable advantages, as a thermodynamically unstable system, foam's stability has long restricted its development in enhanced oil and gas recovery. With special surface/interface effects and small-size effects, nanoparticles can be used as foam stabilizers to enhance foam stability, thereby improving foam seepage and oil displacement effects in porous media. In this paper, the decay kinetics and the stabilization mechanisms of nanoparticle-reinforced foams were systematically reviewed. The effects of nanoparticle characteristics, including particle concentration, surface wettability, particle size, and type, and reservoir environment factors, including oil, temperature, pressure, and salinity on the foam stabilization ability were analyzed in detail. The seepage and flooding mechanisms of nanoparticle-reinforced foams were summarized as: improving the plugging properties of foams, enhancing the interaction between foams and crude oil, and synergistically adjusting the wettability of reservoir rocks. Finally, the challenges in the practical application of nanoparticle-reinforced foams were highlighted, and the development direction was proposed. The development of nanoparticle-reinforced foam can open the way toward adaptive and evolutive EOR technology, taking one further step towards the high-efficiency production of the petroleum industry." @default.
- W4313430081 created "2023-01-06" @default.
- W4313430081 creator A5016047517 @default.
- W4313430081 creator A5032719225 @default.
- W4313430081 creator A5047133501 @default.
- W4313430081 creator A5054418515 @default.
- W4313430081 date "2023-08-01" @default.
- W4313430081 modified "2023-10-18" @default.
- W4313430081 title "Nanoparticle-reinforced foam system for enhanced oil recovery (EOR): Mechanistic review and perspective" @default.
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