Application of Nanoparticles in Enhanced Oil Recovery: A Critical Review of Recent Progress

Применение наночастиц для повышения нефтеотдачи: критический обзор последних достижений
Xiaofei Sun, Yanyu Zhang, Guangpeng Chen, Zhiyong Gai
2017-03-11

enhanced oil recoveryinterfacial tension reductionnanofluidsnanoparticleswettability alteration
The injected fluids in secondary processes supplement the natural energy present in the reservoir to displace oil. The recovery efficiency mainly depends on the mechanism of pressure maintenance. However, the injected fluids in tertiary or enhanced oil recovery (EOR) processes interact with the reservoir rock/oil system. Thus, EOR techniques are receiving substantial attention worldwide as the available oil resources are declining. However, some challenges, such as low sweep efficiency, high costs and potential formation damage, still hinder the further application of these EOR technologies. Current studies on nanoparticles are seen as potential solutions to most of the challenges associated with these traditional EOR techniques. This paper provides an overview of the latest studies about the use of nanoparticles to enhance oil recovery and paves the way for researchers who are interested in the integration of these progresses. The first part of this paper addresses studies about the major EOR mechanisms of nanoparticles used in the forms of nanofluids, nanoemulsions and nanocatalysts, including disjoining pressure, viscosity increase of injection fluids, preventing asphaltene precipitation, wettability alteration and interfacial tension reduction. This part is followed by a review of the most important research regarding various novel nano-assisted EOR methods where nanoparticles are used to target various existing thermal, chemical and gas methods. Finally, this review identifies the challenges and opportunities for future study regarding application of nanoparticles in EOR processes.
1
Nanofluids, nanoemulsions, and nanocatalysts can enhance recovery through disjoining-pressure effects, injection-fluid viscosity increase, asphaltene-precipitation prevention, wettability alteration, and interfacial-tension reduction.
2
Nanoparticle application in EOR depends on interactions with the reservoir rock–oil system, in addition to pressure maintenance and fluid displacement mechanisms.
3
Nanoparticles are identified as potential solutions to major limitations of conventional enhanced oil recovery, including low sweep efficiency, high costs, and formation damage.
4
The paper synthesizes recent nanoparticle-based EOR research and identifies unresolved challenges and future research opportunities for integrating nanotechnology into EOR.
5
The review covers nano-assisted adaptations of thermal, chemical, and gas EOR methods, with nanoparticles targeting specific limitations of these established processes.

Nanoparticle-assisted enhanced oil recovery processes in reservoir rock/oil systems

The mechanisms, performance benefits, challenges, and opportunities of using nanoparticles in EOR, including disjoining pressure, injection-fluid viscosity, asphaltene precipitation prevention, wettability alteration, and interfacial-tension reduction

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2017-03-11
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Xiaofei Sun
Yanyu Zhang
Guangpeng Chen
Zhiyong Gai
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