An overview of chemical enhanced oil recovery: recent advances and prospects

Обзор химических методов повышения нефтеотдачи: современные достижения и перспективы
Augustine Agi, Radzuan Junin, Afeez Gbadamosi, Muhammad A. Manan, Adeyinka Sikiru Yusuff
2019-04-29

alkaline–cosolvent–polymer technologychemical enhanced oil recoveryionic liquidsnanotechnologypore-scale mechanisms
Despite the progress made on renewable energy, oil and gas remains the world’s primary energy source. Meanwhile, large amounts of oil deposits remain unrecovered after application of traditional oil recovery methods. Chemical enhanced oil recovery (EOR) has been adjudged as an efficient oil recovery technique to recover bypassed oil and residual oil trapped in the reservoir. This EOR method relies on the injection of chemicals to boost oil recovery. In this overview, an up-to-date synopsis of chemical EOR with detailed explanation of the chemicals used, and the mechanism governing their oil recovery application have been discussed. Challenges encountered in the application of the various conventional chemical EOR methods were highlighted, and solutions to overcome the challenges were proffered. Besides, the recent trend of incorporating nanotechnology and their synergistic effects on conventional chemicals stability and efficiency for EOR were also explored and analysed. Finally, laboratory results and field projects were outlined. The review of experimental studies shows that pore-scale mechanisms of conventional chemical EOR is enhanced by incorporating nanotechnology, hence, resulted in higher efficiency. Moreover, the use of ionic liquid chemicals and novel alkaline–cosolvent–polymer technology shows good potentials. This overview presents an extensive information about chemical EOR applications for sustainable energy production.
1
Chemical enhanced oil recovery (EOR) can recover bypassed and residual oil left after conventional recovery methods through targeted chemical injection.
2
Incorporating nanotechnology enhances the pore-scale mechanisms, stability, and efficiency of conventional chemical EOR systems, according to reviewed experimental studies.
3
Ionic liquid chemicals and alkaline–cosolvent–polymer technology demonstrate promising potential for improving chemical EOR performance.
4
Laboratory studies and field projects indicate that recent chemical EOR advances could support more sustainable oil production.
5
The overview details the chemicals and pore-scale mechanisms underlying chemical EOR, while identifying application challenges and proposed mitigation strategies.

Chemical enhanced oil recovery (chemical EOR) methods and their application in oil reservoirs

The chemicals, pore-scale oil-recovery mechanisms, challenges, and efficiency enhancements—including nanotechnology and emerging chemical formulations—in chemical EOR

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2019-04-29
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Authors
Augustine Agi
Radzuan Junin
Afeez Gbadamosi
Muhammad A. Manan
Adeyinka Sikiru Yusuff
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