Migration, Adsorption and Formation Damage of Metal (Iii) Oxide Nanofluids in Reservoir Sandstone: Experimental and Simulation Studies

Author:

Hamza Mohammed Falalu,Soleimani Hassan,Lorimer Shelley,Sikiru Surajudeen Olalekan,Hassan Yarima Mudassir,Ahmed Abdelazim Abbas,Rostami Amir,Soleimani Hojjatollah,MR Birol

Publisher

Elsevier BV

Reference75 articles.

1. Nano-fluid viscosity screening and study of in situ foam pressure buildup at hightemperature high-pressure conditions;M F Hamza;Journal of Petroleum Exploration and Production Technology,2020

2. A laboratory study of chemical enhanced oil recovery (CEOR) in compartmentalized sandstone reservoir: A case study of a 2-D phase macro-model reservoir;M F Hamza;ARPN Journal of Engineering and Applied Sciences,2018

3. Application of Magnetic and Dielectric Nanofluids for Electromagnetic-Assistance Enhanced Oil Recovery: A Review;Y M Hassan;Crystals

4. Laboratory characterization of crude oil and sandstone reservoir for chemical enhanced oil recovery;M F Hamza;World Journal of Engineering,2018

5. Adsorptive behaviors of supercritical CO2 in tight porous media and triggered chemical reactions with rock minerals during CO2-EOR and -sequestration;B Wei;Chemical Engineering Journal,2020

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