1 |
Biopolymer production by Aureobasidium mangrovei SARA-138H and its potential for oil recovery enhancement Al-Araimi SH, Elshafie A, Al-Bahry SN, Al-Wahaibi YM, Al-Bemani AS Applied Microbiology and Biotechnology, 105(1), 105, 2021 |
2 |
Laboratory Investigation of Liquid Injectivity in Surfactant-Alternating-Gas Foam Enhanced Oil Recovery Gong J, Vincent-Bonnieu S, Bahrim RZK, Mamat CANBC, Groenenboom J, Farajzadeh R, Rossen WR Transport in Porous Media, 131(1), 85, 2020 |
3 |
Enhancing oil recovery from low-permeability reservoirs with a self-adaptive polymer: A proof-of-concept study Zhang Y, Feng YJ, Li B, Han PH Fuel, 251, 136, 2019 |
4 |
The Sokoria Geothermal System, Flores Island, Indonesia Sarmiento ZF, Sagala B, Siagian H Geothermics, 82, 282, 2019 |
5 |
Assessing the combined influence of fluid-rock interactions on reservoir properties and injectivity during CO2 storage in saline aquifers Cui GD, Wang Y, Rui ZH, Chen BL, Ren SR, Zhang L Energy, 155, 281, 2018 |
6 |
Using nanofluids to control fines migration for oil recovery: Nanofluids co-injection or nanofluids pre-flush? -A comprehensive answer Yuan B, Moghanloo RG, Wang WD Fuel, 215, 474, 2018 |
7 |
Performance of an open-loop well-doublet scheme located in a deep aquitard aquifer system: Insights from a synthetic coupled heat and flow model Le Lous M, Larroque F, Dupuy A, Moignard A, Damy PC Geothermics, 74, 74, 2018 |
8 |
Impact of polyacrylamide adsorption on flow through porous siliceous materials: State of the art, discussion and industrial concern Bessaies-Bey H, Fusier J, Harrisson S, Destarac M, Jouenne S, Passade-Boupat N, Lequeux F, de Lacaillerie JBD, Sanson N Journal of Colloid and Interface Science, 531, 693, 2018 |
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Analytical model of well injectivity improvement using nanofluid preflush Yuan B, Moghanloo RG Fuel, 202, 380, 2017 |
10 |
A study on the impact of SO2 on CO2 injectivity for CO2 storage in a Canadian saline aquifer Wang ZY, Wang JS, Lan C, He I, Ko V, Ryan D, Wigston A Applied Energy, 184, 329, 2016 |