Water-based nanofluid-alternating-CO2 injection for enhancing heavy oil recovery: Considering oil-nanofluid emulsification
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Shang-Yu Su | Changxiao Cao | Zihan Tang | Zhaojie Song | Zehui Xie | P. Shen | Xuya Chang
[1] Xiangfeng Zhang,et al. Conformance control mechanism of low elastic polymer microspheres in porous medium , 2021 .
[2] Shuqian Xia,et al. A review of nanomaterials as viscosity reducer for heavy oil , 2020, Journal of Dispersion Science and Technology.
[3] X. Yue,et al. Mechanism study of the relation between the performance of CO2 immiscible flooding and rock permeability , 2020 .
[4] Xiang-hui Kong,et al. Controllable Assembly and Application of Janus Smart Nanosheets for Oil Displacement , 2020, Frontiers in Chemistry.
[5] Esteban A. Taborda,et al. Effect of Textural Properties and Surface Chemical Nature of Silica Nanoparticles from Different Silicon Sources on the Viscosity Reduction of Heavy Crude Oil , 2020, ACS omega.
[6] Yongqiang Chen,et al. Direct Evidence of Salinity and pH Effects on the Interfacial Interactions of Asphaltene-Brine-Silica Systems , 2020, Molecules.
[7] Xiaojun Wang,et al. Gas injection assisted steam huff-n-puff process for oil recovery from deep heavy oil reservoirs with low-permeability , 2020 .
[8] Haitao Wang,et al. A comparative study of CO2 and N2 huff-n-puff EOR performance in shale oil production , 2019, Journal of Petroleum Science and Engineering.
[9] P. Tiwari,et al. Impact of Natural Surfactant (Reetha), Polymer (Xanthan Gum), and Silica Nanoparticles To Enhance Heavy Crude Oil Recovery , 2019, Energy & Fuels.
[10] M. Riazi,et al. Experimental investigation into Fe3O4/SiO2 nanoparticle performance and comparison with other nanofluids in enhanced oil recovery , 2019, Petroleum Science.
[11] M. Riazi,et al. Review on application of nanoparticles for EOR purposes: A critical review of the opportunities and challenges , 2019, Chinese Journal of Chemical Engineering.
[12] João F. P. Bassane,et al. Rheological study of the behavior of water-in-oil emulsions of heavy oils , 2019, Journal of Petroleum Science and Engineering.
[13] Guoliang Mao,et al. Effect of the Evaluation and Mechanism Analysis of a Novel Nanohybrid Pour Point Depressant on Facilitating Flow Properties of Crude Oil , 2018, Energy & Fuels.
[14] Fushun Wang,et al. Experimental study on effects of CO2 and improving oil recovery for CO2 assisted SAGD in super-heavy-oil reservoirs , 2018, Journal of Petroleum Science and Engineering.
[15] F. Torabi,et al. Effect of light hydrocarbon solvents on the performance of CO2-based cyclic solvent injection (CSI) in heavy oil systems , 2018 .
[16] Lie-hui Zhang,et al. A critical review of the CO2 huff ‘n’ puff process for enhanced heavy oil recovery , 2018 .
[17] Wanli Kang,et al. Stability mechanism of O/W Pickering emulsions stabilized with regenerated cellulose. , 2018, Carbohydrate polymers.
[18] Yu-Shu Wu,et al. Advances in improved/enhanced oil recovery technologies for tight and shale reservoirs , 2017 .
[19] Sheng Li,et al. Effectiveness of miscible and immiscible gas flooding in recovering tight oil from Bakken reservoirs in Saskatchewan, Canada , 2017 .
[20] A. Skauge,et al. Polymer Flooding at an Adverse Mobility Ratio: Acceleration of Oil Production by Crossflow into Water Channels , 2017 .
[21] R. Mohan,et al. Effect of intermediate wettability nanoparticles on oil-water emulsion stability , 2017 .
[22] P. Pourafshary,et al. Effects of Nanoparticles on Gas Production, Viscosity Reduction, and Foam Formation during Nanofluid Alternating Gas Injection in Low and High Permeable Carbonate Reservoirs , 2017 .
[23] Esteban A. Taborda,et al. Rheological demonstration of alteration in the heavy crude oil fluid structure upon addition of nanoparticles , 2017 .
[24] Esteban A. Taborda,et al. Experimental and Theoretical Study of Viscosity Reduction in Heavy Crude Oils by Addition of Nanoparticles , 2017 .
[25] Zhengming Yang,et al. Experimental investigation on CO2 injection in the Daqing extra/ultra-low permeability reservoir , 2017 .
[26] L. Fradette,et al. Study of the properties of oil, particles, and water on particle adsorption dynamics at an oil/water interface using the colloidal probe technique , 2016 .
[27] P. Pourafshary,et al. Experimental study of water-based nanofluid alternating gas injection as a novel enhanced oil-recovery method in oil-wet carbonate reservoirs , 2015 .
[28] M. Vossoughi,et al. Experimental investigation of heavy oil recovery by continuous/WAG injection of CO2 saturated with silica nanoparticles , 2015 .
[29] J. Sjöblom,et al. Rheological properties of highly concentrated dense packed layer emulsions (w/o) stabilized by asphaltene , 2015 .
[30] Nashaat N. Nassar,et al. Nanoparticle technology for heavy oil in-situ upgrading and recovery enhancement: Opportunities and challenges , 2014 .
[31] Farshid Torabi,et al. On the CO2 storage potential of cyclic CO2 injection process for enhanced oil recovery , 2014 .
[32] Xin Zhang,et al. A new magnetic expanded graphite for removal of oil leakage. , 2014, Marine pollution bulletin.
[33] A. Abedini,et al. Oil Recovery Performance of Immiscible and Miscible CO2 Huff-and-Puff Processes , 2014 .
[34] Sam Huang,et al. A promising chemical-augmented WAG process for enhanced heavy oil recovery , 2013 .
[35] J. Sjöblom,et al. Flow properties of water-in-North Sea heavy crude oil emulsions , 2012 .
[36] K. Shahbazi,et al. The Experimental Investigation of Nitrogen and Carbon Dioxide Water-alternating-gas Injection in a Carbonate Reservoir , 2012 .
[37] Vladimir Alvarado,et al. Stability Proxies for Water-in-Oil Emulsions and Implications in Aqueous-based Enhanced Oil Recovery , 2011 .
[38] Meiqin Lin,et al. Interfacial properties of Daqing crude oil-alkaline system , 2011 .
[39] K. Wong,et al. Phase inversion of particle-stabilised perfume oil-water emulsions: experiment and theory. , 2010, Physical chemistry chemical physics : PCCP.
[40] Yongan Gu,et al. Four Important Onset Pressures for Mutual Interactions between Each of Three Crude Oils and CO2 , 2010 .
[41] J. Sjöblom,et al. Study of asphaltenes adsorption onto different minerals and clays: Part 1. Experimental adsorption with UV depletion detection , 2008 .
[42] V. Hoang,et al. High-Mobility-Ratio Waterflood Performance Prediction: Challenges and New Insights , 2008 .
[43] Madhav M. Kulkarni,et al. Experimental investigation of miscible and immiscible water-alternating-gas (WAG) process performance , 2005 .
[44] J. Philip,et al. Inversion of silica-stabilized emulsions induced by particle concentration. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[45] P. Budd,et al. Polymerization and carbonization of high internal phase emulsions. , 2005 .
[46] C. Solans,et al. Phase changes during silica particle formation in water-in-oil emulsions , 2001 .