Design of extended surfactant-only EOR formulations for an ultrahigh salinity oil field by using hydrophilic lipophilic deviation (HLD) approach: From laboratory screening to simulation
Author:
Funder
Sasol North America
Publisher
Elsevier BV
Subject
Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering
Reference54 articles.
1. Enhancing solubilization in microemulsions–state of the art and current trends;Salager;J Surfactants Deterg,2005
2. How to attain ultralow interfacial tension and three-phase behavior with surfactant formulation for enhanced oil recovery: a review. Part 1. Optimum formulation for simple surfactant-oil-water ternary systems;Salager;J Surfactants Deterg,2013
3. The Hofmeister series: salt and solvent effects on interfacial phenomena;Cacace;Q Rev Biophys,1997
4. Enhance heavy oil recovery by in-situ carbon dioxide generation and application in china offshore oilfield;Li;Soc Pet Eng,2013
5. Surfactant systems for EOR in high-temperature, high-salinity environments;Puerto;SPE J,2012
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