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EPR as a complementary tool for the analysis of low-temperature oxidation reactions of crude oils

Response to Comment on Oil-Dispersed α-Fe2O3 Nanoparticles as a Catalyst for Improving Heavy Oil Oxidation

Oil-Dispersed α-Fe2O3 Nanoparticles as a Catalyst for Improving Heavy Oil Oxidation

Induced thermal shocking by BiMTheCh technology as a new approach for enhanced oil recovery from tight reservoirs with heavy oil

Catalytic in-situ combustion process in the presence of metal oxide particles© 2019, International Multidisciplinary Scientific Geoconference. All rights reserved. In today’s

Low-temperature combustion characteristics of heavy oils by a self-designed porous medium thermo-effect cell

Improving the in-situ upgrading of extra heavy oil using metal-based oil-soluble catalysts through oxidation process for enhanced oil recovery-soluble copper (II) stearate and copper (II) oleate reduced oil viscosity from 9964 to 8000 and 6090 mPa˙s

Effect of copper stearate as catalysts on the performance of in-situ combustion process for heavy oil recovery and upgrading

Oxidation of Heavy Oil Using Oil-Dispersed Transition Metal Acetylacetonate Catalysts for Enhanced Oil Recovery

Thermo-gas-chemical stimulation as a revolutionary Ior-Eor method by the in-situ generation of hot nitrogen and acid

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