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Low-temperature combustion characteristics of heavy oils by a self-designed porous medium thermo-effect cell caused by oxidation/combustion reactions occurring within a porous medium under dynamic air flow

Low-temperature combustion behavior of crude oils in porous media under air flow condition for in-situ combustion (ISC) process© 2019 Elsevier Ltd A porous medium thermo-effect cell (PMTEC) was developed to fast characterize

Effect of copper stearate as catalysts on the performance of in-situ combustion process for heavy oil recovery and upgrading by porous medium thermo-effect cell (PMTEC) and combustion tube experiments. Significant acceleration

Effect of the crude oil composition on the oxidation behavior by high-pressure differential scanning calorimetry (HP-DSC)
). The advantage of this method is that it can be used for different oil reservoirs, such as light oil, medium oil

INVESTIGATION OF THE PROCESS OF SATURATION OF THE FREE VOLUME OF DEVICES WITH FLAMMABLE LIQUIDS MODIFIED WITH CARBON NANOSTRUCTURES temperature in the apparatus by an average of 60-70 %. The values of the storage time of the combustible

Numerical simulation of combustion of a composite solid propellant containing boron powderThe combustion of a metallized composite solid propellant containing boron particles is numerically

Effect of calcite on crude oil combustion characterized by high-pressure differential scanning calorimetry (HP-DSC)© 2019, © 2019 Taylor & Francis Group, LLC. The influence of calcite on crude oil combustion

In Situ Combustion of Heavy, Medium, and Light Crude Oils: Low-Temperature Oxidation in Terms of a Chain Reaction ApproachIn Situ Combustion of Heavy, Medium, and Light Crude Oils: Low-Temperature Oxidation in Terms of a

Catalytic Combustion of Heavy Oil in the Presence of Manganese-Based Submicroparticles in a Quartz Porous Medium analysis coupled with an isoconversional approach to study the influence of catalyst on the combustion

Interaction between aromatics and n-alkane for in-situ combustion process on tetracosane combustion was investigated using accelerating rate calorimetry (ARC). Two obvious reaction

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