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Effect of Interactions between Saturates-Aromatics-Resins-Asphaltenes Components on the Oxidation Behavior and Kinetics of Heavy Crude Oil release caused by LTO from individual SARA components. The interactions between SARA components were much

Oxidation Behavior of Light Crude Oil and Its SARA Fractions Characterized by TG and DSC Techniques: Differences and Connections
that the oxidation behavior of individual SARA components exhibited an obvious difference. Saturates showed a weak

Qualitative and quantitative analysis of heavy crude oil samples and their SARA fractions with 13c nuclear magnetic resonance, aromatics, resins, and asphaltenes (SARA analysis) without oil fractioning are still not clear. In this work

The description of heavy oils and the products of their catalytic conversion according to sara-analysis data composition makes it necessary to separate them into components. A common way of such oil separation is SARA

The description of heavy oils and the products of their catalytic conversion according to sara-analysis data composition makes it necessary to separate them into components. A common way of such oil separation is SARA

The free radical chain mechanism of the initial stages of crude oil oxidation in term of SARA fractions
accelerating or slowing this process. The aim of this work is to estimate experimentally which oil components

Evolution of mass losses and evolved gases of crude oil and its SARA components during low-temperature oxidation by isothermal TG–FTIR analyses. During LTO of the oil and its SARA components between 150 and 350 °C, the signal of compounds with C

Etiological distinction of working memory components in relation to mathematicsEtiological distinction of working memory components in relation to mathematics

Intraformation Transformation of Heavy Oil by Mixed Fe(II, III) Oxides) particles are synthesized. Their effects on the transformation of high-molecular-mass components of Ashal

Upgrading Heavy Petroleum in Superheated Steam in the Presence of Modified Aluminosilicates-asphaltene components. Furthermore, the upgrading led to an increased amount of high-octane converted oil with branched

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