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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

Thermal decomposition of Tatarstan Ashal'cha heavy crude oil and its SARA fractions, and its SARA (saturate, aromatic, resin and asphaltene) fractions were analyzed by differential scanning

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

Low-field NMR-relaxometry as fast and simple technique for in-situ determination of SARA-composition of crude oils-field nuclear magnetic resonance (LF-NMR) were compared with conventional SARA analysis method (ASTM D 4124

Thermal decomposition of Tatarstan Ashal'cha heavy crude oil and its SARA fractions, and its SARA (saturate, aromatic, resin and asphaltene) fractions were analyzed by differential scanning

Determination of SARA fractions of crude oils by NMR technique that the aromaticity factors were high for heavy crude oils. For predicting SARA fractions, the correlations were

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

Upgrading Heavy Petroleum in Superheated Steam in the Presence of Modified AluminosilicatesSARA analysis

A latent profile analysis of math achievement, numerosity, and math anxiety in twins profile analysis indicated 5 groupings of individuals representing different patterns of math achievement

The composition and structure of ultra‐dispersed mixed oxide (Ii, iii) particles and their influence on in-situ conversion of heavy oil viscosity decrease of the obtained catalytic aquathermolysis products. X‐ray analysis exposed

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