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Contribution of thermal analysis and kinetics of Siberian and Tatarstan regions crude oils for in situ combustion process

机译:西伯利亚和Ta斯坦地区原位燃烧过程的热分析和动力学贡献

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摘要

This research focused on the characterization and kinetics of Siberian and Tatarstan crude oils by gas chromatography, combustion calorimetry, and thermogravimetry (TG-DTG) techniques. Calorimetric experiments show that crude oil with higher saturate content and low resin fraction has higher heating value. TG-DTG curves indicates that the crude oils undergoes two major transitions when subjected to an oxidizing and constant rate environment known as low- and high-temperature oxidations at each heating rate studied. Kinetic analysis in the low- and high-temperature oxidation regions was performed using model-free methods knows as Ozawa-Flynn-Wall and Kissinger-Akahira-Sunose. Throughout the study, it was observed that the activation energy values of the crude oil samples are varied between 41-72 and 145-198 kJ mol(-1) in low- and high-temperature oxidation regions, respectively.
机译:这项研究的重点是通过气相色谱法,燃烧量热法和热重法(TG-DTG)技术对西伯利亚和Ta斯坦原油进行表征和动力学。量热实验表明,饱和油含量较高,树脂含量较低的原油具有较高的发热量。 TG-DTG曲线表明,在所研究的每种加热速率下,当原油经历氧化和恒定速率环境(称为低温和高温氧化)时,它们都会经历两个主要转变。低温和高温氧化区域的动力学分析是使用Ozawa-Flynn-Wall和Kissinger-Akahira-Sunose等无模型方法进行的。在整个研究过程中,观察到原油样品的活化能值在低温和高温氧化区域分别在41-72和145-198 kJ mol(-1)之间变化。

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