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Kinetic Modelling of Thermal Cracking and Low Temperature Oxidation Reactions

机译:热裂解和低温氧化反应的动力学模型

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摘要

Two kinetic models were developed to describe thermal cracking and low temperature oxidation (LTO) reactions of Athabasca bitumen for the in situ combustion process. These unified kinetic models can describe the compositional changes in the Athabasca bitumen under thermal cracking or LTO. Bitumen composition was expressed in terms of the pseudo-components maltenes, asphaltenes, and coke. Oxidation reactions occurring in the low temperature range (less than 300℃) are complex with two primary oxidation reaction modes: oxygen addition and bond scission. For Athabasca bitumen, oxygen addition reactions are generally dominant in the low temperature range (less than 300℃) however bond scission or carbon oxide forming reactions occur to some extent at reaction temperatures greater than approximately 150℃. The variation in the oxygen uptake rate with time at a given temperature is accounted for through rate equation describing the change in composition of the oil and the rate of oxygen uptake at the temperature of interest for each of the pseudo-components. The oxidation model for the low temperature range that was developed in this work accounts for both oxygen addition and bond scission modes of reaction. It is capable of predicting the effect of temperature, pressure, oxygen concentration, and time on bitumen composition and oxygen uptake rates.
机译:建立了两个动力学模型来描述Athabasca沥青在原位燃烧过程中的热裂化和低温氧化(LTO)反应。这些统一的动力学模型可以描述热裂解或LTO下阿萨巴斯卡沥青的组成变化。沥青的组成以麦芽汁,沥青质和焦炭的假组分表示。在低温范围内(低于300℃)发生的氧化反应具有两种主要的氧化反应模式:氧加成和键断裂。对于阿萨巴斯卡沥青,在低温范围(低于300℃)中,氧的加成反应通常占主导地位,但是在高于约150℃的反应温度下,会发生键断裂或形成碳氧化物的反应。在给定温度下,氧气吸收率随时间的变化通过速率方程式得以解释,该速率方程式描述了油的组成变化和每种伪组分在目标温度下的氧气吸收率。在这项工作中开发的低温范围的氧化模型考虑了氧的添加和反应的键断裂方式。它能够预测温度,压力,氧气浓度和时间对沥青成分和氧气吸收率的影响。

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