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Isoconversional Methods for Kinetic Modeling of Kerogen Pyrolysis Using TG Data

机译:用于使用TG数据的Kerogen热解的动力学建模的异组件方法

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The pyrolysis kinetics of the Jordanian Lajjun oil shale kerogen was investigated inside a TGA reactor. Kerogen samples (extracted by mineral digestion) were non-isothermally heated at rates varying from 1 to 50°C/min under 350-550°C in N_2 atmosphere. Friedman, Kissinger-Akahira-Sunose (KAS) and Flynn-Wall-Ozawa (FWO) models were employed to estimate the kinetic parameters at isoconversional points ranging from 0.1 to 0.9. The value of the calculated apparent activation energy (E) was found to vary with both the employed model and the conversion (x). Using the three models, the calculated E increased with x from 10 to 30% (low x level), and then decreased with x from 30 to 60% (medium x level). At high x level (60 to 90% x), however, E increased with x increase using both KAS and FWO models, while it continuously dropped with x increase using Friedman model. The frequency factor (k_o) calculated form each model was found to linearly correlate with E. Compared to KAS and FWO models, Friedman' provided a more accurate fit to the experimental data.
机译:在TGA反应器内研究了约旦Lajjun油页岩Kerogen的热解动力学。 Kerogen样品(通过矿物质消化提取)在N_2大气中在350-550℃下在1至50℃/ min下的速率下非等温加热。弗里德曼,基辛格-Akahira-Sunose(KAS)和Flynn-Wall-ozawa(FWO)模型被用于估计从0.1到0.9的异组值的Isoconversional积分中的动力学参数。发现计算的表观激活能量(E)的值与所用模型和转化(X)不同。使用三种模型,计算的E随x的10至30%(低X级)增加,然后用x减少30%至60%(中X级)。然而,在高X级(60%至90%x),E使用弗里德曼模型随着X增加而增加,X增加了X增加。发现频率因子(K_O)表格的每个模型都被发现与E.与KAS和FWO模型相比,Friedman'为实验数据提供了更准确的拟合。

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