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Thermal and Kinetic Characteristics of Some Oil Shale Sample

机译:一些油页面样品的热敏和动力学特征

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The thermal behaviour of different oil shale samples (Estonia, Jordan, Israel, Morocco) were studied using a Setaram Setsys 1750 thermoanalyzers coupled to a Nicolet 380 FTIR Spectrometer. The experiments were carried out under non-isothermal heating conditions up to 1000°C at different heating rates in an oxidizing atmosphere. A model-free kinetic analysis approach based on the differential isoconversional method of Friedman was used to calculate the kinetic parameters. The thermooxidative decomposition of oil shale samples proceeded in three steps. Firstly, thermooxidation of volatile organic compounds occurred – depending on the heating rate, up to 460°C. Secondly, thermooxidation of heavier part of organic matter (kerogen) and fixed carbon as well as thermooxidation of pyrite proceeded up to 580°C. Finally, carbonates contained in oil shale samples decomposed up to 870°C. The combined TG-FTIR study of thermooxidative decomposition of samples made it possible to identify in addition to CO_2 and H_2O as major gases evolved a number of gaseous species like CO, SO_2, COS, methane, ethylene, etc. formed and evolved at that. The value of activation energy E in the low-temperature oxidation region was for Estonian and Jordanian oil shale samples lower than that in the high-temperature region which was contrary for Israeli and Moroccan oil shale samples. Therefore, the results obtained indicated the complex multi-step character of the thermooxidative decomposition of the oil shale samples studied.
机译:使用Setaram Setsys 1750热分析物与Nicolet 380 FTIR光谱仪一起研究了不同油页面样本(爱沙尼亚,约旦,以色列,摩洛哥)的热行为。在氧化气氛中的不同加热速率下在非等温加热条件下进行实验在非等温加热条件下进行。使用基于弗里曼差分异组方法的无模型动力学分析方法来计算动力学参数。油页面样品的热氧化分解成三个步骤。首先,发生挥发性有机化合物的热氧化 - 取决于加热速率,高达460℃。其次,热氧化有机物质(Kerogen)和固定碳的较重部分以及镁油的热氧化,高达580℃。最后,油页岩样品中含有的碳酸盐含量可达870℃。用于样品的热氧化分解的合并TG-FTIR研究使得除CO_2和H_2O之外可以鉴定,因为主要气体进化了许多像CO,SO_2,COS,甲烷,乙烯等的气态物质。在此形成并进化。低温氧化区中活化能量e的价值对于Estonian和Jordanian油页面样本低于以色列和摩洛哥油页面样品的高温区域。因此,得到的结果表明了所研究的油页面样本的热氧化分解的复杂多步特征。

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