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Thermal decomposition behavior of tobacco stem Part II: Kinetic analysis

机译:烟梗的热分解行为第二部分:动力学分析

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As a continuation of the previous study on the thermal degradation behavior of tobacco stem, this work is focused on the kinetics of pyrolytic decomposition. Thermogravimetric analysis of tobacco stem samples was conducted under nitrogen atmosphere at different heating rates of 5, 10, 15, and 20 degrees C/min at a temperature range of 25-1,000 degrees C. The kinetic parameters, such as activation energy, pre-exponential factor, and reaction order, were determined by applying the Coats-Redfern method for the main pyrolysis occurred in the second zone by means of the decomposition of hemicellulose, cellulose, and lignin at a temperature range 180-540 degrees C. In addition, the activation energy was calculated using various degradation models, including Kissinger, Friedman (FR), Flynn-Wall-Ozawa (FWO), and Kissinger-Akahira-Sunose (KAS). The average activation energy of tobacco stem was calculated to be 150.40, 230.76, 216.97, and 218.56 kJ/mol by the Kissinger, FR, FWO, and KAS models, respectively.
机译:作为先前对烟梗热降解行为的研究的延续,这项工作的重点是热解分解的动力学。烟梗样品的热重分析是在氮气气氛下以25、1,000摄氏度的温度在5、10、15和20摄氏度/分钟的不同加热速率下进行的。动力学参数,例如活化能,预通过应用Coats-Redfern方法确定在180-540℃温度范围内半纤维素,纤维素和木质素的分解在第二区域发生的主要热解,从而确定指数因子和反应顺序。使用各种降解模型计算活化能,其中包括基辛格,弗里德曼(FR),弗林·沃尔·小泽(FWO)和基辛格·赤平·Sunose(KAS)。通过Kissinger模型,FR模型,FWO模型和KAS模型计算得出,烟梗的平均活化能分别为150.40、230.76、216.97和218.56 kJ / mol。

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