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Thermogravimetric analysis and the fitting mode! kinetic evaluation of corn silk thermal decomposition under an inert atmosphere

机译:热重分析和配件模式!惰性气氛下玉米丝热分解的动力学评价

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The thermal behavior of corn silk pyrolysis under nitrogen atmosphere has been studied through the thermogravimetric analyzer. The drying process of the original sample was performed by means of an oven at 100 °C for 90 minutes. The dry sample subsequently ground and sieved for a mesh size of 60. Approximately 11 mg of the sample was weighed into the crucible. The constant heating program of 10 °C/min was imposed on the sample start from room temperature till to 900 °C. The 50 ml/min of nitrogen was continuously flowed into the inner of the chamber to ensure the inert conditions. The differential fitting model of Arrhenius was occupied to evaluate the kinetic parameters. The result shows that corn silk was decomposed into the three stages during the pyrolysis process. These three stages initiated by the dehydration process from room environment till to 154 °C and then followed by the most massive degradation of an organic component in the main devolatilization zone at the temperature range of 154-514 °C and finally rest of material was undergoing slow decomposition till to 900 °C. The respective activation energy (E), logarithmic of the pre-exponential factor (log A) and reaction order (n) of the corn silk pyrolysis were 207.37 kJ/mol, 19.15/min and 5.2.
机译:通过热重分析仪研究了氮气氛下玉米丝热解的热行为。原样的干燥过程通过烘箱在100℃下进行90分钟进行。干燥样品随后研磨并筛分网状尺寸为60.将约11mg样品称量坩埚。将10℃/ min的恒定加热程序施加在样品上从室温开始,直至900°C。将50mL / min的氮气连续流入腔室的内部以确保惰性条件。 Arrhenius的差分拟合模型被占用以评估动力学参数。结果表明,在热解过程中,玉米丝被分解成三个阶段。这三个阶段由脱水过程从室内环境引发至154℃,然后在154-514℃的温度范围内的主要脱挥发区中的有机成分最大降解,最后进行剩余的材料减慢分解直至900°C。各自的激活能量(e),玉米丝热解的预指数因子(Log A)和反应顺序(N)的对数为207.37kJ / mol,19.15 / min和5.2。

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