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Modeling of the pyrolysis of biomass under parabolic and exponential temperature increases using the Distributed Activation Energy Model

机译:使用分布活化能模型模拟抛物线和指数温度升高下生物质的热解。

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摘要

A modification of the simplified Distributed Activation Energy Model is proposed to simulate the pyrolysis of biomass under parabolic and exponential temperature increases. The pyrolysis of pine wood, olive kernel, thistle flower and corncob was experimentally studied in a TGA Q500 thermogravimetric analyzer. The results of the measurements of nine different parabolic and exponential temperature increases for each sample were employed to validate the models proposed. The deviation between the experimental TGA measurements and the estimation of the reacted fraction during the pyrolysis of the four samples under parabolic and exponential temperature increases was lower than 5 °C for all the cases studied. The models derived in this work to describe the pyrolysis of biomass with parabolic and exponential temperature increases were found to be in good agreement with the experiments conducted in a thermogravimetric analyzer.
机译:提出了简化的分布式活化能模型的一种改进,以模拟抛物线和指数温度升高下生物质的热解。在TGA Q500热重分析仪中,对松木,橄榄核,蓟花和玉米芯的热解进行了实验研究。每个样品的九种不同抛物线和指数温度升高的测量结果被用来验证所提出的模型。对于所有研究的情况,在抛物线和指数温度升高下,四个样品在热解过程中,实验TGA测量值与反应馏分的估计值之间的偏差均低于5°C。发现该工作中描述的生物质随抛物线和指数温度升高的热解模型与在热重分析仪中进行的实验非常吻合。

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