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Kinetic model for torrefaction of wood chips in a pilot-scale continuous reactor

机译:中试规模连续反应器中木片焙干的动力学模型

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Torrefaction is a mild thermal treatment (200-300 degrees C) in an inert atmosphere, known to increase the energy density of biomass by evaporation of water and a proportion of the volatiles. In this work a "two-step reaction in series" model was used to describe the thermal degradation kinetics of pine wood. The kinetic parameters were determined using a thermogravimetric analyzer (TGA) and the mass loss during the initial heating period was taken into account when deriving the kinetic parameters. It was shown that the experimental results at different heating rates (10-50 degrees C min(-1)) are in good accordance with the model data. In an additional step a continuous, pilot scale reactor was built to produce torrefied wood chips in large quantities. The "two-step reaction in series" model was applied to predict the mass yield of the torrefaction reaction. Parameters used for the calculation were the temperature along the reactor and the biomass feeding rate in combination with the kinetic parameters obtained from the tests in the TGA. Together with results from a laboratory scale, batch torrefaction reactor that was used to determine the higher heating value (HHV) and mass loss (y) of the same material at different torrefaction temperatures, it was possible to predict the HHV of torrefied wood chips from the pilot reactor. The results from this study and the presented modeling approach can be used to predict the product quality from pilot scale torrefaction reactors based on small scale experiments and could be used to improve the homogeneity of torrefied products, which still is a problem for most operational torrefaction pilot plants today. (C) 2014 Elsevier B.V. All rights reserved.
机译:烘焙是在惰性气氛中进行的温和热处理(200-300摄氏度),已知通过蒸发水和一定比例的挥发物来增加生物质的能量密度。在这项工作中,“串联两步反应”模型用于描述松木的热降解动力学。使用热重分析仪(TGA)确定动力学参数,并在得出动力学参数时考虑初始加热期间的质量损失。结果表明,不同升温速率(10-50℃min(-1))下的实验结果与模型数据吻合良好。在另一个步骤中,建造了一个连续的中试规模反应器,以大量生产烘焙过的木片。应用“串联两步反应”模型来预测烘焙反应的质量收率。用于计算的参数是沿反应器的温度和生物质的进料速率,以及从TGA中的测试获得的动力学参数。结合实验室规模的分批焙烧反应器的结果(用于确定相同材料在不同焙烧温度下的较高热值(HHV)和质量损失(y)),可以从中试反应堆。这项研究的结果和提出的建模方法可用于基于小规模实验来预测中试规模的焙烧反应器的产品质量,并可用于改善焙烤产品的均质性,这对于大多数可操作的焙干试验仍然是一个问题今天的植物。 (C)2014 Elsevier B.V.保留所有权利。

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