首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Determination of Pyrolysis Kinetics of Cellulose and Lignin Fractions Isolated from Selected Turkish Biomasses
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Determination of Pyrolysis Kinetics of Cellulose and Lignin Fractions Isolated from Selected Turkish Biomasses

机译:选定土耳其生物质中纤维素和木质素级分的热解动力学的测定

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摘要

The pyrolysis behavior of Turkish biomass samples such as hazelnut shell, almond shell, and sunflower stalk residue was studied using a thermogravimetric analysis (TGA) laboratory-scale setup. Biomass samples were characterized using the standard method of the Van Soest detergent analysis, and both the virgin biomass and fractions were investigated. The reaction temperature was increased to 900°C with a heating rate range between 2 and 60°C min~(−1) in the TGA experiments. Seven solid-state reaction models were applied to evaluate the obtained experimental TGA results. The heating rate was not the only parameter affecting the values of activation energy and the ratio of the main components such as the cellulose and lignin of the virgin biomass samples (almond shell, sunflower stalk, and hazelnut shell) also affected the value of the activated energy values. It was determined that a model fitting mechanism gives limited information to determine the exact activation energy values for the samples. The reaction order model provided straightforward and decisive results for all the biomass and lignin samples. Models of two- and three-dimensional diffusion were better suitable for the cellulose devolatilization. It was also determined that the activation energy of the lignin samples was similar regardless of the types of biomass. According to the kinetic calculations, the cellulose samples showed the highest activation energy values and the lignin samples had the lowest.
机译:使用热量分析(TGA)实验室规模设置研究了土耳其生物质样品如榛子壳,杏仁壳和向日葵茎残留物的热解作用。使用VAROST的标准方法表征生物质样品的特征,并研究了原始生物质和级分。在TGA实验中,反应温度升至900℃,加热速率在2至60℃min〜(-1)之间。施用七种固态反应模型来评估所获得的实验TGA结果。加热速率不是影响活化能量值的唯一参数,以及原始生物量样品(杏仁壳,向日葵茎和榛子壳)的纤维素和木质素的主要成分的比例也影响了激活的值能量值。确定模型拟合机制提供有限的信息,以确定样品的精确激活能量值。反应阶模型为所有生物质和木质素样品提供了直接和决定性的结果。两维扩散的模型更适合纤维素脱挥发化。还确定了木质素样品的活化能量,无论生物质的类型如何相似。根据动力学计算,纤维素样品显示出最高的活化能量值,木质素样品具有最低。

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