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A Degradation Kinetic Study on Pyrolysis of Three Biomass Samples and Co-pyrolysis of Hazelnut Shell and Ultra-high Molecular Weight Polyethylene Blends Using a Silver Indicator

机译:银指示剂对三种生物质样品热解,榛子壳与超高分子量聚乙烯共热分解的动力学研究

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摘要

A kinetic study was proposed in pyrolysis process supplementary to thermo-gravimetric analysis. Three different biomasses, hazelnut shell, olive residue, and tea waste, and hazelnut shell and ultra-high molecular weight polyethylene mixture were analyzed kinetically in a batch-type tubular pyrolysis reactor. Reaction times were measured with the changing color of silver indicator, which was attached to the terminal of pyrolysis set up at various specified temperatures between 623 and 923 K. The Arrhenius plots were obtained and the activation energies (E_a) of reaction values were calculated from the slope of linear curves. For pure biomass, two linear degradation zones were detected possibly belonging to cellulose and hemicellulose. In the case of hazelnut shell and ultra-high molecular weight polyethylene mixtures, linearity of Arrhenius plots were grasped with the modification of the pre-exponential factor of the basic Arrhenius equation. This type of kinetic method directly involves the basic parameters, namely, reaction time and temperature for supplementation of kinetic analysis.
机译:提出了在热解过程中补充热重分析的动力学研究。在间歇式管式热解反应器中动力学分析了三种不同的生物质,榛子壳,橄榄渣和茶渣,以及榛子壳和超高分子量聚乙烯混合物。用改变后的银指示剂颜色测量反应时间,该指示剂连接到在623至923 K之间的各种指定温度下设置的热解末端。获得Arrhenius图,并从线性曲线的斜率。对于纯生物质,检测到两个线性降解区,可能属于纤维素和半纤维素。在榛子壳和超高分子量聚乙烯混合物的情况下,通过修改基本Arrhenius方程的指数前因子,可以掌握Arrhenius曲线的线性。这种动力学方法直接涉及基本参数,即补充动力学分析的反应时间和温度。

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