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Kinetics of the thermal decomposition of pine needles

机译:松针热分解的动力学

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A kinetic study of the pyrolysis process of pine needles was examined using a thermogravimetric analyser. The weight loss was measured in nitrogen atmosphere at a purge flow rate of 100 ml/min. The samples were heated over a range of temperature of 19°C–600°C with a heating rate of 10°C/min. The results obtained from the thermal decomposition process indicate that there are three main stages: dehydration, active and passive pyrolysis. The kinetic parameters for the different samples, such as activation energy and pre-exponential factor, are obtained by the shrinking core model (reaction-controlled regime), the model-free, and the first-order model. Experimental results showed that the shrinking model is in good agreement and can be successfully used to understand degradation mechanism of loose biomass. The result obtained from the reaction-controlled regime represented actual values of kinetic parameters which are the same for the whole pyrolysis process; whereas the model-free method presented apparent values of kinetic parameters, as they are dependent on the unknown function ?(C), on the sum of the parameters of the physical processes, and on the chemical reactions that happen simultaneously during pyrolysis. Experimental results showed that values of kinetic constant from the first-order model and the SCM are in good agreement and can be successfully used to understand the behaviour of loose biomass (pine needles) in the presence of inert atmosphere. Using TGA results, the simulating pyrolysis can be done, with the help of computer software, to achieve a comprehensive detail of the devolatilization process of different types of biomasses.
机译:使用热重分析仪检查了松针热解过程的动力学研究。在氮气气氛中以100ml / min的吹扫流速测量重量损失。样品在19°C–600°C的温度范围内以10°C / min的加热速率加热。从热分解过程获得的结果表明,存在三个主要阶段:脱水,主动和被动热解。通过收缩核模型(反应控制状态),无模型和一阶模型获得了不同样品的动力学参数,例如活化能和指数前因子。实验结果表明,该收缩模型吻合良好,可以成功地理解松散生物质的降解机理。从反应控制方案获得的结果表示动力学参数的实际值对于整个热解过程都是相同的。而无模型方法则给出了动力学参数的表观值,因为它们取决于未知函数?(C),物理过程参数的总和以及热解过程中同时发生的化学反应。实验结果表明,一阶模型和SCM的动力学常数值吻合良好,可以成功地用于了解惰性气氛下松散生物质(松针)的行为。使用TGA结果,可以在计算机软件的帮助下完成模拟热解过程,以全面了解不同类型生物质的脱挥发分过程。

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