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Experimental and numerical analysis of a methane thermal decomposition reactor

机译:甲烷热分解反应器的实验与数值分析

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An indirectly heated tubular reactor is fabricated and used to study methane thermal decomposition conversion and determine kinetic parameters. A combined perfectly mixed reactor with bypass (CPMR) is proposed as an alternative to the traditional perfectly mixed and plug flow reactors. The CPMR model is used in order to account for buoyancy flow in the reactor. Results comparing the numerical predictions from all three models to experimental data show that buoyancy effects are significant in the reactor under study and also in most reactors in the literature. Including this effect might significantly improve the accuracy of the model predictions. The CPMR reactor model with a reaction rate constant of 5.43 x 10(15) 1/s and an activation energy of 420.7 kJ/mol is capable of reproducing the obtained experimental data in this study and in the literature. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:制造了间接加热的管式反应器,并用于研究甲烷的热分解转化并确定动力学参数。提出了一种带有旁路的完美混合反应堆(CPMR),以替代传统的完全混合和活塞流反应堆。使用CPMR模型是为了说明反应堆中的浮力流。将所有三个模型的数值预测与实验数据进行比较的结果表明,浮力效应在所研究的反应堆中以及文献中的大多数反应堆中均很显着。包括此影响可能会大大提高模型预测的准确性。反应速率常数为5.43 x 10(15)1 / s和活化能为420.7 kJ / mol的CPMR反应器模型能够复制本研究和文献中获得的实验数据。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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