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Kinetics of carbon nanotubes growth on a Ni-Mg-Al catalyst by CCVD of methane: Influence of catalyst deactivation

机译:甲烷CCVD法在Ni-Mg-Al催化剂上生长碳纳米管的动力学:催化剂失活的影响

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In this work, we present the application of a phenomenological kinetic model to the analysis of experimental results obtained with a LDH-based Ni-Mg-Al catalyst during the CCVD of methane. This model takes into account all the main stages implicated in CNT growth: methane decomposition, metal surface carburization, carbon diffusion, CNT nucleation and growth. The main causes of growth cessation, catalyst deactivation and steric hindrance have also been considered. The effect of the main operational variables, reduction (activation) and reaction temperatures and feed composition (hydrogen and methane composition), have been studied. The model fits very well the data obtained with the studied catalyst at the different operating conditions. As a consequence of the application of the model to the kinetic results, we can describe the influence of the operating conditions on each of the individual stages involved in the CNT formation.
机译:在这项工作中,我们提出了一种现象动力学模型,用于分析甲烷的CCVD过程中使用基于LDH的Ni-Mg-Al催化剂获得的实验结果。该模型考虑了与碳纳米管生长有关的所有主要阶段:甲烷分解,金属表面渗碳,碳扩散,碳纳米管成核和生长。还考虑了生长停止,催化剂失活和位阻的主要原因。已经研究了主要操作变量,还原(活化)和反应温度以及进料组成(氢和甲烷组成)的影响。该模型很好地拟合了在不同操作条件下使用研究的催化剂获得的数据。由于将模型应用于动力学结果,我们可以描述操作条件对参与CNT形成的各个阶段的影响。

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