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Some issues in modelling methane catalytic decomposition in fluidized bed reactors

机译:流化床反应器中甲烷催化分解建模中的一些问题

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This paper reports a model of fluidized bed thermo-catalytic decomposition (TCD) of methane. The novelty of the model consists of taking into account the occurrence of different competitive phenomena: methane catalytic decomposition, catalyst deactivation due to carbon deposition on the catalyst particles and their reactivation by means of carbon attrition. Comparison between theoretical and experimental data shows the capability of the present model to predict methane conversion and deactivation time during the process. The model demonstrates to be also a useful tool to investigate the role played by operative parameters such as fluidizing gas velocity, temperature, size and type of the catalyst. In particular, the model results have been finalized to characterize the attrition phenomena as a novel strategy in catalyst regeneration.
机译:本文报道了甲烷的流化床热催化分解(TCD)模型。该模型的新颖性在于考虑了不同竞争现象的发生:甲烷催化分解,由于碳沉积在催化剂颗粒上而导致的催化剂失活以及它们通过碳损耗而重新活化。理论和实验数据之间的比较表明,本模型能够预测过程中甲烷转化和失活时间。该模型证明也是研究诸如流化气体速度,温度,催化剂尺寸和类型等操作参数所起的作用的有用工具。特别是,模型结果已最终确定,以将磨损现象表征为催化剂再生的新策略。

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