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Effects of process and design parameters on heat management in fixed bed Fischer-Tropsch synthesis reactor

机译:工艺和设计参数对固定床费-托合成反应器热管理的影响

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摘要

A two-dimensional pseudo-homogeneous model of wall-cooled fixed bed Fischer-Tropsch synthesis (FTS) reactor with Co/Re/gamma-Al2O3 catalyst was developed to study the effect of process and design parameters on heat generation and removal characteristics. The influence of liquid-phase formation on heat transport was accounted for by using two-phase correlations. The effect of intraparticle diffusion on heat generation was considered. Detailed numerical simulations were performed to analyze the effect of process and design parameters on the reactor performance in terms of heat management. Results show that thermal behavior of FTS fixed bed reactors is very sensitive and any large disturbances can lead to temperature runaway. Large tube diameters are shown to be particularly unfavorable, with d (t) 5 cm resulting in axial and radial gradients greater than 20 K and 13 K, respectively. The importance of detailed reactor modeling when designing and optimizing FTS fixed bed reactors is highlighted.
机译:建立了带有Co / Re /γ-Al2O3催化剂的壁冷式固定床费-托合成(FTS)反应器的二维拟均相模型,以研究工艺和设计参数对生热和除热特性的影响。液相形成对热传递的影响是通过使用两相相关来解决的。考虑了颗粒内扩散对发热的影响。进行了详细的数值模拟,以从热管理的角度分析工艺和设计参数对反应堆性能的影响。结果表明,FTS固定床反应器的热行为非常敏感,任何大的干扰都可能导致温度失控。大直径的管特别不利,d(t)> 5 cm,分别导致轴向和径向梯度分别大于20 K和13K。在设计和优化FTS固定床反应器时,强调详细反应器建模的重要性。

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