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首页> 外文期刊>The Korean journal of chemical engineering >Fischer-Tropsch Synthesis on Fe-Co-Pt/γ-Al_2O_3 catalyst: A mass transfer, kinetic and mechanistic study
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Fischer-Tropsch Synthesis on Fe-Co-Pt/γ-Al_2O_3 catalyst: A mass transfer, kinetic and mechanistic study

机译:Fischer-Tropsch在Fe-Co-Pt /γ-Al_2O_3催化剂上的合成:传质,动力学和机械研究

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摘要

Mass transfer limitations and kinetics studies were performed for Fischer-Tropsch Synthesis over spherical 10wt% Fe-10wt% Co-0.5wt% Pt/79.5wt%gamma-Al(2)O(3)catalyst in a fixed bed reactor. The external mass transfer limitation was checked by studying the effect of gas hourly space velocity (GHSV) and feed flow rate (at constant GHSV) on CO conversion. Theoretical and practical methods were applied to assess the effect of catalyst pellet size on the internal mass transfer limitation. The results indicated there is external diffusion limitation for GHSV lower than 4,200 h(-1). Both the theoretical and practical methods showed that the reaction is free of internal diffusion limitation with average particle sizes of 0.21 and 0.42 mm due to Thiele modulus smaller than 0.4, denoting that the rate of reaction is kinetically controlled. The kinetics results demonstrated the combined enol and carbide mechanism-based model was able to provide a good fit for the experimental data.
机译:在固定床反应器中对Fischer-Tropsch合成的Fischer-Tropsch合成进行传质局限和动力学研究,在固定床反应器中催化剂。通过研究气体小时空速(GHSV)和进料流速(在恒定GHSV)对CO转化的影响来检查外部传质限制。应用了理论和实践方法,以评估催化剂颗粒尺寸对内部传质限制的影响。结果表明GHSV低于4,200小时(-1)的外部扩散限制。理论和实践方法表明,由于硫醚模量小于0.4,反应不具有0.21和0.42mm的平均粒度的内部扩散限制,表示反应速率是动力学控制的。动力学结果证明了组合的enol和基于碳化物机制的模型能够为实验数据提供良好的拟合。

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