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Interfacial mass transfer limitations of the Fischer-Tropsch synthesis operated in a slurry bubble column reactor at industrial conditions

机译:在工业条件下在浆料泡柱反应器中运行的Fischer-Tropsch合成的界面传质限制

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At high catalyst volume fractions the Fischer-Tropsch synthesis (FTS) operated in a slurry bubble column (SBC) is driven into the mass transfer limited regime. This study utilized literature models for the gas-liquid mass transfer coefficients in a multifluid-population balance model in which the gas-phase composition was a function of bubble size. The results confirmed that mass transfer limitations occur and that the choice of mass transfer coefficient model is crucial, yielding final conversion results ranging from 45% to 92% depending on the choice of k(L) models. At smaller k(L) values the composition is highly dependent on bubble size, whilst for the largest k(L) values the composition is not a function of bubble size at all. The population balance modeling (PBM) allowed for explicitly keeping track of the bubble size distribution. Varying the inlet Sauter-mean diameter (SMD) resulted in a linear decrease in conversion as the inlet SMD was increased from 5 mm to 20 mm. Illustrative models for the bubble size dependency of k(L) were implemented, which provided additional information compared to traditional models which use (bubble size) averaged values for the liquid-phase mass transfer coefficient k(L) and/or the gas-liquid interfacial area a and composition. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在高催化剂体积分数下,在浆料气泡塔(SBC)中运行的Fischer-Tropsch合成(FTS)被驱动到质量转移限制状态。该研究利用了用于燃气液体传递系数的文献模型,其中群体群体平衡模型中的气相组成是气泡尺寸的函数。结果证实,出现了传质局限性,并且传质系数模型的选择至关重要,因此取决于k(l)模型的选择,最终转化结果范围为45%至92%。在较小的K(L)值下,组合物高度依赖于气泡尺寸,而最大的K(L)值,组合物根本不是泡沫尺寸的函数。人口平衡建模(PBM)允许明确跟踪泡沫尺寸分布。随着入口SMD从5mm至20mm的增加,改变入口脱落剂平均直径(SMD)导致转换的线性降低。实现了K(L)的气泡尺寸依赖性的说明性模型,其提供了与使用(气泡尺寸)液相传质系数K(L)和/或气液的平均值的传统模型相比的附加信息界面区域A和组成。 (c)2018年elestvier有限公司保留所有权利。

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