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Determination of mass transfer resistances of fast reactions in three-phase mechanically agitated slurry reactors

机译:三相机械搅拌淤浆反应器中快速反应的传质阻力测定

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摘要

A methodology for the determination of mass transfer resistances of fast reactions in three-phase mechanically agitated slurry reactors under the reaction conditions is presented. The mass transfer resistances affect significantly the overall mass transfer rate, the design equation and consequently the scale up of the reactor. There is not established methodology to separate the mass transfer resistances under reaction conditions by changing catalyst loading and manipulating the process variables, pressure and agitation speed. This allows to avoid the use of different catalyst particles and give the chance to calculate the mass transfer resistances without caring about the type of catalyst. We calculate each mass transfer resistance under conditions which do not allow to neglect any of the resistances. It is shown that the level off of mass transfer rate which is developed in the plot of mass transfer rate against agitation speed plots is not enough to determine the limiting regime. The hydrogenation of styrene over Pd/C (5% catalyst content) is used as case study to demonstrate the methodology.
机译:提出了一种在反应条件下测定三相机械搅拌淤浆反应器中快速反应的传质阻力的方法。传质阻力显着影响整体传质速率,设计方程式,进而影响反应器的规模放大。还没有建立通过改变催化剂负载量和控制工艺变量,压力和搅拌速度来分离反应条件下传质阻力的方法。这允许避免使用不同的催化剂颗粒,并有机会计算传质阻力而无需关心催化剂的类型。我们在不允许忽略任何阻力的条件下计算每个传质阻力。结果表明,在传质速率与搅拌速度图之间形成的传质速率水平不足以确定极限范围。案例研究以Pd / C(5%催化剂含量)以上的苯乙烯氢化为例进行了研究。

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  • 作者

    Stamatiou IK; Muller FL;

  • 作者单位
  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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