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Investigation of a rotating disc reactor for acetone stripping and asymmetric transfer hydrogenation: Modelling and experiments

机译:用于丙酮汽提和不对称转移加氢的转盘反应器的研究:建模和实验

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Asymmetric transfer hydrogenation of acetophenone with isopropanol as hydrogen donor in the presence of a homogeneous catalyst was investigated in a rotating disc reactor. Initially, acetone stripping from binary mixtures acetone-isopropanol with nitrogen as inert gas was studied, since its removal is a key issue in improving reaction performance. The reactor consisted of a stainless steel disc mounted on a horizontal shaft, accommodated in a cylindrical shell. The disc was partially immersed in the liquid phase. Its rotation generated a thin liquid film on its upper part, which could be brought in contact with a gas phase used for stripping. A mathematical model was formulated to simulate the reactor and showed good agreement with experimental data for acetone stripping. It was observed that the efficiency of acetone removal from the liquid phase increased with the gas flowrate per initial liquid volume ratio. The effect of disk rotation was found to be small when the stripping gas was introduced in the liquid bulk. The reactor model agreed well with experimental data of the asymmetric transfer hydrogenation. An advantage of the rotating disk reactor is that the hydrodynamics of the phases can be decoupled and the gas flowrate can be increased without constraints in the liquid phase, unlike conventional agitated reactors that are limited by flooding. Simulations using high stripping gas flowrate per initial liquid volume, unachievable in stirred reactors, showed significant reduction of the residence time required to achieve > 99% conversion. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在旋转盘式反应器中研究了在均相催化剂存在下用异丙醇作为氢供体的苯乙酮的不对称转移加氢。最初,研究了将丙酮-异丙醇与氮气作为惰性气体从二元混合物中汽提丙酮的方法,因为去除丙酮是提高反应性能的关键问题。反应器由安装在水平轴上的不锈钢圆盘组成,并容纳在圆柱壳中。圆盘部分浸入液相中。它的旋转在其上部产生了薄的液膜,该液膜可与用于汽提的气相接触。建立了数学模型以模拟反应器,并显示出与用于丙酮汽提的实验数据良好的一致性。观察到从液相中除去丙酮的效率随每初始液体体积比的气体流量而增加。当将汽提气引入液体块中时,发现盘旋转的影响很小。反应器模型与不对称转移氢化的实验数据吻合得很好。旋转盘式反应器的一个优点是,相的流体力学可以解耦,并且可以在液相中没有限制的情况下增加气体流量,这与传统的搅动反应器受溢流限制的情况不同。使用在搅拌反应器中无法实现的每初始液体体积使用高汽提气流速进行的模拟表明,显着减少了实现> 99%转化率所需的停留时间。 (c)2006 Elsevier Ltd.保留所有权利。

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