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Theoretical study on hydrogenation catalysts containing a metal hydride as additional hydrogen supply

机译:含金属氢化物作为额外氢源的加氢催化剂的理论研究

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摘要

A hypothetical hydrogenation catalyst consisting of porous, catalytically active particles embedded with metal hydride powder was evaluated. The metal hydride provides temporarily additional hydrogen if the mass transfer rate of the hydrogen to the internal of the particle is not sufficient. A numerical model was developed to describe the hydrogenation of components in the liquid phase of a batch reactor. With this model two different reactions schemes were simulated. The first showed that the average hydrogen concentration increases with a metal hydride inside the catalyst particles. A reduction of byproduct formation and an increase in selectivity could be realized. The next system was the hydrogenation of succinonitril. Undesired products are oligomers and cyclic compounds, which are formed in the centre of the particle in the absence of hydrogen. The formation of these products is suppressed when a metal hydride is present. Another advantage is that the process can now be operated under more favorable conditions (lower pressure and higher initial succinonitril concentration) without significantly affecting the selectivities and byproduct formation.
机译:评估了一种假设的氢化催化剂,该催化剂由嵌入金属氢化物粉末的多孔催化活性颗粒组成。如果氢到颗粒内部的传质速率不足,则金属氢化物会暂时提供额外的氢。建立了数值模型来描述间歇反应器液相中组分的氢化。用该模型模拟了两种不同的反应方案。第一个结果表明,平均氢浓度随催化剂颗粒内部的金属氢化物而增加。可以减少副产物的形成并提高选择性。下一个系统是琥珀酮腈的氢化。不需要的产物是低聚物和环状化合物,它们在不存在氢的情况下在颗粒的中心形成。当存在金属氢化物时,这些产物的形成被抑制。另一个优点是该方法现在可以在更有利的条件下(较低的压力和较高的丁二腈浓度)进行操作,而不会显着影响选择性和副产物的形成。

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