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Novel synthesis of thick wall coatings of titania supported Bi poisoned Pd catalysts and application in selective hydrogenation of acetylene alcohols in capillary microreactors

机译:二氧化钛负载的Bi中毒的Pd催化剂的厚壁涂层的新型合成及其在毛细管微反应器中乙炔醇的选择性加氢中的应用

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摘要

Catalysis in microreactors allows reactions to be performed in a very small volume, reducing the environmental problems and greatly intensifying the processes through easy pressure control and the elimination of heat- and mass-transfer limitations. In this study, we report a novel method for the controlled synthesis of micrometre-thick mesoporous TiO2 catalytic coatings on the walls of long channels (>1 m) of capillary microreactors in a single deposition step. The method uses elevated temperature and introduces a convenient control parameter of the deposition rate (displacement speed controlled by a stepper motor), which allows deposition from concentrated and viscous sols without channel clogging. A capillary microreactor wall-coated with titania supported Bi-poisoned Pd catalyst was obtained using the method and used for the semihydrogenation of 2-methyl-3-butyn-2-ol providing 93 ± 1.5% alkene yield for 100 h without deactivation. Although the coating method was applied only for TiO2 deposition, it is nonetheless suitable for the deposition of volatile sols.
机译:微反应器中的催化作用使反应可以在很小的体积内进行,从而减少了环境问题,并通过容易的压力控制以及消除了传热和传质的局限性大大增强了工艺。在这项研究中,我们报告了一种新的方法,可在单个沉积步骤中在毛细管微反应器的长通道(> 1 m)的壁上控制合成微米厚的中孔TiO2催化涂层。该方法使用升高的温度并引入方便的沉积速率控制参数(由步进电机控制的位移速度),从而可以从浓缩和粘稠的溶胶中进行沉积而不会堵塞通道。使用该方法获得了用二氧化钛负载的Bi-中毒的Pd催化剂进行壁包覆的毛细管微反应器,该反应器用于2-甲基-3-butyn-2-ol的半氢化反应,在不失活的情况下提供93±1.5%的烯烃收率100 h。尽管该涂覆方法仅用于TiO2沉积,但仍适用于挥发性溶胶的沉积。

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