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Supercritical fluid deposition of Ru nanoparticles into SiO2 SBA-15 as a sustainable method to prepare selective hydrogenation catalysts

机译:将Ru纳米颗粒超临界流体沉积到SiO2 SBA-15中作为制备选择性加氢催化剂的可持续方法

摘要

Ru nanoparticles were successfully deposited into mesoporous SiO2 SBA-15 using supercritical CO2 (scCO2). The use of scCO2 favoured the metal dispersion and Ru nanoparticles uniformly distributed throughout the support were obtained. Different precursors and methodologies were employed: impregnation with Ru(tmhd)2(COD) in scCO2 at 80 ºC and 13.5 and 19.3 MPa and further reduction in H2/N2 at 400 ºC at low pressure, reactive deposition of Ru(tmhd)2(COD) with H2 in scCO2 at 150 ºC and reactive deposition of RuCl3•xH2O with ethanol in scCO2 at 150 and 200 ºC. The size of the particles was limited in one dimension by the pore size of the support. The metal loading varied with the methodology and experimental conditions from 0.9 to 7.4% Ru mol. These materials exhibited remarkable catalytic activity. The Ru/SiO2 SBA-15 materials prepared by reactive deposition with H2 in scCO2 were selective catalysts for the hydrogenation reactions of benzene and limonene, allowing the production of partly hydrogenated hydrocarbons that may serve as building blocks for more complex chemicals. scCO2 is shown to be a green solvent that allows the preparation of efficient heterogeneous catalysts to design sustainable processes. Furthermore, in the hydrogenation of limonene, scCO2 was also used as the solvent.
机译:使用超临界CO2(scCO2)将Ru纳米颗粒成功沉积到介孔SiO2 SBA-15中。使用scCO2有利于金属分散,并获得均匀分布在整个载体中的Ru纳米粒子。使用了不同的前驱物和方法:在80ºC和13.5 MPa和19.3 MPa的scCO2中浸渍Ru(tmhd)2(COD),并在低压下于400ºC进一步还原H2 / N2,Ru(tmhd)2(在150ºC下在scCO2中带有H2的化学需氧量(COD),在150和200ºC下在scCO2中的乙醇中将RuCl3•xH2O与乙醇反应沉积。颗粒的尺寸在一维上受到载体孔尺寸的限制。金属负载量随方法和实验条件的不同而从0.9到7.4%Ru mol变化。这些材料表现出显着的催化活性。通过在scCO2中与H2进行反应性沉积而制备的Ru / SiO2 SBA-15材料是苯和柠檬烯加氢反应的选择性催化剂,可以生产部分氢化的烃,这些烃可以用作更复杂的化学物质的结构单元。 scCO2被证明是一种绿色溶剂,可以制备高效的多相催化剂来设计可持续的工艺。此外,在柠檬烯的氢化中,还使用了scCO 2作为溶剂。

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