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CO2 hydrogenation to methanol over Pd/In2O3: effects of Pd and oxygen vacancy

机译:在Pd / In2O3上用CO 2氢化至甲醇:Pd和氧空位的影响

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CO2 hydrogenation to methanol has attracted increasing attention. Previous theoretical study suggested that Pd/In2O3 has a high activity for CO2 hydrogenation to methanol with the Pd-In2O3 interfacial sites being the active ones. However, the strong interaction between Pd and In2O3 during the catalyst preparation leads to the formation of Pd-In bimetallic species and, consequently, reduces methanol yield. "In this work, the Pd/In2O3 catalyst was prepared by firstly mixing In2O3 powder with Pd/peptide composite, which was followed by thermal treatment to remove the peptide. The resulting Pd/In2O3 catalyst is In2O3 supported highly-dispersed Pd-nanoparticles exposing predominately the (111) facets with particle sizes of 3.6 nm. Such Pd nanoparticles have a better ability to dissociatively adsorb hydrogen, thereby supplying hydrogen for the hydrogenation steps and facilitating oxygen vacancy creation. The interfacial sites are also active for enhanced CO2 adsorption and hydrogenation. All these factors contribute to a superior performance of the Pd/In2O3 catalyst for CO2 hydrogenation to methanol with a CO2 conversion >20% and methanol selectivity >70%, corresponding to a STY up to 0.89g(MeoH) h(-1) g(cat)(-1) at 300 degrees C and 5 MPa. (C) 2017 Elsevier B.V. All rights reserved.
机译:CO2氢化对甲醇引起了越来越长的关注。以前的理论研究表明,Pd / In2O3具有CO 2氢化与甲醇的高活性,PD-In2O3界面位点是活性物质。然而,Pd和In2O3之间的强相互作用在催化剂制剂期间导致形成Pd-In的二金属物质,因此降低了甲醇产率。 “在这项工作中,通过使用Pd /肽复合材料首先将In2O3粉末混合,然后热处理以除去肽来制备Pd / In2O3催化剂。所得的Pd / In2O3催化剂是In2O3的高分分散的PD纳米颗粒暴露主要是(111)粒度为3.6nm的粒度。这种Pd纳米粒子具有更好的解剖吸附氢的能力,从而为氢化步骤提供氢气并促进氧空位的产生。界面位点也是活性的,用于增强CO 2吸附和氢化。所有这些因素有助于Pd / In2O3催化剂的优异性能,用于CO 2氢化与甲醇的CO 2氢化> 20%和甲醇选择性> 70%,对应于0.89g(MeOH)H(-1)的STY g(猫)( - 1)在300摄氏度和5 MPa。(c)2017 Elsevier BV保留所有权利。

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