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Quantification of Zinc Atoms in a Surface Alloy on Copper in an Industrial-Type Methanol Synthesis Catalyst

机译:工业型甲醇合成催化剂中铜表面合金中锌原子的定量

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Methanol has recently attracted renewed interest because of its potential importance as a solar fuel. Methanol is also an important bulk chemical that is most efficiently formed over the industrial Cu/ZnO/Al2O3 catalyst. The identity of the active site and, in particular, the role of ZnO as a promoter for this type of catalyst is still under intense debate, Structural changes that are strongly dependent on the pretreatment method have now been observed for an industrial-type methanol synthesis catalyst. A combination of chemisorption, reaction, and spectroscopic techniques provides a consistent picture of surface alloying between copper and zinc. This analysis enables a reinterpretation of the methods that have been used for the determination of the Cu surface area and provides an opportunity to independently quantify the specific Cu and Zn areas. This method may also be applied to other systems where metal-support interactions are important, and this work generally addresses the role of the carrier and the nature of the interactions between carrier and metal in heterogeneous catalysts.
机译:甲醇由于其作为太阳能的潜在重要性,最近引起了新的兴趣。甲醇还是一种重要的本体化学物质,可以在工业Cu / ZnO / Al2O3催化剂上最有效地形成。活性位点的身份,尤其是ZnO作为这类催化剂的促进剂的作用仍在激烈争论中。对于工业型甲醇合成,现已观察到强烈依赖于预处理方法的结构变化催化剂。化学吸附,反应和光谱技术的结合提供了铜和锌之间表面合金化的一致图像。这种分析可以重新解释用于确定Cu表面积的方法,并为独立定量特定Cu和Zn面积提供了机会。该方法也可以应用于金属与载体相互作用很重要的其他系统,这项工作通常解决了载体的作用以及非均相催化剂中载体与金属之间相互作用的性质。

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