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Structure sensitivity of Cu and CuZn catalysts relevant to industrial methanol synthesis

机译:与工业甲醇合成有关的Cu和CuZn催化剂的结构敏感性

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摘要

For decades it has been debated whether the conversion of synthesis gas to methanol over copper catalysts is sensitive or insensitive to the structure of the copper surface. Here we have systematically investigated the effect of the copper particle size in the range where changes in surface structure occur, that is, below 10 nm, for catalysts with and without zinc promotor at industrially relevant conditions for methanol synthesis. Regardless of the presence or absence of a zinc promotor in the form of zinc oxide or zinc silicate, the surface-specific activity decreases significantly for copper particles smaller than 8 nm, thus revealing structure sensitivity. In view of recent theoretical studies we propose that the methanol synthesis reaction takes place at copper surface sites with a unique configuration of atoms such as step-edge sites, which smaller particles cannot accommodate.
机译:数十年来,人们一直在争论通过铜催化剂将合成气转化为甲醇是否对铜表面的结构敏感还是不敏感。在此,我们系统地研究了在工业合成条件下,对于有或没有锌促进剂的催化剂,在表面结构发生变化的范围内(即10 nm以下),铜粒径的影响。无论是否存在氧化锌或硅酸锌形式的锌促进剂,对于小于8 nm的铜颗粒,其表面比活性都会显着降低,从而显示出结构敏感性。根据最近的理论研究,我们建议甲醇合成反应在具有独特原子构型的铜表面位点发生,例如台阶边缘位点,较小的颗粒无法容纳。

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