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Effect of Preparation Method on the Structure and Catalytic Performance of CuZnO Catalyst for Low Temperature Syngas Hydrogenation in Liquid Phase

机译:制备方法对液相低温合成气氢化Cuzno催化剂的结构和催化性能

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摘要

CuZnO catalysts were prepared by different methods, characterized by applying a combination of techniques, and the effect of preparation method on the structure and the catalytic performance for syngas hydrogenation at low temperature in liquid phase was investigated. The results showed that due to the difference of the interaction between Cu and Zn, the preparation method greatly affected the crystallinity of CuZnO. The crystallinity of CuZnO had a direct relation with the CO adsorption property. The total CO adsorption amount determined the catalytic activity, the weak adsorption of CO accounted for the methanol synthesis, while the strong adsorption of CO accounted for the ethanol synthesis. CuZnO prepared by the homogeneous precipitation with the lowest crystallinity exhibited the highest total carbon conversion of 68.6% with the methanol selectivity of 84.9%, while CuZnO prepared by the sol gel with the highest crystallinity exhibited the highest ethanol selectivity of 47.6%.
机译:通过不同的方法制备CuzNo催化剂,其特征在于施加技术的组合,并研究了制备方法对液相低温下合成气氢化的结构和催化性能的作用。 结果表明,由于Cu和Zn之间的相互作用的差异,制备方法大大影响了Cuzno的结晶度。 CuznO的结晶度与CO吸附性具有直接关系。 总共有共同吸附量确定催化活性,CO的弱吸附占甲醇合成,而CO的强吸附占乙醇合成。 用最低结晶度均匀沉淀制备的CuzNo表现出最高总碳转化率为68.6%,甲醇选择性为84.9%,而通过溶胶凝胶具有最高结晶度制备的Cuzno表现出47.6%的最高乙醇选择性。

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