刘春涛, 史鹏飞, 张菊香. 焙烧温度对Au/Fe2O3选择性氧化富氢气体中CO催化性能的影响[J]. 燃料化学学报(中英文), 2004, 32(05): 632-635.
引用本文: 刘春涛, 史鹏飞, 张菊香. 焙烧温度对Au/Fe2O3选择性氧化富氢气体中CO催化性能的影响[J]. 燃料化学学报(中英文), 2004, 32(05): 632-635.
LIU Chun-tao, SHI Peng-fei, ZHANG Ju-xiang. 焙烧温度对Au/Fe2O3选择性氧化富氢气体中CO催化性能的影响[J]. Journal of Fuel Chemistry and Technology, 2004, 32(05): 632-635.
Citation: LIU Chun-tao, SHI Peng-fei, ZHANG Ju-xiang. 焙烧温度对Au/Fe2O3选择性氧化富氢气体中CO催化性能的影响[J]. Journal of Fuel Chemistry and Technology, 2004, 32(05): 632-635.

焙烧温度对Au/Fe2O3选择性氧化富氢气体中CO催化性能的影响

焙烧温度对Au/Fe2O3选择性氧化富氢气体中CO催化性能的影响

  • Abstract: The 1.5% Au/Fe2O3 catalysts prepared by an inverse co-precipitation method calcined at different temperatures was characterized by XRD, XPS, TEM, BET, and tested by CO selective oxidation in H2-rich gas. The results show that the chemical composition and activity of the catalysts are greatly changed with the variation of calcination temperature. The catalyst Au/Fe2O3 calcined at 20 ℃, highly dispersed particles with the partially oxidized gold species on the support with the mean diameter of 3 nm~5 nm, displayes the best activity and selectivity of CO selective oxidation. However, the catalytic activity of Au/Fe2O3 decreases drastically with increasing calcination temperature due to the aggregation of metallic gold and bigger particle sizes. It is found that the catalytic behavior is related to the gold particle size but the nature of the support. On the basis of characterization data, in addition to the particle size of metallic gold, the oxidation states of gold are proven to be important for CO selective oxidation in H2-rich gas.

     

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