物理化学学报 >> 1988, Vol. 4 >> Issue (05): 478-482.doi: 10.3866/PKU.WHXB19880508

研究论文 上一篇    下一篇

CuO还原过程中载体和添加物Pd的作用研究

魏昭彬; 陈怡萱; 李文钊   

  1. 中科院大连化学物理研究所
  • 收稿日期:1987-02-23 修回日期:1987-08-10 发布日期:1988-10-15
  • 通讯作者: 魏昭彬

THE EFFECT OF SUPPORT AND Pd ON REDUCTION OF CuO

Wei Zhaobin*; Chen Yixuan; Li Wenzhao   

  1. Dal ian Institute of Chemical Physics; Acaiemia Sinica
  • Received:1987-02-23 Revised:1987-08-10 Published:1988-10-15
  • Contact: Wei Zhaobin

摘要: 本文用程序升温还原和电导平行测定方法考察了载体SnO_2、ZnO和Al_2O_3及金属Pd对CuO还原行为的影响。结果表明, SnO_2、ZnO等载体的电子性质对担载的CuO的还原有重要作用, 在H_2气氛下具有n-型半导性的载体可作为电子中继物, 可有效地促进CuO的还原。

Abstract: The reduction behavior of CuO supported on SnO_2, ZnO and Al_2O_3 has been examined, the effect of support and Pd investigated as well. The catalyst samples were studied by TPR and electric conductivity measurement simultaneously.
It was observed that CuO supported on n-type semiconductor oxides SnO_2 and ZnO was more easily reduced than bulk CuO and that on Al_2O_3. The TPR peak of CuO was shifted from 285 ℃ to 210 ℃ and 240 ℃ when supported on SnO_2 and ZnO respectively. By introducing a small amount of Pd (0.4-0.5 Wt.%) onto the catalyst, the reduction peak was further shifted to below 100 ℃ in the case of SnO_2 and by 50-60 ℃ in the case of ZnO.
The conductivity-temperature curve of SnO_2 and ZnO in Ar-H_2 (5%) atmosphere revealed that the n-defects were promptly generated around 200-250 ℃, it was the same temperature region at which the reduction of CuO on these supoorts occurred.
In the presence of Pd additve the onset of conductivity increasing would be observed on SnO_2 and ZnO by exposure to reducing atmosphere even at room temperature, while for CuO/SnO_2 and CuO/ZnO the abrupt change of conductivity occurred around 100-150 ℃. Thus it was reasonably explained that Pd, being an activator for H_2 molecules, promoted the defect generation in semicoductor and in turn the reduction of supported CuO was further enhanced. Noticeably in the case of the occurrence of CuO reduction the electric conductivity change of semiconductor was moderated, it seemed that the negative charge was transferred from support to CuO.
As for the catalyst with Al_2O_3 as support, in accordance with that Al_2O_3 was an insulator, no charge transfer property and no promoting effect on CuO reduction was observed at all.
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