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制备高比表面负载型催化剂的一种新方法
引用本文:赵璧英,徐献平,马华容,高金明,王荣秋,孙东虹,唐有祺. 制备高比表面负载型催化剂的一种新方法[J]. 物理化学学报, 1993, 9(1): 8-12. DOI: 10.3866/PKU.WHXB19930103
作者姓名:赵璧英  徐献平  马华容  高金明  王荣秋  孙东虹  唐有祺
作者单位:Institute of Physical Chemistry, Peking University, Beijing 100871
摘    要:

关 键 词:增大比表面  负载型催化剂  ZrO2载体  TiO2载体  单层分散  
收稿时间:1992-09-12
修稿时间:1992-10-15

A New Way to Prepare Some Supported Catalysts With Highly Specific Surfaces
Zhao Bi-Ying,Xu Xian-Ping,Ma Hua-Rong,Gao Jin-Ming,Wang Rong-Qiu,Sun Dong-Hong,Tang You-Qi. A New Way to Prepare Some Supported Catalysts With Highly Specific Surfaces[J]. Acta Physico-Chimica Sinica, 1993, 9(1): 8-12. DOI: 10.3866/PKU.WHXB19930103
Authors:Zhao Bi-Ying  Xu Xian-Ping  Ma Hua-Rong  Gao Jin-Ming  Wang Rong-Qiu  Sun Dong-Hong  Tang You-Qi
Affiliation:Institute of Physical Chemistry, Peking University, Beijing 100871
Abstract:In this paper, a new way to increase the specific surface areas of supported catalysts has been suggested. The results for MoO_3/ZrO_2, WO_3/ZrO_2, CuO/ZrO_2, SO_4~(2-)/ZrO_2, NiO/ZrO_2, Fe_2O_3/ZrO_2, Fe_2(SO_4)_3/ZrO_2, MoO_3/TiO_2, WO_3/TiO_2, SO_4~(2-)/TiO_2, NiSO_4/TiO_2, NiO/TiO_2, V_2O_5/TiO_2 etc. systems show that the specific surface areas of the samples, prepared by impregnating some hydroxides then calcinating at high temperature, are much larger than those of the samples prepared with a traditional method——impregnating their oxides calcinated at the same temperature. Using this way, the specific surface areas of some supported catalysts can increase by several times. The surface areas of some supports such as zirconia and titania are not large enough, and they are easy to sinter at high temperature. In these cases, the advantage of of this preparation method is fully displayed, and the specific surface areas of the resulting zirconia-or titania-supported catalysts can compare favourably with those of the catalysts prepared from some classical supports (such ar γ-Al_2O_3, SiO_2).In addition, it has been proved by means of XPS, XRD, LRS, and DTA that as an active component disperse on a support as a monolayer and its content comes up to its monolayer dispersion capacity, the specific surface area of the obtained catalyst would be the largest. We suggest a mechanism that an active component covered on a support can not only segregate its particles, but also hinder the surface diffusion of support, and as a result, its crystalline growth, an accompanying phase transformation and inter-crystalline sintering are all retarded.
Keywords:Increase in specific surface area  Supported catalyst  Monolyer dispersion  2',')  "  >ZrO2  2',')  "  >TiO2
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