发明授权
US07612011B2 Ceria-based mixed-metal oxide structure, including method of making and use
有权
二氧化铈基混合金属氧化物结构,包括制造和使用的方法
- 专利标题: Ceria-based mixed-metal oxide structure, including method of making and use
- 专利标题(中): 二氧化铈基混合金属氧化物结构,包括制造和使用的方法
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申请号: US11605515申请日: 2006-11-28
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公开(公告)号: US07612011B2公开(公告)日: 2009-11-03
- 发明人: Thomas Henry Vanderspurt , Fabienne Wijzen , Xia Tang , Miriam P. Leffler , Rhonda R. Willigan , Caroline A. Newman , Rakesh Radhakrishnan , Fangxia Feng , Bruce Leon Laube , Zissis Dardas , Susanne M. Opalka , Ying She
- 申请人: Thomas Henry Vanderspurt , Fabienne Wijzen , Xia Tang , Miriam P. Leffler , Rhonda R. Willigan , Caroline A. Newman , Rakesh Radhakrishnan , Fangxia Feng , Bruce Leon Laube , Zissis Dardas , Susanne M. Opalka , Ying She
- 申请人地址: US CT South Windsor
- 专利权人: UTC Power Corporation
- 当前专利权人: UTC Power Corporation
- 当前专利权人地址: US CT South Windsor
- 代理商 Stephen A. Schneeberger
- 主分类号: C01F17/00
- IPC分类号: C01F17/00
摘要:
A homogeneous ceria-based mixed-metal oxide, useful as a catalyst support, a co-catalyst and/or a getter has a relatively large surface area per weight, typically exceeding 150 m2/g, a structure of nanocrystallites having diameters of less than 4 nm, and including pores larger than the nanocrystallites and having diameters in the range of 4 to about 9 nm. The ratio of pore volumes, VP, to skeletal structure volumes, VS, is typically less than about 2.5, and the surface area per unit volume of the oxide material is greater than 320 m2/cm3, for low internal mass transfer resistance and large effective surface area for reaction activity. The mixed metal oxide is ceria-based, includes Zr and or Hf, and is made by a novel co-precipitation process. A highly dispersed catalyst metal, typically a noble metal such as Pt, may be loaded on to the mixed metal oxide support from a catalyst metal-containing solution following a selected acid surface treatment of the oxide support. Appropriate ratioing of the Ce and other metal constituents of the oxide support contribute to it retaining in a cubic phase and enhancing catalytic performance. Rhenium is preferably further loaded on to the mixed-metal oxide support and passivated, to increase the activity of the catalyst. The metal-loaded mixed-metal oxide catalyst is applied particularly in water gas shift reactions as associated with fuel processing systems, as for fuel cells.
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