期刊文献+

CATALYST TECHNOLOGY DEVELOPMENT FROM MACRO-,MICRO- DOWN TO NANO-SCALE 被引量:3

CATALYST TECHNOLOGY DEVELOPMENT FROM MACRO-,MICRO-DOWN TO NANO-SCALE
原文传递
导出
摘要 Catalyst and catalytic process technology has been an ever-growing field that involves chemical engineering, chemistry, and material science. A number of excellent review articles and books have been published on the subject. In this work, the author reviews the evolution and development of catalyst products with multi-scale methodology.The catalyst technologies are classified into three levels, macro-scale (reactor size), mini- and micro-scale (catalyst unit),and nano-scale (catalyst intrinsic structures). Innovation at different scales requires different sets of expertise, method,and knowledge. Specific examples of significant impact to practical application are used to illustrate technology development at each scale. The multi-scale analysis enables clear delineation of technology components and their relationship for a catalyst product and catalytic process. Manipulation of catalyst structures at nano-scale to increase intrinsic activity and/or selectivity is considered of large potential for future catalyst product development. Recent research results on Cu-CeO2 and Au-CeO2 composite catalysts for air pollution control and hydrogen production are used to show how novel catalytic properties can be discovered by unique combination of different but common materials at the nano-scale. Catalyst and catalytic process technology has been an ever-growing field that involves chemical engineering, chemistry, and material science. A number of excellent review articles and books have been published on the subject. In this work, the author reviews the evolution and development of catalyst products with multi-scale methodology. The catalyst technologies are classified into three levels, macro-scale (reactor size), mini-and micro-scale (catalyst unit), and nano-scale (catalyst intrinsic structures). Innovation at different scales requires different sets of expertise, method, and knowledge. Specific examples of significant impact to practical application are used to illustrate technology development at each scale. The multi-scale analysis enables clear delineation of technology components and their relationship for a catalyst product and catalytic process. Manipulation of catalyst structures at nano-scale to increase intrinsic activity and/or selectivity is considered of large potential for future catalyst product development. Recent research results on Cu-CeO2 and Au-CeO2 composite catalysts for air pollution control and hydrogen production are used to show how novel catalytic properties can be discovered by unique combination of different but common materials at the nano-scale.
作者 Wei Liu
机构地区 Coming Incorporated
出处 《China Particuology》 SCIE EI CAS CSCD 2005年第6期383-394,共12页
关键词 催化剂工艺 纳米刻度 多刻度 二氧化铈 合成物 multi-scale, nano-scale, catalyst, composite, ceria, copper, gold
  • 相关文献

参考文献3

  • 1Nan Yisup,Yong Cao,Wei-Liang Feng,Wei-Lin Dai,Kang-Nian Fan.Catalytic oxidation of methane over novel Ce–Ni–O mixed oxide catalysts prepared by oxalate gel-coprecipitation[J].Catalysis Letters (-).2005(3-4)
  • 2Dong Hyun Kim,Jung Eun Cha.A CuO-CeO2 Mixed-Oxide Catalyst for CO Clean-Up by Selective Oxidation in Hydrogen-Rich Mixtures[J].Catalysis Letters (-).2003(1-3)
  • 3K. Kammer Hansen,H. Christensen,E.M. Skou,S.V. Skaarup.Electrochemical reduction of NO and O2 on Cu/CuO[J].Journal of Applied Electrochemistry.2000(2)

同被引文献24

引证文献3

二级引证文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部