A series of Co/CeO2 catalysts with different morphology of CeO2 support were prepared. It was shown that part of Co species could be introduced into the CeO2 lattice and thus a new Co-O bonding would be created for the ceria-supported Co catalysts. The morphology of CeO2 was found to affect the reduction of both the cobalt oxides and CeO2. A larger amount of CeO2 was reduced in the case of Co supported on polyhedral CeO2. Catalytic tests showed that the higher concentration of Ce3+ and the lower binding energy of Co species present in the catalyst are key factors that led to higher ammonia synthesis rates for the Co/CeO2 catalysts.
机构:
School of Chemical Engineering,Inner Mongolia University of TechnologySchool of Chemical Engineering,Inner Mongolia University of Technology
王红
张丽娟
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Tianjin Key Laboratory of Applied Catalysis Science and Engineering,Department of Catalysis Science and Technology,School of Chemical Engineering,Tianjin UniversitySchool of Chemical Engineering,Inner Mongolia University of Technology
张丽娟
李淼
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机构:
School of Chemical Engineering,Inner Mongolia University of TechnologySchool of Chemical Engineering,Inner Mongolia University of Technology
李淼
刘源
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机构:
Tianjin Key Laboratory of Applied Catalysis Science and Engineering,Department of Catalysis Science and Technology,School of Chemical Engineering,Tianjin UniversitySchool of Chemical Engineering,Inner Mongolia University of Technology
刘源
白雪
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School of Chemical Engineering,Inner Mongolia University of TechnologySchool of Chemical Engineering,Inner Mongolia University of Technology