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Preparation and Catalytic Property of MoOx with Meso-porosity
作者姓名:XinPingWANG  YingJunWANG  SongHaiCHAI  TianXiCAI
作者单位:StateKeyLaboratoryofFineChemicals,DalianUniversityofTechnology,Dalian116012
摘    要:A partially reduced molybdenum oxide (MoOx) with meso-porosity was prepared for the first time and its catalytic performance in n-heptane isomerization carried out in a fixed bed flow reactor has been studied. And the evolvement of MoOx formation has been characterized by X-ray diffraction and catalytic performance in n-heptane isomerization. The MoOx catalyst obtained from H2 reduction for 12 h, possessing a maximum pore volume at diameter ca. 4.1 nm, exhibited high activity in n-heptane isomerization. The composition of this catalyst is of the predominant MoOx phases, MoO2 phase and trace amount of metal Mo phase.

关 键 词:中央-多孔性  MoOx  n-庚烷异构化  氧化钼

Preparation and Catalytic Property of MoOx with Meso-porosity
XinPingWANG YingJunWANG SongHaiCHAI TianXiCAI.Preparation and Catalytic Property of MoOx with Meso-porosity[J].Chinese Chemical Letters,2004,15(5):611-614.
Authors:Xin Ping WANG  Ying Jun WANG  Song Hai CHAI  Tian Xi CAI State Key Laboratory of Fine Chemicals  Dalian University of Technology  Dalian
Institution:Xin Ping WANG*,Ying Jun WANG,Song Hai CHAI,Tian Xi CAI State Key Laboratory of Fine Chemicals,Dalian University of Technology,Dalian 116012
Abstract:A partially reduced molybdenum oxide (MoOx) with meso-porosity was prepared for the first time and its catalytic performance in n-heptane isomerization carried out in a fixed bed flow reactor has been studied. And the evolvement of MoOx formation has been characterized by X-ray diffraction and catalytic performance in n-heptane isomerization. The MoOx catalyst obtained from H2 reduction for 12 h, possessing a maximum pore volume at diameter ca. 4.1 nm, exhibited high activity in n-heptane isomerization. The composition of this catalyst is of the predominant MoOx phases, MoO2 phase and trace amount of metal Mo phase.
Keywords:Meso-porosity  MoOx  n-heptane isomerization  
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