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Mo-V-O系丙烯酸催化剂表面结构研究
引用本文:曾贤君,孙彦民,李晓云,苗静,隋云乐,于海斌,李世鹏,周鹏,杨文建.Mo-V-O系丙烯酸催化剂表面结构研究[J].工业催化,2013,21(12):40-43.
作者姓名:曾贤君  孙彦民  李晓云  苗静  隋云乐  于海斌  李世鹏  周鹏  杨文建
作者单位:中海油天津化工研究设计院,天津 300131
摘    要:通过对Mo-V-W-Cu-Sb-O复合氧化物成型处理,制备系列催化剂,并对催化剂表面元素及结构进行研究。结果表明,催化剂经过(370~400) ℃焙烧处理,能得到较纯的(V0.07Mo0.93)5O14晶相。在催化剂成型过程中,表面元素价态保持不变,但元素组成发生改变,其中V元素的改变是影响催化剂性能最重要的因素。

关 键 词:催化化学  复合氧化物  表面元素  表面结构  

Research on the surface structure of Mo-V-O acrylic acid catalyst
ZENG Xianjun,SUN Yanmin,LI Xiaoyun,MIAO Jing,SUI Yunle,YU Haibin,LI Shipeng,ZHOU Peng,YANG Wenjian.Research on the surface structure of Mo-V-O acrylic acid catalyst[J].Industrial Catalysis,2013,21(12):40-43.
Authors:ZENG Xianjun  SUN Yanmin  LI Xiaoyun  MIAO Jing  SUI Yunle  YU Haibin  LI Shipeng  ZHOU Peng  YANG Wenjian
Affiliation:CNOOC Tianjin Chemical Research & Design Institute, Tianjin 300131, China
Abstract:A series of catalysts were prepared by forming processing of Mo-V-W-Cu-Sb-O composite oxide. The changes of elements and structure on the catalyst surface were investigated. The results showed that pure (V0.07TMo0.93)5O14 crystal phase was attained by calcining the catalyst at (370 -400) ℃ ;the valence of the surface elements remained unchanged during the process of the catalyst forming, but the elemental composition was changed, and the change of vanadium was the most important factor of affecting the catalyst performance.
Keywords:catalytic chemistry  composite oxide  surface element  surface structure
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