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NaCl和B2O3在修饰FeOχ催化剂中的协同作用
引用本文:熊国兴,夏新瑞,陈恒荣,郭燮贤.NaCl和B2O3在修饰FeOχ催化剂中的协同作用[J].物理化学学报,1994,10(11):971-977.
作者姓名:熊国兴  夏新瑞  陈恒荣  郭燮贤
作者单位:State Key Laboratory of Catalysis,Dalian Institute of Chemical Physics,Chinese Academy of Science,Dalian 116023
摘    要:应用连续催化反应,XPS,XRD,H2-TPR,O2-TPD和In-situ Mossbauer谱等方法表征了一系列组成不同的NaCl/B2O3/Fe2O3催化剂。结果表明NaCl与B2O3在修饰FeOx催化剂上存在明显的协同作用,B2O3调变了FeOx的还原能力,NaCl修饰了B2O3/FeOx使之具有很高的还原速度与晶格氧气化速度。催化剂的催化性能同这种协同作用密切相关。

关 键 词:NaCl/B2O3/Fe2O3  甲烷氧化偶联  协同作用  XPS  H2-TPR  O2-TPD  
收稿时间:1993-08-30
修稿时间:1994-02-28

Synergetic Effect between NaCl and B_2O_3 in Modified FeO_x Catalysts
Xiong Guoaing, Xia Xinrui, Chen Hengrong, Guo Xiexian.Synergetic Effect between NaCl and B_2O_3 in Modified FeO_x Catalysts[J].Acta Physico-Chimica Sinica,1994,10(11):971-977.
Authors:Xiong Guoaing  Xia Xinrui  Chen Hengrong  Guo Xiexian
Institution:State Key Laboratory of Catalysis,Dalian Institute of Chemical Physics,Chinese Academy of Science,Dalian 116023
Abstract:A series of NaCl/B2O3/Fe2O3 catalysts having a B/Fe atomic ratio from 0 to 0.3 and 0.25 of Na/Fe atomic ratio were prepared for the oxidative coupling of methane (OCM). It was noted that NaCl and B2O3 show a synergetic effect: NaCl/Fe2O3 produces mainly CO2, but B2O3/ Fe2O3 and B2O3/NaCl have poor activity. NaCl/B2O3/Fe2O3 catalyst has however high activity and selectivity. When the addition of B2O3 approaches 15 (at)%, the C2 yield and selectivity reach their maxima, 17% and 75% respectively. The C2H4/C2 ratio is as high as 76%. XRD, XPS, H2-TPR, O2-TPD and In-situ Mossbauer were employed to investigate the properties of the catalysts. Results show there is a synergetic effect between NaCl and B2O3 on FeOx surface. B2O3 modifies the redox ability of Fe2O3. The NaCl modified B2O3/FeOx has high reduction and lattice oxygen evaporation rates at 750℃. The high activity and selectivity of the NaCl/B2O3/FeOx catalyst are closely related with this synergetic effect.
Keywords:NaCl/B_2O_3/FeO_x catalysts  Synergetic effect  Oxidative coupling of methane  XPS  H_2-TPR and O_2-TPD
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