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首页> 外文期刊>Catalysis Letters >Oxidative Dehydrogenation of C4 Raffinate-3 to 1,3-Butadiene in a Dual-bed Reaction System Comprising ZnFe2O4 and Co9Fe3Bi1Mo12O51 Catalysts: A Synergistic Effect of ZnFe2O4 and Co9Fe3Bi1Mo12O51 Catalysts
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Oxidative Dehydrogenation of C4 Raffinate-3 to 1,3-Butadiene in a Dual-bed Reaction System Comprising ZnFe2O4 and Co9Fe3Bi1Mo12O51 Catalysts: A Synergistic Effect of ZnFe2O4 and Co9Fe3Bi1Mo12O51 Catalysts

机译:在ZnFe2 O4 和Co9 Fe3 Bi1 Raffinate-3氧化脱氢为1,3-丁二烯> Mo12 O51 催化剂:ZnFe2 O4 和Co9 Fe3 Bi1 Mo12 O51 < / sub>催化剂

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摘要

Oxidative dehydrogenation of C4 raffinate-3 to 1,3-butadiene was carried out in a dual-bed reaction system comprising ZnFe2O4 and Co9Fe3Bi1Mo12O51 catalysts in order to investigate a synergistic effect of these two catalysts. Conversion of n-butene and yield for 1,3-butiadene obtained in a dual-bed reaction system comprising ZnFe2O4 (first-bed) and Co9Fe3Bi1Mo12O51 (second-bed) were higher than those obtained in a single-bed reaction system using either ZnFe2O4 or Co9Fe3Bi1Mo12O51. 1-Butene-TPD and 2-butene-TPD measurements revealed that ZnFe2O4 catalyst retained more selective oxygen species for the reaction with 2-butene than for the reaction with 1-butene, while Co9Fe3Bi1Mo12O51 catalyst retained more selective oxygen species for the reaction with 1-butene than for the reaction with 2-butene. The synergistic effect of ZnFe2O4 (first-bed) and Co9Fe3Bi1Mo12O51 (second-bed) catalysts in the oxidative dehydrogenation of C4 raffinate-3 was attributed to the combination of high catalytic activity of ZnFe2O4 for 2-butene and high catalytic activity of Co9Fe3Bi1Mo12O51 for 1-butene.
机译:在由ZnFe2 O4 和Co9 Fe3 Bi1组成的双床反应体系中,将C4 萃余液-3氧化脱氢为1,3-丁二烯。 Mo12 O51 催化剂,以研究这两种催化剂的协同作用。在包含ZnFe2 O4 (第一床)和Co9 Fe3 Bi1 <的双床反应系统中获得的正丁烯转化率和1,3-丁二烯的产率/ sub> Mo12 O51 (第二床)高于使用ZnFe2 O4 或Co9 Fe3 < / sub> Bi1 Mo12 O51 。 1-丁烯-TPD和2-丁烯-TPD的测量结果表明,ZnFe2 O4 催化剂与2-丁烯的反应保留的选择性氧种类多于与1-丁烯的反应,而Co9 2-丁烯反应相比,sub> Fe3 Bi1 Mo12 O12 O51 催化剂保留的选择性氧种类更多。 ZnFe2 O4 (第一床)与Co9 Fe3 Bi1 Mo12 O51 (第二床)的协同作用萃余液C4 的氧化脱氢中的催化剂归因于ZnFe2 O4 对2-丁烯的高催化活性和Co9 Fe3 < / sub> Bi1 Mo12 O51 表示1-丁烯。

著录项

  • 来源
    《Catalysis Letters》 |2008年第4期|239-245|共7页
  • 作者单位

    School of Chemical and Biological Engineering Institute of Chemical Processes Seoul National University Shinlim-dong Kwanak-ku Seoul 151-744 South Korea;

    School of Chemical and Biological Engineering Institute of Chemical Processes Seoul National University Shinlim-dong Kwanak-ku Seoul 151-744 South Korea;

    School of Chemical and Biological Engineering Institute of Chemical Processes Seoul National University Shinlim-dong Kwanak-ku Seoul 151-744 South Korea;

    SK Energy Corporation Yuseong-ku Daejeon 305-712 South Korea;

    SK Energy Corporation Yuseong-ku Daejeon 305-712 South Korea;

    SK Energy Corporation Yuseong-ku Daejeon 305-712 South Korea;

    SK Energy Corporation Yuseong-ku Daejeon 305-712 South Korea;

    SK Energy Corporation Yuseong-ku Daejeon 305-712 South Korea;

    School of Chemical and Biological Engineering Institute of Chemical Processes Seoul National University Shinlim-dong Kwanak-ku Seoul 151-744 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ferrite; Bismuth molybdate; Oxidative dehydrogenation; C4 raffinate-3; Synergistic effect;

    机译:铁氧体;钼酸铋;氧化脱氢;C4萃余液-3;协同作用;

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