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Kinetic study of high temperature water gas shift reaction

机译:高温水煤气变换反应的动力学研究

摘要

The water gas shift reaction has been run at high temperature in a packed bed reactor with a nickel catalyst. The outlet was analyzed by gas chromatography. Gas phase reaction and diffusion limitations appeared to be significant problems for a kinetic study. Rate expressions for different mechanisms have been given in order to find a coherent pathway for the water gas shift reaction over nickel. From the reaction orders of hydrogen and carbon monoxide it was concluded that the redox mechanism was valid at high temperature over nickel with the carbon dioxide formation as the rate determining step. Moreover effect of the diffusion was highlighted by the comparison of the apparent activation energy under chemical and diffusion control. The addition of cobalt in the catalyst showed a better selectivity for the water gas shift reaction.
机译:水煤气变换反应已经在带有镍催化剂的填充床反应器中在高温下进行。通过气相色谱分析出口。气相反应和扩散限制似乎是动力学研究的重大问题。为了找到镍上水煤气变换反应的连贯途径,已经给出了不同机理的速率表达式。从氢和一氧化碳的反应顺序可以得出结论,氧化还原机理在高温下对镍有效,而二氧化碳的形成是速率确定步骤。此外,通过在化学和扩散控制下的表观活化能的比较突出了扩散的效果。在催化剂中添加钴对水煤气变换反应表现出更好的选择性。

著录项

  • 作者

    Vannier Damien;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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