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Liquid phase isobutane/2-butene alkylation promoted by hydrogen chloride using lewis acidic ionic liquids

机译:使用氯化氢使用Lewis酸性离子液体促进的液相异丁烷/ 2-丁烯烷基化

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摘要

In isobutane/2-butene alkylation, chloroaluminate ionic liquid catalysts (CAIL) deactivate fast with time on stream with respect to activity and selectivity. Hence, the effect of anhydrous hydrogen chloride (HCl), which shows co-catalytic behavior, was studied in a batch reactor and its effect on both parameters was investigated. The co-catalyst leads to an increased reaction rate and improves the yield of trimethylpentanes, the primarily desired high-octane compounds of alkylation. Moreover, already deactivated CAIL catalysts are reactivated by gaseous HCl. In addition saturation of the ionic liquid with HCl prior to the reaction effectively suppresses the deactivation of the CAIL catalyst. Thus, the solubility of hydrochloric acid is reported for both the CAIL (IL: [BMIM]Cl/AlCl3, x AlCl 3=0.64) and organic phase to gain a deeper understanding of the reaction system. Finally conjunct polymers dissolved in the ionic liquid were extracted to study their influence on deactivation.
机译:在异丁烷/ 2-丁烯烷基化中,氯铝酸氢离子液体催化剂(Cail)在流动相对于活性和选择性时快速停用。 因此,在分批反应器中研究了无水氯化氢(HCl)的氯化氢(HCl)的作用,并研究了批量反应器中的其对两个参数的影响。 助催化剂导致反应速率提高,提高三甲基戊烷的产率,主要是所需的烷基化的高辛烷化合物。 此外,已经失活的Cail催化剂通过气态HCl重新激活。 另外,在反应之前,用HCl与HCl的离子液体的饱和有效抑制了Cail催化剂的去激活。 因此,据报道盐酸的溶解度(IL:[Bmim] ClCl3,X AlCl 3 = 0.64)和有机相,以获得对反应体系的更深层次的理解。 最后萃取溶解在离子液体中的结合聚合物,以研究它们对失活的影响。

著录项

  • 来源
    《ChemPlusChem》 |2013年第6期|共8页
  • 作者单位

    Department of Chemical Engineering Faculty of Engineering Science University of Bayreuth;

    Department of Chemical Engineering Faculty of Engineering Science University of Bayreuth;

    Department of Chemical Engineering Faculty of Engineering Science University of Bayreuth;

    Department of Chemical Engineering Faculty of Engineering Science University of Bayreuth;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

    alkylation; deactivation; hydrogen chloride; ionic liquids; solubility;

    机译:烷基化;取消激活;氯化氢;离子液体;溶解度;

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