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Physicochemical properties of amide-AlCl3 based ionic liquid analogues and their mixtures with copper salt

机译:酰胺-AlCl3基离子液体类似物及其与铜盐混合物的理化性质

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摘要

The physicochemical properties of three different amide-AlCl3 based ionic liquid (IL) analogues and their mixtures with copper salt,such as conductivity,viscosity,density and isobutane solubility were determined over a wide range of temperatures.The effects of amide structure,amide/AlCl3 molar ratio and CuCl modification on these physicochemical properties were investigated.Results showed that the conductivity of amide-AlCl3 based IL analogues was much lower than that of traditional Et3NHCl-AlCl3 IL with same ligand/AlCl3 molar ratio due to incomplete splitting of AlG3,whereas the density and viscosity of am ide-AlCl3 based IL analogues were slightly higher.The viscosity of amide-AlCl3 based IL analogues was closely related to the amide structure,and followed the order of DMA-AlCl3 > AA-AlCl3 > NMA-AlCl3 with same amide/AlCl3 molar ratio.Meanwhile,the density of amide-AlCl3 based IL analogues ranked in the following order:AA-AlCl3 > NMA-AlCl3 > DMAAlCl3.Increasing the amide/AlCl3 molar ratio decreased the conductivity and density,while increased the viscosity.The solubility experiment indicated that the isobutane solubility in NMA-AlCl3 was highest than that in two other IL analogues.Under the modification of CuCl,the conductivity,viscosity and density of these IL analogues increased,whereas the isobutane solubility decreased.These results provide the foundation for the development of a suitable IL analogue catalyst for isobutane alkylation.
机译:在很宽的温度范围内,测定了三种不同的基于酰胺-AlCl3的离子液体(IL)类似物及其与铜盐的混合物的理化性质,例如电导率,粘度,密度和异丁烷溶解度。酰胺结构,酰胺/研究了AlCl3摩尔比和CuCl修饰对这些理化性质的影响。结果表明,由于AlG3的不完全分解,酰胺-AlCl3基IL类似物的电导率远低于具有相同配体/ AlCl3摩尔比的传统Et3NHCl-AlCl3 IL的电导率,酰胺-AlCl3基的IL类似物的密度和粘度稍高。酰胺-AlCl3基的IL类似物的粘度与酰胺结构密切相关,其顺序为DMA-AlCl3> AA-AlCl3> NMA-AlCl3酰胺/ AlCl3摩尔比相同。同时,酰胺-AlCl3基IL类似物的密度按以下顺序排列:AA-AlCl3> NMA-AlCl3> DMAAlCl3。增加酰胺/ AlCl3摩尔溶解度实验表明,异丁烷在NMA-AlCl3中的溶解度高于其他两种IL类似物。在CuCl的修饰下,这些IL类似物的电导率,粘度和密度这些结果为开发适用于异丁烷烷基化的IL类似物催化剂提供了基础。

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  • 来源
    《中国化学工程学报(英文版)》 |2019年第1期|144-149|共6页
  • 作者单位

    College of Chemical Engineering, HuaQiao University, Xiamen 361021, China;

    College of Chemical Engineering, HuaQiao University, Xiamen 361021, China;

    College of Chemical Engineering, HuaQiao University, Xiamen 361021, China;

    College of Chemical Engineering, HuaQiao University, Xiamen 361021, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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