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The Separation of Aromatic Hydrocarbons Through a Supported Ionic Liquid Membrane

机译:通过负载离子液体膜分离芳烃

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摘要

Ionic liquids can be considered as environmentally friendly solvents because of their low vapor pressures. Room-temperature ionic liquids are used as a supported liquid membrane for separation of aromatic from aliphatic. Aromatic hydrocarbons, benzene, toluene, ethylbenzene, and p-xylene are successfully transported through the polypropylene supported ionic liquid membrane based on l-methyl-3-octyl imidazolium chloride. The separation performances, represented by the percentage extraction and separation factor, are analyzed systematically by varying the operating parameters: the contact time, membrane phase composition, and initial feed phase concentration. The mathematical models that have been used to simulate experimental data have been discussed. The scanning electron microscope combined with energy-dispersive X-ray analysis of membranes after continuous operation shows that the membrane phases are still retained within the membrane pores and only small losses of the membrane phase initially located on the surface are observed.
机译:离子液体由于蒸气压低,可以认为是环境友好型溶剂。室温离子液体用作负载型液膜,用于从芳香族化合物中分离出芳香族化合物。芳烃,苯,甲苯,乙苯和对二甲苯已成功地通过基于1-甲基-3-辛基咪唑氯化物的聚丙烯负载离子液体膜传输。通过改变操作参数:接触时间,膜相组成和初始进料相浓度,系统地分析了以百分比萃取和分离因子表示的分离性能。已经讨论了用于模拟实验数据的数学模型。扫描电子显微镜与连续运行后的膜的能量色散X射线分析相结合显示,膜相仍保留在膜孔中,仅观察到最初位于表面的膜相损失很小。

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