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Selective separation of aliphatic and aromatic amines with CO2 switchable ionic liquids aqueous two-phase systems

机译:使用可转换CO2的离子液体水溶液两相系统选择性分离脂肪族和芳香族胺

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摘要

In many practical processes, separation of aliphatic amines from aromatic amines in water is imperative to obtain the desired products. In this work, a novel strategy was proposed for selective separation of aliphatic amines from aromatic amines with CO2 switchable ionic liquids (ILs) aqueous two-phase systems (ATPSs). It was shown that upon introduction of CO2 into an aqueous solution containing the IL, aliphatic amine and aromatic amine at 25 °C and atmospheric pressure, an ATPS could be formed with an IL-rich top phase and an ammonium-salt-rich bottom phase. Under these circumstances, the aromatic amine was largely partitioned in the IL-rich phase, while the aliphatic amine was transformed into the ammonium salt by the reaction with CO2. Thus the aliphatic amine was well separated from the aromatic amine in aqueous solution. The distribution ratios of aromatic amines between the two phases were found to increase with increasing hydrophobicity of ILs and aromatic amines, pK_a values of aliphatic amines and tie-line length of the systems. Moreover, aliphatic amines retained in the ammonium-salt-rich phases were regenerated by bubbling N2 under heating, while aromatic amines in the IL-rich phases were removed by simple steam distillation. The recovery efficiency for aliphatic amines was as high as 99.0%. The regenerated ILs could then be reused in the next separation process, and no decrease in the distribution ratios of aromatic amines was observed after six cycles.
机译:在许多实际方法中,必须将水中的脂肪族胺与芳香族胺分离,以获得所需的产物。在这项工作中,提出了一种新的策略,可以通过可转换CO2的离子液体(ILs)水溶液两相系统(ATPSs)从脂肪族胺中选择性分离脂肪族胺。结果表明,在25°C和大气压下将CO2引入含有IL,脂肪族胺和芳香族胺的水溶液中时,可以形成具有富含IL的上层相和富含铵盐的下层相的ATPS。 。在这种情况下,芳族胺主要在富IL相中分配,而脂族胺通过与CO2反应转化为铵盐。因此,在水溶液中脂族胺与芳族胺充分分离。发现两相之间芳族胺的分布比随着IL和芳族胺的疏水性,脂族胺的pK_a值和体系的连接线长度的增加而增加。此外,保留在富铵盐相中的脂肪胺是通过在加热下鼓泡氮气来再生的,而富IL相中的芳族胺可通过简单的蒸汽蒸馏除去。脂族胺的回收率高达99.0%。然后,再生的IL可以在下一个分离过程中重复使用,并且在六个循环后未观察到芳族胺的分布比降低。

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