Department of Inorganic, Analytical Chemistry and Electrochemistry, Faculty of Chemistry, Silesian University of Technology, B. Krzywoustego 6, 44-100 Gliwice, Poland.
Bioeconomy and Eco-Innovation Centre, Łukasiewicz Research Network-The Institute for Sustainable Technologies, Pułaskiego 6/10, 26-600 Radom, Poland.
Int J Mol Sci. 2021 Dec 1;22(23):13014. doi: 10.3390/ijms222313014.
Due to the extensive range of ionic liquids (ILs) used in industry, an efficient recovery method is needed. In this study, the effectiveness of a simultaneous concentration and recovery method was investigated for 1-ethyl-3-methylimidazolium chloride ([Emim]Cl), an IL that was recovered using electrodialysis (ED). The optimal operational parameters for electrodialytic recovery were determined empirically. The variables that were investigated included the concentration of IL, applied voltage, linear flow velocity and the diluate-to-concentrate volume ratio. The recovery of [Emim]Cl, the concentration degree, the [Emim]Cl flux across membranes, the current efficiency, as well as the energy consumption were determined. The results of the experiments confirmed that [Emim]Cl concentration and recovery can be achieved using ED. The highest ED efficiency was obtained when a 2 V electric potential per one membrane pair was applied, using a 2 cm/s linear flow velocity, and by adjusting to 0.2 M IL in the feed solution. By using ED, a 2.35-fold concentration of [Emim]Cl with a recovery of 90.4% could be achieved when the diluate-to-concentrate volume ratio was 2. On the other hand, a 3.35-fold concentration of [Emim]Cl with a recovery of 81.7% could be obtained when the diluate-to-concentrate volume ratio was increased to 5.
由于离子液体 (ILs) 在工业中的广泛应用,需要一种有效的回收方法。本研究考察了一种同时浓缩和回收 1-乙基-3-甲基咪唑氯化物 ([Emim]Cl) 的方法的有效性,[Emim]Cl 是用电渗析 (ED) 回收的。通过经验确定了电渗析回收的最佳操作参数。研究的变量包括 IL 浓度、施加电压、线性流速和稀释液与浓缩液体积比。测定了 [Emim]Cl 的回收、浓缩程度、[Emim]Cl 跨膜通量、电流效率以及能量消耗。实验结果证实可以通过 ED 实现 [Emim]Cl 的浓缩和回收。当每对膜施加 2 V 电势、线性流速为 2 cm/s 并将进料溶液中的 IL 调节至 0.2 M 时,ED 效率最高。通过 ED,当稀释液与浓缩液体积比为 2 时,可以实现 [Emim]Cl 的 2.35 倍浓缩和 90.4%的回收率;当稀释液与浓缩液体积比增加到 5 时,可以实现 [Emim]Cl 的 3.35 倍浓缩和 81.7%的回收率。