BK-21 Four Graduate Program, Department of Chemical Engineering, Dong-A University, Busan 49315, Republic of Korea.
Molecules. 2022 Dec 13;27(24):8869. doi: 10.3390/molecules27248869.
We synthesized various phosphonium- and ammonium-based ionic liquids (ILs), using benzenesulfonate (BS) and 4-methylbenzenesulfonate (MBS) to establish the criteria for designing an ideal draw solute in a forward osmosis (FO) system. Additionally, the effects of monocationic, dicationic, and anionic species on FO performance were studied. Monocationic compounds ([P][BS], [P][MBS], [N][BS], and [N][MBS]) were obtained in one step via anion exchange. Dicationic compounds ([(P)][BS], [(P)][MBS], [(N)][BS], and [(N)][MBS]) were prepared in two steps via a Menshutkin SN reaction and anion exchange. We also investigated the suitability of ILs as draw solutes for FO systems. The aqueous [P][BS], [N][BS], [N][MBS], and [(N)][BS] solutions did not exhibit thermoresponsive behavior. However, 20 wt% [P][MBS], [(P)][BS], [(P)][MBS], and [(N)][MBS] had critical temperatures of approximately 43, 33, 22, and 60 °C, respectively, enabling their recovery using temperature. An increase in IL hydrophobicity and bulkiness reduces its miscibility with water, demonstrating that it can be used to tune its thermoresponsive properties. Moreover, the FO performance of 20 wt% aqueous [(P)][MBS] solution was tested for water flux and found to be approximately 10.58 LMH with the active layer facing the draw solution mode and 9.40 LMH with the active layer facing the feed solution.
我们合成了各种基于鏻盐和铵盐的离子液体(ILs),使用苯磺酸盐(BS)和 4-甲基苯磺酸盐(MBS)来建立设计正向渗透(FO)系统中理想汲取剂的标准。此外,还研究了单阳离子、双阳离子和阴离子物种对 FO 性能的影响。单阳离子化合物 ([P][BS]、[P][MBS]、[N][BS] 和 [N][MBS]) 通过阴离子交换一步法得到。双阳离子化合物 ([(P)][BS]、[(P)][MBS]、[(N)][BS] 和 [(N)][MBS]) 通过 Menshutkin SN 反应和阴离子交换两步法得到。我们还研究了 ILs 作为 FO 系统汲取剂的适用性。水溶液中的 [P][BS]、[N][BS]、[N][MBS] 和 [(N)][BS] 溶液没有表现出热响应行为。然而,20wt%的 [P][MBS]、[(P)][BS]、[(P)][MBS] 和 [(N)][MBS] 的临界温度分别约为 43、33、22 和 60°C,可以通过温度回收。IL 疏水性和体积的增加降低了其与水的混溶性,表明可以通过调整其热响应特性来实现。此外,还测试了 20wt%的水溶液中 [(P)][MBS] 的 FO 性能,以水通量为指标,在活性层面对汲取溶液的模式下,通量约为 10.58LMH,在活性层面对料液的模式下,通量约为 9.40LMH。