Ju Changha, Park Chanhyuk, Kim Taehyung, Kang Shinwoo, Kang Hyo
Department of Chemical Engineering, Dong-A University 37 Nakdong-Daero 550beon-gil, Saha-gu Busan 49315 Republic of Korea
RSC Adv. 2019 Sep 18;9(51):29493-29501. doi: 10.1039/c9ra04020j.
We synthesized poly(4-vinylbenzyltributylammonium hexanesulfonate) (P[VBTBA][HS]), a poly(ionic liquid) that shows lower critical solution temperature (LCST), the anion exchange reaction of poly(4-vinylbenzyltributylammonium chloride) (P[VBTBA][Cl]) with sodium hexanesulfonate in order to investigate its suitability as a draw solute for the forward osmosis (FO) process. P[VBTBA][Cl] was obtained by the free radical polymerization of (4-vinylbenzyltributylammonium chloride [VBTBA][Cl]) monomer acquired by the Menshutkin reaction. The FO performance and recovery properties of the synthesized materials were systematically investigated. For example, the LCST of P[VBTBA][HS] was observed to be ∼17 °C at 20 wt%, while no LCST was observed for [VBTBA][Cl] monomer and P[VBTBA][Cl] polymer before the anion exchange reaction, indicating that P[VBTBA][HS] can be recovered from the aqueous solution by heating it to above its LCST. Moreover, in an active layer facing the feed solution (AL-FS) system containing 20 wt% aqueous P[VBTBA][HS] solution at 15 °C, the water flux and reverse solute flux of P[VBTBA][HS] were found to be ∼5.85 L m h and 1.13 g m h, respectively. Therefore, we studied the feasibility of using the poly(ionic liquid), a homopolymer having LCST characteristics, as a draw solute in the FO process.
我们合成了聚(4-乙烯基苄基三丁基铵己磺酸盐)(P[VBTBA][HS]),一种具有较低临界溶液温度(LCST)的聚离子液体,通过聚(4-乙烯基苄基三丁基氯化铵)(P[VBTBA][Cl])与己磺酸钠的阴离子交换反应来研究其作为正向渗透(FO)过程中汲取溶质的适用性。P[VBTBA][Cl]是通过门舒特金反应得到的(4-乙烯基苄基三丁基氯化铵[VBTBA][Cl])单体的自由基聚合反应制备的。系统地研究了合成材料的FO性能和回收特性。例如,观察到20 wt%的P[VBTBA][HS]在约17 °C时具有LCST,而在阴离子交换反应之前,[VBTBA][Cl]单体和P[VBTBA][Cl]聚合物未观察到LCST,这表明通过将其加热至高于其LCST,P[VBTBA][HS]可从水溶液中回收。此外,在15 °C下含有20 wt% P[VBTBA][HS]水溶液的面向进料溶液的活性层(AL-FS)系统中,发现P[VBTBA][HS]的水通量和反向溶质通量分别约为5.85 L m h和1.13 g m h。因此,我们研究了使用具有LCST特性的聚离子液体均聚物作为FO过程中汲取溶质的可行性。