Environmental Waste Recycle Institute (EWRI), Department of Energy Science and Technology (DEST), Myongji University, Myongji-ro 116, Nam-dong, Cheoin-gu, Yongin-si, Gyeonggi-do, 17058, Republic of Korea.
Center for Technology in Water and Wastewater, School of Civil and Environmental Engineering, University of Technology Sydney (UTS), Sydney, MSW, 2007, Australia.
Chemosphere. 2021 Jan;263:128070. doi: 10.1016/j.chemosphere.2020.128070. Epub 2020 Aug 23.
A phosphonium-based ionic liquid (IL) with lower critical solution temperature (LCST) property was assessed as a reusable draw solution (DS) for forward osmosis (FO). Tetrabutylphosphonium p-toluenesulfonate ([P4444]TsO) was successfully synthesized by neutralization reaction. Characterization results reveal its ability to generate sufficient osmotic pressure (14-68 bars for 0.5-2 M DS) to create a gradient across the FO membrane. Its thermal, physico-chemical and other colligative properties are favorable for its application as an osmotic agent. The LCST behavior of [P4444]TsO was found reversible and its phase separation from water can be done above its cloud point temperature T ∼57 °C. In vitro cytotoxicity tests from LDH and MTT assay reveal that it can be safely used as DS at an effective concentration EC ∼57 mg L as its non-toxic level. Results from FO operations demonstrate that 2 M [P4444]TsO DS can effectively treat saline feed like seawater (0.6 M NaCl) with reasonable J = 1.35 ± 0.15 L mh, low J = 0.0038 ± 0.00049 mol mh, and considerably low specific solute flux (J/J ∼ 0.0028 mol L). After FO, ∼98% of [P4444]TsO was precipitated by heating the DS at 60 °C and conveniently reused with consistent FO performance. Direct contact membrane distillation (DCMD) was found effective in removing the residual 2% [P4444]TsO in the DS supernatant to finally produce high-quality effluent with concentrations way below the EC limit. Cost estimates for the entire process reveal the potential of FO combined with thermo-cyclic [P4444]TsO regeneration with DCMD for desalination application.
一种具有较低临界溶解温度(LCST)特性的磷鎓基离子液体(IL)被评估为正向渗透(FO)的可重复使用汲取液(DS)。通过中和反应成功合成了四丁基磷对甲苯磺酸盐([P4444]TsO)。表征结果表明,它能够产生足够的渗透压(0.5-2M DS 时为 14-68 巴),在 FO 膜两侧形成浓度梯度。其热、物理化学和其他依数性质有利于其作为渗透剂的应用。发现[P4444]TsO 的 LCST 行为是可逆的,其与水的相分离可以在其浊点温度 T∼57°C 以上进行。LDH 和 MTT 测定的体外细胞毒性试验表明,它可以在有效浓度 EC∼57mg L 下安全用作 DS,其无毒水平为 57mg L。FO 操作结果表明,2M [P4444]TsO DS 可以有效地处理像海水(0.6M NaCl)这样的盐水进料,通量 J=1.35±0.15 L mh,低通量 J=0.0038±0.00049 mol mh,并且具有相当低的比溶质通量(J/J∼0.0028 mol L)。FO 后,将 DS 在 60°C 下加热,约 98%的[P4444]TsO 沉淀出来,方便地重复使用,且 FO 性能一致。发现直接接触膜蒸馏(DCMD)可以有效地去除 DS 上清液中残留的 2%[P4444]TsO,最终产生浓度远低于 EC 限值的高质量出水。整个过程的成本估算表明,FO 与热循环[P4444]TsO 再生与 DCMD 相结合具有脱盐应用的潜力。