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Switchable Polarity Solvent (SPS) As Draw Solutes for Forward Osmosis

机译:可切换极性溶剂(SPS)作为向前渗透的溶质

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Switchable polarity solvents (SPS), mixtures of carbon dioxide, water, and tertiary amines, are presented as viable forward osmosis (FO) draw solutes allowing a novel SPS FO process. In this study substantial osmotic strengths of SPS are measured with freezing point osmometry and were demonstrated to induce competitive fluxes at high salt concentrations on a laboratory-scale FO unit utilizing a flat sheet cellulose triacetate (CTA) membrane. Under the experimental conditions the SPS degrades the CTA membrane; however experiments with polyamide reverse osmosis (RO) membranes display stability towards SPS. Once the draw is diluted the major fraction of the switchable polarity solvent can be mechanically separated from the purified water after polar to nonpolar phase shift induced by introduction of 1 atm carbon dioxide to 1 atm of air or nitrogen with mild heating. Trace amounts of SPS can be removed from the separated water with RO in a process that avoids solution concentration polarization. The separated nonpolar phase can be regenerated to a full strength draw and recycled with the re-addition of 1 atm of carbon dioxide.
机译:可切换的极性溶剂(SPS),二氧化碳的混合物,水和叔胺的混合物作为可行的前进渗透(FO)涂抹允许新型SPS FO工艺的溶质。在该研究中,使用冷冻点渗透测量SPS的大量渗透强度,并在利用平板纤维素三乙酸(CTA)膜的实验室级FO单元上的高盐浓度下诱导竞争助液。在实验条件下,SPS降解了CTA膜;然而,用聚酰胺反渗透(RO)膜的实验显示朝向SPS的稳定性。一旦润滑稀释,通过引入1atm二氧化碳引入1atm二氧化碳至1atm的空气或氮气,可以在极性致纯净水中机械地与纯化水机械分离出可切换极性溶剂的主要部分。在避免溶液浓度极化的过程中,可以通过RO从分离的水中除去痕量的SP。可以将分离的非极相相再再生成全强度抽取并再循环加入1个ATM二氧化碳。

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