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Enhanced Forward Osmosis Desalination with a HybridIonic Liquid/Hydrogel Thermoresponsive Draw Agent System

机译:混合动力增强的正渗透淡化离子液体/水凝胶热敏性拉伸剂系统

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摘要

Forward osmosis (FO) has emerged as a new technology for desalination and exhibits potentials for applications where reverse osmosis is incapable or uneconomical for treating streams with high salinity or fouling propensity. However, most of current draw agents in FO are salts and difficult to be recycled cost- and energy-effectively. In this work, we demonstrate a new and facile approach to efficiently recover water from the FO process with enhanced water purity by using a binary ion liquid/hydrogel system. The hybrid ion liquid/hydrogel draw solution system demonstrated in this work synergistically leverages the thermoresponsive properties of both the ionic liquid (IL) and hydrogel to improve the overall FO performance. Our findings corroborate that the hydrogel mitigates the water flux decline of the IL as the draw agent and provide a ready route to contiguously and effectively regenerate water from the FO process. Such a route allows for an efficient recovery of water from the draw solute/water mixture with enhanced water purity, compared with conventional thermal treating of lowercritical solution temperature IL draw solute/water. Furthermore, hydrogelscan be used in a continuous and readily recyclable process to recoverwater without heating the entire draw solute/water mixture. Our designprinciples open the door to use low-grade/waste heat or solar energyto regenerate draw agents and potentially reduce energy in the FOprocess considerably.
机译:正向渗透(FO)已成为一种新的海水淡化技术,并且在处理高盐度或结垢倾向的流无法或不经济的情况下具有潜在的应用潜力。但是,目前FO中的大多数牵引剂是盐,很难以成本和能源效益的方式进行回收。在这项工作中,我们展示了一种新的简便方法,可通过使用二元离子液体/水凝胶系统从FO工艺中有效地回收水,并提高水的纯度。在这项工作中展示的混合离子液体/水凝胶汲取溶液系统可协同利用离子液体(IL)和水凝胶的热响应特性来改善整体FO性能。我们的发现证实了水凝胶减轻了IL作为牵引剂的水通量下降,并提供了一条从FO工艺连续有效地再生水的现成途径。与传统的热处理工艺相比,这种方法可以从抽提的溶质/水混合物中有效地回收水,并提高水的纯度。临界溶液温度IL吸收溶质/水。此外,水凝胶可用于连续且易于回收的过程中进行回收无需加热整个抽取的溶质/水混合物。我们的设计原则为使用低品位/废热或太阳能打开了大门再生牵引剂并可能减少FO中的能量处理相当多。

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