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Hydrogel-polyurethane interpenetrating network material as an advanced draw agent for forward osmosis process

机译:水凝胶-聚氨酯互穿网络材料作为正向渗透过程的高级牵引剂

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Water desalination and purification are critical to address the global issue of the shortage of clean water. Forward osmosis (FO) desalination is an emerging low-cost technology for clean water production from saline water. The lack of a suitable draw agent is one of hurdle for the commercialization of FO desalination technology. Recently, the thermoresponsive hydrogel has been demonstrated to be a potential draw agent for the FO process. However, the commonly used hydrogel powder shows a much lower flux than other kind of draw agent such as inorganic salts. In this work, a hydrogel-polyurethane interpenetrating network (HPIPN) with monolith form was prepared by controlling the radical polymerization of the monomers (N-isopropylacrylamide and sodium acrylate) in the macropores (similar to 400 mu m) of commercial polyurethane foam (PUF). These HPIPN composites show a flux as high as 17.9 LMH, which is nearly 8 times than that of hydrogel powders (2.2 LMH). The high flux is attributed to the 3-D continuous hydrogel-polyurethane interpenetrating network, which can effectively enhance the water transport inside the monolith. (C) 2016 Elsevier Ltd. All rights reserved.
机译:水的脱盐和净化对于解决全球清洁水短缺的问题至关重要。正渗透(FO)海水淡化是一种新兴的低成本技术,用于从盐水中生产清洁水。缺少合适的牵引剂是FO脱盐技术商业化的障碍之一。最近,热响应性水凝胶已被证明是FO工艺的潜在吸引剂。但是,通常使用的水凝胶粉末显示出比其他种类的拉伸剂例如无机盐低得多的通量。在这项工作中,通过控制商用聚氨酯泡沫(PUF)的大孔(类似于400μm)中单体(N-异丙基丙烯酰胺和丙烯酸钠)的自由基聚合反应,制备了具有整体结构的水凝胶-聚氨酯互穿网络(HPIPN) )。这些HPIPN复合材料的通量高达17.9 LMH,几乎是水凝胶粉末(2.2 LMH)的8倍。高通量归因于3-D连续水凝胶-聚氨酯互穿网络,它可以有效地增强整料内部的水传输。 (C)2016 Elsevier Ltd.保留所有权利。

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