用于大气水蒸气收集的热响应性水凝胶

P. Cherukupally, Boyuan Hao, Zhongshen Zhang, Daryl R. Williams
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引用次数: 1

摘要

目前,淡水短缺是一个全球性挑战,威胁着全世界40亿人。为了满足人们日益增长的淡水需求,从空气中获取大气中的水可能是一种替代方式。本工作开发了共聚物P(NIPAM-co-15%BzDMA)水凝胶来收集大气水蒸气。研究了两种提高其吸附性能的方法:将合成温度降低到LCST以下和与最适量的季铵盐(QAS)共聚。我们发现这两种方法可以有效地提高水蒸气的吸收。在20°C下将NIPAM与15%QAS共聚后,与在60°C下制备的纯PNIPAM(194 mg/g)相比,在20°C下的水蒸气吸收量可增加近20%,达到232 mg/g,P/P0为0.75。这种显著的增加可归因于更均匀的多孔结构和QAS的吸湿性。在PESPU海绵骨架上涂覆PNIPAM后,PESPU-PNIPAM_60在20°C和P/P0为0.75的条件下可以吸附180mg/g的气态水,并且改性的海绵继承了PNIPAM的可切换润湿性。本研究提供了用水凝胶从空气中收集水蒸气的聚合物加工参数及其特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermoresponsive hydrogels for atmospheric water vapor harvesting
Currently, freshwater scarcity is a global challenge that is threatening four billion people across the world. To satisfy people’s increasing freshwater demand, harvesting atmospheric water from the air could be an alternative way. This work developed copolymer P(NIPAM-co-15%BzDMA) hydrogels to harvest atmospheric water vapor. Two methods were investigated to improve its adsorption performance: decreasing synthesis temperature below the LCST and copolymerizing with the optimum amount of quaternary ammonium salt (QAS). We found these two methods can effectively improve the water vapor uptake. After copolymerizing NIPAM with 15% QAS at 20°C, the water vapor uptake could be increased by almost 20% to 232 mg/g at 20°C and P/P0 of 0.75 compared with pure PNIPAM prepared at 60°C (194 mg/g). The significant increase can be attributed to the more uniform porous structure and the hygroscopicity of QAS. After coating PNIPAM onto the PESPU sponge skeleton, the PESPU-PNIPAM_60 could adsorb 180 mg/g gas water at 20°C and P/P0 of 0.75, and the modified sponges inherit the switchable wettability from PNIPAM. This research provides polymer processing parameters and their character for harvesting water vapor from the air with hydrogels.
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