Zhang Panpan, Zhao Fei, Shi Wen, Lu Hengyi, Zhou Xingyi, Guo Youhong, Yu Guihua
Materials Science and Engineering Program and Walker Department of Mechanical Engineering, The University of Texas at Austin, Austin, TX, 78712, USA.
Adv Mater. 2022 Mar;34(12):e2110548. doi: 10.1002/adma.202110548. Epub 2022 Feb 10.
Water-soluble volatile organic compounds (VOCs) are widely spread in the natural hydrological cycle, contaminating potential water sources, and leading to unexpected ecological hazards. However, water-purification technologies toward VOCs are energy-intensive and present unsatisfactory purity of the obtained water. The fundamental challenge is to differentiate the motion of water and VOC molecules by separators. Here, the concept of a super water-extracting gel (SWEG) for VOC-management and water purification via direct solar distillation is proposed. The strong hydrogen bonding effect in the hypercrosslinked hydrophilic polymeric networks enables the SWEG to extract water from VOC-containing water, which rejects the VOC solutes while allowing water through for interfacial evaporation. The obtained SWEG achieves a VOCs removal ratio up to 99.99% by solar distillation under 1 sun. A solar water-purification system is also demonstrated to produce clean water, which surpasses other competitive technologies based on electricity.
水溶性挥发性有机化合物(VOCs)广泛存在于自然水文循环中,污染潜在水源,并导致意想不到的生态危害。然而,针对VOCs的水净化技术能耗高,且所得水的纯度不尽人意。根本挑战在于通过分离器区分水和VOC分子的运动。在此,提出了一种用于通过直接太阳能蒸馏进行VOC管理和水净化的超吸水凝胶(SWEG)概念。超交联亲水性聚合物网络中的强氢键效应使SWEG能够从含VOC的水中提取水,该凝胶排斥VOC溶质,同时允许水通过以进行界面蒸发。所制备的SWEG在1个太阳光照下通过太阳能蒸馏实现了高达99.99%的VOC去除率。还展示了一种太阳能水净化系统可生产清洁水,该系统优于其他基于电力的竞争技术。