Chu Aqiang, Yang Meng, Yang Hongda, Shi Xueqi, Chen Juanli, Fang Jing, Wang Zhiying, Li Hao
National-Local Joint Engineering Laboratory for Energy Conservation in Chemical Process Integration and Resources Utilization, School of Chemical Engineering and Technology, Hebei University of Technology, Tianjin 300401, China.
ACS Appl Mater Interfaces. 2022 Aug 10;14(31):36116-36131. doi: 10.1021/acsami.2c08561. Epub 2022 Aug 1.
Interfacial evaporation using light-absorbing hydrogels offers efficient solar evaporation performance under natural sunlight, ensuring an affordable clean water supply. However, achieving light-absorbing hydrogels with durable and efficient utilization is still a challenge due to inevitable salt accumulation, a difficult-to-control surface morphology, and poor mechanical properties on the surfaces of hydrogel-based evaporators. In this work, a photothermal sponge-like hydrogel with a 3D interconnected porous structure was constructed using low-cost activated carbon as a photothermal material, as well as a double-network polymer chain as the basic skeleton using a simple foaming polymerization strategy. The sponge-like hydrogel evaporator showed tailored surface topography, adequate water transport, excellent elasticity and toughness, good salt rejection, and thermal localization properties. Under the irradiation of simulated sunlight (1.0 kW/m), a high evaporation rate of 2.33 kg·m·h was achieved. Furthermore, efficient salt self-cleaning behavior was achieved due to the fast ion diffusion within the 3D interconnected porous structures. Even in highly concentrated brine of 15 wt %, continuous and efficient water evaporation was still achieved. The excellent evaporation and salt rejection properties of this photothermal sponge-like hydrogel indicated its promising long-term sustainable utilization in seawater desalination.
使用吸光水凝胶的界面蒸发在自然阳光下具有高效的太阳能蒸发性能,可确保提供经济实惠的清洁水源。然而,由于不可避免的盐积累、难以控制的表面形态以及水凝胶基蒸发器表面较差的机械性能,要实现具有持久高效利用率的吸光水凝胶仍然是一项挑战。在这项工作中,采用低成本的活性炭作为光热材料,以及双网络聚合物链作为基本骨架,通过简单的发泡聚合策略构建了一种具有三维互连多孔结构的光热海绵状水凝胶。该海绵状水凝胶蒸发器具有定制的表面形貌、充足的水传输、出色的弹性和韧性、良好的拒盐性能以及热局域化特性。在模拟阳光(1.0 kW/m)照射下,实现了2.33 kg·m·h的高蒸发速率。此外,由于三维互连多孔结构内离子的快速扩散,实现了高效的盐自清洁行为。即使在15 wt%的高浓度盐水中,仍能实现连续高效的水蒸发。这种光热海绵状水凝胶优异的蒸发和拒盐性能表明其在海水淡化中具有长期可持续利用的潜力。