蒸发器
蒸发
材料科学
饮用水净化
三聚氰胺
海水
化学工程
工艺工程
制作
过程(计算)
环境科学
海水淡化
水处理
适应性
纳米技术
太阳能蒸馏器
碳足迹
碳纤维
太阳能
废物管理
作者
Lele Li,Yanhong Dong,Shu Liu,Xingmin Du,Diandian Yu,Jie Wen,Chenxi Wang,Qian Sun,Bing Liu,Tao Wu,Jiahui Yu
标识
DOI:10.1002/advs.202517280
摘要
Abstract Interfacial solar evaporation has emerged as an innovative water purification strategy due to its environmental friendliness, high efficiency, adaptability to various water sources. This study introduces a universal strategy for foam‐based solar evaporators, leveraging unique advantages of hydrogel materials to effectively reduce evaporation enthalpy. At the same time, it addresses challenges such as the need for pore formation in hydrogels, water‐induced swelling, and the detachment of photothermal materials, achieving “four benefits in one approach.” The fabrication process takes only 40 min and features an extremely low carbon footprint (0.00462 kg CO 2 eq kg −1 ). After modification, the evaporation performance of different foam‐based evaporators improved by 15%62%, with the melamine foam‐based evaporator showing the most notable enhancement (62%). Using melamine foam as the supporting material, a PVA‐melamine foam composite hydrogel evaporator (FCH) is successfully fabricated via the hydrogel‐based improvement technique. FCH evaporator achieved an exceptional evaporation rate of 7.93 ± 0.37 kg m −2 h −1 under 1 sun irradiation and maintained excellent stability during 30‐day continuous seawater test. Owing to the superior stability of the hydrogel thin layer, FCH evaporator retained high evaporation performance even under extreme conditions. This study provides new insights and practical solutions for advancing sustainable water purification technologies.
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