材料科学
海水淡化
蒸发器
化学工程
蒸发
海水
纳米孔
人工海水
卤水
太阳能淡化
纳米技术
膜
化学
热交换器
有机化学
工程类
地质学
物理
海洋学
热力学
生物化学
作者
Caiyan Zhang,Xuelong Chen,Baozheng Cui,Lina Chen,Jingbo Zhu,Ningjing Bai,Wei Wang,Dongyu Zhao,Zewen Li,Zhe Wang
标识
DOI:10.1021/acsami.2c06370
摘要
Interfacial solar steam generation technology has been considered as one of the most promising methods for seawater desalination. However, in practical applications, salt precipitation on the evaporation surface reduces the evaporation rate and impairs long-term stability. Herein, a dual-layer hydrogel-based evaporator that contains a microchannel-structured water-supplying layer and a nanoporous light-absorbing layer was synthesized via sol-gel transition and "hot-ice" template methods. Contributed by the designed structure-induced accelerated salt ion exchange, the hemispherical dual-layer hydrogel evaporator showed excellent salt formation resistance property, as well as a high evaporation rate reaching 2.03 kg m-2 h-1 even under high brine concentration conditions. Furthermore, the hydrogel-based evaporator also demonstrated excellent ion rejection, high/low pH tolerance, and excellent purification properties toward heavy metals and organic dyes. It is believed that this type of dual-layer multichannel evaporator is promising to be used in seawater desalination, water pollution treatment, and other environmental remediation-related applications.
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