海水淡化
卤水
盐度
结垢
废水
海水
太阳能
环境科学
太阳能淡化
蒸发
材料科学
环境工程
化学工程
制浆造纸工业
气象学
地质学
化学
海洋学
物理
工程类
生物
有机化学
生物化学
膜
生态学
作者
Ning Xu,Jinlei Li,Yang Wang,Chang Fang,Xiuqiang Li,Yuxi Wang,Lin Zhou,Bin Zhu,Zhen Wu,Shining Zhu,Jia Zhu
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2019-07-05
卷期号:5 (7): eaaw7013-eaaw7013
被引量:494
标识
DOI:10.1126/sciadv.aaw7013
摘要
In recent years, interfacial solar vapor generation has shown great potential in realizing desalination and wastewater treatment with high energy conversion efficiency. However, high evaporation rate cannot be maintained because of the seemingly unavoidable fouling or salt accumulation on the solar absorbers. The degradation accelerates as the solute concentration increases. Here, we demonstrate a water lily-inspired hierarchical structure that enables efficient evaporation (~80% solar-to-vapor efficiency) out of high-salinity brine [10 weight % (wt %)] and wastewater containing heavy metal ions (30 wt %). More notably, neither decrease in evaporation rate nor fouling on absorbers was observed during the entire evaporation process until water and solute were completely separated. With the capabilities of stable and high-rate evaporation out of high-salinity brine and the effective separation of solute from water, it is expected that this technology can have direct implications in various fields such as wastewater treatment, sea-salt production, and metal recycling.
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