蒸发
材料科学
光热治疗
海水
无定形固体
纳米复合材料
化学工程
水运
饮用水净化
光热效应
纳米技术
环境工程
环境科学
化学
有机化学
气象学
物理
地质学
工程类
海洋学
水流
作者
Xuanbo Chen,Nailiang Yang,Yanlei Wang,Hongyan He,Jiangyan Wang,Jiawei Wan,Hongyu Jiang,Bo Xu,Liming Wang,Ranbo Yu,Lianming Tong,Lin Gu,Qihua Xiong,Chunying Chen,Suojiang Zhang,Dan Wang
标识
DOI:10.1002/adma.202107400
摘要
Solar evaporation, which enables water purification without consuming fossil fuels, has been considered the most promising strategy to address global scarcity of drinkable water. However, the suboptimal structure and composition designs still result in a trade-off between photothermal conversion, water transport, and tolerance to harsh environments. Here, an ultrastable amorphous Ta2 O5 /C nanocomposite is designed with a hollow multishelled structure (HoMS) for solar evaporation. This HoMS results in highly efficient photoabsorption and photothermal conversion, as well as a decrease of the actual water evaporation enthalpy. A superfast evaporation speed of 4.02 kg m-2 h-1 is achieved. More importantly, a World Health Organization standard drinkable water can be achieved from seawater, heavy-metal- and bacteria-containing water, and even from extremely acidic/alkaline or radioactive water sources. Notably, the concentration of pseudovirus SC2-P can be decreased by 6 orders of magnitude after evaporation.
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