Bioinspired Self‐Standing, Self‐Floating 3D Solar Evaporators Breaking the Trade‐Off between Salt Cycle and Heat Localization for Continuous Seawater Desalination

海水淡化 材料科学 太阳能淡化 蒸发器 海水 蒸发 太阳能 传热 潜热 环境科学 工艺工程 机械工程 机械 热交换器 气象学 电气工程 工程类 化学 海洋学 物理 地质学 生物化学
作者
Huawen Liu,Bichi Chen,Yilin Chen,Mengnan Zhou,Fangwei Tian,Yaozong Li,Junjie Jiang,Wentao Zhai
出处
期刊:Advanced Materials [Wiley]
卷期号:35 (24): e2301596-e2301596 被引量:184
标识
DOI:10.1002/adma.202301596
摘要

Facing the global water shortage challenge, solar-driven desalination is considered a sustainable technology to obtain freshwater from seawater. However, the trade-off between the salt cycle and heat localization of existing solar evaporators (SE) hinders its further practical applications. Here, inspired by water hyacinth, a self-standing and self-floating 3D SE with adiabatic foam particles and aligned water channels is built through a continuous directional freeze-casting technique. With the help of the heat insulation effect of foam particles and the efficient water transport of aligned water channels, this new SE can cut off the heat transfer from the top photothermal area to the bulk water without affecting the water supply, breaking the long-standing trade-off between salt cycle and heat localization of traditional SEs. Additionally, its self-standing and self-floating features can reduce human maintenance. Its large exposure height can increase evaporation area and collect environmental energy, breaking the long-standing limitation of solar-to-vapor efficiency of conventional SEs. With the novel structure employed, an evaporation flux of 2.25 kg m-2 h-1 , and apparent solar-to-vapor efficiency of 136.7% are achieved under 1 sun illumination. This work demonstrates a new evaporator structure, and also provides a key insight into the structural design of next-generation salt-tolerant and high-efficiency SEs.
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