蒸发器
蒸发
材料科学
发射率
辐射冷却
热的
工艺工程
太阳能
图层(电子)
环境科学
低发射率
光电子学
核工程
机械工程
光学
纳米技术
气象学
热交换器
工程类
电气工程
物理
作者
Nan He,Xisheng Sun,Haonan Wang,Bingsen Wang,Dawei Tang,Lin Li
出处
期刊:Small
[Wiley]
日期:2024-05-19
被引量:3
标识
DOI:10.1002/smll.202402863
摘要
Abstract Facing the increasing global shortage of freshwater resources, this study presents a suspended multilayer evaporator (SMLE), designed to tackle the principal issues plaguing current solar‐driven interfacial evaporation technologies, specifically, substantial thermal losses and limited water production. This approach, through the implementation of a multilayer structural design, enables superior thermal regulation throughout the evaporation process. This evaporator consists of a radiation damping layer, a photothermal conversion layer, and a bottom layer that leverages radiation, wherein the bottom layer exhibits a notable infrared emissivity. The distinctive feature of the design effectively reduces radiative heat loss and facilitates dual‐interface evaporation by heating the water surface through mid‐infrared radiation. The refined design leads to a notable evaporation rate of 2.83 kg m −2 h −1 . Numerical simulations and practical performance evaluations validate the effectiveness of the multilayer evaporator in actual use scenarios. This energy‐recycling and dual‐interface evaporation multilayered approach propels the design of high‐efficiency solar‐driven interfacial evaporators forward, presenting new insights into developing effective water‐energy transformation systems.
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