被动式太阳能建筑设计
环境科学
吸收(声学)
辐射冷却
太阳能空调
材料科学
辐射传输
大气科学
吸收式制冷机
阳光
太阳能
气象学
热的
光学
物理
热力学
复合材料
工程类
电气工程
制冷
作者
Jing Luo,Haining Ji,Runteng Luo,Xuejun Zheng,T. Patrick Xiao
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2025-06-23
卷期号:18 (13): 2967-2967
被引量:3
摘要
The shortage of freshwater resources has become the core bottleneck of global sustainable development. Traditional freshwater harvesting technologies are restricted by geographical conditions and environmental limitations, making them increasingly difficult to satisfy the growing water demand. In this study, based on the synergistic coupling mechanism of photothermal conversion and radiative cooling, a solar auto-tracking assisted selective solar absorber and radiative cooling all-weather freshwater harvesting device was innovatively developed. The prepared selective solar absorber achieved a high absorptivity of 0.91 in the solar spectrum (0.3–2.5 μm) and maintained a low emissivity of 0.12 in the mid-infrared range (2.5–20 μm), significantly enhancing the photothermal conversion efficiency. The radiative cooling film demonstrated an average cooling effect of 7.62 °C during typical daytime hours (12:00–13:00) and 7.03 °C at night (22:00–23:00), providing a stable low-temperature environment for water vapor condensation. The experimental results showed that the experimental group equipped with the solar auto-tracking system collected 0.79 kg m−2 of freshwater in 24 h, representing a 23.4% increase compared to the control group without the solar auto-tracking system. By combining theoretical analysis with experimental validation, this study presents technical and economic advantages for emergency water and island freshwater supply, offering an innovative solution to mitigate the global freshwater crisis.
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