辐射冷却
发射率
红外窗口
露水
涂层
辐射传输
材料科学
环境科学
热发射率
被动冷却
冷凝
气象学
光学
大气科学
热的
复合材料
物理
红外线的
梁(结构)
作者
Mingrao Liu,Shuai Zhang,Fuxi Li,Canying Zhang,Haitao Zhu,Daxiong Wu
标识
DOI:10.1088/1361-6463/ac8ebe
摘要
Abstract Passive daytime radiative cooling (PDRC) emerges as an environmentally friendly cooling strategy for its zero demand of electricity and fossil energy. In this study, PDRC coating containing polymethylmethacrylate and CaSiO 3 was prepared with a simple process at low cost. The solar reflectivity, atmospheric window emissivity and radiative cooling performance of the prepared coating were investigated. The coating exhibits an average solar reflectance of 96.4% and an average atmospheric window emittance of 97.0%. Under direct solar irradiation, the coating can achieved an average sub-ambient temperature drop of 5.5 °C and an average net radiative cooling power of 72 W m −2 . The results are on par with those of the efficient radiative coolers in the literature. Experimental investigation also suggests that the coating has application prospect in dew condensation and retarding the melting process of ice. This study provides a cost-efficient and commercially feasible strategy to fabricate PDRC coating.
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