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用于日间辐射冷却的高光学选择性和隔热多孔硅酸钙复合SiO气凝胶涂层

Highly Optically Selective and Thermally Insulating Porous Calcium Silicate Composite SiO Aerogel Coating for Daytime Radiative Cooling.

作者信息

Han Dong, Wang Chenghai, Han Chang Bao, Cui Yanan, Ren Wen Rui, Zhao Wen Kang, Jiang Quan, Yan Hui

机构信息

Key Laboratory of Advanced Functional Materials (Beijing University of Technology), Ministry of Education, Beijing University of Technology, Beijing 100124, People's Republic of China.

Langgu (Tianjin) New Material Technology Co., Ltd., Tianjin 300392, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2024 Feb 21;16(7):9303-9312. doi: 10.1021/acsami.3c18101. Epub 2024 Feb 11.

Abstract

Daytime radiative cooling technology offers a low-carbon, environmentally friendly, and nonpower-consuming approach to realize building energy conservation. It is important to design materials with high solar reflectivity and high infrared emissivity in atmospheric windows. Herein, a porous calcium silicate composite SiO aerogel water-borne coating with strong passive radiative cooling and high thermal insulation properties is proposed, which shows an exceptional solar reflectance of 94%, high sky window emissivity of 96%, and 0.0854 W/m·K thermal conductivity. On the SiO/CaSiO radiative cooling coating (SiO-CS-coating), a strategy is proposed to enhance the atmospheric window emissivity by lattice resonance, which is attributed to the eight-membered ring structure of porous calcium silicate, thereby increasing the atmospheric window emissivity. In the daytime test (solar irradiance 900W/m, ambient temperature 43 °C, wind speed 0.53 m/s, humidity 25%), the temperature inside the box can achieve a cooling temperature of 13 °C lower than that of the environment, which is 30 °C, and the theoretical cooling power is 96 W/m. Compared with the commercial white coating, SiO-CS-coating can save 70 kW·h of electric energy in 1 month, and the energy consumption is reduced by 36%. The work provides a scalable, widely applicable radiative-cooling coating for building comfort, which can greatly reduce indoor temperatures and is suitable for building surfaces.

摘要

日间辐射冷却技术提供了一种低碳、环保且无功耗的实现建筑节能的方法。设计在大气窗口具有高太阳反射率和高红外发射率的材料很重要。在此,提出了一种具有强被动辐射冷却和高隔热性能的多孔硅酸钙复合SiO气凝胶水性涂料,其具有94%的优异太阳反射率、96%的高天空窗口发射率以及0.0854W/m·K的热导率。在SiO/CaSiO辐射冷却涂层(SiO-CS涂层)上,提出了一种通过晶格共振提高大气窗口发射率的策略,这归因于多孔硅酸钙的八元环结构,从而提高了大气窗口发射率。在白天测试(太阳辐照度900W/m²,环境温度43°C,风速0.53m/s,湿度25%)中,箱内温度可比环境温度30°C实现低13°C的冷却温度,理论冷却功率为96W/m²。与商用白色涂层相比,SiO-CS涂层在1个月内可节省70kW·h电能,能耗降低36%。这项工作为建筑舒适性提供了一种可扩展、广泛适用的辐射冷却涂层,可大幅降低室内温度,适用于建筑表面。

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