表面改性
填料(材料)
辐射冷却
材料科学
复合材料
辐射传输
化学工程
工程类
气象学
物理
光学
作者
Sarun Atiganyanun,Chonlakorn Hasuchon,Pisist Kumnorkaew
摘要
Abstract Radiative cooling is a sustainable path toward the reduction of energy used for cooling. Exterior paints remain the most accessible format of radiative cooling. To reduce costs, filler particles have been incorporated into paints along with titanium dioxide (TiO 2 ) pigment without contributing to their cooling capabilities. This work investigated the surface functionalization of calcium carbonate (CaCO 3 ), barium sulfate (BaSO 4 ), and silica (SiO 2 ) filler particles with methyltrimethoxysilane (MTMS) for improving paint cooling performance. Functionalized fillers improved paint solar reflectance, but this effect became minimal when the fillers were incorporated along with TiO 2 pigment. MTMS‐modified CaCO 3 and BaSO 4 fillers, incorporated alone or along with TiO 2 , enhanced paint infrared emission in the atmospheric transparency window, while the functionalization of SiO 2 fillers had little impact on the emission. The MTMS functionalization also improved the thermal emissivity of BaSO 4 and CaCO 3 paints with TiO 2 pigment but reduced that of SiO 2 . Outdoor testing demonstrated that the use of MTMS‐modified BaSO 4 fillers led to an additional reduction of paint temperature by 2.3°C during the daytime. Therefore, the functionalization of BaSO 4 filler particles is a simple and inexpensive method for improving the performance of radiative cooling paints without requiring significantly altering industrial paint production processes.
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