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DOI10.1016/j.jobe.2024.108749
Photocatalytic cement-based passive cooling composites: The synergy between radiative cooling and self-cleaning mechanisms
发表日期2024
EISSN2352-7102
起始页码85
卷号85
英文摘要Radiative cooling holds promise in combating climate change by reducing energy consumption. However, organic radiative coolers face fabrication complexities, weak environmental reliability, and limited self-cleaning capabilities. To overcome these challenges, we present autoclaved cement pastes, inorganic passive coolers with exceptional energy-free cooling and self-cleaning properties, achieved through a straightforward hydrothermal process. The inorganic cooler incorporating 28 wt% alumina exhibits impressive solar reflectivity (0.91), atmospheric window emissivity (0.91), radiative cooling power (-11.0 W/m(2)), and effective evaporative cooling (>8 h, 25 W/m(2)). The high solar reflectivity is attributed to tailored nano/micro particles and pores inducing strong Mie scattering within the solar spectral range (lambda = 280-2500 nm). The theoretical cooling properties are validated by the outdoor on-site measurements, and the roles of moisture inside the cooler matrix are verified. Additionally, the cooler formulation featuring 14 wt% nanosilica and 14 wt% alumina demonstrates remarkable self-cleaning capabilities, eliminating approximately 68% of surface contaminants within 30 min. This self-cleaning performance stems from the evolution of C-S-H phases, leading to the formation of massive nano C-(A)-S-H honeycombs with nanowires, enhancing mass adsorption and photocatalytic quantum effects at abundant active sites. This study would open new avenues for scalable, energy-free cement-bound cooling materials for building engineering and align with the UN's sustainable development goals.
英文关键词Radiative cooling; Self-cleaning; Tobermorite; Hydrogarnet; Boehmite; Atmospheric window
语种英语
WOS研究方向Construction & Building Technology ; Engineering
WOS类目Construction & Building Technology ; Engineering, Civil
WOS记录号WOS:001185677400001
来源期刊JOURNAL OF BUILDING ENGINEERING
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/297105
作者单位Wuhan University; Eindhoven University of Technology; Eindhoven University of Technology
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. Photocatalytic cement-based passive cooling composites: The synergy between radiative cooling and self-cleaning mechanisms[J],2024,85.
APA (2024).Photocatalytic cement-based passive cooling composites: The synergy between radiative cooling and self-cleaning mechanisms.JOURNAL OF BUILDING ENGINEERING,85.
MLA "Photocatalytic cement-based passive cooling composites: The synergy between radiative cooling and self-cleaning mechanisms".JOURNAL OF BUILDING ENGINEERING 85(2024).
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