气凝胶
材料科学
保温
发射率
复合材料
辐射冷却
热辐射
消防
低发射率
热导率
光学
涂层
化学
物理
有机化学
图层(电子)
热力学
作者
Qing Jiang,Yuhang Wan,Xiaoqian Li,Xueru Qu,Shengnan Ouyang,Yi Qin,Zhenyu Zhu,Yushu Wang,Hualing He,Zhicai Yu
出处
期刊:Pigment & Resin Technology
[Emerald (MCB UP)]
日期:2024-01-12
标识
DOI:10.1108/prt-11-2023-0102
摘要
Purpose This study aims to evaluate the thermal performance of sodium alginate (SA) aerogel attached to nano SiO 2 and its radiative cooling effect on firefighting clothing without environmental pollution. Design/methodology/approach SA/SiO 2 aerogel with refractory heat insulation and enhanced radiative cooling performance was fabricated by freeze-drying method, which can be used in firefighting clothing. The microstructure, chemical composition, thermal stability, and thermal emissivity were analyzed using Fourier transform infrared spectroscopy, scanning electron microscopy, thermogravimetric analyzer and infrared emissivity measurement instrument. The radiative cooling effect of aerogel was studied using thermal infrared imager and thermocouple. Findings When the addition of SiO 2 is 25% of SA, the prepared aerogel has excellent heat insulation and a high radiative cooling effect. Under a clear sky, the temperature of SA/SiO 2 aerogel is 9.4°C lower than that of pure SA aerogel and 22.1°C lower than that of the simulated environment. In addition, aerogel has more exceptional heat insulation effect than other common fabrics in the heat insulation performance test. Research limitations/implications SA/SiO 2 aerogel has passive radiative cooling function, which can efficaciously economize global energy, and it is paramount to environment-friendly cooling. Practical implications This method could pave the way for high-performance cooling materials designed for firefighting clothing to keep maintain the wearing comfort of firefighters. Originality/value SA/SiO 2 aerogel used in firefighting clothing can release heat to the low-temperature outer space in the form of thermal radiation to achieve its own cooling purpose, without additional energy supply. Graphical abstract
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