吸热过程
光伏系统
材料科学
化学工程
硝酸铵
能量转换效率
吸附
化学
有机化学
吸附
光电子学
生态学
生物
工程类
作者
Seonggon Kim,Jong Ha Park,Jae Won Lee,Yongchan Kim,Yong Tae Kang
标识
DOI:10.1038/s41467-023-38081-9
摘要
Power efficiency of photovoltaic cell is significantly affected by the cell temperature. Here, a self-recovering passive cooling unit is developed. The water-saturated zeolite 13X is coated on the back side of photovoltaic cell, and ammonium nitrate is dispersed as a layer to form a thin film. When heat is supplied, water is desorbed from zeolite 13X (latent cooling), and dissolves ammonium nitrate to induce endothermic reaction cooling. It is a reversible process that recovers itself at night. The unit works on the basis that the water sorption performance of porous materials is inversely proportional to temperature, and the solubility of endothermic reaction pairs increases proportionally with temperature. The average temperature of photovoltaic cell can be reduced by 15.1 °C, and the cooling energy density reaches 2,876 kJ/kg with average cooling power of 403 W/m2. We show that highly efficient passive cooling comprising inexpensive materials for photovoltaic cell could be achieved.
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