蒸发
热的
材料科学
太阳能
光电-热混合太阳能集热器
工程物理
光伏系统
能量转换效率
能量转换
热能
纳米技术
热力学
光电子学
物理
气象学
工程类
电气工程
作者
Peng Tao,George Ni,Chengyi Song,Wen Shang,Jianbo Wu,Jia Zhu,Gang Chen,Tao Deng
出处
期刊:Nature Energy
[Springer Nature]
日期:2018-10-29
卷期号:3 (12): 1031-1041
被引量:1614
标识
DOI:10.1038/s41560-018-0260-7
摘要
As a ubiquitous solar-thermal energy conversion process, solar-driven evaporation has attracted tremendous research attention owing to its high conversion efficiency of solar energy and transformative industrial potential. In recent years, solar-driven interfacial evaporation by localization of solar-thermal energy conversion to the air/liquid interface has been proposed as a promising alternative to conventional bulk heating-based evaporation, potentially reducing thermal losses and improving energy conversion efficiency. In this Review, we discuss the development of the key components for achieving high-performance evaporation, including solar absorbers, evaporation structures, thermal insulators and thermal concentrators, and discuss how they improve the performance of the solar-driven interfacial evaporation system. We describe the possibilities for applying this efficient solar-driven interfacial evaporation process for energy conversion applications. The exciting opportunities and challenges in both fundamental research and practical implementation of the solar-driven interfacial evaporation process are also discussed. The thermal properties of solar energy can be exploited for many applications, including evaporation. Tao et al. review recent developments in the field of solar-driven interfacial evaporation, which have enabled higher-performance structures by localizing energy conversion to the air/liquid interface.
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