辐射传输
土(古典元素)
辐射冷却
环境科学
大气科学
物理
气象学
光学
天文
作者
Cun‐Hai Wang,Hao Chen,Yanyan Feng,Jingchong Liu,Yurong Fan,Ziming Cheng,Yong Shuai,Fuqiang Wang
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2026-07-11
卷期号:11 (8): 5480-5490
被引量:2
标识
DOI:10.1021/acsenergylett.6c01186
摘要
Abstract Radiative cooling (RC) passively cools terrestrial objects by radiating heat into outer space, providing a fuel-free means for addressing energy and environmental challenges. However, its potential to mitigate global warming at the planetary scale remains unquantified. Herein, we examine global RC power on an annual time scale, which is vital for implementing RC-based technologies. We propose a meteorological data-based model and quantify the RC power across ∼2000 global cities. The geographic disparities of global RC power are analyzed. Regions with temperature reductions exceeding 6 °C and those with RC power over 80 W m–2 are highlighted. Based on the year-round cooling power, we categorize the global RC map into five representative regions. Furthermore, we estimate the CO2 emission reduction of RC deployment and define a theoretical threshold area required to rebalance Earth's energy budget. These results provide a quantitative basis for guiding worldwide RC deployment toward global warming mitigation.
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