辐射冷却
辐射传输
纤维素
被动冷却
环境科学
可再生能源
太阳能
材料科学
复合材料
工程类
气象学
物理
热的
化学工程
生态学
光学
生物
作者
Tian Li,Yao Zhai,Shuaiming He,Wentao Gan,Zhiyuan Wei,Mohammad Heidarinejad,Daniel Dalgo,Ruiyu Mi,Xinpeng Zhao,Jianwei Song,Jiaqi Dai,Chaoji Chen,Ablimit Aili,Azhar Vellore,Ashlie Martini,Ronggui Yang,Jelena Srebric,Xiaobo Yin,Liangbing Hu
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2019-05-23
卷期号:364 (6442): 760-763
被引量:1174
标识
DOI:10.1126/science.aau9101
摘要
Reducing human reliance on energy-inefficient cooling methods such as air conditioning would have a large impact on the global energy landscape. By a process of complete delignification and densification of wood, we developed a structural material with a mechanical strength of 404.3 megapascals, more than eight times that of natural wood. The cellulose nanofibers in our engineered material backscatter solar radiation and emit strongly in mid-infrared wavelengths, resulting in continuous subambient cooling during both day and night. We model the potential impact of our cooling wood and find energy savings between 20 and 60%, which is most pronounced in hot and dry climates.
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