材料科学
太阳能
光电-热混合太阳能集热器
蒸发器
工艺工程
热的
发电
光电子学
机械工程
热交换器
电气工程
工程类
气象学
功率(物理)
量子力学
物理
作者
Yiju Li,Tingting Gao,Zhi Yang,Chaoji Chen,Wei Luo,Jianwei Song,Emily Hitz,Chao Jia,Yubing Zhou,Boyang Liu,Bao Yang,Liangbing Hu
标识
DOI:10.1002/adma.201700981
摘要
Using solar energy to generate steam is a clean and sustainable approach to addressing the issue of water shortage. The current challenge for solar steam generation is to develop easy‐to‐manufacture and scalable methods which can convert solar irradiation into exploitable thermal energy with high efficiency. Although various material and structure designs have been reported, high efficiency in solar steam generation usually can be achieved only at concentrated solar illumination. For the first time, 3D printing to construct an all‐in‐one evaporator with a concave structure for high‐efficiency solar steam generation under 1 sun illumination is used. The solar‐steam‐generation device has a high porosity (97.3%) and efficient broadband solar absorption (>97%). The 3D‐printed porous evaporator with intrinsic low thermal conductivity enables heat localization and effectively alleviates thermal dissipation to the bulk water. As a result, the 3D‐printed evaporator has a high solar steam efficiency of 85.6% under 1 sun illumination (1 kW m −2 ), which is among the best compared with other reported evaporators. The all‐in‐one structure design using the advanced 3D printing fabrication technique offers a new approach to solar energy harvesting for high‐efficiency steam generation.
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