太阳能
抛物线槽
蒸腾作用
环境科学
海水淡化
余热
热的
材料科学
废物管理
工艺工程
化学
气象学
热交换器
热力学
物理
光合作用
工程类
生物
生物化学
膜
生态学
作者
Xiuqiang Li,Renxing Lin,George Ni,Ning Xu,Xiaozhen Hu,Bin Zhu,Guangxin Lv,Jinlei Li,Shining Zhu,Jia Zhu
摘要
Abstract Solar steam generation is emerging as promising solar-energy conversion technology for potential applications in desalination, sterilization and chemical purification. Despite the recent use of photon management and thermal insulation, achieving optimum solar steam efficiency requires simultaneous minimization of radiation, convection and conduction losses without compromising light absorption. Inspired by the natural transpiration process in plants, here we report a 3D artificial transpiration device with all three components of heat loss and angular dependence of light absorption minimized, which enables over 85% solar steam efficiency under one sun without external optical or thermal management. It is also demonstrated that this artificial transpiration device can provide a complementary path for waste-water treatment with a minimal carbon footprint, recycling valuable heavy metals and producing purified water directly from waste water contaminated with heavy metal ions.
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