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Boosting solar steam generation by structure enhanced energy management

Boosting solar steam generation by structure enhanced energy management

作     者:Yida Wang Xuan Wu Bo Shao Xiaofei Yang Gary Owens Haolan Xu 王艺达;武萱;邵勃;杨小飞;欧文加里;徐浩兰

作者机构:Future Industries InstituteUniversity of South AustraliaMawson Lakes Campus AdelaideSA 5095Australia College of Science.Nanjing Forestry UniversityNanjing 210037China 

基  金:financial support from Australian Research Council(ARC Future Fellowship FT190100485) University of South Australia(Foundation Fellow) China Scholarship Council and Huasheng Graphite Co.,Ltd 

出 版 物:《Science Bulletin》 (科学通报(英文版))

年 卷 期:2020年第65卷第16期

页      码:1380-1388,M0004页

摘      要:Interfacial solar-steam generation is a promising and cost-effective technology for both desalination and wastewater *** process uses a photothermal evaporator to absorb sunlight and convert it into heat for water *** solar-steam generation can be somewhat inefficient due to energy losses via conduction,convection and ***,efficient energy management is crucial for optimizing the performance of solar-steam ***,via elaborate design of the configuration of photothermal materials,as well as warm and cold evaporation surfaces,performance in solar evaporation was significantly *** was achieved via a simultaneous reduction in energy loss with a net increase in energy gain from the environment,and recycling of the latent heat released from vapor condensation,diffusive reflectance,thermal radiation and convection from the evaporation ***,by using the new strategy,an evaporation rate of 2.94 kg m^-2 h^-1,with a corresponding energy efficiency of solar-steam generation beyond theoretical limit was achieved.

主 题 词:Solar-steam generation Photothermal Energy management Latent heat recycling Reduced graphene oxide Desalination 

学科分类:080703[080703] 08[工学] 0807[工学-电子信息类] 

核心收录:

D O I:10.1016/j.scib.2020.04.036

馆 藏 号:203945675...

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