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太阳能界面蒸发协同发电:进展与展望
引用本文:李吉焱,刘美辰,景艳菊,朱照琪,孙寒雪.太阳能界面蒸发协同发电:进展与展望[J].精细化工,2022,39(10).
作者姓名:李吉焱  刘美辰  景艳菊  朱照琪  孙寒雪
作者单位:兰州理工大学 石油化工学院,兰州理工大学 石油化工学院,兰州理工大学 石油化工学院,兰州理工大学 石油化工学院,兰州理工大学 石油化工学院
基金项目:国家自然科学基金项目(52066012,21975113);甘肃省自然科学基金项目(20JR5RA446); 兰州理工大学红柳优秀青年人才支持计划
摘    要:太阳能界面蒸发(SIE)是将太阳能集中于“空气-水”的界面处加热,进行高效产气,实现海水淡化的过程。该方法可有效解决淡水资源短缺和能源转换效率低等问题。随着光热材料及集成系统的快速发展,界面蒸发器的功能不断优化,促进了该方法在水处理、蒸汽杀菌、稀缺资源富集和联产发电等领域的技术突破。本文在延续前期研究的基础上,结合SIE协同发电的最新研究进展,梳理SIE协同发电的机理,分析SIE协同发电装置的设计要点,总结SIE协同发电的实际应用现状,并展望其未来的发展及挑战。

关 键 词:太阳能界面蒸发  光热材料  热电化学  蒸发发电  连续式发电装置
收稿时间:2022/6/15 0:00:00
修稿时间:2022/8/3 0:00:00

Solar interface evaporation collaborative power generation: progress and prospect
LI Jiyan,LIU Meichen,JING Yanju,ZHU Zhaoqi and SUN Hanxue.Solar interface evaporation collaborative power generation: progress and prospect[J].Fine Chemicals,2022,39(10).
Authors:LI Jiyan  LIU Meichen  JING Yanju  ZHU Zhaoqi and SUN Hanxue
Affiliation:College of Petrochemical Technology,Lanzhou University of Technology,College of Petrochemical Technology,Lanzhou University of Technology,College of Petrochemical Technology,Lanzhou University of Technology,College of Petrochemical Technology,Lanzhou University of Technology,College of Petrochemical Technology,Lanzhou University of Technology
Abstract:Solar interface evaporation (SIE) is a process of concentrating solar energy at the "air water" interface for heating, efficient gas production and seawater desalination. This method can effectively solve the problems of shortage of fresh water resources and low energy conversion efficiency. With the rapid development of photothermal materials and integrated systems, the function of interface evaporator is continuously optimized, which promotes the technical breakthrough of this method in the fields of water treatment, steam sterilization, enrichment of scarce resources and cogeneration power generation. Based on the previous research, combined with the latest research progress of SIE collaborative power generation, this paper combs the mechanism of SIE collaborative power generation, analyzes the design points of SIE collaborative power generation device, summarizes the practical application status of SIE collaborative power generation, and looks forward to its future development and challenges.
Keywords:
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