TY - JOUR
T1 - 光热材料在太阳能海水脱盐中应用的研究进展
AU - Jing, Xinxin
AU - Wang, Weiduo
AU - Mo, Hesu
AU - Tan, Peng
AU - Chen, Zhigang
AU - Wu, Zhengying
AU - Sun, Linbing
N1 - Publisher Copyright:
© 2024 Chinese Chemical Society. All rights reserved.
PY - 2024/6
Y1 - 2024/6
N2 - Interfacial solar evaporation devices for desalination have attracted significant attention due to their ecofriendliness, simplicity, high efficiency, and versatility. In contrast to traditional volumetric evaporation devices, interfacial solar evaporation devices confine the collection of sunlight and steam generation to the air‐water interface, avoiding the need to heat the entire water volume from the bottom to generate vapor, thus greatly improving energy utilization efficiency. This paper details the photothermal conversion mechanisms, types, and performance of the photothermal materials, which are one of the important components of interfacial solar vapor generators. Then, the device design strategies for efficient seawater purification are thoroughly discussed, including the enhancement of light absorption, the supply of sufficient water, and the resistance and elimination of salt. Based on these discussions, the research progress of interfacial solar evaporation devices is summarized, and the development prospects of novel solar evaporation devices for desalination are anticipated.
AB - Interfacial solar evaporation devices for desalination have attracted significant attention due to their ecofriendliness, simplicity, high efficiency, and versatility. In contrast to traditional volumetric evaporation devices, interfacial solar evaporation devices confine the collection of sunlight and steam generation to the air‐water interface, avoiding the need to heat the entire water volume from the bottom to generate vapor, thus greatly improving energy utilization efficiency. This paper details the photothermal conversion mechanisms, types, and performance of the photothermal materials, which are one of the important components of interfacial solar vapor generators. Then, the device design strategies for efficient seawater purification are thoroughly discussed, including the enhancement of light absorption, the supply of sufficient water, and the resistance and elimination of salt. Based on these discussions, the research progress of interfacial solar evaporation devices is summarized, and the development prospects of novel solar evaporation devices for desalination are anticipated.
KW - efficient evaporation strategy
KW - interfacial evaporation
KW - photothermal material
KW - seawater purification
KW - solar energy
UR - http://www.scopus.com/inward/record.url?scp=85196948432&partnerID=8YFLogxK
U2 - 10.11862/CJIC.20230371
DO - 10.11862/CJIC.20230371
M3 - 文献综述
AN - SCOPUS:85196948432
SN - 1001-4861
VL - 40
SP - 1033
EP - 1064
JO - Chinese Journal of Inorganic Chemistry
JF - Chinese Journal of Inorganic Chemistry
IS - 6
ER -