Rational designs of interfacial-heating solar-thermal desalination devices: recent progress and remaining challenges

Solar desalination is considered one of the most promising solutions to the interconnected challenge of water and energy crisis. Interfacial-heating solar-thermal desalination (IHSTD), which localizes solar energy at the evaporation interface for high-efficiency water production, has achieved substa...

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Veröffentlicht in:Journal of materials chemistry. A, Materials for energy and sustainability Materials for energy and sustainability, 2021-03, Vol.9 (11), p.6612-6633
Hauptverfasser: Xia, Yun, Kang, Yuan, Wang, Zhuyuan, Yuan, Shi, Li, Yang, Gao, Li, Wang, Huanting, Zhang, Xiwang
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Sprache:eng
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Zusammenfassung:Solar desalination is considered one of the most promising solutions to the interconnected challenge of water and energy crisis. Interfacial-heating solar-thermal desalination (IHSTD), which localizes solar energy at the evaporation interface for high-efficiency water production, has achieved substantial progress in recent years. Desalination is completed in an integrated process of vapour generation, salt management and water production. Rationally designing IHSTD devices from these three aspects is therefore essential to realize continuous and efficient operation and has been emerging as the most recent research focus. This review aims to present the latest theoretical and experimental advances of IHSTD device design in (i) evaporator design towards efficient vapour generation, (ii) salt management for continuous evaporation and (iii) condensing system integration to boost water production. The most urgent challenges and corresponding opportunities for IHSTD are also highlighted. This review summarizes recent advances and presents an overview of design strategies in interfacial-heating solar-thermal desalination devices.
ISSN:2050-7488
2050-7496
DOI:10.1039/d0ta11911c