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

机译:界面加热太阳能 - 热脱盐装置的合理设计:最近的进展和剩余挑战

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摘要

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.
机译:太阳能海水淡化被认为是应对水和能源危机这一相互关联的挑战的最有希望的解决方案之一。界面加热太阳能热脱盐(IHSTD)是一种将太阳能集中在蒸发界面进行高效产水的技术,近年来取得了重大进展。海水淡化是在蒸汽生成、盐管理和水生产的综合过程中完成的。因此,从这三个方面合理设计IHSTD设备对于实现连续高效运行至关重要,已成为最新的研究热点。本综述旨在介绍IHSTD装置设计在以下方面的最新理论和实验进展:(i)蒸发器设计,以实现高效蒸汽生成;(ii)连续蒸发的盐管理;(iii)冷凝系统集成,以提高产水量。文中还强调了IHSTD面临的最紧迫挑战和相应的机遇。

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