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Air-cooled adsorption-based device for harvesting water from island air

机译:用于从岛屿空气中收获水的空气冷却吸附装置

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摘要

Adsorption-based, atmospheric water harvesting is a promising method for addressing water scarcity, which is a common issue in island areas, which often contain a large amount of fresh water in the air. Most existing adsorption-based atmospheric water harvesting systems usually require an additional cooling source, e.g., water-cooling, to cool the released humid high-temperature air below its dew point to harvest liquid water. To date, large-scale atmospheric water harvesting devices that use air cooling in such conditions have not yet been developed. Herein, we report a forced air-cooled proof-of-concept device for harvesting water from island air. Fabricated using 21 kg activated carbon fibre felt (ACFF)-silica sol-LiCl30, this device generated up to 7.7 kg of water (adsorption at 31 degrees C with 63% relative humidity) per day-and-night cycle, with a thermal efficiency (ratio of thermal energy to water conversion) of 0.37, using air cooling alone in laboratory-simulated island conditions. This study verifies the possibility of using air cooling to condense released humid air. It provides a flexible water generation solution for island regions with limited supplies of fresh water and power.
机译:基于吸附的大气采集是一种有希望解决水资源稀缺的方法,这是岛屿地区的常见问题,这通常在空中含有大量的淡水。大多数现有的基于吸附的大气采集系统通常需要额外的冷却源,例如水冷,冷却释放潮湿的高温空气,以至于其露点以收获液体水。迄今为止,尚未开发出在这种情况下使用空气冷却的大型大气水收集装置。在此,我们报告了一种用于从岛屿空气中收获水的强制空气冷却的概念装置。使用21kg活性炭纤维毛毡(ACFF)-Silica Sol-LiCL30制造,该装置产生高达7.7千克的水(在31℃下吸附63%,相对湿度63%相对湿度),具有热效率(热能与水转化的比率)为0.37,在实验室模拟岛条件下单独使用空气冷却。这项研究验证了使用空气冷却以冷凝的可能性释放潮湿的空气。它为岛屿区域提供了一种灵活的水解解决方案,具有有限的淡水和电力供应。

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