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Liquid desiccant dehumidification and regeneration process to meet cooling and freshwater needs of desert greenhouses

机译:液体干燥剂除湿和再生过程,以满足沙漠温室的冷却和淡水需求

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Agriculture accounts for similar to 70% of freshwater usage worldwide. Seawater desalination alone cannot meet the growing needs for irrigation and food production, particularly in hot, desert environments. Greenhouse cultivation of high-value crops uses just a fraction of freshwater per unit of food produced when compared with open field cultivation. However, desert greenhouse producers face three main challenges: freshwater supply, plant nutrient supply, and cooling of the greenhouse. The common practice of evaporative cooling for greenhouses consumes large amounts of fresh water. In Saudi Arabia, the most common greenhouse cooling schemes are fresh water-based evaporative cooling, often using fossil groundwater or energy-intensive desalinated water, and traditional refrigeration-based direct expansion cooling, largely powered by the burning of fossil fuels. The coastal deserts have ambient conditions that are seasonally too humid to support adequate evaporative cooling, necessitating additional energy consumption in the dehumidification process of refrigeration-based cooling. This project evaluates the use of a combined-system liquid desiccant dehumidifier and membrane distillation unit that can meet the dual needs of cooling and freshwater supply for a greenhouse in a hot and humid environment.
机译:农业占全球淡水使用的70%。单独海水淡化不能满足灌溉和食品生产需求不断增长,特别是在热,沙漠环境中。温室培养高价值作物仅使用与开放田间培养相比生产的每单位食物的淡水部分。然而,沙漠温室生产商面临三项主要挑战:淡水供应,植物养分供应,以及温室的冷却。温室蒸发冷却的常见做法消耗了大量的淡水。在沙特阿拉伯,最常见的温室冷却方案是淡水的蒸发冷却,通常采用化石地下水或能量密集的脱盐水,以及传统的制冷直接膨胀冷却,主要由化石燃料燃烧。沿海沙漠具有环境条件,这些条件是季节性的太潮湿,以支持充足的蒸发冷却,需要在制冷的冷却过程中的除湿过程中的额外能耗。该项目评估了使用组合系统的液体干燥剂除湿器和膜蒸馏装置,可满足热潮湿的环境中温室的冷却和淡水供应的双重需求。

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