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Solar energy utilization in water production from humid air

机译:湿空气生产中的太阳能利用

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Water recovery from atmospheric air is introduced as a beneficial solution for providing remote regions with fresh water. This system depends on extraction of water vapor from atmospheric air by using desiccant material. The desiccant material (calcium chloride solution) absorbs water from humid air during night time then, it evaporates the absorbed water during the day time by solar energy. The evaporated water condensates on the solar collector sides and the condensed water droplets are collected. A mathematical model for the regeneration process is introduced for theoretical study. The new model presents 15% improvement in theoretical results compared with other published models. This work aims to evaluate the effect of different operation conditions (initial desiccant concentration, initial mass of solution and host materials) on the system performance characteristics (system efficiencies, evaporation rate and water productivity). Moreover, the simulation model investigates the system performance for different Egyptian weather conditions (spring and summer). The total produced water, which could be obtained in spring, is about 3.021/(day center dot m(2)) in Alexandria. (C) 2017 Elsevier Ltd. All rights reserved.
机译:引入大气中的水回收作为一种有益的解决方案,可为偏远地区提供淡水。该系统依赖于使用干燥剂从大气中提取水蒸气。干燥剂(氯化钙溶液)在夜间从潮湿的空气中吸收水,然后在白天利用太阳能蒸发吸收的水。蒸发的水在太阳能收集器侧冷凝,并且冷凝的水滴被收集。介绍了再生过程的数学模型以进行理论研究。与其他已发布的模型相比,新模型的理论结果提高了15%。这项工作旨在评估不同操作条件(初始干燥剂浓度,溶液和基质的初始质量)对系统性能特征(系统效率,蒸发速率和水生产率)的影响。此外,仿真模型调查了不同埃及天气条件(春季和夏季)的系统性能。在亚历山大,春季可以生产的总产水量约为3.021 /(日中心点m(2))。 (C)2017 Elsevier Ltd.保留所有权利。

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