Temperature and Humidity Control for the Next Generation Greenhouses: Overview of Desiccant and Evaporative Cooling Systems

M. Sultan, Hadeed Ashraf, T. Miyazaki, R. Shamshiri, I. Hameed
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引用次数: 3

Abstract

Temperature and humidity control are crucial in next generation greenhouses. Plants require optimum temperature/humidity and vapor pressure deficit conditions inside the greenhouse for optimum yield. In this regard, an air-conditioning system could provide the required conditions in harsh climatic regions. In this study, the authors have summarized their published work on different desiccant and evaporative cooling options for greenhouse air-conditioning. The direct, indirect, and Maisotsenko cycle evaporative cooling systems, and multi-stage evaporative cooling systems have been summarized in this study. Different desiccant materials i.e., silica-gels, activated carbons (powder and fiber), polymer sorbents, and metal organic frameworks have also been summarized in this study along with different desiccant air-conditioning options. However, different high-performance zeolites and molecular sieves are extensively studied in literature. The authors conclude that solar operated desiccant based evaporative cooling systems could be an alternate option for next generation greenhouse air-conditioning.
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新一代温室的温度和湿度控制:干燥剂和蒸发冷却系统概述
温度和湿度的控制是下一代温室的关键。为了获得最佳产量,植物需要温室内的最佳温度/湿度和蒸汽压差条件。在这方面,空调系统可以在气候恶劣的地区提供所需的条件。在这项研究中,作者总结了他们发表的关于温室空调的不同干燥剂和蒸发冷却选择的工作。本文综述了直接蒸发冷却系统、间接蒸发冷却系统、Maisotsenko循环蒸发冷却系统和多级蒸发冷却系统。不同的干燥剂材料,如硅胶、活性炭(粉末和纤维)、聚合物吸附剂和金属有机框架,以及不同的干燥剂空调选择,也在本研究中进行了总结。然而,不同的高性能沸石和分子筛在文献中被广泛研究。作者得出结论,太阳能干燥剂蒸发冷却系统可能是下一代温室空调的替代选择。
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