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Performance study of a solar-assisted hollow-fiber-membrane-based air humidification-dehumidification desalination system: Effects of membrane properties

机译:太阳能辅助空心纤维 - 玻璃膜的空湿化除湿脱水系统的性能研究:膜特性的影响

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Hollow-fiber membrane humidifiers were used in solar-assisted and membrane-based air humidification-dehumidification desalination systems (SMHDD) because of their greater packing density and thus better transfer efficiency. A dynamic mathematical model containing the major components of this system was established, including the membrane humidifier, dehumidifier and solar heating unit. The model was validated with test data from an experimental platform where three kinds of membranes with different membrane thickness, heat conductivity, etc., were tested. To understand the role of membrane characteristics in the proposed desalination system, the effects of the membrane moisture diffusivity (D-m), heat conductivity (lambda(m)), membrane thickness (delta(m)) and membrane area (A(tot)) on the system performance were analyzed numerically. Of the three factors, D-m and A(tot) show the most significant effect on the accumulated freshwater production (AP) and coefficient of performance (COP), and the effects of delta(m) on the system performance are far less pronounced than that of D-m and delta(m). In summary, membranes with higher moisture diffusivity and smaller thickness can improve system performance without much attention to the heat conductivity. However, further raising D-m above 3.0 x 10(6) m(2)/s has a slight benefit to the performance improvement. Findings in this paper are useful in guiding the preparation of membranes used for application-scale membrane-based desalination systems operating in real-world environmental conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于其填充密度更大,因此更好的转移效率,在太阳能辅助和基于膜的空气加湿 - 除湿系统(SMHDD)中使用了空心纤维膜加湿器。建立了包含该系统主要组件的动态数学模型,包括膜加湿器,除湿器和太阳能加热装置。该模型用实验平台的测试数据验证,测试了三种具有不同膜厚度,导热性等的膜。要了解膜特性在提出的脱盐系统中的作用,膜水分扩散率(DM),导热率(Lambda(M)),膜厚度(Delta(M))和膜面积(A(Tot))的影响在数字上分析系统性能。在三个因素,DM和A(TOT)中对累积的淡水生产(AP)和性能系数(COP)以及Δ(M)对系统性能的影响远远不如那样的效果dm和delta(m)。总之,具有较高水分扩散率和较小厚度的膜可以改善系统性能,而不会对导热率进行大量关注。然而,进一步升高D-M以上3.0×10(6)m(2)/ s对性能改善有轻微的益处。本文的发现可用于引导用于在现实世界环境条件下运行的应用型膜的脱盐系统的膜的制备。 (c)2019年elestvier有限公司保留所有权利。

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