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Hollow Fiber Membrane Dehumidification Device for Air Conditioning System

机译:空调系统中空纤维膜除湿装置

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摘要

In order to provide a comfortable living and working environment indoors in tropical countries, the outdoor air often needs to be cooled and dehumidified before it enters the rooms. Membrane separation is an emerging technology for air dehumidification and it is based on the solution diffusion mechanism. Water molecules are preferentially permeating through the membranes due to its smaller kinetic diameter and higher condensability than the other gases. Compared to other dehumidification technologies such as direct cooling or desiccation, there is no phase transition involved in membrane dehumidification, neither the contact between the fresh air stream and the desiccants. Hence, membrane dehumidification would not only require less energy consumption but also avoid cross-contamination problems. A pilot scale air dehumidification system is built in this study which comprises nine pieces of one-inch PAN/PDMS hollow fiber membrane modules. A 150 h long-term test shows that the membrane modules has good water vapor transport properties by using a low vacuum force of only 0.78 bar absolute pressure at the lumen side. The water vapor concentration of the feed humid air decreases dramatically from a range of 18–22 g/m3 to a range of 13.5–18.3 g/m3. Most importantly, the total energy saving is up to 26.2% compared with the conventional air conditioning process.
机译:为了在热带国家的室内提供舒适的生活和工作环境,室外空气进入房间之前通常需要进行冷却和除湿。膜分离是一种用于空气除湿的新兴技术,它基于溶液扩散机制。由于水分子的动力学直径较小,并且比其他气体具有更高的冷凝性,因此水分子优先透过膜。与其他除湿技术(例如直接冷却或干燥)相比,膜除湿没有相变,新鲜空气流与干燥剂之间也没有接触。因此,膜除湿不仅需要较少的能量消耗,而且还避免了交叉污染的问题。在这项研究中,建立了一个中试规模的空气除湿系统,该系统包括九块一块1英寸的PAN / PDMS中空纤维膜组件。 150小时的长期测试表明,膜组件通过在腔侧使用仅0.78 bar绝对压力的低真空力,具有良好的水蒸气传输性能。进料湿空气中的水蒸气浓度从18–22 g / m 3 的范围急剧降低到13.5–18.3 g / m 3 的范围。最重要的是,与传统的空调工艺相比,总节能量高达26.2%。

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