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A new approach to enhance the heat and mass transfer of liquid desiccant dehumidification with a titanium dioxide superhydrophilic self-cleaning coating

机译:二氧化钛超亲水性自洁涂层增强液体干燥剂除湿的传热传质的新方法

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The cooling system with liquid desiccant dehumidification is an energy-efficient and eco-friendly solution for the ever-increasing energy consumption and environmental impact of modern buildings. By significantly influencing the wetted area, the contact angle of the liquid air interface is critical to the performance of desiccant dehumidification. In this study, to enhance heat and mass transfer performance, a new approach was developed with a titanium dioxide superhydrophilic self-cleaning coating on the dehumidifier surfaces that was made of a highly dispersed paste with nanoscale titanium dioxide particles and activated with ultraviolet light. We first tested the effect of the coatings on samples made of three commonly used materials, SUS304, SUS316, and SUS410, with a 30% LiBr solution and deionized water. Results show that the contact angle on the coated samples dramatically decreased to only 1/7 for water and 1/6 for the LiBr solution compared to uncoated samples. The durability of the coatings was studied experimentally by repeatedly immersing the samples in 30% LiBr, exposing them for 2 months, and reactivating them. It was found that the angle changed slightly for SUS304/316 samples with good anticorrosion performance, whereas the angle increased by 100-200 for SUS410 samples due to the accelerated catalytic oxidization of the Titanium dioxide coating, which could possibly be solved by precoating an SiO2 compact layer. Furthermore, we found numerically that the wetted area during desiccant dehumidification could be effectively increased by 5-7 times with the coating. Accordingly, the heat exchange rate and moisture removal rate between the air and the desiccant could be increased by 1.2 and 2 times, respectively. Therefore, by dramatically reducing the desiccant contact angle on dehumidifier surfaces and enlarging the wetted area accordingly, the titanium dioxide self-cleaning coating could significantly improve the heat and mass transfer performance of liquid desiccant dehumidification, especially the mass transfer performance. The coatings' manufacture is cheap and facile for industrialization. This measure can be considered an effective and economic way to improve the performance of a dehumidifier and also has other applications in heat exchangers, evaporators, and absorption towers. (C) 2015 Elsevier Ltd. All rights reserved.
机译:带有液体干燥剂除湿功能的冷却系统是一种节能,环保的解决方案,可用于不断增加的能耗和现代建筑对环境的影响。通过显着影响润湿区域,液体空气界面的接触角对于干燥剂除湿性能至关重要。在这项研究中,为了增强传热和传质性能,开发了一种新方法,在除湿机表面上使用二氧化钛超亲水性自洁涂层,该涂层由高度分散的纳米级二氧化钛颗粒糊状物制成,并被紫外线激活。我们首先用30%的LiBr溶液和去离子水测试了涂层对由三种常用材料SUS304,SUS316和SUS410制成的样品的影响。结果表明,与未涂布样品相比,在涂布样品上的接触角对于水急剧降低至仅为1/7,对于LiBr溶液仅为1/6。通过将样品反复浸入30%LiBr中,将其暴露2个月,然后重新活化,对涂层的耐久性进行了实验研究。发现对于具有良好防腐性能的SUS304 / 316样品,该角度略有变化,而对于SUS410样品,该角度增加了100-200,这是由于二氧化钛涂层加速了催化氧化,这可能可以通过预涂SiO2来解决。致密层。此外,我们从数值上发现,用涂层有效地将干燥剂除湿过程中的湿润面积提高了5-7倍。因此,空气和干燥剂之间的热交换率和水分去除率可以分别提高1.2倍和2倍。因此,通过显着减小干燥剂在除湿器表面上的接触角并相应地增大润湿面积,二氧化钛自清洁涂层可以显着改善液体干燥剂除湿的传热和传质性能,尤其是传质性能。涂料的制造便宜且易于工业化。可以认为该措施是提高除湿机性能的有效且经济的方法,并且在热交换器,蒸发器和吸收塔中也有其他应用。 (C)2015 Elsevier Ltd.保留所有权利。

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