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Experimental performance of indirect air-liquid membrane contactors for liquid desiccant cooling systems

机译:间接式气液膜接触器在液体干燥剂冷却系统中的实验性能

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Owing to the stringent indoor air quality (IAQ) requirements and high cost of desiccants, one of the major concerns in liquid desiccant technology has been the carryover, which can be eliminated through indirect contact between desiccant and air. Membrane contactors using microporous semipermeable hydro-phobic membranes have a great potential in this regard. This communication investigates the performance of semipermeable membrane based indirect contactors as dehumidifiers in liquid desiccant cooling applications. Experiments on different types of membrane contactors are carried out using lithium chloride (LiCl) solution as desiccant. The membrane contactors consist of alternate channels of air and liquid desiccant flowing in cross-flow direction. Hydrophobic membranes form a liquid tight, vapor permeable porous barrier between hygroscopic solution and moist air, thus eliminating carryover of desiccant droplets. In order to provide maximum contact area for air-desiccant interaction, a wicking material is sandwiched between two membranes in the liquid channel. It is observed that vapor flux upto 1300 g/m2 h can be achieved in a membrane contactor with polypropylene (PP) membranes, although the dehumidification effectiveness remains low. The effect of key parameters on the transmembrane vapor transport is presented in the paper.
机译:由于严格的室内空气质量(IAQ)要求和干燥剂的高成本,液体干燥剂技术的主要关注之一是残留物,可以通过干燥剂与空气之间的间接接触消除残留物。在这方面,使用微孔半透性疏水膜的膜接触器具有很大的潜力。该交流调查了基于半透膜的间接接触器在液体干燥剂冷却应用中作为除湿机的性能。使用氯化锂(LiCl)溶液作为干燥剂,对不同类型的膜接触器进行了实验。膜接触器由交替流动的空气和液体干燥剂在横流方向上流动组成。疏水膜在吸湿溶液和潮湿空气之间形成不透液,可透过蒸汽的多孔屏障,从而消除了干燥剂液滴的残留。为了为除湿剂相互作用提供最大的接触面积,将芯吸材料夹在液体通道中的两个膜之间。可以观察到,尽管除湿效率仍然很低,但在带有聚丙烯(PP)膜的膜接触器中可以达到高达1300 g / m2 h的蒸汽通量。本文介绍了关键参数对跨膜蒸气传输的影响。

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