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Experimental investigation on the mass transfer performance of a novel packing used for liquid desiccant systems

机译:一种液体干燥剂体系用新型填料传质性能的实验研究

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摘要

The structured packing has been widely used in the liquid desiccant systems due to low air pressure drop and large heat and mass transfer area. However, the structured packing is usually expensive and poor in mass transfer against the random packing. In order to provide the cost-effective structured packing with excellent mass transfer performance, Z-type packing made of gauze is proposed and designed in this article. The dehumidification and regeneration performance of the proposed packing are tested experimentally under summer conditions. It is found that the Z-type packing has excellent dehumidification performance with the mass transfer coefficient ranging from 6.5 to 14.2g/m(2)s, about 70 higher than the corrugated cellulose packing and the plant fiber packing on average. Although the novel packing is lower in the moisture removal rate and the dehumidification efficiency, it could be made more tightly by shortening the distance between gauze sheets to overcome the shortcoming. The regeneration performance of the Z-type packing is also comparable with the plant fiber packing. The economic analysis is further conducted and it verifies the low cost of the Z-type packing under the same moisture removal/evaporation rate. The proposed packing is expected to be an alternative to the existing packings.
机译:由于气压降低,传热传质面积大,结构化填料已广泛应用于液体干燥剂系统。然而,结构化填料通常价格昂贵,并且相对于随机填料的传质性较差。为了提供具有优异传质性能的高性价比结构化填料,本文提出并设计了纱布制成的Z型填料。在夏季条件下对所提填料的除湿和再生性能进行了实验测试。结果表明,Z型填料具有优异的除湿性能,传质系数在6.5-14.2g/m(2)s之间,平均比瓦楞纤维填料和植物纤维填料高出约70%。虽然新型填料在除湿率和除湿效率方面较低,但可以通过缩短纱布片之间的距离来克服这一缺点,使其更加紧密。Z型填料的再生性能也可与植物纤维填料相媲美。进一步进行了经济分析,验证了Z型填料在相同除湿/蒸发速率下的低成本。拟议的填料预计将成为现有填料的替代品。

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