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基于离子液体的深度除湿技术及应用探索
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作者 曹博文 殷勇高 +1 位作者 Giannetti Niccolo saito kiyoshi 《工程热物理学报》 EI CAS CSCD 北大核心 2024年第10期2958-2964,共7页
液体深度除湿是实现低湿度行业低碳转型的一种有效途径。目前,具有深度除湿潜力(极低蒸气压、非结晶和无腐蚀)的离子液体是传统盐溶液的理想替代。本研究搭建了离子液体深度除湿实验平台,并分析了不同运行工况下的除湿性能。结果表明:降... 液体深度除湿是实现低湿度行业低碳转型的一种有效途径。目前,具有深度除湿潜力(极低蒸气压、非结晶和无腐蚀)的离子液体是传统盐溶液的理想替代。本研究搭建了离子液体深度除湿实验平台,并分析了不同运行工况下的除湿性能。结果表明:降膜/鼓泡吸收方式均能实现较高的深度除湿效果,最低出风含湿量可降至2.0 g/kg(da)以下。同时,对于进口含湿量为3.3 g/kg(da)的低湿工况,降膜装置的除湿效率仅为40%左右。然而,鼓泡装置的除湿效率可达到81%,有效开发了离子液体的深度除湿潜力。此外,总结了两种吸收方式的先进性与适用性,为离子液体深度除湿技术的应用提供指导。 展开更多
关键词 深度除湿 离子液体 除湿性能 实验研究
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A Bubble Column Dehumidifier using Ionic Liquid Desiccant for Low-Humidity Industries: Insights into Transfer Processes Integrating Experiment and CFD Modelling
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作者 CAO Bowen YIN Yonggao saito kiyoshi 《Journal of Thermal Science》 SCIE EI CAS CSCD 2024年第6期2348-2371,共24页
Liquid desiccant deep dehumidification(LDDD)is an excellent energy-saving technology for low-humidity industries.Ionic liquids(ILs)are favored as optimal working fluids for LDDD,owing to their low vapor pressure,non-c... Liquid desiccant deep dehumidification(LDDD)is an excellent energy-saving technology for low-humidity industries.Ionic liquids(ILs)are favored as optimal working fluids for LDDD,owing to their low vapor pressure,non-crystallization,and non-corrosion.The combined application of IL desiccant with the bubble column has been proven to effectively improve deep dehumidification.The present work focuses specifically on the insights into air-liquid transfer processes in bubble column dehumidifier using ionic liquid desiccant.The effect of operating parameters on volumetric transfer coefficient is examined based on the experimental platform.Meanwhile,the bubble swarms meso-scale flow structure is predicted using computational fluid dynamics coupled with a population balance model(CFD-PBM).Besides,the structure-activity relationship between meso-scale flow structure and transfer performance is investigated.The results indicated a notable phenomenon of bubble aggregation/breakage in the moist air-IL desiccant bubbly deep dehumidification(MA-ILD BDD)system,with a specific interfacial area is basically less than 40 m^(-1).Meanwhile,a decrease in solution temperature,correlated with a significant increase in viscosity,leads to larger turbulent eddies and a slower breakage rate.Notably,a high transfer potential difference enhances heat and mass transfer coefficients at lower solution temperatures,with the mass transfer coefficient at 4℃ being approximately three times that at 10℃.As the superficial velocity changes,the specific interfacial area and heat and mass transfer coefficients have a positive synergistic effect on volumetric transfer coefficient.However,this synergistic effect is reversed with variations in solution temperature.This study aims to clarify the air-liquid transfer mechanism in bubble column dehumidifierusingILdesiccant. 展开更多
关键词 liquid desiccant ionic liquid bubble column deep dehumidification heat and mass trans low-humidityindustries
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