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Liquid Desiccant Membrane Regeneration of DES for Air Conditioning Systems Using Electrodialysis Technique

机译:使用电渗析技术进行空调系统的液滴膜再生

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The quest for energy-saving dehumidification approach paved the way to liquid desiccant air conditioning system (LDAC). Non-corrosive and hygroscopic ionic liquids are compelling as potential liquid desiccants. However, toxicity, biocom-patibility, biodegradability, and viscosity of ionic liquids still pose concerns. Binary deep eutectic solvent (DES) of choline chloride and ethylene glycol is proposed as potential greener liquid desiccant in air conditioning systems, by considering desiccant regeneration performance via electrodialysis technique. A parametric study of the liquid desiccant regeneration was investigated numerically using COMSOL Multiphysics commercial software. The results showed the influence of the operational parameters on the overall performance prediction. Electrodialytic regenerated desiccant in a single-cell analysis optimally yielded about 74 mol/m~3 of aliphatic choline species at 313.15 K working temperature and 1.25 V DC power input. 3.59E-02 g/m~2s DES flux was obtained in the regenerated channel at 2 V power input. The results aid in predicting DES desiccant regeneration capacity, understanding electrodialysis phenomenon, and performance influential parameter interactions.
机译:寻求节能除湿方法铺设了液体干燥空调系统(LDAC)的方式。非腐蚀性和吸湿性离子液体令人信地是潜在的液体干燥剂。然而,离子液体的毒性,生物学 - 典型,生物降解性和粘度仍然存在担忧。通过考虑通过电渗析技术考虑干燥剂再生性能,将二元深氯化胆碱和乙二醇的氯化氯和乙二醇中的潜在更环保的液体干燥剂提出。使用COMSOL Multiphysics商业软件在数值上进行了数控研究了液体干燥剂再生的参数研究。结果表明,操作参数对整体性能预测的影响。在单细胞分析中,电渗续的干燥剂在313.15K工作温度和1.25 V直流电源输入下最佳地产生约74mol / m〜3的脂族胆碱物种。 3.59E-02 G / M〜2S DES磁通量在2V电源输入的再生通道中获得。结果有助于预测DES干燥剂再生能力,了解电渗析现象和性能影响的参数相互作用。

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