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Fabrication of a lithium chloride solution based composite supported liquid membrane and its moisture permeation analysis

机译:氯化锂溶液基复合负载液膜的制备及其水分渗透分析

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摘要

A novel composite supported liquid membrane has been prepared for ventilation air moisture recovery. The membrane is composed of three layers: two hydrophobic protective layers and a sandwiched hydrophilic support layer in which LiCl solution is immobilized to facilitate water vapor transfer. A test is conducted to measure the moisture permeation rate through the composite membrane. Various resistances in the cell and in the composite membrane are clarified. Linear equilibrium relations between humidity, temperature, and LiCl concentration in the liquid solution layer are obtained to aid in the model set-up. It has been found that the mean moisture permeation rate through the composite membrane is around 1.14 × 10  kg m  s , almost two times higher than that through a solid hydrophilic cellulose acetate membrane with comparative thickness. Further, the supported liquid layer only accounts for 12% of the total moisture transfer resistance in the cell, indicating that there is much potential for further performance improvement.
机译:已经制备了用于空气中的水分回收的新型复合支撑液膜。该膜由三层组成:两个疏水性保护层和一个夹心亲水性支撑层,其中固定有LiCl溶液以促进水蒸气的转移。进行测试以测量通过复合膜的透湿率。澄清了电池和复合膜中的各种电阻。获得液体溶液层中的湿度,温度和LiCl浓度之间的线性平衡关系,以帮助建立模型。已经发现,通过复合膜的平均透湿率约为1.14×10 kg·m·s,几乎比通过具有相对厚度的固体亲水醋酸纤维素膜的透湿率高两倍。此外,被支撑的液体层仅占电池中总的水分传递阻力的12%,表明存在进一步改进性能的巨大潜力。

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