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Diffusive permeability of hybrid cation-exchange membranes MF-4SC/halloysite nanotubes

机译:杂化阳离子交换膜MF-4SC /硅藻土纳米管的扩散渗透率

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The diffusion permeability through new hybrid materials based on a Nafion-type membrane (MF-4SC) and nanotubes of halloysite is investigated using the Nernst-Planck approach. A method of quantitative evaluation of physicochemical parameters (averaged and individual diffusion coefficients and averaged distribution coefficients of ion pairs in the membrane) of system `electrolyte solution - ion-exchange membrane - water', which was proposed earlier, is further developed. The parameters of hybrid membranes on the base of MF-4SC and nanotubes of halloysite (5%wt. and 8%wt.) are obtained from experimental data on diffusion permeability of NaCl solutions using theoretical calculations. New model of three-layer membrane system can be used for refining calculated results with taking into account both diffusive layers. It is shown that adding of halloysite nanotubes into the membrane volume noticeably affects exchange capacity as well as structural and transport characteristics of original perfluorinated membranes. Hybrid membranes on the base of MF-4SC and halloysite nanotubes can be used in fuel cells and catalysis.
机译:使用能斯特-普朗克方法研究了基于Nafion型膜(MF-4SC)和埃洛石纳米管的新型杂化材料的扩散渗透性。进一步提出了较早提出的“电解质溶液-离子交换膜-水”系统的理化参数(膜中离子对的平均和各个扩散系数和平均分配系数)的定量评价方法。基于理论计算,从NaCl溶液扩散渗透率的实验数据获得了基于MF-4SC和埃洛石纳米管(5%wt。和8%wt。)的杂化膜的参数。考虑到两个扩散层,可以使用新的三层膜系统模型来优化计算结果。结果表明,将埃洛石纳米管添加到膜体积中会显着影响原始全氟化膜的交换容量以及结构和传输特性。 MF-4SC和埃洛石纳米管的杂化膜可用于燃料电池和催化。

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