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Electric mass transport through homogeneous and surface-modified heterogeneous ion-exchange membranes at a rotating membrane disk

机译:在旋转膜盘处通过均质和表面改性的异质离子交换膜进行质量传递

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Polarization characteristics of the homogeneous MF-4SK perfluorinated sulfonated cation-exchange membrane and the heterogeneous MK-40 sulfonic acid membrane with its surface modified by a homogeneous film of Nafion are studied at a rotating membrane disk in 0.1 and 0.001 M sodium chloride solutions. Partial current-voltage curves (CVC) are obtained for sodium and hydrogen ions, and limiting current densities in the electromembrane systems (EMS) under study are calculated as a function of the rotation rate of the membrane disk. Contribution from different mechanisms (electrodiffusion, electroconvection, dissociation of water, and the effect of the limiting-current exaltation) to the total ion flow is estimated experimentally and theoretically under conditions that the diffusion layer in the EMS has stabilized in thickness. It is established that surface modification of the heterogeneous MK-40 membrane with a 7 A mu m layer of a modifying agent almost completely eliminates the dissociation of water molecules, and the properties of the heterogeneous MK-40 membrane approximate those of the homogeneous Nafion membrane. From IR spectra and potentiometric titration curves of the MK-40 and MF-4SK membranes, it is shown that the acidity of the sulfonate groups in these membranes is nearly identical, but a difference in the dissociation rate of water at these membranes is determined by a different character of charge-density distribution and potential near the membrane-solution interphase boundary. By means of the theory of the overlimiting state in EMS, the internal parameters of the systems under investigation are calculated: distribution of space-charge density and electric-field potential in the diffusion layer and in the membrane. Partial CVC are calculated for H+ ions for the space-charge region in the phase of the MF-4SK and MK-40/Nafion ion-exchange membranes. Partial CVC with similar characteristics are compared for the heterogeneous monopolar MK-40 and the bipolar MB-2 membranes, which contain sulfonate groups. It is concluded that the membrane surface layer, where the space charge is localized, plays a dominant role in speeding up the dissociation of water in EMS.
机译:研究了均相MF-4SK全氟化磺化阳离子交换膜和表面被Nafion均相膜改性的异质MK-40磺酸膜在0.1和0.001 M氯化钠溶液中在旋转膜片上的偏振特性。获得钠离子和氢离子的部分电流-电压曲线(CVC),并根据膜片旋转速度来计算所研究的电膜系统(EMS)中的极限电流密度。在EMS中扩散层厚度稳定的条件下,通过实验和理论估算了不同机理(电扩散,电对流,水的离解和极限电流提升的影响)的贡献。已经确定,用7 Aμm的改性剂层对异质MK-40膜进行表面改性几乎可以完全消除水分子的离解,并且异质MK-40膜的性能近似于均质Nafion膜。从MK-40和MF-4SK膜的IR光谱和电位滴定曲线可以看出,这些膜中磺酸盐基团的酸度几乎相同,但是这些膜上水的解离速率的差异由膜溶液相间边界附近的电荷密度分布和电势具有不同的特征。借助EMS中的超限状态理论,可以计算出所研究系统的内部参数:扩散层和膜中的空间电荷密度和电场势的分布。计算MF-4SK和MK-40 / Nafion离子交换膜相中空间电荷区域的H +离子的部分CVC。比较了具有相似特性的部分CVC,用于含有磺酸盐基团的异质单极MK-40和双极MB-2膜。结论是,空间电荷所局限的膜表面层在加速EMS中水的离解中起主要作用。

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