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Increasing selectivity of a heterogeneous ion-exchange membrane

机译:提高非均质离子交换膜的选择性

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Selectivity, permselectivity, and conductivity are the main ion-exchange membrane parameters. While permselectivity determines how well the membrane separates cations from anions, the selectivity determines how well the membrane transports uni- and multivalent ions. On the other hand, conductivity determines how fast the ions are transported through the membrane. All these parameters depend on many other factors, especially on the membrane structure. It is difficult to develop highly selective (permselective) and highly conductive heterogeneous ion-exchange membranes. Reason for this is porosity: while the conductivity increases with increasing porosity, the selectivity and permselectivity decreases. This work was focused on increasing the selectivity and, at the same time, the conductivity of heterogeneous ion-exchange membranes. It was found that most of the techniques of modification of homogeneous membranes cannot be used with modification heterogeneous ion-exchange membranes. It appears that the choice of a polymer matrix is a key factor in the preparation of heterogeneous ion-exchange membranes with high selectivity to monovalent ions and also high permselectivity while maintaining the same, even a higher conductivity.
机译:选择性,渗透选择性和电导率是主要的离子交换膜参数。渗透选择性决定了膜将阳离子与阴离子分离的能力,而选择性则决定了膜对单价和多价离子的传输能力。另一方面,电导率决定离子通过膜的传输速度。所有这些参数取决于许多其他因素,特别是取决于膜结构。难以开发高选择性(选择性渗透)和高导电性的异质离子交换膜。其原因是孔隙率:尽管电导率随孔隙率的增加而增加,但选择性和渗透选择性却降低了。这项工作的重点是提高选择性,同时提高非均质离子交换膜的电导率。已经发现,大多数改性均质膜的技术不能与改性异质离子交换膜一起使用。似乎聚合物基质的选择是制备异质离子交换膜的关键因素,该膜对单价离子具有高选择性,并且在保持相同甚至更高电导率的同时具有高渗透选择性。

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