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Water Splitting and Transport of Ions in Electromembrane System with Bilayer Ion-Exchange Membrane

机译:双层离子交换膜电磁体系中离子的水分裂与运输

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摘要

Bilayer ion-exchange membranes are mainly used for separating single and multiply charged ions. It is well known that in membranes in which the layers have different charges of the ionogenic groups of the matrix, the limiting current decreases, and the water splitting reaction accelerates in comparison with monolayer (isotropic) ion-exchange membranes. We study samples of bilayer ion-exchange membranes with very thin cation-exchange layers deposited on an anion-exchange membrane-substrate in this work. It was revealed that in bilayer membranes, the limiting current’s value is determined by the properties of a thin surface film (modifying layer). A linear regularity of the dependence of the non-equilibrium effective rate constant of the water-splitting reaction on the resistance of the bipolar region, which is valid for both bilayer and bipolar membranes, has been revealed. It is shown that the introduction of the catalyst significantly reduces the water-splitting voltage, but reduces the selectivity of the membrane. It is possible to regulate the fluxes of salt ions and water splitting products (hydrogen and hydroxyl ions) by changing the current density. Such an ability makes it possible to conduct a controlled process of desalting electrolytes with simultaneous pH adjustment.
机译:双层离子交换膜主要用于分离单一和倍增的离子。众所周知,在其中层具有基质的离子发生的不同电荷的膜中,限制电流降低,与单层(各向同性)离子交换膜相比,水分裂反应加速。我们研究双层离子交换膜的样品,其中沉积在阴离子交换膜 - 基材上的非常薄的阳离子交换层。揭示了在双层膜中,限制电流的值由薄表面膜(改性层)的性质确定。已经揭示了对双极区域对双极区域的抗性的非平衡有效率常数的依赖性的线性规律,这对双层和双极膜有效。结果表明,催化剂的引入显着降低了水分解电压,但减少了膜的选择性。通过改变电流密度,可以调节盐离子和水分解产物(氢和羟基离子)的助熔剂。这种能力使得可以进行具有同时pH调节的脱盐电解质的受控过程。

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