电容性去离子电极中微孔双电层基于尺寸的离子选择性

M. Suss
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引用次数: 69

摘要

电容式去离子(CDI)是一种新兴技术,最常应用于咸淡水脱盐。在CDI中,盐离子从给水中去除并储存在带电多孔碳电极的微孔内的双电层(edl)中。最近的实验表明,CDI电极表现出基于离子大小的选择性离子去除,在等价离子的情况下,较小的离子被优先去除。然而,最先进的CDI理论并没有捕捉到这种观察到的选择性,因为它假设微孔edl中没有体积的点离子。我们在此提出了一个包含多种对离子的理论,并通过将离子体积排斥相互作用纳入微孔edl的描述来放宽点离子假设。所建立的模型是一个耦合的非线性代数方程组,可以求解微孔离子浓度和电池平衡时的电极Donnan电位。我们证明了该模型捕获了实验观察到的CDI电极基于尺寸的离子选择性的关键特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Size-based ion selectivity of micropore electric double layers in capacitive deionization electrodes
Capacitive deionization (CDI) is a fast-emerging technology most commonly applied to brackish water desalination. In CDI, salt ions are removed from the feedwater and stored in electric double layers (EDLs) within micropores of electrically charged porous carbon electrodes. Recent experiments have demonstrated that CDI electrodes exhibit selective ion removal based on ion size, with the smaller ion being preferentially removed in the case of equal-valence ions. However, state-of-the-art CDI theory does not capture this observed selectivity, as it assumes volume-less point ions in the micropore EDLs. We here present a theory which includes multiple couterionic species, and relaxes the point ion assumption by incorporating ion volume exclusion interactions into a description of the micropore EDLs. The developed model is a coupled set of nonlinear algebraic equations which can be solved for micropore ion concentrations and electrode Donnan potential at cell equilibrium. We demonstrate that this model captures key features of the experimentally observed size-based ion selectivity of CDI electrodes.
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