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基于两相模型研究混合硫酸盐中阳离子交换膜的离子电导率

On the Ionic Conductivity of Cation Exchange Membranes in Mixed Sulfates Using the Two-Phase Model.

作者信息

Wu Liansheng, Jiang Haodong, Luo Tao, Wang Xinlong

机构信息

Ministry of Education's Research Center for Comprehensive Utilization and Clean Process Engineering of Phosphorous Resources, School of Chemical Engineering, Sichuan University, Chengdu 610065, China.

出版信息

Membranes (Basel). 2023 Sep 26;13(10):811. doi: 10.3390/membranes13100811.

Abstract

The concentration dependence of the conductivity of ion exchange membranes (IEMs), as well as other transport properties, has been well explained by the contemporary two-phase model (Zabolotsky et al., 1993) considering a gel phase and an inter-gel phase filled with electroneutral solution. Here, this two-phase model has been adopted and first applied in electrolytes containing mixed counter-ions to investigate the correlation between the membrane ionic conductivity and its microstructure. For three representative commercial cation exchange membranes (CEMs), the total membrane conductivity (κT) when in equilibrium with mixed MgSO + NaSO and HSO + NaSO electrolytes could be well predicted with the experimental composition of counter-ions in the gel and inter-gel phase, as well as the counter-ion mobility in the gel phase when the membrane is in a single electrolyte. It is found that the volume fraction of the inter-gel phase (f2) has little impact on the predicted results. The accuracy of the model can be largely improved by calculating the inter-gel phase conductivity (κin) with the ionic mobility being the same as that in the external solution (obtained via simulation in the OLI Studio), rather than simply as equivalent to the conductivity of the external solution (κs). Moreover, a nonlinear correlation between the CEMs' conductivities and the counter-ion composition in the gel phase is observed in the mixed MgSO + NaSO solution, as well as for the Nafion117 membrane in the presence of sulfuric acid. For CEMs in mixed MgSO + NaSO electrolytes, the calculated conductivity values considering the interaction parameter σ, similar to the Kohlrausch's law, are closer to the experimental ones. Overall, this work provides new insights into membrane conductivity with mixed counter-ions and testifies to the applicability of the contemporary two-phase model.

摘要

离子交换膜(IEMs)的电导率以及其他传输性质的浓度依赖性,已被当代的两相模型(扎博洛茨基等人,1993年)很好地解释,该模型考虑了凝胶相和充满电中性溶液的凝胶间相。在此,采用了这种两相模型,并首次将其应用于含有混合抗衡离子的电解质中,以研究膜离子电导率与其微观结构之间的相关性。对于三种具有代表性的商用阳离子交换膜(CEMs),当与混合的MgSO + NaSO和HSO + NaSO电解质达到平衡时,总膜电导率(κT)可以通过凝胶相和凝胶间相中抗衡离子的实验组成,以及膜处于单一电解质中时凝胶相中抗衡离子的迁移率来很好地预测。发现凝胶间相的体积分数(f2)对预测结果影响很小。通过将凝胶间相电导率(κin)计算为离子迁移率与外部溶液中的相同(通过OLI Studio中的模拟获得),而不是简单地等同于外部溶液的电导率(κs),可以大大提高模型的准确性。此外,在混合的MgSO + NaSO溶液中以及在硫酸存在下的Nafion117膜中,观察到CEMs的电导率与凝胶相中抗衡离子组成之间存在非线性相关性。对于混合MgSO + NaSO电解质中的CEMs,考虑相互作用参数σ计算的电导率值,类似于科尔劳施定律,更接近实验值。总体而言,这项工作为混合抗衡离子的膜电导率提供了新的见解,并证明了当代两相模型的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcbc/10608779/e815a2e4cdee/membranes-13-00811-g001.jpg

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