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膜电容去离子软化水过程中选择性离子去除的机理。

Mechanism of Selective Ion Removal in Membrane Capacitive Deionization for Water Softening.

机构信息

Department of Civil and Environmental Engineering , Vanderbilt University , Nashville , Tennessee 37235-1831 , United States.

Department of Chemical and Biomolecular Engineering , Vanderbilt University , Nashville , Tennessee 37235-1604 , United States.

出版信息

Environ Sci Technol. 2019 May 21;53(10):5797-5804. doi: 10.1021/acs.est.9b00655. Epub 2019 May 2.

Abstract

Capacitive deionization (CDI) is an emerging technology capable of selective removal of ions from water. While many studies have reported chemically tailored electrodes for selective ion removal, the selective removal of divalent cations (i.e., hardness) over monovalent cations can simply be achieved using membrane CDI (MCDI) equipped with ion exchange membranes (IEMs). In this study, we use both experimental and modeling approaches to systematically investigate the selective removal of Ca over Na. Specifically, the impacts of current density, hydraulic retention time, and feed composition on the selectivity of Ca over Na were investigated. The results from our study suggest a universal correlation between the ratio of molar fluxes and the ratio of spacer channel ion concentrations, regardless of operating conditions and feed composition. Our analysis also reveals inherent and universal trade-off relationships between selectivity and the Ca removal rate and between selectivity and the degree of Ca removal. This fundamental understanding of the mechanism of selective ion removal in MCDI can also be applied to flow-electrode CDI processes that employ IEMs.

摘要

电容去离子(CDI)是一种新兴的技术,能够从水中选择性地去除离子。虽然许多研究已经报道了用于选择性离子去除的化学修饰电极,但使用配备离子交换膜(IEM)的膜电容去离子(MCDI)可以简单地实现对二价阳离子(即硬度)的选择性去除。在这项研究中,我们使用实验和建模方法系统地研究了钙相对于钠的选择性去除。具体而言,研究了电流密度、水力停留时间和进料组成对钙相对于钠的选择性的影响。我们的研究结果表明,无论操作条件和进料组成如何,摩尔通量比与间隔通道离子浓度比之间存在普遍的相关性。我们的分析还揭示了选择性与钙去除率之间以及选择性与钙去除程度之间固有的普遍权衡关系。这种对 MCDI 中选择性离子去除机制的基本理解也可以应用于采用 IEM 的流动电极 CDI 工艺。

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