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Selective removal of lead ions through capacitive deionization: Role of ion-exchange membrane

机译:通过电容去离子选择性去除铅离子:离子交换膜的作用

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摘要

Capacitive deionization (CDI) is a rising technology as a low-energy-consumption and low-cost option for water purifications and treatments; however, selective removal of heavy metal ions has been rarely reported. In this study, the impacts of ion-exchange membranes on the selective removal of lead ions (Pb2+) by CDI are investigated with a single-pass model. Both cation-exchange membrane (CEM) and anion-exchange membrane (AEM) demonstrate improved Pb2+ removal efficiencies. The presence of CEM retards discharge of adsorbed Pb2+, which eliminates the selectivity of removing Pb2+ against other cations (such as Ca2+ and Mg2+); in contrast, without the CEM, the CDI cell with only the AEM (called AEM-CDI) exhibits enhanced discharge efficiency and retains the selectivity of removing Pb2+ against Ca2+ and Mg2+. More importantly, the AEM-CDI presents improved Pb2+ discharge efficiency when applying inverted voltages, which is not possible in the membrane-free CDI because desorbed ions can be re-adsorbed to the counter electrode. In addition, surface modification for porous carbon with functional groups to enhance the affinity between Pb2+ and electrode surface is expected to further improve the selectivity of removing Pb2+ against other cations, thereby showing very promising potential in purification of drinking water.
机译:电容去离子化(CDI)是一种升高的技术,作为水净化和治疗的低能量消耗和低成本选择;然而,很少报道选择性去除重金属离子。在该研究中,用单通道模型研究了离子交换膜对CDI选择性除去铅离子(PB2 +)的选择性除去的影响。阳离子交换膜(CEM)和阴离子交换膜(AEM)展示了改善的PB2 +去除效率。 CEM的存在延迟吸附的PB2 +的排出,消除了除去其他阳离子(如Ca2 +和Mg2 +)的Pb2 +的选择性;相反,在没有CEM的情况下,仅具有AEM(称为AEM-CDI)的CDI细胞表现出增强的放电效率,并保留去除PB2 +对Ca2 +和Mg2 +的选择性。更重要的是,AEM-CDI在施加反相电压时呈现改善的PB2 +放电效率,这在无膜的CDI中是不可能的,因为解吸离子可以被重新吸收到对电极。此外,预期具有官能团的多孔碳的表面改性,以增强PB2 +和电极表面之间的亲和力,进一步改善除去其他阳离子的PB2 +的选择性,从而显示出饮用水净化的非常有希望的潜力。

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