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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >High-Desalination Performance via Redox Couple Reaction in the Multichannel Capacitive Deionization System
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High-Desalination Performance via Redox Couple Reaction in the Multichannel Capacitive Deionization System

机译:通过氧化还原耦合反应在多通道电容式去离子系统中的高脱盐性能

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Capacitive deionization (CDI) has received much attention, which is considered as a promising electrochemical water desalination technology. However, an obstacle to its conventional application is the limited ion removal capacity of carbon electrodes induced by the electrical double layer. Here, a novel CDI system, called multichannel redox CDI (MC-RCDI), was proposed to enhance the desalination performance of CDI by utilizing the redox couple of ferricyanide/ferrocyanide as well as the adsorption capacity of the conventional carbon electrodes. In the MC-RCDI, the feed water in the middle channel was fully separated from the redox couple-containing electrolyte in the side channel by ion exchange membranes. Then, along with the carbon adsorption capacity, the electrochemically reversible redox reaction provided an additional salt removal capacity driven by the charge inequality. Thus, the MC-RCDI exhibited a significantly enhanced salt adsorption capacity (SAC) of 67.8 mg/g (8.59 mu mol/J) and a charge efficiency of similar to 90%. The results demonstrated as greater than threefold increase in the salt removal capacity, compared to the system without the redox reaction (SAC approximate to 19.9 mg/g, 7.50 mu mol/J). Moreover, in the MC-RCDI system, a sustainable redox reaction allowed a continuous desalination without a discharging step, possibly leading to the desalination of concentrated feed solution, up to seawater level standards.
机译:电容去离子化(CDI)受到了很多关注,被认为是有希望的电化学水脱盐技术。然而,其传统应用的障碍是由电双层诱导的碳电极的有限离子去除能力。这里,提出了一种称为多通道氧化还原CDI(MC-RCDI)的新型CDI系统,以通过利用氧化还原与铁氰化物/铁氰化钠以及常规碳电极的吸附容量来增强CDI的脱盐性能。在MC-RCDI中,中间通道中的进料水通过离子交换膜与侧通道中的含氧化还原耦合的电解质完全分离。然后,随着碳吸附能力,电化学可逆氧化还原反应提供了由电荷不等式驱动的额外盐去除容量。因此,MC-RCDI表现出67.8mg / g(8.59μmmol/ k)的显着增强的盐吸附能力(囊),其电荷效率类似于90%。与没有氧化还原反应的系统相比,盐去除容量的结果表明大于三倍的增加(SAC近似为19.9mg / g,7.50μmol/ j)。此外,在MC-RCDI系统中,可持续的氧化还原反应允许连续脱盐而没有排出步骤,可能导致浓缩饲料溶液的脱盐,直至海水水平标准。

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