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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >How to achieve the optimal performance of capacitive deionization and inverted-capacitive deionization
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How to achieve the optimal performance of capacitive deionization and inverted-capacitive deionization

机译:如何实现电容式去离子和倒置电容去离子的最佳性能

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Here we develop a novel but fundamental strategy for optimizing the ion-removal capacity of electrode materials in capacitive deionization (CDI) and inverted-capacitive deionization (i-CDT) systems without sacrificing their coulombic efficiency. The most efficient working cell voltages of different systems can be precisely determined by our newly designed cell voltage-programming method. We employ a palladium hydride reference electrode to monitor the electrode potentials of positive and negative electrodes during the double-layer charging-discharging processes. Accordingly, charge balance and maximum working cell voltages of CDI and i-CDI systems in brackish water can be achieved simultaneously to optimize the desalination efficiencies. Hence, the ion removal capability of an activated carbon//activated carbon (AC//AC) cell in 0.3-1.9 V reaches 12.2 mg g(-1) with minor pH change in deionized solutions. The asymmetric CDI cell consisting of a positive graphene oxide-CNT composite and a negative AC electrode (GO@CNT//AC) is the most efficient CDI system with ion removal capacity of 21.3 mg g(-1) in 0.2-1.45 V. The asymmetric AC//reduced GO-CNT composite (AC//rGO@CNT) cell is an exceptional i-CDI system which exhibits ion removal ability of 25.2 mg g(-1) in 1.0-1.7 V. The above concepts in optimizing CDI/i-CDI performances are applicable to all types of electrode materials in various cell designs.
机译:在这里,我们开发了一种新颖但基本的策略,用于优化电容器去离子(CDI)和倒置电容去离子(I-CDT)系统中的电极材料的离子去除能力,而不会牺牲它们的库仑效率。不同系统的最有效的工作单元电压可以通过我们的新设计的电池电压编程方法精确确定。我们采用钯氢化物参比电极,在双层充电排出过程中监测正极和负电极的电极电位。因此,可以同时实现CDI和I-CDI系统的CDI和I-CDI系统的电荷平衡和最大工作电池电压,以优化脱盐效率。因此,在0.3-1.9V中的活性炭//活性炭(AC // AC)细胞的离子去除能力达到12.2mg g(-1),在去离子溶液中的次要pH变化。由正黄色氧化物-CNT复合材料和负交流电极(GO @ CNT // AC)组成的不对称CDI电池是最有效的CDI系统,其中离子去除容量为21.3mg G(-1),在0.2-1.45 V.不对称AC //减少的Go-CNT复合(AC // Rgo @ CNT)单元是一种特殊的I-CDI系统,其在1.0-1.7 V中表现出25.2mg G(-1)的离子去除能力。上述优化概念CDI / I-CDI性能适用于各种细胞设计中的所有类型的电极材料。

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