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Asymmetric Electrodes Constructed with PAN-Based Activated Carbon Fiber in Capacitive Deionization

机译:PAN基活性炭纤维在电容去离子中构建的不对称电极

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Capacitive deionization (CDI) method has drawn much attention for its low energy consumption, low pollution, and convenient manipulation. Activated carbon fibers (ACFs) possess high adsorption ability and can be used as CDI electrode material. Herein, two kinds of PAN-basedACFswith different specific surface area (SSA)were used for theCDI electrodes.TheCDI performancewas investigated; especially asymmetric electrodes' effect was evaluated. The results demonstrated that PAN-based ACFs showed a high electrosorption rate (complete electrosorption in less than half an hour) andmoderate electrosorption capacity (up to 0.2mmol/g). CDI experiments with asymmetric electrodes displayed a variation in electrosorption capacity between forward voltage and reverse voltage. It can be attributed to the electrical double layer (EDL) overlap effect and inner pore potential; thus the ions with smaller hydrated ionic radius can be adsorbed more easily.
机译:电容去离子(CDI)方法因其低能耗,低污染和方便操作而备受关注。活性碳纤维(ACF)具有高吸附能力,可以用作CDI电极材料。本文将两种具有不同比表面积(SSA)的PAN基ACF用于CDI电极。特别是对不对称电极的效果进行了评估。结果表明,基于PAN的ACF表现出高的电吸附速率(不到半小时即可完全电吸附)和中等的电吸附容量(高达0.2mmol / g)。使用不对称电极的CDI实验显示,正向电压和反向电压之间的电吸附容量存在差异。这可以归因于双电层(EDL)的重叠效应和内部孔隙电势;因此,具有较小水合离子半径的离子可以更容易地被吸附。

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