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Stability of a carbon gel electrode when used for the electro-assisted removal of ions from brackish water

机译:碳凝胶电极用于从苦咸水中电去除离子时的稳定性

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摘要

[EN] A porous carbon gel obtained from the poly-condensation of resorcinol and formaldehyde was synthesized and used as an electrode material for the capacitive deionization (CDI) of synthetic brackish water. The desalting capacity of this material was evaluated in terms of applied voltage and zero-voltage regeneration over a number of cycles, and compared to that of commercially available carbon materials (powdered activated carbon and activated carbon cloth). Due to an adequate combination of chemical and porous features, the deionization capacity of the carbon gel electrode exceeded that of the electrodes based on conventional microporous carbons over a larger number of adsorption/regeneration cycles. An almost fully reversible ionic removal (ca. 90% recovery) was obtained for this electrode material when regeneration was carried out at zero-voltage conditions. Characterization of the cycled electrodes showed that the carbon gel was resistant to electrochemical anodic oxidation under the polarization conditions used (applied voltage of up to 1.2 V), whereas the electrodes produced from the two commercial carbon materials undergo severe modifications (oxidation and a decrease in surface area) when the applied voltage was maintained for several cycles.
机译:[EN]合成了由间苯二酚和甲醛缩聚得到的多孔碳凝胶,并将其用作合成苦咸水的电容去离子(CDI)的电极材料。根据在多个循环中施加的电压和零电压再生,评估了该材料的脱盐能力,并将其与市售碳材料(粉状活性炭和活性炭布)进行了比较。由于化学和多孔特征的适当组合,在大量的吸附/再生循环中,碳凝胶电极的去离子能力超过了基于常规微孔碳的电极的去离子能力。当在零电压条件下进行再生时,该电极材料获得了几乎完全可逆的离子去除(约90%的回收率)。循环电极的特性表明,碳凝胶在使用的极化条件下(施加的电压最高为1.2 V)具有抗电化学阳极氧化的能力,而由两种市售碳材料制成的电极则经历了严重的修饰(氧化作用和施加电压保持几个周期。

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