首页> 外文期刊>Electrochimica Acta >Continuous capacitive deionization-electrodialysis reversal through electrostatic shielding for desalination and deionization of water
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Continuous capacitive deionization-electrodialysis reversal through electrostatic shielding for desalination and deionization of water

机译:通过静电屏蔽连续进行电容性去离子-电渗析逆转,以实现水的脱盐和去离子

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摘要

We report a new concept for capacitive deionization with simple and cheap porous bipolar intermediate graphite electrodes which is operated continuously by constant or alternating polarity without any down time for electrode saturation, regeneration and rinsing steps and certainly without any permselective ion exchange membranes. The proposed process utilizes the advantages of the classical electrodeion-ization technologies combining them all to a unified continuous capacitive deionization-continuous electrodeionization-electrodialysis-electrodialysis reversal process. Separate and unchanged diluate and concentrate compartments are created in two modes, first by periodical charging/discharging the bipolar intermediate electrodes through a pulsating electric field and second by simultaneous charging/discharging them through a constant or pulsating electric field and electrostatic shielding. Because of coion permeation and the convenience of alternating the polarity without any negative impact on the deionization process, the new technique is less affected by the known membrane associated limitation, such as concentration polarization, limiting current density or scaling. The new electrochemical deionization technique is suitable for regeneration of ion exchange resins and production of high purity deionized water, removal of heavy metal ions from industrial effluents and desalination of brackish or seawater.
机译:我们报告了一种使用简单,廉价的多孔双极性中间石墨电极进行电容去离子的新概念,该电极可通过恒定或交替的极性连续运行,而无需任何停机时间即可完成电极饱和,再生和冲洗步骤,当然也无需任何渗透选择性离子交换膜。所提出的方法利用了经典电去离子技术的优点,将它们全部结合到一个统一的连续电容去离子-连续电去离子-电渗析-电渗析逆转过程中。分离和不变的稀释液和浓缩液室以两种方式产生,一种是通过脉冲电场对双极中间电极进行定期充电/放电,第二种是通过恒定或脉动电场同时对它们进行充电/放电和静电屏蔽。由于离子的渗透和极性交换的便利性,而对去离子过程没有任何负面影响,因此新技术受已知膜相关限制(例如浓度极化,限制电流密度或结垢)的影响较小。新的电化学去离子技术适用于离子交换树脂的再生和高纯度去离子水的生产,工业废水中重金属离子的去除以及微咸水或海水的脱盐。

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