电容去离子
海水淡化
同步
模块化设计
电极
材料科学
电渗析
电化学
终端(电信)
离子
电化学能量转换
能量转换
光电子学
微尺度化学
电化学电池
离子运输机
功率(物理)
离子交换
法拉第效率
化学能
能量转换效率
储能
电流(流体)
电压
能量(信号处理)
高效能源利用
概念证明
电容感应
纳米技术
流量(数学)
软件部署
电阻式触摸屏
化学
作者
Longqian Xu,Bing Zhao,Weifan Liu,Jin Zhang,Xudong Zhang,Shawon Sk Md Ali Zaker,Shihong Lin
出处
期刊:
[Springer Science+Business Media]
日期:2025-12-29
卷期号:3 (2): 100-111
被引量:4
标识
DOI:10.1038/s44286-025-00336-1
摘要
Abstract Electrochemical systems offer a modular and tunable approach to chemical and environmental separations. However, their deployment at small scale is often hindered by the reliance on reactions at terminal electrodes, which introduce gas evolution, pH shifts and energy losses. Here we introduce flow-synchronized ring-shaped electrochemical ion pumping, which eliminates terminal electrodes entirely by arranging ion-shuttling electrodes in a ring configuration and synchronizing the switching of circuit and flow. We show that a ring configuration alone without synchronized flow switching fails to induce net ion transport because of potential symmetry. This challenge was resolved by introducing alternating air gaps that isolate inactive circuits, thereby breaking potential symmetry and enabling pseudo-continuous unidirectional ion flux. Flow-synchronized ring-shaped electrochemical ion pumping achieves effective desalination using a single power source, demonstrating high current efficiency and energy efficiency superior to state-of-the-art electrodialysis and capacitive deionization at the same scale and under comparable conditions.
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