论文标题
膜 - 电极组件,用于流电容性降水
Membrane-electrode assemblies for flow-electrode capacitive deionization
论文作者
论文摘要
由于依赖厚实的脆石电流收集器,因此阻碍了流电容性去离子的扩展。受电化学技术的发展启发,我们提出了使用柔性膜电极组件(MEA)来解决这些局限性的。我们测试了不同的碳纤维织物作为当前的收集器,并用离子交换膜成功地层压它们。由于碳纤维织物的增强,现在可以使用较薄的离子交换膜。淡化实验表明,MEA设置可以实现等于标准设置的盐分转移速率。因此,我们推断出充电渗透也在电场之外起作用。在单一接触点,离子和电荷在MEA的碳表面交换。较薄的膜的使用导致潜在降低。再加上更均匀的电场,可以补偿流量和电流收集器之间的接触表面的减少。
Scale-up of flow-electrode capacitive deionization is hindered due to the reliance on thick brittle graphite current collectors. Inspired by developments of electrochemical technologies we present the use of flexible membrane electrode assemblies (MEA) to solve these limitations. We tested different carbon-fiber fabrics as current collectors and laminated them successfully with ion-exchange membranes. The use of thinner ion-exchange membranes is now possible due to the reinforcement with the carbon fiber fabric. Desalination experiments reveal that a MEA setup can achieve salt transfer rates equal to standard setups. Hence, we deduce that charge percolation also acts outside the electric field. In a single point of contact, ionic and electric charges are exchanged at the carbon surface of the MEA. The use of thinner membranes leads to a reduced potential drop. Together with a more homogeneous electric field across the feed water section, this can compensate for the reduction of contact surface between flow electrode and current collector.