Jang Junsu, Kim Minsung, Shin Joonghan, Yang Daejong, Kim Minseok, Kim Bumjoo
Department of Future Convergence Engineering, Kongju National University, Cheonan 31080, Korea.
Department of Mechanical and Automotive Engineering, Kongju National University, Cheonan 31080, Korea.
Micromachines (Basel). 2022 Feb 24;13(3):356. doi: 10.3390/mi13030356.
Electrodialysis using anion-exchange membranes (AEMs) and cation-exchange membranes (CEMs) has been widely used for water desalination and the management of various ionic species. During commercial electrodialysis, the available area of an ion-exchange membrane is reduced by a non-conductive spacer that is in contact with the AEM/CEM. Although multiple reports have described the advantages or disadvantages of spacers, fewer studies have explored the effects of spacers on the mass transport effect of the reduced membrane area excluding the fluid flow change. In this paper, we present our experimental studies concerning mass transport in microfluidic electrodialysis systems with partially masked ion-exchange membranes. Six different types of masking membranes were prepared by the deposition of non-conductive films on parts of the membranes. The experimental results showed that the overlapped types (in which masking was vertically aligned in the AEM/CEM) exhibited a larger electrical conductance and better current/energy efficiency, compared with the non-overlapped types (in which masking was vertically dislocated in the AEM/CEM). We also observed that a reduction in the unit length of the unmasked ion-exchange membrane enhanced overall mass transport. Our results demonstrate the effects of patterned membranes on electrical resistance and desalination performance; they also identify appropriate arrangements for electromembrane systems.
使用阴离子交换膜(AEM)和阳离子交换膜(CEM)的电渗析已广泛应用于水脱盐及各种离子种类的管理。在商业电渗析过程中,离子交换膜的可用面积会因与AEM/CEM接触的非导电间隔物而减小。尽管有多项报告描述了间隔物的优缺点,但较少有研究探讨间隔物对排除流体流动变化后减小的膜面积的传质效果的影响。在本文中,我们展示了关于具有部分遮蔽离子交换膜的微流控电渗析系统中传质的实验研究。通过在膜的部分区域沉积非导电膜制备了六种不同类型的遮蔽膜。实验结果表明,与非重叠类型(其中遮蔽在AEM/CEM中垂直错位)相比,重叠类型(其中遮蔽在AEM/CEM中垂直对齐)表现出更大的电导率和更好的电流/能量效率。我们还观察到未遮蔽离子交换膜单位长度的减小增强了整体传质。我们的结果证明了图案化膜对电阻和脱盐性能的影响;它们还确定了电膜系统的合适布置。