Xu Longqian, Peng Shuai, Mao Yunfeng, Zong Yang, Zhang Xiaomeng, Wu Deli
State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science & Engineering, Tongji University, Shanghai 200092, PR China.
State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science & Engineering, Tongji University, Shanghai 200092, PR China; School of Energy and Power Engineering, University of Shanghai for Science and Technology, Shanghai, 200093, PR China.
Water Res. 2022 Jun 1;216:118290. doi: 10.1016/j.watres.2022.118290. Epub 2022 Mar 13.
Flow-electrode capacitive deionization (FCDI) is viewed as a potential alternative to the current state-of-the-art electrodriven technology for the desalination of brackish water. However, the key shortcoming of the FCDI is still the discontinuous nature of the electrode conductive network, resulting in low electron transport efficiency and ion adsorption capacity. Here, a novel magnetic field-assisted FCDI system (termed magnetic FCDI) is proposed to enhance brackish water desalination, simply by using magnetic activated carbon (MAC) as flow electrodes. The results show that the assistance from the magnetic field enables a 78.9% - 205% enhancement in the average salt removal rate (ASRR) compared with that in the absence of a magnetic field, which benefits from the artificial manipulation of the flow electrode transport behavior. In long-term tests, the stable desalination performance of magnetic FCDI was also demonstrated with a stable ASRR of 0.70 μmol cm min and energy-normalized removed salt (ENRS) of 8.77 μmol J. In addition, magnetic field also enables the regeneration of the electrode particles from the concentrated electrolyte. In summary, the findings indicate that the magnetic FCDI is an energy-efficient and operation convenient technology for brackish water desalination.
流动电极电容去离子化(FCDI)被视为当前用于微咸水脱盐的最先进电驱动技术的一种潜在替代方案。然而,FCDI的关键缺点仍然是电极导电网络的不连续性,导致电子传输效率和离子吸附容量较低。在此,提出了一种新型磁场辅助FCDI系统(称为磁性FCDI),仅通过使用磁性活性炭(MAC)作为流动电极来增强微咸水脱盐效果。结果表明,与无磁场时相比,磁场的辅助使平均脱盐率(ASRR)提高了78.9% - 205%,这得益于对流动电极传输行为的人工操控。在长期测试中,磁性FCDI的稳定脱盐性能也得到了证明,其稳定的ASRR为0.70 μmol cm min,能量归一化脱盐量(ENRS)为8.77 μmol J。此外,磁场还能使电极颗粒从浓电解质中再生。总之,研究结果表明磁性FCDI是一种用于微咸水脱盐的节能且操作简便的技术。