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迈向流动电极电容去离子化(FCDI)的长期运行:操作参数的优化及流动电极的再生

Towards long-term operation of flow-electrode capacitive deionization (FCDI): Optimization of operating parameters and regeneration of flow-electrode.

作者信息

Zhang Wanni, Xue Wenchao, Zhang Chunpeng, Xiao Kang

机构信息

Department of Energy, Environment and Climate Change, School of Environment, Resources and Development, Asian Institute of Technology, P.O. Box 4, Klong Luang, Pathumthani, 12120, Thailand.

Key Laboratory of Groundwater Resources and Environment (Ministry of Education), College of New Energy and Environment, Jilin University, Changchun, 130021, China.

出版信息

Heliyon. 2024 Jan 20;10(2):e24940. doi: 10.1016/j.heliyon.2024.e24940. eCollection 2024 Jan 30.

Abstract

This study systematically optimized the key operating parameters and interpreted their effecting mechanisms in a flow-electrode capacitive deionization (FCDI) system. The optimal voltage, activated carbon electrode content, electrolyte concentration, feedwater flowrate, and electrode flowrate for desalinating low salinity feedwater (1.0 g L NaCl) were determined to be 1.8 V, 2.0 wt%, 10.0 g L, 80 mL min, and 60 mL min, respectively. The variations of the above parameters can affect the system conductivity, the thickness and stability of the electric double layers, and/or the degree of concentration polarization, thereby influencing the desalination performance. Moreover, a sensitivity analysis identified the operating voltage as the dominant parameter with the most significant influence on the FCDI system. Subsequently, a long-term operation was carried out under single-pass mode. The results showed that the lab-scale FCDI system was able to constantly maintain the desalination efficiency of 1.0 g L feedwater (NaCl) at 40-60 % for multiple operating cycles. Over 99.8 % of electrode material regeneration and desalination efficiency recovery was able to be obtained during a 60-h operation, demonstrating that the FCDI system showed strong stability and long-term operation potential.

摘要

本研究系统地优化了流动电极电容去离子(FCDI)系统中的关键操作参数,并阐释了其作用机制。对于低盐度进水(1.0 g L NaCl)脱盐而言,确定最佳电压、活性炭电极含量、电解质浓度、进水流量和电极流量分别为1.8 V、2.0 wt%、10.0 g L、80 mL min和60 mL min。上述参数的变化会影响系统电导率、双电层的厚度和稳定性以及/或者浓差极化程度,从而影响脱盐性能。此外,敏感性分析确定操作电压是对FCDI系统影响最显著的主要参数。随后,在单通道模式下进行了长期运行。结果表明,实验室规模的FCDI系统在多个运行周期内能够持续保持对1.0 g L进水(NaCl)40 - 60%的脱盐效率。在60小时的运行过程中,能够实现超过99.8%的电极材料再生和脱盐效率恢复,这表明FCDI系统具有很强的稳定性和长期运行潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d90/10834994/d89890aaffbc/gr1.jpg

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