Chen Tianyi, Bi Jingtao, Ji Zhiyong, Yuan Junsheng, Zhao Yingying
School of Chemical Engineering and Technology, Hebei University of Technology, No.8, Guangrong Road, Hongqiao District, Tianjin 300130, China.
School of Chemical Engineering and Technology, Hebei University of Technology, No.8, Guangrong Road, Hongqiao District, Tianjin 300130, China; Engineering Research Center of Seawater Utilization of Ministry of Education, No.8, Guangrong Road, Hongqiao District, Tianjin 300130, China; Hebei Collaborative Innovation Center of Modern Marine Chemical Technology, No.8, Guangrong Road, Hongqiao District, Tianjin 300130, China.
Water Res. 2022 Nov 1;226:119274. doi: 10.1016/j.watres.2022.119274. Epub 2022 Oct 19.
With the development of comprehensive utilization of high-salinity wastewater, salt resources regeneration has been considered as the fundamental requirement for process sustainability and economic benefits. As one of the potential candidates, bipolar membrane electrodialysis (BMED) was rapidly developed in recent years for the treatment of saline wastewater. Different from other methods directly obtaining salts or condensed wastewater, BMED could utilize and convert the dissolved waste salt into higher-value acid and alkali simultaneously, which has various advantages including outstanding environmental effects and economic benefits. In this review, the recent applications of BMED for waste salt recovery and high-value acid/alkali generation from saline wastewater were systematically outlined. Based on the summary above, the economy analysis of BMED was further reviewed from the roles of desalination and resources recovery. In addition, the BMED-based processes integrated with in-situ utilization of the generated acid/alkali resources were discussed. Furthermore, the influence of operating factors on BMED performance were outlined. Finally, the strategies for improving BMED performance were concluded. Furthermore, the future application and prospects of BMED was presented. This work would provide guidance for the applications of bipolar membrane electrodialysis in saline wastewater treatment and the high-value conversion of salt resources into acids and alkalis.
随着高盐废水综合利用的发展,盐资源再生已被视为工艺可持续性和经济效益的基本要求。作为潜在的候选方法之一,双极膜电渗析(BMED)近年来在处理含盐废水方面得到了快速发展。与其他直接获取盐分或浓缩废水的方法不同,BMED能够同时将溶解的废盐利用并转化为高价值的酸和碱,具有显著的环境效益和经济效益等多种优势。在本综述中,系统概述了BMED在含盐废水废盐回收和高价值酸碱生成方面的最新应用。基于上述总结,从脱盐和资源回收的作用方面进一步回顾了BMED的经济性分析。此外,还讨论了与所生成的酸碱资源原位利用相结合的基于BMED的工艺。此外,概述了操作因素对BMED性能的影响。最后,总结了提高BMED性能的策略。此外,还介绍了BMED的未来应用和前景。这项工作将为双极膜电渗析在含盐废水处理以及盐资源向酸碱的高价值转化中的应用提供指导。