National-Local Joint Engineering Research Center of Heavy Metals Pollutants Control and Resource Utilization, Nanchang Hangkong University, Nanchang 330063, PR China; Key Laboratory of Jiangxi Province for Persistent Pollutants Control and Resources Recycle, Nanchang Hangkong University, Nanchang 330063, PR China.
Faculty of Agriculture, Life, and Environmental Sciences, Zhejiang University, Hangzhou 310058, PR China.
Environ Int. 2021 Jul;152:106512. doi: 10.1016/j.envint.2021.106512. Epub 2021 Mar 21.
Wastewater treatment for heavy metals is currently transitioning from pollution remediation towards resource recovery. As a controllable and environment-friendly method, electrochemical technologies have recently gained significant attention. However, there is a lack of systematic and goal oriented summarize of electrochemical metal recovery techniques, which has inhibited the optimized application of these methods. This review aims at recent advances in electrochemical metal recovery techniques, by comparing different electrochemical recovery methods, attempts to target recycling heavy metal resources with minimize energy consumption, boost recovery efficiency and realize the commercial application. In this review, different electrochemical recovery methods (including E-adsorption recovery, E-oxidation recovery, E-reduction recovery, and E-precipitation recovery) for recovering heavy metals are introduced, followed an analysis of their corresponding mechanisms, influencing factors, and recovery efficiencies. In addition, the mass transfer efficiency can be promoted further through optimizing electrodes and reactors, and multiple technologies (photo-electrochemical and sono-electrochemical) could to be used synergistically improve recovery efficiencies. Finally, the most promising directions for electrochemical recovery of heavy metals are discussed along with the challenges and future opportunities of electrochemical technology in recycling heavy metals from wastewater.
目前,重金属废水处理正从污染治理向资源回收方向转变。电化学技术作为一种可控且环境友好的方法,最近受到了广泛关注。然而,对于电化学金属回收技术缺乏系统的、有针对性的总结,这限制了这些方法的优化应用。本综述旨在对电化学金属回收技术的最新进展进行总结,通过比较不同的电化学回收方法,尝试以最小的能耗、提高回收效率和实现商业应用为目标,回收重金属资源。本综述介绍了用于回收重金属的不同电化学回收方法(包括 E-吸附回收、E-氧化回收、E-还原回收和 E-沉淀回收),并分析了它们的相应机制、影响因素和回收效率。此外,通过优化电极和反应器可以进一步提高传质效率,并且可以协同使用多种技术(光电化学和声电化学)来提高回收效率。最后,讨论了电化学回收重金属最有前景的方向,并探讨了电化学技术在从废水中回收重金属方面的挑战和未来机遇。