Piao Mingyue, Du Hongxue, Teng Honghui
Key Laboratory of Environmental Materials and Pollution Control, Education Department of Jilin Province, Jilin Normal University 1301 Haifeng Road Siping 136000 China
College of Engineering, Jilin Normal University Siping China.
RSC Adv. 2024 Sep 2;14(38):27712-27732. doi: 10.1039/d4ra04435e. eCollection 2024 Aug 29.
Three-dimensional (3D) electrochemical technology is considered a very effective industrial wastewater treatment method for its high treatment efficiency, high current efficiency, low energy consumption, and, especially, ability to completely mineralize nonbiodegradable organic contaminants. Particle electrodes, which are the fundamental components of 3D electrochemical technology, have multiple functions in the electrochemical reaction process. Various types of particle electrodes have been created and applied for wastewater treatment. Herein, we present a thorough analysis of the research and development of particle electrodes used for electrocatalyzing pollutants. Initially, reactor designs, factors affecting the removal efficiency of pollutants and degradation mechanisms are introduced. In particular, a detailed investigation is conducted into the selection of particle electrode materials and the roles they play in the 3D electrochemical treatment of wastewater. Subsequently, the degradation efficiency and energy consumption associated with 3D electrochemical technology for different pollutants are investigated. Finally, the directions and outlook for further studies on particle electrodes are discussed. We believe that this review will offer a useful perspective on the development and application of particle electrodes for wastewater purification.
三维(3D)电化学技术因其处理效率高、电流效率高、能耗低,尤其是能够完全矿化不可生物降解的有机污染物,而被认为是一种非常有效的工业废水处理方法。颗粒电极作为3D电化学技术的基本组成部分,在电化学反应过程中具有多种功能。已经开发出各种类型的颗粒电极并将其应用于废水处理。在此,我们对用于电催化污染物的颗粒电极的研发进行了全面分析。首先介绍了反应器设计、影响污染物去除效率的因素和降解机制。特别对颗粒电极材料的选择及其在废水3D电化学处理中所起的作用进行了详细研究。随后,研究了3D电化学技术对不同污染物的降解效率和能耗。最后,讨论了颗粒电极进一步研究的方向和前景。我们相信,这篇综述将为颗粒电极在废水净化中的开发和应用提供有益的视角。