Key Laboratory of Environmental Materials and Pollution Control, Education Department of Jilin Province, Jilin Normal University, Siping, People's Republic of China.
College of Engineering, Jilin Normal University, Siping, People's Republic of China.
Environ Technol. 2024 Sep;45(22):4598-4606. doi: 10.1080/09593330.2023.2260121. Epub 2023 Sep 20.
Three-dimensional (3D) electrochemical oxidation has become a popular advanced oxidation technology for wastewater treatment due to its various benefits. In this study, cerium (Ce) loaded biochar (Ce/BC) was used as a particle electrode to conduct the degradation of industrial wastewater released by the chemical industry. SEM, EDS, XRD, FTIR, XPS, and BET were used to characterize the properties of Ce/BC. The effects of some variables, including Ce loading (0-5%), pH (5-9), Ce/BC dosage (12.5-50.0 g/L), and working voltage (12-20 V), were evaluated with regard to COD elimination. The kinetics of COD oxidation and the energy consumption were carefully investigated. Tert-butanol significantly reduced the removal efficiency of COD, indicating that hydroxyl radicals generated during the process rather than direct electro-oxidation were the main mechanism for COD degradation. The treatment of industrial wastewater might benefit from the use of Ce/BC as particle electrode.
三维(3D)电化学氧化因其多种优势已成为一种流行的废水处理高级氧化技术。在这项研究中,铈(Ce)负载生物炭(Ce/BC)被用作颗粒电极,用于降解化工行业排放的工业废水。SEM、EDS、XRD、FTIR、XPS 和 BET 被用于表征 Ce/BC 的性质。考察了 Ce 负载量(0-5%)、pH 值(5-9)、Ce/BC 用量(12.5-50.0 g/L)和工作电压(12-20 V)等一些变量对 COD 去除的影响。仔细研究了 COD 氧化动力学和能耗。叔丁醇显著降低了 COD 的去除效率,表明在该过程中生成的羟基自由基而不是直接电氧化是 COD 降解的主要机制。Ce/BC 作为颗粒电极的使用可能会有益于工业废水的处理。