College of Chemistry and Chemical Engineering, Hunan University, Changsha, Hunan, 410082, PR China.
College of Chemistry and Chemical Engineering, Hunan University, Changsha, Hunan, 410082, PR China.
Chemosphere. 2022 Nov;307(Pt 2):135912. doi: 10.1016/j.chemosphere.2022.135912. Epub 2022 Aug 5.
Surface porous Ti substrates were obtained by electrodeposition-hot melt-alkali etching. Porous-Ti/BDD and flat-Ti/BDD electrodes were prepared for comparative study. The results of SEM, Raman, and XRD analyses show that the BDD films of these two electrodes had good uniformity and stable quality. The electrochemical window (EW) and electrochemical-active surface area (EASA) of the porous-Ti/BDD electrode is as high as 4.21 V and 22.78 cm (11.39 cm/cm), respectively. Furthermore, the electrochemical catalytic performance and degradation mechanism of porous-Ti/BDD electrode as the anode were studied by the electrolysis of Active Orange dye X-GN (X-GN), and the optimal electrochemical degradation operating parameters were obtained. The results show that when the degradation time was 50 min, the X-GN was completely decolorized. The TOC removal rate reached 69.24%, and the energy consumption was 5.62 kWh m. The contribution rate of •OH and SO was calculated to be 91.40% and 1.26% by radical quenching experiments, respectively, indicating that the active substances in the degradation system were mainly •OH and SO. The high specific surface characteristics of porous-Ti/BDD electrode enhanced its electrochemical oxidation advantages, and it showed a high degradation efficiency and low energy consumption for the treatment of X-GN simulated wastewater.
通过电沉积-热熔-碱蚀的方法获得了表面多孔 Ti 基片。制备了多孔-Ti/BDD 和平面-Ti/BDD 电极进行对比研究。SEM、Raman 和 XRD 分析结果表明,这两个电极的 BDD 薄膜具有良好的均匀性和稳定的质量。多孔-Ti/BDD 电极的电化学窗口(EW)和电化学活性表面积(EASA)分别高达 4.21 V 和 22.78 cm²(11.39 cm²/cm)。此外,通过活性橙染料 X-GN(X-GN)的电解研究了多孔-Ti/BDD 电极作为阳极的电化学催化性能和降解机理,并获得了最佳的电化学降解操作参数。结果表明,当降解时间为 50 min 时,X-GN 完全脱色。TOC 去除率达到 69.24%,能耗为 5.62 kWh m。通过自由基猝灭实验计算出•OH 和 SO 的贡献分别为 91.40%和 1.26%,表明降解体系中的活性物质主要是•OH 和 SO。多孔-Ti/BDD 电极的高比表面积特性增强了其电化学氧化优势,对于处理 X-GN 模拟废水表现出高降解效率和低能耗。