Jia Dan, Yu Jian, Long Stephen M, Tang Hao L
Department of Water Engineering and Science, College of Civil Engineering, Hunan University, Changsha, Hunan 410082, China E-mail:
Department of Chemistry, Indiana University of Pennsylvania, Indiana, Pennsylvania 15705, USA.
Water Sci Technol. 2018 Jul;2017(3):752-761. doi: 10.2166/wst.2018.248.
A novel ZnFeO/TiO/flake graphite composite material was synthesized and used as particle electrodes in a photoelectrocatalytic (PEC) system to investigate the degradation of rhodamine B as a model dye pollutant in water. Results showed that a PEC process with the new composite evidently led to enhanced degradation of rhodamine B due to a synergistic effect of photocatalysis and electrocatalysis. Operating variables including electrolyte concentration, applied cell voltage, air flow, composite dosage, solution pH, and dye concentration were also found to play important roles in rhodamine B removal. A 99.0% removal efficiency was observed within 30 min of treatment under optimum conditions of 0.01 mol/L NaSO, applied cell voltage of 15 V, air flow of 20 mL/min, composite dosage of 10 g/L, solution pH of 2, and rhodamine B concentration of 20 mg/L, with a pseudo-first-order rate constant of 0.278 min. These findings could provide new insights into the development of efficient PEC technologies on degradation of residual dyes in water.
合成了一种新型的ZnFeO/TiO/片状石墨复合材料,并将其用作光电催化(PEC)系统中的颗粒电极,以研究作为水中典型染料污染物的罗丹明B的降解情况。结果表明,由于光催化和电催化的协同作用,采用新型复合材料的PEC过程显著提高了罗丹明B的降解率。还发现包括电解质浓度、外加电池电压、空气流量、复合材料用量、溶液pH值和染料浓度在内的操作变量在罗丹明B的去除中起着重要作用。在0.01 mol/L NaSO、外加电池电压15 V、空气流量20 mL/min、复合材料用量10 g/L、溶液pH值2和罗丹明B浓度20 mg/L的最佳条件下,处理30分钟内观察到去除效率达99.0%,假一级速率常数为0.278 min⁻¹。这些发现可为开发高效的PEC技术降解水中残留染料提供新的见解。