Key Laboratory of Yellow River and Huai River Water Environment and Pollution Control, Ministry of Education, Henan Key Laboratory for Environmental Pollution Control, School of Environment, Henan Normal University, Xinxiang 453007, China.
Molecules. 2023 Mar 7;28(6):2422. doi: 10.3390/molecules28062422.
Photocatalytic technology is considered an ideal approach for clean energy conversion and environmental pollution applications. In this work, a bifunctional BiOBr/ZIF-8/ZnO photocatalyst was proposed for removing phenols in wastewater and generating hydrogen peroxide. Insights from scanning electron microscopy measurements revealed the well-dispersion of ZIF-8/ZnO was on the BiOBr layer, which could effectively prevent agglomeration of ZIF-8 and facilitate the separation of carriers. In addition, the optimal HO yield of the BiOBr/ZIF-8/ZnO sample could reach 116 mmol·L·g within 2 h, much higher than that of pure BiOBr (with the value of 82 mmol·L·g). The optimal BiOBr/ZIF-8/ZnO sample could also remove 90% of the phenol or bisphenol A in 2 h, and its kinetic constants were 3.8 times and 2.3 times that of pure BiOBr, respectively. Based on the analysis of the various experimental characterizations, the photocatalytic mechanism of the S-scheme BiOBr/ZIF-8/ZnO composite for the degradation of phenolic pollutants and generation of HO was proposed. The formation of the heterojunction and the oxygen vacancy work together to significantly improve its photocatalytic efficiency. In addition, the BiOBr/ZIF-8/ZnO catalyst has a certain impact on the degradation of phenol in actual wastewater, providing a way to effectively remove refractory pollutants and generate HO in actual water.
光催化技术被认为是清洁能源转换和环境污染应用的理想方法。在这项工作中,提出了一种用于去除废水中苯酚和生成过氧化氢的双功能 BiOBr/ZIF-8/ZnO 光催化剂。扫描电子显微镜测量的结果表明,ZIF-8/ZnO 在 BiOBr 层上得到了很好的分散,这可以有效地防止 ZIF-8 的团聚,并促进载流子的分离。此外,BiOBr/ZIF-8/ZnO 样品的最佳 HO 产率在 2 小时内可达到 116 mmol·L·g,远高于纯 BiOBr(值为 82 mmol·L·g)。最佳的 BiOBr/ZIF-8/ZnO 样品还可以在 2 小时内去除 90%的苯酚或双酚 A,其动力学常数分别是纯 BiOBr 的 3.8 倍和 2.3 倍。基于各种实验特性的分析,提出了 S 型 BiOBr/ZIF-8/ZnO 复合材料光催化降解酚类污染物和生成 HO 的机制。异质结的形成和氧空位的协同作用,显著提高了其光催化效率。此外,BiOBr/ZIF-8/ZnO 催化剂对实际废水中苯酚的降解有一定的影响,为有效去除难降解污染物并在实际水中生成 HO 提供了一种途径。