Department of Chemical and Environmental Engineering, Malaysia-Japan International Institute of Technology, Universiti Teknologi Malaysia, Jalan Sultan Yahya Petra, 54100, Kuala Lumpur, Malaysia.
Advanced Materials Research Group, Center of Hydrogen Energy, Universiti Teknologi Malaysia, 54100, Kuala Lumpur, Malaysia.
Environ Sci Pollut Res Int. 2023 Nov;30(55):116921-116933. doi: 10.1007/s11356-023-27576-z. Epub 2023 May 13.
The scarcity of water leads to research nowadays to focus on techniques for treating wastewater. Photocatalysis emerged as a technique of interest due to its nature of friendliness. It utilizes light and catalyst to degrade the pollutants. One of the popular catalysts to be used is zinc oxide (ZnO), but its usage is limited due to the high recombination rate of electron-hole pair. Herein, in this study, ZnO is modified with graphitic carbon nitride (GCN), and the GCN loading amount was varied to study the impact on photocatalytic degradation of mixed dye solution. To the best of our knowledge, this is the first work that reports on the degradation of mixed dye solution using modified ZnO with GCN. Structural analysis showed that GCN is present in the composites which proves the success of the modification. Photocatalytic activity revealed that the composite with 5 wt% loading of GCN showed the best activity at a catalyst dosage of 1 g/L with degradation rates of 0.0285, 0.0365, 0.0869, and 0.1758 min for methyl red, methyl orange, rhodamine B, and methylene blue dyes, respectively. This observation is expected due to the formation of heterojunction between ZnO and GCN which creates a synergistic effect and thus led to an improvement in the photocatalytic activity. Based on these results, ZnO modified with GCN has a good potential to be used in the treatment of textile wastewater which consists of various dye mixtures.
由于水资源短缺,如今的研究重点集中在处理废水的技术上。光催化因其友好的性质而成为一种备受关注的技术。它利用光和催化剂来降解污染物。一种常用的催化剂是氧化锌 (ZnO),但由于电子-空穴对的高复合率,其应用受到限制。在此,在这项研究中,ZnO 用石墨相氮化碳 (GCN) 进行了改性,并改变了 GCN 的负载量来研究其对混合染料溶液光催化降解的影响。据我们所知,这是首次报道使用改性 ZnO 与 GCN 降解混合染料溶液的工作。结构分析表明,GCN 存在于复合材料中,这证明了改性的成功。光催化活性表明,在催化剂用量为 1 g/L 时,负载 5wt% GCN 的复合材料表现出最佳活性,对甲基红、甲基橙、罗丹明 B 和亚甲基蓝染料的降解速率分别为 0.0285、0.0365、0.0869 和 0.1758 min。这种观察结果是由于 ZnO 和 GCN 之间形成了异质结,从而产生了协同效应,因此提高了光催化活性。基于这些结果,用 GCN 改性的 ZnO 具有很好的潜力,可用于处理由各种染料混合物组成的纺织废水。