Gao Junyi, Zhao Xuying, Li Caibin, Luo Zhenbao, Zhang Long, Xiao Zhipeng, Mu Tingting, Liu Furong, Gao Ruikang, Zhang Jiguang, Sun Xiwen
Bijie Tobacco Branch Company of Guizhou Province, Bijie, 551700, China.
Tobacco Research Institute, Chinese Academy of Agricultural Sciences, Qingdao, 266101, China.
Sci Rep. 2025 Apr 30;15(1):15184. doi: 10.1038/s41598-025-98863-7.
Atrazine (ATZ) is widely used as an herbicide in agricultural production. However, its extensive application results in contaminated residues that can adversely affect ecosystems because rainwater washes them into and contaminates water bodies. Therefore, there is a pressing need to remove ATZ from the aquatic environment. Using transition metals as catalysts for the persulfate degradation of organic pollutants has received much attention because of their strong ability to oxidize pollutants, including ATZs, and their selectivity for these pollutants. A novel technique for ATZ removal using a catalyst (ZnFeO) to activate peroxymonosulfate (PMS) was developed in this study. The ZnFeO catalyst was prepared through co-precipitation, which involves the doping of zinc in iron-based materials. And this process accelerated the redox cycle, which energized the PMS and promoted the generation of free radicals. Electron paramagnetic resonance (EPR) analysis revealed that ZnFeO activates PMS to generate HO•, O•, and O, which contribute to ATZ elimination. In this study, a new approach is proposed for the development of efficient heterogeneous catalysts capable of activating PMS and eliminating the ATZ. Moreover, The ATZ degradation pathway was proposed based on the products identified by UPLC-MS. The results highlighted the efficiency of the as-prepared ZnFeO catalyst in ATZ removal and its excellent performance. Given its environmental compatibility and high efficiency, the ZnFeO catalyst has significant potential implications for agricultural wastewater treatment.
阿特拉津(ATZ)在农业生产中被广泛用作除草剂。然而,其广泛应用导致残留污染,由于雨水将其冲入水体并造成污染,会对生态系统产生不利影响。因此,迫切需要从水生环境中去除ATZ。使用过渡金属作为催化剂来促进过硫酸盐对有机污染物的降解受到了广泛关注,因为它们具有很强的氧化污染物(包括ATZ)的能力以及对这些污染物的选择性。本研究开发了一种使用催化剂(ZnFeO)活化过一硫酸盐(PMS)去除ATZ的新技术。ZnFeO催化剂通过共沉淀法制备,该方法涉及在铁基材料中掺杂锌。这一过程加速了氧化还原循环,为PMS提供能量并促进自由基的产生。电子顺磁共振(EPR)分析表明,ZnFeO活化PMS生成HO•、O•和O,有助于去除ATZ。本研究提出了一种开发能够活化PMS并去除ATZ的高效非均相催化剂的新方法。此外,基于超高效液相色谱 - 质谱联用(UPLC - MS)鉴定的产物提出了ATZ的降解途径。结果突出了所制备的ZnFeO催化剂在去除ATZ方面的效率及其优异性能。鉴于其环境兼容性和高效性,ZnFeO催化剂在农业废水处理方面具有重大潜在意义。