Haichen Cui, Zheng Wang, Yannan Jia, Weikun Song, Xue Wang, Lu Li, Zhendong Liu, Binbin Wu, Weixiao Gong, Wanting Feng, Yuanxiang Shan, J. Zhang
In this study, FeOF was successfully synthesized by first preparing the precursor FeSiF 6 ·6H 2 O from iron powder, followed by a hydrothermal reaction at 200°C for 10 hours using a thoroughly stirred mixture of the precursor and n-propanol. The synthesized FeOF was employed as an activator of peroxymonosulfate (PMS) for the degradation of lomefloxacin (LMF). Experimental results demonstrate that the FeOF/PMS system not only achieved 74.6% LMF degradation but also maintained high degradation efficiency after five consecutive cycles. More importantly, the system significantly reduced the biotoxicity of the reaction intermediates, thereby offering a promising new strategy for addressing antibiotic contamination. • A novel method for the preparation of FeOF is developed • FeOF improves the lomefloxacin-degradation performance of PMS by optimizing electron transfer • The effects of coordination structure on LMF degradation are thoroughly investigated • An LMF-degradation pathway is proposed • An analysis of the system’s ecological benefits is presented