Rapid degradation of levofloxacin using peroxymonosulfate activated by SrTiO3/CoFe2O4/rGO magnetic nano-composite: Efficiency, stability, and mechanism investigation

被引:23
作者
Zhang, Yuhang
Qian, Jin [1 ]
Wang, Peifang
He, Yuxuan
Lu, Bianhe
Tang, Sijing
Xu, Kailin
机构
[1] Hohai Univ, Key Lab Integrated Regulat & Resource Dev Shallow, Minist Educ, Nanjing 210098, Peoples R China
基金
中国国家自然科学基金;
关键词
Peroxymonosulfate; Perovskite; Cobalt ferrite; rGO; Levofloxacin degradation; GRAPHENE OXIDE; SOLVOTHERMAL SYNTHESIS; MFE2O4; M; ANTIBIOTICS; CATALYST; WATER; TIO2; MN; CO; NANOPARTICLES;
D O I
10.1016/j.seppur.2022.123075
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
In this study, ternary magnetic nanocomposites (SrTiO3/CoFe2O4/rGO, SCG) doped with cobalt ferrite and loaded with rGO were successfully synthesized, and utilized to rapidly activate PMS to degrade LVF. After evaluating the efficacy of samples with different loading loads, SCG-1 (1 % wt rGO loading) was selected for further testing due to its optimal catalytic activity (degradation efficiency reached 87.4 % in 5 min). Quench experiments and electron paramagnetic resonance (EPR) analysis showed that SO4 center dot-, O-1(2), (OH)-O-center dot were the main active substance involved in LVF degradation. Based on the redox cycle of Co and Fe ions and the platform provided by perovskite and rGO, the reaction can be carried out quickly. The vulnerable sites and possible degradation pathways of LVF were further analyzed by density functional theory (DFT) calculation and LC-MS/MS analysis, and the developmental toxicity and ecological risk of intermediate products were determined based on toxicity assessment software (T.E.S.T). This study provided a new vision for realizing rapid antibiotic degradation in water environments and provided theoretical support for the subsequent research on novel nanomaterials.
引用
收藏
页数:15
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