期刊
NANOMATERIALS
卷 12, 期 24, 页码 -出版社
MDPI
DOI: 10.3390/nano12244391
关键词
rGO-coated CuFeO2; hydrothermal reaction; fenton-like; terramycin
类别
资金
- National Natural Science Foundation of China
- Scientific Research Project of the Education Department of Hunan Province
- Science and Technology Innovation Platform of Changsha
- [51404041]
- [52000013]
- [18A378]
- [kq2203003]
A novel Fenton-like catalyst made of reduced graphene oxide-coated CuFeO2 was synthesized and used to remove terramycin from water. The catalyst showed a micro- and mesoporous structure with various functional groups on the surface. The degradation of terramycin by the catalyst followed a pseudo-second-order kinetic model, and the reaction rate increased with temperature.
A novel Fenton-like catalyst made of reduced graphene oxide-coated CuFeO2 (rGO-coated CuFeO2) was synthesized by the hydrothermal reaction method to remove terramycin from aqueous solutions. The catalytic degradation performance of rGO-coated CuFeO2 for terramycin was verified with H2O2 activation. The characterization reveals that rGO-coated CuFeO2 has a micro- and mesoporous structure, with groups such as C=C/C-C, CH2-CO, and HO-C=O found on the surface. The Fenton-like catalytic degradation of terramycin by rGO-coated CuFeO2 was in line with the pseudo-second-order kinetic model, and the elevated temperature accelerated the reaction. Terramycin was catalytically degraded by rGO-coated CuFeO2 in two steps: terramycin was first adsorbed by rGO, and then Fenton-like degradation took place on its surface. This research presents new insight into the design and fabrication of Fenton-like catalysts with enhanced performance.
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