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Enhancement of H2O2 decomposition by the synergistic effect on CuO-MnFe2O4 nanoparticles for sulfamethoxazole degradation over a wide pH range
被引:14
|作者:
Peng, Wei
[1
]
Zhang, Kai
[1
]
Zong, Fuxing
[1
]
Chen, Chao
[1
]
Fang, Zhendong
[1
]
机构:
[1] Army Logist Univ, PLA, Dept Mil Facil, Chongqing 401331, Peoples R China
基金:
国家重点研发计划;
关键词:
CuO-MnFe2O4;
nanoparticles;
peroxide;
sulfamethoxazole;
synergistic effect;
MAGNETIC CUO-FE3O4 NANOPARTICLES;
BISPHENOL-A;
PEROXYMONOSULFATE ACTIVATION;
EFFICIENT DEGRADATION;
ENVIRONMENTAL RISK;
SINGLET OXYGEN;
FENTON;
OXIDATION;
PERSULFATE;
CATALYST;
D O I:
10.1080/01932691.2019.1656639
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Advanced treatment of micro-polluted water is a hot research topic at present. The construction of transition metal oxide-based Fenton-like reaction can effectively remove antibiotics from micro-polluted water. Magnetic CuO-MnFe2O4 nanoparticles, a type of nontoxic trimetallic transition metal oxides, is a promising heterogeneous catalyst for H2O2 activation over a wide pH range. In this study, the activation of H2O2 by CuO-MnFe2O4 nanoparticles is evaluated using sulfamethoxazole as a model reactant. The as-prepared CuO-MnFe2O4 nanoparticles exhibited excellent capability for sulfamethoxazole degradation over a wide pH range. Under the optimal conditions (0.5 g/L catalyst, 10 mM H2O2 and 5 mg/L SMX), 99.2% removal efficiency and 58.5% TOC removal were achieved within 30 minutes. According to quenching experiments and ESR analysis, center dot O-2(-)/center dot OH/O-1(2) were generated in CuO-MnFe2O4/H2O2 system, center dot OH and O-1(2) were main active species. XPS analysis indicated that there existed a synergistic effect between CuO and MnFe2O4, while the generated O-1(2) were probably derived from lattice oxygen and hydroxylate oxygen in CuO-MnFe2O4 nanoparticles. The CuO-MnFe2O4 nanoparticles are effective, environmental friendliness and low-cost catalysts for H2O2 activation over a wide pH range. These features make CuO-MnFe2O4 nanoparticles be a promising heterogeneous catalyst in Fenton-like reaction to process sulfamethoxazole in micro-polluted water.
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页码:2211 / 2222
页数:12
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