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Efficient degradation of atrazine by magnetic porous copper ferrite catalyzed peroxymonosulfate oxidation via the formation of hydroxyl and sulfate radicals

Water Research · 2013 · Vol. 47(14) · pp. 5431–5438
Yinghong GuanJun MaYueming RenYu-Lei LiuJiayue XiaoLingqiang LinChen Zhang
Advanced oxidation water treatmentAdvanced Photocatalysis TechniquesEnvironmental remediation with nanomaterialsRadicalChemistrySulfateCatalysisCopperDegradation (telecommunications)AtrazinePorosityHydroxyl radicalInorganic chemistry

MeSH terms

AtrazineBicarbonatesBiodegradation, EnvironmentalCatalysisCopperFerric CompoundsMagneticsOxidation-ReductionPeroxidesSulfatesWater Pollutants, ChemicalHydroxyl RadicalWater Quality

Funding

  • National Natural Science Foundation of China
Citations
1,013
FWCI
32.67
field-weighted impact
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100%
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Citations per year
Cited by
Persulfate-Based Advanced Oxidation: Critical Assessment of Opportunities and Roadblocks
Environmental Science & Technology · 2020 · 3,221 citations
References
Radical Generation by the Interaction of Transition Metals with Common Oxidants
Environmental Science & Technology · 2004 · 3,030 citations
Mechanism of Base Activation of Persulfate
Environmental Science & Technology · 2010 · 1,380 citations
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Efficient degradation of atrazine by magnetic porous copper ferrite catalyzed peroxymonosulfate oxidation via the formation of hydroxyl and sulfate radicals · Scinovex