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Chemical Engineering Journal, ISSN 1385-8947, 2017, Volume 317, pp. 1012 - 1025
Journal Article
Journal of Molecular Catalysis. A, Chemical, ISSN 1381-1169, 11/2015, Volume 408, pp. 41 - 47
[Display omitted] •First report on activity of nanoceria based system for Fenton-type degradation of methylene blue•Ceria nanoparticles are obtained via simple... 
Redox potential | Ceria nanoparticles | Fenton-like oxidation | Oxygen vacancy | OXIDATION | ACID ORANGE 7 | PERFORMANCE | CEO2/H2O2 SYSTEM | CERIA | CHEMISTRY, PHYSICAL | DEGRADATION | CEO2
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 07/2013, Volume 228, pp. 1148 - 1157
•Cu2+ can be as effective as Fe3+ for catalyzing NBE oxidation in Fenton-like systems.•TOC reductions were higher in the presence of Cu2+.•Cu2+ is... 
Iron(III) | Fenton-like | Photo-enhancement | Nitrobenzene | Copper(II) | REAGENT | AQUEOUS-SOLUTIONS | COMPLEXES | SEAWATER | SOLAR LIGHT | ENGINEERING, CHEMICAL | PHOTO-FENTON | ADVANCED OXIDATION PROCESSES | ENGINEERING, ENVIRONMENTAL | KINETICS | HYDROGEN-PEROXIDE | PART 2 | Degradation | Spectroscopy | Nitrobenzenes | Catalysts | Chemical engineering | Evolution | Optimization
Journal Article
Water Research, ISSN 0043-1354, 08/2017, Volume 119, pp. 47 - 56
This study demonstrated the efficient degradation of a typical bio-refractory antibiotic norfloxacin (NOR) in a photochemical iron oxides/oxalate system... 
Homogeneous-heterogeneous reactions | In-situ chemical oxidation | Photochemical Fenton-like | Magnetite-oxalate | Norfloxacin | Ultraviolet Rays | Oxidation-Reduction | Hydrogen Peroxide | Ferric Compounds - chemistry | Iron | Norfloxacin - chemistry | Photochemistry | Oxides | Magnetite | Oxalates | Oxalic acid
Journal Article
Separation and Purification Technology, ISSN 1383-5866, 08/2017, Volume 184, pp. 374 - 383
[Display omitted] •Pyrite/H2O2 system exhibited relative rapid degradation rate of RhB.•A less negative effect of carbonate was found in the pyrite/PS... 
Pyrite | H2O2 | Rhodamine B (RhB) | Fenton-like oxidation | Mechanism | H | O | OXIDATION | ELECTRO-FENTON | AQUEOUS-SOLUTIONS | PERSULFATE ACTIVATION | PHENOL | SIMULTANEOUS REMOVAL | ENGINEERING, CHEMICAL | PHOTOCATALYTIC DEGRADATION | FENTON-LIKE | CR(VI) | MALACHITE GREEN
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 11/2019, p. 123417
Journal Article
Journal of Hazardous Materials, ISSN 0304-3894, 07/2018, Volume 354, pp. 206 - 214
[Display omitted] •The first application of Fe-N, Nʹ-dipicolinamide in a Fenton-like system is demonstrated.•A ligand N, Nʹ-dipicolinamide can stabilized the... 
Fenton-like | 4-Chlorophenol | Iron complex | Catalyst | N, Nʹ-Dipicolinamide | COMPLEX | ALKANE HYDROXYLATION | N, N '-Dipicolinamide | C-H BONDS | IRON PHTHALOCYANINE | ENVIRONMENTAL SCIENCES | FENTON-LIKE DEGRADATION | ENGINEERING, ENVIRONMENTAL | NEUTRAL PH | INTERMEDIATE | DRASTIC ENHANCEMENT | HYDROGEN-PEROXIDE | CATALYSTS
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 12/2014, Volume 257, pp. 36 - 44
[Display omitted] •The system could achieve a significant synergy in the degradation of sulfadiazine.•SD was effectively degraded with a relative low PS dosage... 
Fenton-like | Sulfadiazine | Ultrasound | Zero valent iron | Persulfate
Journal Article
Water Research, ISSN 0043-1354, 02/2020, Volume 169, p. 115240
Advanced oxidation treatment processes used in various applications to treat contaminated soil, water, and groundwater involve powerful radical intermediates,... 
Hydroxyl radicals | Mineral surfaces | Surface scavenging | CLAYS | DECOMPOSITION | FENTON-LIKE REACTIONS | WATER RESOURCES | IRON | ENVIRONMENTAL SCIENCES | ENGINEERING, ENVIRONMENTAL | HYDROGEN-PEROXIDE | OXIDES | CONTAMINANT DEGRADATION | CATALYSTS | Hydroxyl Radical | Kinetics | Minerals | Oxidation-Reduction | Oxidative Stress | Hydrogen Peroxide
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 11/2018, Volume 351, pp. 747 - 755
[Display omitted] •Magnetic MnFe2O4 along with H2O2 was tested for catalytic oxidation of norfloxacin.•Norfloxacin could be removed efficiently at neutral... 
Fenton-like | Antibiotic | Heterogeneous | Iron-based materials | Defluorination | ACTIVATION | CARBON | FERRITE | OFLOXACIN | ADSORPTION | ENGINEERING, CHEMICAL | VISIBLE-LIGHT | PHOTOCATALYTIC DEGRADATION | ENGINEERING, ENVIRONMENTAL | RADICALS | HETEROGENEOUS CATALYST | CIPROFLOXACIN
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 04/2019, Volume 361, pp. 919 - 928
[Display omitted] •The oxidation capabilities of CaO2/Fe(II) and CaO2/Fe(III) systems were compared.•Fe(II)/Fe(III), H2O2, HO, and intermediate products are... 
Calcium peroxide | Hydroxyl radicals | Application strategy | Fenton system | Fenton-like system | BENZOIC-ACID | BENZENE | ENHANCED DEGRADATION | AQUEOUS-SOLUTION | OXYGEN | ENGINEERING, CHEMICAL | PEROXIDE CAO2 NANOPARTICLES | SOIL TREATMENT | ENGINEERING, ENVIRONMENTAL | HYDROGEN-PEROXIDE | NANOSCALE CALCIUM PEROXIDE | GROUNDWATER
Journal Article
Water Research, ISSN 0043-1354, 07/2018, Volume 138, pp. 7 - 18
The presence of antibiotics in aquatic environments has attracted global concern. Fenton process is an attractive yet challenging method for antibiotics... 
Degradation | Fenton-like | Steel converter slag | Sulfamethazine | Cobalt | METHYLENE-BLUE | WATER RESOURCES | MAGNETIC NANOPARTICLES | MICROBIAL COMMUNITY | ADSORPTION | CATALYTIC DEGRADATION | AQUEOUS-SOLUTION | ENVIRONMENTAL SCIENCES | REMOVAL | ADVANCED OXIDATION PROCESSES | ANTIBIOTIC SULFAMETHAZINE | ENGINEERING, ENVIRONMENTAL
Journal Article