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Journal of Hazardous Materials, ISSN 0304-3894, 09/2017, Volume 338, pp. 265 - 275
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 12/2018, Volume 354, pp. 517 - 524
Magnetite is considered a promising catalyst for catalytic oxidation of nitrogen oxide (NOx) by vaporized H O . The NO oxidation mechanisms on original and... 
Density functional theory | Ti-doped Fe3O4 | H2O2 | Nitric oxide | Heterogeneous oxidation | FENTON-LIKE SYSTEMS | HG-0 | PHOTOCATALYTIC OXIDATION | ADSORPTION | GENERALIZED GRADIENT APPROXIMATION | IRON-OXIDES | SELECTIVE CATALYTIC-REDUCTION | SPINEL-TYPE MNFE2O4 | ENGINEERING, CHEMICAL | REMOVAL | ENGINEERING, ENVIRONMENTAL | FLUE-GAS
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 02/2018, Volume 334, pp. 1430 - 1439
Co O -mediated heterogeneous activation of peroxymonosulfate (PMS) is an efficient strategy to generate sulfate radicals for environmental pollutants... 
Fenton-like reaction | Environmental pollutants | Metal-support interactions | Co3O4 | TiO2 | TiO | GRAPHENE OXIDE | COBALT CATALYSTS | ORANGE II | AQUEOUS-SOLUTION | PHENOL DEGRADATION | ENGINEERING, CHEMICAL | SULFATE RADICALS | ENGINEERING, ENVIRONMENTAL | HETEROGENEOUS ACTIVATION | TITANIUM-DIOXIDE | CATALYTIC-ACTIVITY | WATER
Journal Article
Journal of Colloid And Interface Science, ISSN 0021-9797, 11/2013, Volume 410, pp. 67 - 73
Iron nanoparticles (Fe NPs) were synthesized using tea extracts as a catalyst for the Fenton-like oxidation of monochlorobenzene (MCB), where 69%, 53%, and 39%... 
Fenton-like | Fe NPs | Green synthesis | Tea extracts | Monochlorobenzene | ZERO-VALENT IRON | MECHANISM | CHEMISTRY, PHYSICAL | AQUEOUS-SOLUTION | CHLOROBENZENE | REMOVAL | DEGRADATION | NZVI | CATALYSTS | Chlorobenzene | Iron | Chemical properties | Degradation | Nanoparticles | Synthesis | Catalysts | Surface chemistry | Oxidation | Green tea
Journal Article
Separation and Purification Technology, ISSN 1383-5866, 11/2015, Volume 154, pp. 60 - 67
In this study, the novel combination of Fe and FeS /H O system was used to enhance the degradation of chloramphenicol (CAP) by promoting the synergetic effect... 
Fenton-like | Chloramphenicol | Synergetic effect | Autocatalytic effect | Fe3 | Fe 3 | SYSTEM | H2O2 | 2,4,6-TRINITROTOLUENE | AQUEOUS-SOLUTION | MINE DRAINAGE | OXYGEN | ENGINEERING, CHEMICAL | KINETICS | DEGRADATION | HYDROGEN-PEROXIDE | ORGANIC-COMPOUND | Sulfur compounds | Iron compounds | Antibacterial agents | Restaurants | Phosphates | Degradation | Scanning electron microscopy | Pyrite | Reaction kinetics | Activation | Oxidation | Dissolution
Journal Article
Science of the Total Environment, ISSN 0048-9697, 09/2019, Volume 683, pp. 638 - 647
Coal gangue and phenol are two main pollutants in coal mining and processing. Using coal gangue as raw material, a series of Cu modified ZSM–5 (Cu/ZSM–5)... 
Heterogeneous Fenton–like reaction | Coal gangue | ZSM–5 | Phenol | Copper | CARBON | CU(II) | ZSM-5 | CHLOROPHENOLS | OFLOXACIN | CATALYST | ENVIRONMENTAL SCIENCES | Heterogeneous Fenton-like reaction | PHOTOCATALYTIC ACTIVITY | ENHANCEMENT | DEGRADATION | GENERATION | BIMETALLIC FE-CU | Phenols | Mineral industry | Raw materials | Copper oxide | Mining industry | Cuprite
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 11/2014, Volume 255, pp. 141 - 148
Nanoscale zero-valent iron (nZVI) was used as the catalyst to remove amoxicillin (AMX) using a heterogeneous Fenton-like system, where 86.5% of AMX was... 
nZVI | Fenton-like oxidation | Amoxicillin | Oxidative degradation | NZVI | CONTAMINANTS | ANTIBIOTICS | PARTICLES | ADSORPTION | REMEDIATION | ENGINEERING, CHEMICAL | SULFATE RADICALS | NANOPARTICLES | REMOVAL | ENGINEERING, ENVIRONMENTAL | DEGRADATION | HYDROGEN-PEROXIDE | Chemical properties | Degradation | Fourier transforms | Catalysts | pH | Oxidation | Iron | Nanostructure
Journal Article
Science of the Total Environment, ISSN 0048-9697, 01/2020, Volume 701, p. 135023
Antibiotics are becoming emerging contaminants due to their extensive production and consumption, which have caused hazards to the ecological environment and... 
Advanced oxidation processes | Ozonation | Ionizing radiation | Antibiotics | Fenton-like oxidation | Photocatalytic oxidation
Journal Article