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Industrial & Engineering Chemistry Research, ISSN 0888-5885, 02/2006, Volume 45, Issue 4, pp. 1221 - 1258
This review article explores three major aspects of the wet oxidation (WO) and catalytic wet oxidation (CWO) processes... 
ENGINEERING, CHEMICAL | TRICKLE-BED REACTOR | INDUSTRIAL-WASTE-WATER | AQUEOUS-SOLUTIONS | LIQUID-PHASE OXIDATION | AIR OXIDATION | CONTAINING ORGANIC-COMPOUNDS | HYDROGEN-PEROXIDE | ACETIC-ACID | P-COUMARIC ACID | CARBOXYLIC-ACIDS
Journal Article
Applied catalysis. B, Environmental, ISSN 0926-3373, 2015, Volume 176-177, pp. 249 - 265
... catalysts to industrial wastewater decontamination by heterogeneous Fenton oxidation. The use of magnetic materials in this field started only around 2008 and continues growing increasingly year by year... 
Fenton | Magnetite | Iron mineral | CWPO | Ferromagnetic catalyst | Magnetic nanoparticles | WET PEROXIDE OXIDATION | ELECTRO-FENTON | CHEMISTRY, PHYSICAL | FE PILLARED CLAYS | POROUS CARBON | HYDROXYL RADICAL GENERATION | IRON-OXIDES | ENGINEERING, CHEMICAL | CHLORINATED BY-PRODUCTS | ENGINEERING, ENVIRONMENTAL | WASTE-WATER | HYDROGEN-PEROXIDE | IN-SITU | Nanoparticles | Catalysts | Ferromagnetic materials | Magnetic materials | Oxidation | Catalysis | Pollutants | Magnetic properties
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 04/2015, Volume 165, pp. 1 - 9
....•Catalysts were shown to be partly stable upon recycling reactions.•Deactivation was related to changes in the active phase surface oxidation state... 
Succinic acid | Catalytic wet air oxidation | Noble metals | Kinetics | CexZr1 − xO2 | EFFLUENTS | CARBON | 2-CHLOROPHENOL | PHENOL | PLATINUM | CHEMISTRY, PHYSICAL | RUTHENIUM | ACETIC-ACID | ENGINEERING, CHEMICAL | ENGINEERING, ENVIRONMENTAL | CexZr1-xO2 | WASTE-WATER | CARBOXYLIC-ACIDS | Catalysis | Environmental and Society | Chemical Sciences | Environmental Sciences
Journal Article
Electrochimica Acta, ISSN 0013-4686, 2007, Volume 53, Issue 4, pp. 1902 - 1910
This work compared the degradation behaviors of an azo dye, cationic red X-GRL, by three clean advanced oxidation processes: wet oxidation (WO... 
Wet oxidation | Degradation mechanism | Wet electrochemical oxidation | Azo dye | Electrochemical oxidation | ELECTROCHEMISTRY | wet oxidation | azo dye | CARBON | electrochemical oxidation | PHENOL | AIR OXIDATION | WASTE-WATER | wet electrochemical oxidation | degradation mechanism | ANODE
Journal Article
Chemical engineering journal (Lausanne, Switzerland : 1996), ISSN 1385-8947, 2019, Volume 363, pp. 155 - 173
Journal Article