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Separation and Purification Technology, ISSN 1383-5866, 05/2019, Volume 215, pp. 62 - 69
Over the past few years, microwave technology (MW) has been successfully coupled to different advanced oxidation processes for wastewater treatment. This... 
Metal-free catalyst | Microwave | AOP intensification | Wastewater treatment | Hot spot | Graphite | PERFORMANCE | PHENOL DEGRADATION | ENGINEERING, CHEMICAL | BORON-DOPED DIAMOND | ACTIVATED CARBON | PATHWAY | WASTE-WATER | KINETICS | ELECTROCHEMICAL DEGRADATION | Sewage | Purification | Radiation | Oxidation-reduction reaction | Wastewater | Organic acids
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 11/2018, Volume 235, pp. 246 - 255
The catalyst stability has become a key issue for wet peroxide oxidation (CWPO) processes. Herein, an alternative method for the manufacturing of iron (Fe)... 
Robocasting | Silicon carbide | Catalytic wet peroxide oxidation | Monolith | 3D printing | FENTON OXIDATION | PHENOL | OPERATING-CONDITIONS | CHEMISTRY, PHYSICAL | ENGINEERING, CHEMICAL | SUPPORT | ENGINEERING, ENVIRONMENTAL | ACTIVATED CARBON | WASTE-WATER | KINETICS | HYDROGEN-PEROXIDE | EFFICIENT
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 08/2013, Volume 140-141, pp. 663 - 670
This paper addresses the improved performance of activated carbons in catalytic wet peroxide oxidation (CWPO) of phenol as target compound. Initial cyclic... 
Cyclic voltammetry | Regeneration | Hydrogen peroxide | Catalytic wet peroxide oxidation | Activated carbon | 4-CHLOROPHENOL | PHENOLIC-COMPOUNDS | DECOMPOSITION | CHEMISTRY, PHYSICAL | H2O2 | AQUEOUS-SOLUTION | ENGINEERING, CHEMICAL | ENGINEERING, ENVIRONMENTAL | AIR OXIDATION | SURFACE | HYDROGEN-PEROXIDE | ORGANIC CONTAMINANTS
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 07/2014, Volume 154-155, pp. 329 - 338
Zero-valent iron supported catalysts were prepared through modifying an activated carbon (AC) support with different nitrogen containing precursors;... 
Phenol | Catalytic wet peroxide oxidation | Activated carbon | Surface chemistry | FENTON | AQUEOUS-SOLUTIONS | CHEMISTRY, PHYSICAL | ADSORPTION | IMMOBILIZATION | ENGINEERING, CHEMICAL | REMOVAL | ENGINEERING, ENVIRONMENTAL | AIR OXIDATION | WASTE-WATER | FUNCTIONAL-GROUPS | BIODEGRADABILITY | SURFACE-CHEMISTRY | Iron
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 01/2015, Volume 259, pp. 243 - 251
Journal Article
Applied Catalysis B, Environmental, ISSN 0926-3373, 2006, Volume 65, Issue 3, pp. 261 - 268
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 07/2017, Volume 209, pp. 701 - 710
A kinetic model has been developed describing the rate of hydrogen peroxide consumption and target pollutant (phenol) degradation in CWPO with a commercial... 
Kinetic model | Wet peroxide oxidation | Carbon black catalyst | PHENOL | CHEMISTRY, PHYSICAL | ADSORPTION | H2O2 | ENGINEERING, CHEMICAL | DYE | REMOVAL | ACTIVATED CARBONS | ENGINEERING, ENVIRONMENTAL | WASTE-WATER | DEGRADATION | HYDROGEN-PEROXIDE | ORGANIC CONTAMINANTS
Journal Article
Catalysis Today, ISSN 0920-5861, 2010, Volume 151, Issue 1, pp. 153 - 158
Different liquid phase thermal treatments were applied to a commercial activated carbon (Norit ROX 0.8) in order to produce modified activated carbons with... 
Sulphur containing functional groups | Thiols | Sulfonic acids | Catalytic wet peroxide oxidation | Activated carbons | Surface chemistry | PHENOL | SUPPORTS | CHEMISTRY, PHYSICAL | IRON | ADSORPTION | H2O2 | AQUEOUS-SOLUTION | ENGINEERING, CHEMICAL | REMOVAL | CHEMISTRY, APPLIED | ORGANIC CONTAMINANTS | SURFACE-CHEMISTRY | WATER
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 09/2016, Volume 192, pp. 350 - 356
This study assesses the effect of UV LED radiation on the activity and stability of an activated carbon supported iron catalyst in catalytic wet peroxide... 
Intensification | LED | Fe(II)-Fe(III)/AC | CWPO | Fe/AC catalyst | Reduction | Catalysts | Activated carbon | Peroxides | Oxidation | Iron | Catalysis | Streams
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 02/2016, Volume 181, pp. 249 - 259
Different homemade iron-activated carbon catalysts (Fe/AC) have been studied in the CWPO of phenol at mild conditions (atmospheric pressure and 50 °C). Both... 
Hydroxyl radicals | Hydrogen peroxide | CWPO | Activated carbon | Iron particles | PHENOL | CHEMISTRY, PHYSICAL | ADSORPTION | ENGINEERING, CHEMICAL | FE/AC CATALYSTS | ENGINEERING, ENVIRONMENTAL | AIR OXIDATION | SURFACE | HYDROGEN-PEROXIDE | FUNCTIONAL-GROUPS | ORGANIC CONTAMINANTS | WATER | Phenol | Atmospheric pressure | Catalysts | Barometric pressure | Decomposition reactions | Surface chemistry | Iron | Catalysis
Journal Article