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Journal of Hazardous Materials, ISSN 0304-3894, 10/2015, Volume 296, pp. 128 - 137
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 09/2016, Volume 192, pp. 286 - 295
Surface reaction of goethite with boric acid (H3BO3) and methylene blue pathway degradation. The aim of this study was to obtain iron oxides (goethite phase,... 
DFT calculations and organic compounds | Boric acid | Fenton process | Goethite | OXIDATION | BOROHYDRIDE CONCENTRATION | ACID | CHEMICAL-REDUCTION | CHEMISTRY, PHYSICAL | ADSORPTION | IRON-OXIDE | ENGINEERING, CHEMICAL | ENGINEERING, ENVIRONMENTAL | CATALYSTS | Iron oxides | Degradation | Catalysts | Surface chemistry | Boric acids | Catalytic activity | Oxidation | Catalysis | Organic compounds
Journal Article
by Feng, YP and Lu, K and Mao, L and Guo, XK and Gao, SX and Petersen, EJ
WATER RESEARCH, ISSN 0043-1354, 11/2015, Volume 84, pp. 49 - 57
Graphene has attracted considerable commercial interest due to its numerous potential applications. It is inevitable that graphene will be released into the... 
Characterizations | PATHWAYS | Quantification | MECHANISM | DEPURATION | (CO2)-C-14 generation | RAMAN-SPECTROSCOPY | PHOTOCHEMICAL TRANSFORMATION | WATER RESOURCES | Degradation kinetics | C-14-labeled few layer graphene | WALLED CARBON NANOTUBES | OXIDE NANOSHEETS | ENVIRONMENTAL SCIENCES | ENGINEERING, ENVIRONMENTAL | CHEMISTRY | Fenton reaction | HYDROGEN-PEROXIDE | WATER
Journal Article
Water Research, ISSN 0043-1354, 11/2015, Volume 84, pp. 49 - 57
Graphene has attracted considerable commercial interest due to its numerous potential applications. It is inevitable that graphene will be released into the... 
Characterizations | 14 C-labeled few layer graphene | 14 CO 2 generation | Quantification | Fenton reaction | Degradation kinetics
Journal Article
Physical Chemistry Chemical Physics, ISSN 1463-9076, 08/2015, Volume 17, Issue 38, pp. 25333 - 25341
The exposed surface facets play an important role in determining the catalytic performance of nano-structured materials. In this study, we report the synthesis... 
PHOTOCATALYTIC PROPERTY | VISIBLE-LIGHT | NANOPARTICLES | GROWTH-MECHANISM | TRANSITION-METAL OXIDES | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | WATER OXIDATION | MAGNETIC-PROPERTIES | ALPHA-FE2O3 CRYSTAL FACES | INITIO MOLECULAR-DYNAMICS | HYDROTHERMAL SYNTHESIS
Journal Article
Physical chemistry chemical physics : PCCP, ISSN 1463-9076, 10/2015, Volume 17, Issue 38, pp. 25333 - 25341
The exposed surface facets play an important role in determining the catalytic performance of nanostructured materials. In this study, we report the synthesis... 
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 10/2017, Volume 326, pp. 201 - 209
The effects of different organic acids on 2,4,4′-trichlorobiphenyl (PCB28) degradation, H O decomposition and OH formation in a goethite-catalyzed Fenton-like... 
Fenton-like reaction | Fulvic acid | Goethite | Organic acids | Hydroxyl radical | OXIDATION | DECOMPOSITION | HUMIC CONSTITUENTS | ADSORPTION | IRON-OXIDES | ENGINEERING, CHEMICAL | VISIBLE-LIGHT | DISSOLUTION | ENGINEERING, ENVIRONMENTAL | NEUTRAL PH | SYSTEMS | HYDROGEN-PEROXIDE | Yuan (China) | Hydroxides | Oxalic acid | Malic acid | Oxalates | Iron oxides | Humic acid
Journal Article
Journal of Cleaner Production, ISSN 0959-6526, 01/2019, Volume 207, pp. 717 - 727
In this work, using solid waste red mud (RM) as main raw material and without addition of chemical reagents of alkali and ferric salt, a new method of... 
Photo-Fenton | Visible light | Green synthesis | ZnO | Red mud | α-Fe | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | ORANGE II | MECHANISM | TOXICITY | CATALYST | DYE | ENVIRONMENTAL SCIENCES | PHOTOCATALYTIC DEGRADATION | REMOVAL | OXIDE NANOPARTICLES | ENGINEERING, ENVIRONMENTAL | alpha-Fe2O3 | PHOTODEGRADATION | WATER
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 02/2016, Volume 55, Issue 6, pp. 2101 - 2106
Metallic glasses and cancer theranostics are emerging fields that do not seem to be related to each other. Herein, we report the facile synthesis of amorphous... 
Fenton reaction | magnetic resonance imaging | cancer | iron nanoparticles | antitumor agents | NANOPARTICLES | PHOTODYNAMIC THERAPY | T-1 | HYDROGEN-PEROXIDE | DRUG-RELEASE | CHEMISTRY, MULTIDISCIPLINARY | Temperature | Apoptosis - drug effects | Antineoplastic Agents - chemical synthesis | Humans | Tumor Microenvironment | Antineoplastic Agents - therapeutic use | Structure-Activity Relationship | Glass - chemistry | Dose-Response Relationship, Drug | Hydrogen Peroxide - chemistry | MCF-7 Cells | Iron Compounds - chemistry | Surface Properties | Mammary Neoplasms, Experimental - pathology | Female | Antineoplastic Agents - pharmacology | Iron Compounds - therapeutic use | Nanostructures - therapeutic use | Mammary Neoplasms, Experimental - drug therapy | Cell Survival - drug effects | Iron - chemistry | Iron Compounds - metabolism | Antineoplastic Agents - chemistry | Particle Size | Animals | Nanostructures - chemistry | Cell Proliferation - drug effects | Mice | Drug Screening Assays, Antitumor | Hydrogen-Ion Concentration | Antimitotic agents | Care and treatment | Iron compounds | Ionization | Antineoplastic agents | Health aspects | Cancer | Cancer therapies | Demand | Therapy | Disproportionation | Hydrogen peroxide | Crystals | Amorphous materials | Iron | Acidity | Nanoparticles | Metallic glasses | Nanocrystals | Energy | Endogenous stimuli | Physicochemical properties | Crystal structure | Stimuli | Chemical Sciences
Journal Article
Applied Clay Science, ISSN 0169-1317, 2010, Volume 47, Issue 3, pp. 182 - 192
Advanced oxidation processes (AOP), involving the generation of highly oxidizing radical species, have attracted much attention because of their potential in... 
Clays | Fenton-like reaction | Catalysts | Zeolites | Oxide minerals | Allophane | WET PEROXIDE OXIDATION | POLYCYCLIC AROMATIC-HYDROCARBONS | AL-CE-FE | AZO-DYE | IRON-OXIDE | PHOTO-FENTON | MILL WASTE-WATER | DYE ORANGE-II | HYDROGEN-PEROXIDE | PILLARED CLAYS | MINERALOGY | Water, Underground | Clay minerals | Hydrogen peroxide | Iron oxides
Journal Article