Decomposition of tributhyl phosphate at supercritical water oxidation conditions: Non-catalytic, catalytic, and kinetic reaction studies

[1]  M. Kosari,et al.  On the catalysis capability of transition metal oxide nanoparticles in upgrading of heavy petroleum residue by supercritical water , 2017 .

[2]  B. Al-Duri,et al.  Supercritical water oxidation (SCWO) for the removal of N-containing heterocyclic hydrocarbon wastes. Part I: Process enhancement by addition of isopropyl alcohol , 2016 .

[3]  Jafar Towfighi,et al.  Catalytic cracking of heavy petroleum residue in supercritical water: Study on the effect of different metal oxide nanoparticles , 2016 .

[4]  Shashi Kumar,et al.  Selective hydrogenolysis of glycerol to 1,2‐propanediol over highly active copper–magnesia catalysts: reaction parameter, catalyst stability and mechanism study , 2016 .

[5]  T. Tago,et al.  Upgrading of oil sand bitumen over an iron oxide catalyst using sub- and super-critical water , 2016 .

[6]  S. Fatemi,et al.  Deuterium tracing study of unsaturated aliphatics hydrogenation by supercritical water in upgrading heavy oil. Part II: Hydrogen donating capacity of water in the presence of iron(III) oxide nanocatalyst , 2016 .

[7]  Y. Yoneyama,et al.  Catalytic bitumen cracking in sub- and supercritical water , 2016 .

[8]  C. Schwarz,et al.  Catalytic supercritical water gasification of primary paper sludge using a homogeneous and heterogeneous catalyst: Experimental vs thermodynamic equilibrium results. , 2016, Bioresource technology.

[9]  M. Hosseinpour,et al.  An investigation into the formation and conversion of metal complexes to metal oxide nanoparticles in supercritical water , 2016 .

[10]  S. Fatemi,et al.  Successive co-operation of supercritical water and silica-supported iron oxide nanoparticles in upgrading of heavy petroleum residue: Suppression of coke deposition over catalyst , 2015 .

[11]  Li Yu,et al.  Catalytic Supercritical Water Oxidation of Oily Wastewater , 2015, Chemistry and Technology of Fuels and Oils.

[12]  Mesut Akgün,et al.  Catalytic hydrogen production from 2-propanol in supercritical water: Comparison of some metal catalysts , 2014 .

[13]  Y. Mortazavi,et al.  Enhanced pyrolysis and oxidation of asphaltenes adsorbed onto transition metal oxides nanoparticles towards advanced in-situ combustion EOR processes by nanotechnology , 2014 .

[14]  Jing Ouyang,et al.  CuO nanoparticles encapsulated inside Al-MCM-41 mesoporous materials via direct synthetic route , 2014, Scientific Reports.

[15]  Y. Mortazavi,et al.  Asphaltene adsorption onto acidic/basic metal oxide nanoparticles toward in situ upgrading of reservoir oils by nanotechnology. , 2013, Langmuir : the ACS journal of surfaces and colloids.

[16]  J. R. Portela,et al.  Kinetics of supercritical water oxidation of isopropanol as an auxiliary fuel and co-fuel , 2013 .

[17]  S. F. D’souza,et al.  Tributyl phosphate degradation in batch and continuous processes using Pseudomonas pseudoalcaligenes MHF ENV , 2012 .

[18]  M. Shamsipur,et al.  31P-NMR evaluation of organophosphorus pesticides degradation through metal ion promoted hydrolysis , 2012, Environmental Monitoring and Assessment.

[19]  J. R. Portela,et al.  Simulation of Real Wastewater Supercritical Water Oxidation at High Concentration on a Pilot Plant Scale , 2011 .

[20]  M. Sillanpää,et al.  Degradation of Tributyl Phosphate Using Nanopowders of Iron and Iron-Nickel under the Influence of a Static Magnetic Field , 2011 .

[21]  V. Marulanda,et al.  Supercritical water oxidation of a heavily PCB-contaminated mineral transformer oil: Laboratory-scale data and economic assessment , 2010 .

[22]  Somkiat Ngamprasertsith,et al.  Treatment of Acetonitrile by Catalytic Supercritical Water Oxidation in Compact-Sized Reactor , 2010 .

[23]  Gerd Brunner,et al.  Near critical and supercritical water. Part I. Hydrolytic and hydrothermal processes , 2009 .

[24]  J. Leszczynski,et al.  Catalytic Decomposition of Organophosphorus Compounds , 2009 .

[25]  Xueguang Wang,et al.  Selective oxidation of alcohols to aldehydes and ketones over TiO2-supported gold nanoparticles in supercritical carbon dioxide with molecular oxygen , 2008 .

[26]  C. Xu,et al.  Characteristics of iron oxide/activated carbon nanocomposites prepared using supercritical water , 2008 .

[27]  Morgan Fröling,et al.  Thermochemical biofuel production in hydrothermal media: A review of sub- and supercritical water technologies , 2008 .

[28]  B. Ohtani,et al.  Pristine simple oxides as visible light driven photocatalysts: highly efficient decomposition of organic compounds over platinum-loaded tungsten oxide. , 2008, Journal of the American Chemical Society.

[29]  Shawn Hamilton,et al.  Upgrading of Athabasca Vacuum Tower Bottoms (VTB) in Supercritical Hydrocarbon Solvents with Activated Carbon-Supported Metallic Catalysts , 2007 .

[30]  M. Tadé,et al.  Volatile organic compounds in indoor environment and photocatalytic oxidation: state of the art. , 2007, Environment international.

[31]  J. R. Portela,et al.  Hydrothermal oxidation: application to the treatment of different cutting fluid wastes. , 2007, Journal of hazardous materials.

[32]  Y. Oshima,et al.  Kinetic analysis on alcohol concentration and mixture effect in supercritical water oxidation of methanol and ethanol by elementary reaction model , 2007 .

[33]  Ki Chul Park,et al.  Supercritical water oxidation of polychlorinated biphenyls based on the redox reactions promoted by nitrate and nitrite salts , 2006 .

[34]  Masaru Watanabe,et al.  Size-controlled synthesis of metal oxide nanoparticles with a flow-through supercritical water method , 2006 .

[35]  S. Moussiere,et al.  A Porous Reactor for Supercritical Water Oxidation: Experimental Results on Salty Compounds and Corrosive Solvents Oxidation , 2005 .

[36]  Frédéric Vogel,et al.  Critical review of kinetic data for the oxidation of methanol in supercritical water , 2005 .

[37]  Kangnian Fan,et al.  Ag–SiO2–Al2O3 composite as highly active catalyst for the formation of formaldehyde from the partial oxidation of methanol , 2004 .

[38]  Ram B. Gupta,et al.  Formation of zinc oxide nanoparticles in supercritical water , 2003 .

[39]  M. Valenzuela,et al.  Preparation, characterization and photocatalytic activity of ZnO, Fe2O3 and ZnFe2O4 , 2002 .

[40]  S. Yesodharan Supercritical water oxidation: An environ- mentally safe method for the disposal of organic wastes , 2002 .

[41]  Eckhard Dinjus,et al.  An assessment of supercritical water oxidation (SCWO). Existing problems, possible solutions and new reactor concepts , 2001 .

[42]  K. Arai,et al.  Hydrothermal Synthesis of Metal Oxide Nanoparticles at Supercritical Conditions , 2000 .

[43]  Alfons Baiker,et al.  Supercritical Fluids in Heterogeneous Catalysis. , 1999, Chemical reviews.

[44]  M. Abraham,et al.  Catalytic supercritical water oxidation of pyridine : Comparison of catalysts , 1999 .

[45]  Phillip E. Savage,et al.  Organic Chemical Reactions in Supercritical Water. , 1999, Chemical reviews.

[46]  J. Fierro,et al.  Selective Production of Hydrogen by Partial Oxidation of Methanol over ZnO-Supported Palladium Catalysts , 1998 .

[47]  P. Savage,et al.  A reduced mechanism for methanol oxidation in supercritical water , 1998 .

[48]  J. Levec,et al.  Oxidation of phenol over a transition-metal oxide catalyst in supercritical water , 1997 .

[49]  M. Goto,et al.  Decomposition of Municipal Sludge by Supercritical Water Oxidation. , 1997 .

[50]  J. F. Porter,et al.  Wet air oxidation of desizing wastewater from the textile industry , 2000 .

[51]  Lixiong Li,et al.  Catalytic Oxidation in Supercritical Water , 1996 .

[52]  S. F. Rice,et al.  Raman spectroscopic measurement of oxidation in supercritical water. 1. Conversion of methanol to formaldehyde , 1996 .

[53]  J. Levec,et al.  On the kinetics of phenol oxidation in supercritical water , 1996 .

[54]  P. Dagaut,et al.  Chemical kinetic modeling of the supercritical-water oxidation of methanol , 1996 .

[55]  A. E. Greenberg,et al.  Standard methods for the examination of water and wastewater : supplement to the sixteenth edition , 1988 .

[56]  A. A. Bishop,et al.  Extraction of coal using supercritical water , 1984 .