Supported palladium catalysts in environmental catalytic technologies for gaseous emissions
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[1] D. Resasco,et al. State of Pd on H-ZSM-5 and other acidic supports during the selective reduction of NO by CH4 studied by EXAFS/XANES , 1997 .
[2] Maxim Lyubovsky,et al. Complete methane oxidation over Pd catalyst supported on α-alumina. Influence of temperature and oxygen pressure on the catalyst activity , 1999 .
[3] H. Ohtsuka. Influence of Si/Al ratio on the activity and durability of Pd-ZSM-5 catalysts for nitrogen oxide reduction by methane , 2000 .
[4] A. Baiker,et al. Conversion of CCl2F2 (CFC-12) in the presence and absence of H2 on sol–gel derived Pd/Al2O3 catalysts , 1999 .
[5] N. A. Kelly,et al. Clean-air catalyst system for on-road applications: I. Evaluation of potential catalysts , 1998 .
[6] E. Johansson. Catalytic combustion of gasified biomass: poisoning by sulphur in the feed , 1999 .
[7] A. Datye,et al. Direct observation of reduction of PdO to Pd metal by in situ electron microscopy , 2000 .
[8] U. Ozkan,et al. Self-Sustained Oscillatory Behavior of NO+CH4+O2Reaction over Titania-Supported Pd Catalysts , 1997 .
[9] G. Somorjai,et al. Turnover rate and kinetic mechanism for the reaction of hydrodechlorination of 1,1-dichlorotetrafluoroethane (CF3-CFCl2) over a polycrystalline Pd foil , 1997 .
[10] John W. Geus,et al. Monoliths in catalytic oxidation , 1999 .
[11] P. Magnoux,et al. Catalytic oxidation of volatile organic compounds 1. Oxidation of xylene over a 0.2 wt% Pd/HFAU(17) catalyst , 1999 .
[12] J. C. Summers,et al. Design factors of dual bed catalysts , 1981 .
[13] T. Nevell,et al. Oscillatory behaviour of Pd/Al2O3, Pd–Pt/Al2O3 and Pd/Al2O3–CeO2 in the oxidation of methane , 1996 .
[14] N. Rodriguez,et al. In-Situ Electron Microscopy Studies of Palladium Supported on Al2O3 SiO2, and ZrO2 in Oxygen , 1995 .
[15] J. Barbier,et al. Propane and propene oxidation over platinum and palladium on alumina: Effects of chloride and water , 1994 .
[16] R. Burch,et al. C–H bond activation in hydrocarbon oxidation on heterogeneous catalysts , 1999 .
[17] Michalis Konsolakis,et al. The effect of sodium on the Pd-catalyzed reduction of NO by methane , 1998 .
[18] F. Figueras,et al. Conversion under hydrogen of dichlorodifluoromethane over supported palladium catalysts , 1993 .
[19] F. Solymosi,et al. Decomposition of CH4 over Supported Pd Catalysts , 1994 .
[20] G. Centi,et al. Novel catalysts and catalytic technologies for N2O removal from industrial emissions containing O2, H2O and SO2 , 2000 .
[21] Henry Shaw,et al. The effect of sulfur poisoning on methane oxidation over palladium supported on γ-alumina catalysts , 1998 .
[22] J. Fierro,et al. Methane combustion of Pd/SiO sol gel catalysts , 1998 .
[23] M. Ogura,et al. Selective reduction of nitric oxide with methane on In/H-ZSM-5-based catalysts , 1997 .
[24] J. Geus,et al. The effect of water on the activity of supported palladium catalysts in the catalytic combustion of methane , 1999 .
[25] A. Datye,et al. TEM Study of the Microstructural Modifications of an Alumina-Supported Palladium Combustion Catalyst , 1999 .
[26] U. Ozkan,et al. Nitric oxide reduction with methane over Pd/TiO2 catalysts. II. Isotopic labeling studies using N-15, O-18, and C-13 , 1997 .
[27] G. Centi,et al. Catalytic control of non-CO2 greenhouse gases , 1999 .
[28] D. M. Lowe,et al. Stability of supported metal and supported metal oxide combustion catalysts , 1999 .
[29] F. Zaera,et al. Kinetic study of the catalytic oxidation of alkanes over nickel, palladium, and platinum foils , 1997 .
[30] Alexis T. Bell,et al. Factors Affecting the Catalytic Activity of Pd/ZrO2for the Combustion of Methane , 1998 .
[31] William S. Epling,et al. Catalytic Oxidation of Methane over ZrO2-Supported Pd Catalysts , 1999 .
[32] K. Eguchi,et al. Oxidation of methane over Pd/mixed oxides for catalytic combustion , 1999 .
[33] J. A. González-Marcos,et al. Deep catalytic oxidation of chlorinated VOC mixtures from groundwater stripping emissions , 2000 .
[34] V. Kovalchuk,et al. Hydrodechlorination of dichlorodifluoromethane on carbon‐supported Group VIII noble metal catalysts , 1999 .
[35] G. Centi,et al. Reaction pathways of propane and propene conversion in the presence of NO and O2 on Cu/MFI , 1996 .
[36] J. Armor,et al. Catalytic decomposition of nitrous oxide on metal exchanged zeolites , 1992 .
[37] A. Bell,et al. Investigations of the Dispersion of Pd in H-ZSM-5 , 1997 .
[38] J. Geus,et al. XPS analysis of the oxidation of palladium model catalysts , 1999 .
[39] M. Ogura,et al. Determination of active palladium species in ZSM-5 zeolite for selective reduction of nitric oxide with methane , 1999 .
[40] C. Petit,et al. Mechanism of catalytic destruction of 1,2-dichloroethane and trichloroethylene over γ-Al2O3 and γ-Al2O3 supported chromium and palladium catalysts , 1999 .
[41] M. Misono,et al. Catalytic Reduction of Nitrogen Monoxide by Methane over Palladium-Loaded Zeolites in the Presence of Oxygen , 1993 .
[42] R. Ohnishi,et al. Selective hydrodechlorination of CFC-113 on Bi- and Tl-modified palladium catalysts , 1994 .
[43] L. Schmidt,et al. Oscillatory Reactions in Heterogeneous Catalysis , 1993 .
[44] Alexis T. Bell,et al. A Study of the Dynamics of Pd Oxidation and PdO Reduction by H2and CH4 , 1998 .
[45] U. Ozkan,et al. Nitric Oxide Reduction with Methane over Pd/TiO2Catalysts , 1997 .
[46] L. Petrov,et al. Oscillations during the interaction between carbon monoxide and oxygen on palladium-containing catalysts , 1992 .
[47] D. Trimm,et al. Adsocat: Adsorption/catalytic combustion for VOC and odour control , 2000 .
[48] J. Firth,et al. Catalytic oxidation of methane on zeolites containing rhodium, iridium, palladium and platinum , 1969 .
[49] I. Suzuki,et al. Bi–Pd Catalyst for Selective Hydrodechlorination of 1,1,2-Trichlorotrifluoroethane to Trifluoroethene, a Key Intermediate to 1,1,1,2-Tetrafluoroethane as a CFC Replacement for Refrigeration , 1991 .
[50] J. Pirard,et al. Dispersed Pd-Ag alloys for selective production of olefins from chlorinated alkanes , 2000 .
[51] Lance L. Smith,et al. Advanced technology catalytic combustor for high temperature ground power gas turbine applications , 1999 .
[52] C. Correa,et al. Combustion of methane over palladium ZSM-5 and mordenite catalysts , 1996 .
[53] M. Patterson,et al. The effect of carbon monoxide on the oxidation of four C6 to C8 hydrocarbons over platinum, palladium and rhodium , 2000 .
[54] Robert Walter McCabe,et al. Characterization of Pd-based automotive catalysts , 1996 .
[55] F. B. Noronha,et al. Oxidation and reduction effects of propane–oxygen on Pd–chlorine/alumina catalysts , 2000 .
[56] L. Haack,et al. Identification of two types of oxidized palladium on γ-alumina by X-ray photoelectron spectroscopy , 1992 .
[57] Process development for the selective hydrogenolysis of CCl2F2 (CFC-12) into CH2F2 (HFC-32) , 1996 .
[58] X. Verykios,et al. Combustion of non-halogenated volatile organic compounds over group VIII metal catalysts , 1997 .
[59] G. Groppi,et al. Catalytic Combustion for the Production of Energy , 1999 .
[60] E. Ruckenstein,et al. Sintering of palladium on alumina model catalyst in a hydrogen atmosphere , 1981 .
[61] P. Bosch,et al. Spectroscopic characterization and catalytic properties of sol-gel Pd/SiO2 catalysts , 1992 .
[62] Y. Fujii,et al. Catalytic combustion of odors in domestic spaces on ion-exchanged zeolites , 1998 .
[63] Robert J. Farrauto,et al. Palladium catalyst performance for methane emissions abatement from lean burn natural gas vehicles , 1997 .
[64] D. Duprez,et al. Oxidation of carbon monoxide, propene, propane and methane over a Pd/Al2O3 catalyst. Effect of the chemical state of Pd , 1997 .
[65] T. Nevell,et al. Non-steady activity during methane combustion over Pd/Al2O3 and the influences of Pt and CeO2 additives , 1999 .
[66] F. Figueras,et al. Conversion under hydrogen of dichlorodifluoromethane over bimetallic palladium catalysts , 1993 .
[67] F. Figueras,et al. Effect of the Metal-Support Interaction on the Catalytic Properties of Palladium for the Conversion of Difluorodichloromethane with Hydrogen: Comparison of Oxides and Fluorides as Supports , 1995 .
[68] G. Centi,et al. In situ activation phenomena of Rh supported on zirconia samples for the catalytic decomposition of N2O , 2000 .
[69] E. Garbowski,et al. Catalytic combustion of methane over palladium supported on alumina catalysts: Evidence for reconstruction of particles , 1994 .
[70] D. Trimm,et al. The effect of sulphur containing pollutants on the oxidation activity of precious metals used in vehicle exhaust catalysts , 1998 .
[71] M. Shelef,et al. Poisoning of Automotive Catalysts , 1979 .
[72] G. Centi,et al. Catalytic decomposition of N2O over noble and transition metal containing oxides and zeolites. Role of some variables on reactivity , 1997 .
[73] Gerard Martin,et al. Deactivation of palladium catalyst in catalytic combustion of methane , 1999 .
[74] Siglinda Perathoner,et al. Nature of active species in copper-based catalysts and their chemistry of transformation of nitrogen oxides , 1995 .
[75] M. Ogura,et al. Reduction of nitric oxide with methane on Pd/Co/H-ZSM-5 catalysts: cooperative effects of Pd and Co , 1996 .
[76] Robert Walter McCabe,et al. Microstructure of a Pd/ceria–zirconia catalyst after high-temperature aging , 1998 .
[77] E. Kemnitz,et al. Characterization of the Structure and Catalytic Behavior of AlF3−x(OH)xwith Aluminum Successively Replaced by Chromium and Magnesium , 1996 .
[78] Freek Kapteijn,et al. Heterogeneous catalytic decomposition of nitrous oxide , 1996 .
[79] H. Kleykamp. Freie Bildungsenthalpie von Palladiumoxid* , 1970 .
[80] J. Yates,et al. Interaction and catalytic decomposition of 1,1,1-trichloroethane on high surface area alumina: an infrared spectroscopic study , 1992 .
[81] A. Ramli,et al. A comparative investigation of the reduction of NO by CH4 on Pt, Pd, and Rh catalysts , 1998 .
[82] J. Pirard,et al. Palladium–Silver Sol–Gel Catalysts for Selective Hydrodechlorination of 1,2-Dichloroethane into Ethylene: II. Surface Composition of Alloy Particles , 2000 .
[83] J. Pirard,et al. Palladium-silver sol-gel catalysts for selective hydrodechlorination of 1,2-dichloroethane into ethylene. I. Synthesis and characterization , 1997 .
[84] W. Sachtler,et al. The effect of zeolitic protons on NOx reduction over Pd/ZSM-5 catalysts , 1997 .
[85] Z. Karpiński,et al. Hydrodechlorination of CCl2F2 (CFC-12) over γ-alumina supported palladium catalysts , 1998 .
[86] S. Kannan,et al. Catalytic decomposition of nitrous oxide on “in situ” generated thermally calcined hydrotalcites , 1994 .
[88] A. Baiker,et al. Combustion of methane over palladium/zirconia derived from a glassy Pd-Zr alloy: Effect of Pd particle size on catalytic behavior , 1997 .
[89] D. Resasco,et al. BIFUNCTIONALITY OF PALLADIUM-BASED CATALYSTS USED IN THE REDUCTION OF NITRIC OXIDE BY METHANE IN THE PRESENCE OF OXYGEN , 1995 .
[90] Ben W.-L. Jang,et al. Catalytic oxidation of methane over hexaaluminates and hexaaluminate-supported Pd catalysts , 1999 .
[91] Z. Karpiński,et al. Catalytic Hydrodechlorination of 1,1-Dichlorotetrafluoroethane by Pd/Al2O3 , 1996 .
[92] M. Primet,et al. Palladium-exchanged MFI-type zeolites in the catalytic reduction of nitrogen monoxide by methane. Influence of the Si/Al ratio on the activity and the hydrothermal stability , 1997 .
[93] J. Moulijn,et al. Palladium black as model catalyst in the hydrogenolysis of CCl2F2 (CFC-12) into CH2F2 (HFC-32) , 1997 .
[94] L. Manzer,et al. Catalytic synthesis of chlorofluorocarbon alternatives , 1993 .
[95] Z. Karpiński,et al. Pd-Re/Al2O3: Characterization and catalytic activity in hydrodechlorination of CCl2F2 , 1998 .
[96] Enrique Iglesia,et al. Structure and Reactivity of PdOx/ZrO2Catalysts for Methane Oxidation at Low Temperatures , 1998 .
[97] G. Graham,et al. High-Temperature-Aging-Induced Encapsulation of Metal Particles by Support Materials: Comparative Results for Pt, Pd, and Rh on Cerium–Zirconium Mixed Oxides , 1999 .
[98] T. N. Kalnes,et al. Hydrogenation and recycle of organic waste streams , 1988 .
[99] L. Pinard,et al. Catalytic oxidation of volatile organic compounds , 2000 .
[100] J. Moulijn,et al. Comparison of the Performance of Activated Carbon-Supported Noble Metal Catalysts in the Hydrogenolysis of CCl2F2☆ , 1998 .
[101] L. Schmidt,et al. Ignition in alkane oxidation on noble-metal catalysts , 1999 .
[102] G. Groppi,et al. Study of PdO/Pd transformation over alumina supported catalysts for natural gas combustion , 2000 .
[103] K. C. Stein,et al. Catalytic Oxidation of Methane , 1961 .
[104] C. Gigola,et al. Total ethane oxidation over Pd/α-Al2O3: the palladium oxidation state under reaction conditions , 1996 .
[105] Pio Forzatti,et al. Oxidation of NH3 and NOx formation During the catalytic combustion of gasified biomasses fuels over Mn–hexaaluminate and alumina-supported Pd catalysts , 1999 .
[106] J. Mccarty. Kinetics of PdO combustion catalysis , 1995 .
[107] D. Resasco,et al. Conversion of nitric oxide and methane over Pd/ZSM-5 catalysts in the absence of oxygen , 1995 .
[108] M. Misono,et al. Reduction of nitrogen oxides with hydrocarbons catalyzed by bifunctional catalysts , 1997 .
[109] Robert J. Farrauto,et al. Catalytic chemistry of supported palladium for combustion of methane , 1992 .
[110] Alfons Baiker,et al. Combustion of methane over palladium/zirconia: effect of Pd-particle size and role of lattice oxygen , 1999 .
[111] W. Weber,et al. In situ ellipsometric study of a palladium catalyst during the oxidation of methane , 1994 .
[112] G. Bickle,et al. Catalytic destruction of chlorofluorocarbons and toxic chlorinated hydrocarbons , 1994 .
[113] Robert L. McCormick,et al. Deactivation of PdO–Al2O3 oxidation catalyst in lean-burn natural gas engine exhaust: aged catalyst characterization and studies of poisoning by H2O and SO2 , 1999 .
[114] C. Méthivier,et al. Pd/SiC Catalysts: Characterization and Catalytic Activity for the Methane Total Oxidation , 1998 .
[115] M. Misono,et al. Rate-determining step of NO-CH4-O2 reaction catalyzed by Pd/H-ZSM-5 , 1997 .
[116] L. M. Gandía,et al. Influence of the surface adsorption–desorption processes on the ignition curves of volatile organic compounds (VOCs) complete oxidation over supported catalysts , 2000 .
[117] S. Sciré,et al. Selective catalytic reduction of nitric oxide with ethane and methane on some metal exchanged ZSM-5 zeolites , 1994 .
[118] T. N. Bell,et al. Catalytic conversion of CCl2F2 on Pt/γ-Al2O3 catalyst , 1995 .
[119] J. Spivey,et al. Catalyst deactivation during deep oxidation of chlorohydrocarbons , 1992 .
[120] F. Lónyi,et al. Hydrodechlorination of 1,1-dichlorotetrafluoroethane and dichlorodifluoromethane catalyzed by Pd on fluorinated aluminas: The role of support material , 1999 .
[121] A. Bell,et al. NO Reduction by CH4in the Presence of O2over Pd-H-ZSM-5☆ , 1999 .
[122] J. Armor,et al. Catalytic combustion of methane over palladium exchanged zeolites , 1994 .
[123] N. A. Kelly,et al. Clean-air catalyst system for on-road applications: II. Mechanistic studies of pollutant removal , 1998 .
[124] J. González-Velasco,et al. Activity and product distribution of alumina supported platinum and palladium catalysts in the gas-phase oxidative decomposition of chlorinated hydrocarbons , 1998 .
[125] S. J. Gentry,et al. The catalytic properties of zeolite X containing transition metal ions: Part 2—Methane oxidation , 1972 .
[126] F. Kapteijn,et al. High activity and stability of the Rh‐free Co‐based ex‐hydrotalcite containing Pd in the catalytic decomposition of N2O , 1999 .
[127] J. Armor,et al. Selective NH3 oxidation to N2 in a wet stream , 1997 .
[128] G. Díaz,et al. Desorption and catalytic properties of palladium, supported on Al2O3-La2O3, prepared by the sol-gel method , 1997 .