Preface | |
Organization | |
Modelling of propylene oxidation in a circulating fluidized-bed reactor | p. 1 |
Selective oxidation over structured multicomponent molybdate catalysts | p. 19 |
Relationships between the catalytic activity and the composition of various uranium-antimony mixed oxide catalysts in the selective oxidation of olefins | p. 31 |
Synergy in the Fe-Mo-Sb-O multiphase system | p. 41 |
Role of tellurium oxide in the selective oxidation of isobutene to methacrolein: [actual symbol not reproducible] catalysts | p. 55 |
Propylene selective oxidation as studied by oxygen-18 labelling on well-defined MoO[subscript 3] catalysts | p. 67 |
Selective hydrocarbon oxidation at vanadium pentoxide surfaces: ab initio cluster model studies | p. 75 |
Comparison between gamma-alumina and aluminium niobate supported vanadium oxides in propane oxidative dehydrogenation | p. 83 |
Dispersion of V[superscript 4+] ions in a SnO[subscript 2] rutile matrix as a tool for the creation of active sites in ethane oxydehydrogenation | p. 93 |
Oxidative dehydrogenation of ethane over chromia-pillared montmorillonite catalysts | p. 103 |
Oxidative dehydrogenation of propane and n-butane on V-Mg based catalysts | p. 113 |
Oxidative dehydrogenation of the C[subscript 4]-C[subscript 5] paraffins over vanadium-containing oxide catalysts | p. 125 |
Oxidehydrogenation of propane on gallium oxide-faujasite catalysts | p. 133 |
Characteristics of alumina boria catalysts used in ethane partial oxidation | p. 143 |
Effect of potassium addition to [actual symbol not reproducible] catalysts on their physicochemical and catalytic properties in oxidative dehydrogenation of propane | p. 151 |
Catalytic reduction of carbon dioxide by hydrocarbons and other organic compounds | p. 159 |
A concise description of the bulk structure of vanadyl pyrophosphate and implications for n-butane | p. 167 |
A study of the (surface) structure of V-P-O catalysts during pretreatment and during activation | p. 183 |
The oxidation of n-butane on vanadyl pyrophosphate catalysts: study of pretreatment process | p. 195 |
Activation of vanadium phosphorus oxide catalysts for alkane oxidation oxygen storage and catalyst performance | p. 203 |
Vanadium phosphate catalysts prepared by the reduction of VOPO[subscript 4], 2H[subscript 2]O | p. 213 |
Production of maleic and phthalic anhydrides by selective vapor phase oxidation with vanadium oxide based catalysts | p. 221 |
A new commercial scale process for n-butane oxidation to maleic anhydride using a circulating fluidized bed reactor | p. 233 |
Separation of catalyst oxidation and reduction - An alternative to the conventional oxidation of n-butane to maleic anhydride? | p. 243 |
On the catalyst features affecting selectivity in n-C[subscript 4] hydrocarbon oxidation and oxidative dehydrogenation. FT-IR studies | p. 253 |
New reaction: n-Butane direct catalytic oxidation to tetrahydrofuran | p. 265 |
Oxidation and ammoxidation of propane over tetragonal type M[superscript 3]OPO[subscript 4] catalysts | p. 271 |
Structure and Stability during the Catalytic Reaction of Unsupported V-Antimonate Catalysts for the Direct Selective Ammoxidation of Propane to Acrylonitrile | p. 281 |
Ammoxidation of propane over vanadium-antimony-oxide catalysts. Role of phase cooperation effects | p. 293 |
Selective oxidation of propane in the presence of bismuth-based catalysts | p. 305 |
A study of the catalytic oxidative oligomerization of methane to aromatics | p. 315 |
Investigation of molten cobalt halide/sodium metavanadate mixtures as redox catalysts for the oxidative coupling of methane | p. 327 |
The active oxygen species in oxidative coupling of methane over Li/CaO and Na/CaO using N[subscript 2]O and O[subscript 2] as oxidants | p. 337 |
Spectroscopic characterization of surface oxygen species on barium-containing methane coupling catalysts | p. 345 |
Selectivity control by oxygen pressure in methane oxidation over phosphate catalysts | p. 357 |
Isotopic labeling studies on oxidative coupling of methane over alkali promoted molybdate catalysts | p. 367 |
Methane coupling over Sm-Al mixed oxides | p. 377 |
Catalytic reactor engineering for the oxidative coupling of methane. Use of a fluidized bed and of a ceramic membrane reactor | p. 387 |
[actual symbol not reproducible] catalysts for oxidative coupling of methane: relationship between structural features and catalytic behaviours | p. 395 |
Oxidative conversion of methane over MgO/ZSM-5 catalysts | p. 403 |
Surface characterization and catalytic behaviour of Li/MgO in oxidative coupling of methane | p. 411 |
Solid-gas phase interface analysis on [actual symbol not reproducible] correlation between CH[subscript 4] oxidation activity and work function measurements | p. 419 |
The role of structural defects and oxygen migration in La[subscript 2]O[subscript 3] for the oxidative coupling of methane | p. 427 |
Kinetic simulation of oxidative coupling of methane in the gas phase | p. 435 |
Oxidative coupling of methane over Ti-La-Na catalysts | p. 443 |
Gas Phase Oxidation of Benzene to Phenol using Pd/Cu Salt Catalysts. Effect of Counter Anion in Copper Salts | p. 451 |
Low temperature gas-phase selective oxidation of 1-butene to 2-butanone on supported Pd/V[subscript 2]O[subscript 3] catalysts | p. 461 |
The adsorption of oxygen on Ag and Ag-Au alloys: Mechanistic implications in ethylene epoxidation catalysis | p. 471 |
Detailed modeling of transport-kinetics interactions of ethylene epoxidation at high vacuum and atmospheric pressures | p. 481 |
Doping effects in ethylene epoxidation over potassium promoted silver catalysts | p. 495 |
A temperature programmed surface reaction study of the catalytic epoxidation and total oxidation of ethylene on silver | p. 499 |
HRTEM and TPO study of the behaviour under oxidizing conditions of some Rh/CeO[subscript 2] catalysts | p. 507 |
Redox molecular sieves as heterogeneous catalysts for liquid phase oxidations | p. 515 |
Influence of the synthesis procedure and chemical composition on the activity of titanium in Ti-Beta catalysts | p. 531 |
Selective oxidation of ammonia to hydroxylamine with hydrogen peroxide on titanium based catalysts | p. 541 |
Palladium catalyzed oxidation of benzene to phenol using molecular oxygen | p. 551 |
Partial oxidation of cinnamyl alcohol on bimetallic catalysts of improved resistance to self-poisoning | p. 561 |
Novel tungsten catalysts grafted onto polymeric materials: a comparison with phase transfer catalysis | p. 571 |
Selective oxidation of cyclopentene and cyclohexene by hydrogen peroxide catalyzed by heteropolyacids | p. 583 |
Highly selective epoxidation of olefins on mono-transition-metal-substituted Keggin-type heteropolytungstates by molecular oxygen in the presence of aldehyde | p. 593 |
Selective oxidation of cyclohexene with molecular oxygen catalyzed by transition metal substituted polyoxometalates | p. 603 |
Novel catalysts for olefin cleavage using hydrogen peroxide | p. 609 |
Novel one-pot synthesis of indigo from indole and organic hydroperoxide | p. 615 |
Selective oxidations with short-lived manganese (V) | p. 623 |
Catalytic oxidation of polyols: new example of nonradical mechanism of oxygenation | p. 629 |
Copper-catalyzed oxidative decarboxylation of aliphatic carboxylic acids | p. 639 |
Cyclohexane oxidation by the GOAGG[superscript III] system: formation of iron (hydr)oxide particles and reactivation | p. 647 |
Oxidation of cyclohexane catalyzed by polyhalogenated and perhalogenated manganese porphyrins | p. 653 |
Polymer supported iron catalysts for the oxidation of cyclohexane | p. 659 |
Selective oxidation of 2-mercaptobenzothiazole | p. 667 |
Selective oxidation of gaseous hydrocarbons by microbial cells | p. 675 |
Selective enzymatic oxidations by using oxygen as oxidizing agent: immobilization and stabilization of FNR, a NADP[superscript +] regenerating enzyme | p. 685 |
ESR study of photo-oxidation of phenol at low temperature on polycrystalline titanium dioxide | p. 693 |
Partial oxidation of benzene over the carbon whisker cathode added with iron oxide and palladium black during O[subscript 2]-H[subscript 2] fuel cell reactions | p. 703 |
Influence of operational variables on the photodegradation kinetics of Monuron in aqueous titanium dioxide dispersions | p. 713 |
Heterogeneous photocatalytic oxidation of liquid isopropanol by TiO[subscript 2], ZrO[subscript 2] and ZrTio[subscript 4] powders | p. 721 |
Effect of the state of vanadium on the properties incorporation titanium phosphate-based catalysts for oxidation of toluene | p. 729 |
Quantum-chemical description of the oxidation of alkylaromatic molecules on vanadium oxide catalysts | p. 739 |
Characterisation of [actual symbol not reproducible] catalysts for the gas-phase oxidation of fluorene to 9-fluorenone | p. 749 |
Gas-phase catalytic oxydehydrogenation of ethylbenzene on AlPO[subscript 4] catalysts | p. 759 |
Selective gas-phase dehydrogenation of cyclohexanol with magnesium orthophosphates | p. 769 |
Effect of K-doping on 2-propanol adsorption, desorption and catalytic oxidation over vanadia-titania | p. 777 |
Selective oxidation of methanol on iron-chromium-molybdenum oxide catalysts | p. 787 |
Creation of new selective sites by spill-over oxygen [alpha]-Sb[subscript 2]O[subscript 4] in the oxidation of ethanol | p. 795 |
Effect of titania on the properties of alumina supported molybdena catalysts | p. 803 |
Selective dehydrogenation of ethanol over vanadium oxide catalyst | p. 811 |
Cesium promotion of iron phosphate catalyst and influence of steam on the oxidative dehydrogenation of isobutyric acid to methacrylic acid | p. 819 |
Iron hydroxysilicates: New selective and active isobutyric acid oxidative dehydrogenation catalysts | p. 829 |
Thermolysis of heteropolyacid [actual symbol not reproducible] and catalytic properties of the thermal decomposition products in oxidation of acrolein to acrylic acid | p. 837 |
Selective oxidation of aldehydes over V-Mo-O[subscript x]/SiO[subscript 2] catalysts | p. 845 |
Diacetyl synthesis by the direct partial oxidation of methyl ethyl ketone over vanadium oxide catalysts | p. 853 |
Selective oxidation of hydrogen sulfide on a sodium promoted iron oxide on silica catalyst | p. 861 |
Effect of morphology of honeycomb SCR catalysts on the reduction of [actual symbol not reproducible] and the oxidation of SO[subscript 2] | p. 869 |
Author index | p. 877 |
Subject index | p. 881 |
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