219 - 219 |
Environmental catalysis in Europe - Editorial Busca G, Hutchings GJ |
221 - 230 |
Selective hydrogenolysis of CCl2F2 into CH2F2 over palladium on activated carbon Kinetic mechanism and process design Moulijn JA, Makkee M, Wiersma A, van de Sandt EJAX |
231 - 240 |
Group VI transition metal carbides as alternatives in the hydrodechlorination of chlorofluorocarbons Delannoy L, Giraudon JM, Granger P, Leclercq L, Leclercq G |
241 - 248 |
Cr-doped Zr, Si-mesoporous molecular sieves as catalysts of CH2Cl2 oxidation Janas J, Janik R, Machej T, Serwicka EM, Bielanska E, Bastardo-Gonzalez E, Jones W |
249 - 259 |
The activity and mechanism of uranium oxide catalysts for the oxidative destruction of volatile organic compounds Taylor SH, Heneghen CS, Hutchings GJ, Hudson ID |
261 - 268 |
A study of the abatement of VOC over V2O5-WO3-TiO2 and alternative SCR catalysts Finocchio E, Baldi M, Busca G, Pistarino C, Romezzano G, Bregani F, Toledo GP |
269 - 278 |
Combustion of volatile organic compounds in two-component mixtures over monolithic perovskite catalysts Musialik-Piotrowska A, Syczewska K |
279 - 286 |
Potentialities and limitations of lean de-NOx catalysts in reducing automotive exhaust emissions Ciambelli P, Corbo P, Migliardini F |
287 - 304 |
Mechanistic differences in the selective reduction of NO by propene over cobalt- and silver-promoted alumina catalysts: kinetic and in situ DRIFTS study Meunier FC, Zuzaniuk V, Breen JP, Olsson M, Ross JRH |
305 - 312 |
Characterization and reactivity of pure TiO2-SO42- SCR catalyst: influence of SO42- content Jung SM, Grange P |
313 - 321 |
Catalytic activity of Pt and tungstophosphoric acid supported on MCM-41 for the reduction of NOx in the presence of water vapor Jentys A, Schiesser W, Vinek H |
323 - 334 |
NOx sorption-desorption study: application to diesel and lean-burn exhaust gas (selective NOx recirculation technique) Hodjati S, Vaezzadeh K, Petit C, Pitchon V, Kiennemann A |
335 - 345 |
Urea-SCR: a promising technique to reduce NOx emissions from automotive diesel engines Koebel M, Elsener M, Kleemann M |
347 - 363 |
Catalytic behavior of La-Sr-Ce-Fe-O mixed oxidic/perovskitic systems for the NO plus CO and NO+CH4+O-2 (lean-NOx) reactions Belessi VC, Costa CN, Bakas TV, Anastasiadou T, Pomonis PJ, Efstathiou AM |
365 - 371 |
A study of the mechanism of selective conversion of ammonia to nitrogen on Ni/gamma-Al2O3 under strongly oxidising conditions Amblard M, Burch R, Southward BWL |
373 - 386 |
Modification of the oxygen storage capacity of CeO2-ZrO2 mixed oxides after redox cycling aging Fally F, Perrichon V, Vidal H, Kaspar J, Blanco G, Pintado JM, Bernal S, Colon G, Daturi M, Lavalley JC |
387 - 393 |
New ceria-based catalysts for pollution abatement O'Connell M, Morris MA |
395 - 402 |
Thermal aging of Pd/Pt/Rh automotive catalysts under a cycled oxidizing-reducing environment Gonzalez-Velasco JR, Botas JA, Ferret R, Gonzalez-Marcos MP, Marc JL, Gutierrez-Ortiz MA |
403 - 409 |
The application of "superacidic" metal oxides and their platinum doped counterparts to methane combustion Brown ASC, Hargreaves JSJ, Taylor SH |
411 - 416 |
Plasmacatalytic processes for environmental problems Francke KP, Miessner H, Rudolph R |
417 - 422 |
Pilot plant performance of a SO2 to SO3 oxidation catalyst for flue-gas conditioning Alvarez E, Blanco J, Knapp C, Olivares J, Salvador L |
423 - 442 |
Hydrodesulfurization of hindered dibenzothiophenes: an overview Shafi R, Hutchings GJ |