165 - 173 |
Wet air oxidation of phenol using active carbon as catalyst Fortuny A, Font J, Fabregat A |
175 - 187 |
Catalytic steam reforming of chlorocarbons: trichloroethane, tsichloroethylene and perchloroethylene Coute N, Ortego JD, Richardson JT, Twigg MV |
189 - 197 |
Activity and product distribution of alumina supported platinum and palladium catalysts in the gas-phase oxidative decomposition of chlorinated hydrocarbons Gonzalez-Velasco JR, Aranzabal A, Gutierrez-Ortiz JI, Lopez-Fonseca R, Gutierrez-Ortiz MA |
199 - 207 |
The nature of activity enhancement for propane oxidation over supported Pt catalysts exposed to sulphur dioxide Burch R, Halpin E, Hayes M, Ruth K, Sullivan JA |
209 - 219 |
Removal of NOx: Part I. Sorption/desorption processes on barium aluminate Hodjati S, Bernhardt P, Petit C, Pitchon V, Kiennemann A |
221 - 232 |
Removal of NOx: Part II. Species formed during the sorption/desorption processes on barium aluminates Hodjati S, Bernhardt P, Petit C, Pitchon V, Kiennemann A |
233 - 243 |
Reduction of SO2 by CO to elemental sulfur over Co3O4-TiO2 catalysts Kim H, Park DW, Woo HC, Chung JS |
245 - 259 |
Development of a transient kinetic model for the CO oxidation by O-2 over a Pt/Rh/CeO2/gamma-Al2O3 three-way catalyst Nibbelke RH, Nievergeld AJL, Hoebink JHBJ, Marin GB |
261 - 266 |
Oxidation state of palladium as a factor controlling catalytic activity of Pd/SiO2-Al2O3 in propane combustion Yazawa Y, Yoshida H, Takagi N, Komai S, Satsuma A, Hattori T |
267 - 277 |
Role of CeO2 in Ni/CeO2-Al2O3 catalysts for carbon dioxide reforming of methane Wang SB, Lu GQ |
279 - 287 |
On the nature of active sites in Fe/ZSM-5 catalysts for NOx abatement Voskoboinikov TV, Chen HY, Sachtler WMH |
289 - 304 |
Ion-exchanged pillared clays for selective catalytic reduction of NO by ethylene in the presence of oxygen Yang RT, Tharappiwattananon N, Long RQ |
305 - 311 |
Recycling polystyrene into fuels by means of FCC: performance of various acidic catalysts de la Puente G, Sedran U |