139 - 139 |
Natural gas conversion - Foreword Galuszka J, Smith KJ |
141 - 160 |
Mechanisms of methanol synthesis from hydrogen and carbon oxides at Cu-Zn-containing catalysts in the context of some fundamental problems of heterogeneous catalysis Ostrovskii VE |
161 - 165 |
Mechanistic difference of the CO2 reforming of CH4 over unsupported and zirconia supported molybdenum carbide catalysts Naito S, Tsuji M, Miyao T |
167 - 179 |
Contributions of lattice oxygen to the overall oxygen balance during methane combustion over PdO-based catalysts Ciuparu D, Pfefferle L |
181 - 189 |
Steam reforming of a clean model biogas over Ni/Al2O3 in fluidized- and fixed-bed reactors Effendi A, Zhang ZG, Hellgardt K, Honda K, Yoshida T |
191 - 204 |
Co-support compound formation in Co/Al2O3 catalysts: effect of reduction gas containing CO Jongsomjit B, Goodwin JG |
205 - 213 |
A thorium-doped catalyst for the high temperature shift reaction Costa JLR, Marchetti GS, Rangel MDC |
215 - 223 |
Rh-Ni synergy in the catalytic partial oxidation of methane: surface phenomena and catalyst stability Basile F, Fornasari G, Trifiro F, Vaccari A |
225 - 235 |
Ni/SiO2 and Fe/SiO2 catalysts for production of hydrogen and filamentous carbon via methane decomposition Ermakova MA, Ermakov DY |
237 - 243 |
Re-Co/Al2O3 bimetallic catalysts prepared by mechanical treatment: CO hydrogenation and CH4 conversion Guczi L, Takacs L, Stefler G, Koppany Z, Borko L |
245 - 256 |
Partial oxidation of methane on Pt/Ce-ZrO2 catalysts Mattos LV, de Oliveira ER, Resende PD, Noronha FB, Passos FB |
257 - 268 |
CH4 decomposition on Co catalysts: effect of temperature, dispersion, and the presence of H-2 or CO in the feed Zhang Y, Smith KJ |
269 - 284 |
Synthesis and characteristics of MCM-41 supported CoRu catalysts Panpranot J, Goodwin JG, Sayari A |