1 |
Promotion Effects of Platinum and Ruthenium on Carbon Nanotube Supported Cobalt Catalysts for Fischer-Tropsch Synthesis Zhang H, Chu W, Zou CJ, Huang ZY, Ye ZB, Zhu L Catalysis Letters, 141(3), 438, 2011 |
2 |
Catalytic wet air oxidation of N,N-dimethylformamide aqueous solutions: Deactivation of TiO2 and ZrO2-supported noble metal catalysts Grosjean N, Descorme C, Besson M Applied Catalysis B: Environmental, 97(1-2), 276, 2010 |
3 |
Catalytic wet air oxidation of olive oil mill effluents 4. Treatment and detoxification of real effluents Minh DP, Gallezot P, Azabou S, Sayadi S, Besson M Applied Catalysis B: Environmental, 84(3-4), 749, 2008 |
4 |
Degradation of olive oil mill effluents by catalytic wet air oxidation - 1. Reactivity of p-coumaric acid over Pt and Ru supported catalysts Minh DP, Gallezot P, Besson M Applied Catalysis B: Environmental, 63(1-2), 68, 2006 |
5 |
PtRu colloid nanoparticles for CO oxidation in microfabricated reactors Klerke A, Saadi S, Toftegaard MB, Madsen AT, Nielsen JH, Jensen S, Hansen O, Christensen CH, Quaade UJ Catalysis Letters, 109(1-2), 7, 2006 |
6 |
A study of PtRuO2 catalysts thermally formed on titanium mesh for methanol oxidation Yang LX, Allen RG, Scott K, Christenson PA, Roy S Electrochimica Acta, 50(5), 1217, 2005 |
7 |
A low temperature sensor for the detection of carbon monoxide in hydrogen Mukundan R, Brosha EL, Garzon FH Solid State Ionics, 175(1-4), 497, 2004 |
8 |
Role of the residual chlorides in platinum and ruthenium catalysts for the hydrogenation of alpha,beta-unsaturated aldehydes Bachiller-Baeza B, Guerrero-Ruiz A, Rodriguez-Ramos I Applied Catalysis A: General, 192(2), 289, 2000 |