1 |
Anodic behavior of mechanically alloyed Cu-Ni-Fe and Cu-Ni-Fe-O electrodes for aluminum electrolysis in low-temperature KF-AlF3 electrolyte Goupil G, Helle S, Davis B, Guay D, Roue L Electrochimica Acta, 112, 176, 2013 |
2 |
Ball-Milled (Cu-Ni-Fe + Fe2O3) Composite as Inert Anode for Aluminum Electrolysis Helle S, Davis B, Guay D, Roue L Journal of the Electrochemical Society, 160(6), E55, 2013 |
3 |
Mechanically Alloyed Cu-Ni-Fe-O Based Materials as Oxygen-Evolving Anodes for Aluminum Electrolysis Helle S, Tresse M, Davis B, Guay D, Roue L Journal of the Electrochemical Society, 159(4), E62, 2012 |
4 |
Pretreatment and enzymatic hydrolysis of recovered fibre for ethanol production Ruffell J, Levie B, Helle S, Duff S Bioresource Technology, 101(7), 2267, 2010 |
5 |
Electrolytic Production of Aluminum Using Mechanically Alloyed Cu-Al-Ni-Fe-Based Materials as Inert Anodes Helle S, Davis B, Guay D, Roue L Journal of the Electrochemical Society, 157(11), E173, 2010 |
6 |
The influence of rock characteristics on acid leach extraction and re-extraction of Cu-oxide and sulfide minerals Helle S, Jerez O, Kelm U, Pincheira M, Varela B Minerals Engineering, 23(1), 45, 2010 |
7 |
Char characterization and DTF assays as tools to predict burnout of coal blends in power plants Ulloa C, Borrego AG, Helle S, Gordon AL, Garcia X Fuel, 84(2-3), 247, 2005 |
8 |
Improvement of mineralogical and chemical characterization to predict the acid leaching of geometallurgical units from Mina Sur, Chuquicamata, Chile Helle S, Keim U, Barrientos A, Rivas P, Reghezza A Minerals Engineering, 18(13-14), 1334, 2005 |
9 |
Effect of inhibitory compounds found in biomass hydrolysates on growth and xylose fermentation by a genetically engineered strain of S-cerevisiae Helle S, Cameron D, Lam J, White B, Duff S Enzyme and Microbial Technology, 33(6), 786, 2003 |
10 |
Coal blend combustion: fusibility ranking from mineral matter composition Goni C, Helle S, Garcia X, Gordon A, Parra R, Kelm U, Jimenez R, Alfaro G Fuel, 82(15-17), 2087, 2003 |