1141 - 1141 |
Green hydrogen and fuel cell systems Karakoc H, Midilli A, Turan O |
1142 - 1150 |
Analysis of electrolytic hydrogen production models and distribution modes for public urban transport: study case in Foz do Iguacu, Brazil Riveros-Godoy GA, Cavaliero C, Silva E |
1151 - 1159 |
Model for biomass-based renewable hydrogen supply chain Gondal IA, Sahir MH |
1160 - 1174 |
Design and simulation of a UOIT copper-chlorine cycle for hydrogen production Orhan MF, Dincer I, Rosen MA |
1175 - 1186 |
Water splitting with a dual photo-electrochemical cell and hybrid catalysis for enhanced solar energy utilization Zamfirescu C, Naterer GF, Dincer I |
1187 - 1195 |
Hydrogen generation with sodium borohydride solution by Ru catalyst Huang ZM, Su A, Liu YC |
1196 - 1204 |
A new heuristic optimization algorithm for modeling of proton exchange membrane fuel cell: bird mating optimizer Askarzadeh A, Rezazadeh A |
1205 - 1212 |
A novel H2S/H2O2 fuel cell operating at the temperature of 298K Sanli AE, Yilmaz O, Aytac A |
1213 - 1222 |
Investigating effects of polybenzimidazole loading design in the catalyst layer on the performance of polybenzimidazole-based high-temperature proton exchange membrane fuel cell through experiments and simulations Su A, Ferng YM, Tsai XY |
1223 - 1231 |
Effect of time-varying humidity on the performance of polymer electrolyte membrane fuel cells Noorani S, Shamim T |
1232 - 1241 |
A dynamic model for solid oxide fuel cell system and analyzing of its performance for direct current and alternating current operation conditions Gelen A, Yalcinoz T |
1242 - 1255 |
Dynamic characteristics and fast load following of 5-kW class tubular solid oxide fuel cell/micro-gas turbine hybrid systems So-ryeok O, Jing S, Herb D, Joel K |
1256 - 1264 |
Multi-objective optimization of a direct methanol fuel cell system using a genetic-based algorithm Mert SO, Ozcelik Z |