6269 - 6269 |
William D. Van Vorst (1919-2014) Obituary Van Vorst S |
6270 - 6275 |
Efficient hydrogen production using ternary Ni-Cu-Mo ionic activator Perovic NM, Acimovic DD, Tasic GS, Karic SD, Lausevic PZ, Kaninski MPM, Nikolic VM |
6276 - 6282 |
Electrochemical performance of tungsten electrode as cathode for hydrogen evolution in alkaline solutions Badawy WA, Abd El-Hafez GM, Nady H |
6283 - 6295 |
Progress in thermochemical hydrogen production with the copper-chlorine cycle Naterer GF, Suppiah S, Stolberg L, Lewis M, Wang Z, Rosen MA, Dincer I, Gabriel K, Odukoya A, Secnik E, Easton EB, Papangelakis V |
6296 - 6306 |
Thermophilic hydrogen production from sugarcane bagasse pretreated by steam explosion and alkaline delignification Ratti RP, Delforno TP, Sakamoto IK, Varesche MBA |
6307 - 6318 |
Dry reforming of multiple biogas types for syngas production simulated using Aspen Plus: The use of partial oxidation and hydrogen combustion to achieve thermo-neutrality Gopaul SG, Dutta A |
6319 - 6328 |
Two-stage thermophilic fermentation and mesophilic methanogen process for biohythane production from palm oil mill effluent Mamimin C, Singkhala A, Kongjan P, Suraraksa B, Prasertsan P, Imai T, O-Thong S |
6329 - 6339 |
Inoculum pretreatment promotes differences in hydrogen production performance in EGSB reactors Cisneros-Perez C, Carrillo-Reyes J, Cells LB, Alatriste-Mondragon F, Etchebehere C, Razo-Flores E |
6340 - 6345 |
Syngas production from coal in presence of steam using filtration combustion Toledo TM, Araus SK, Vasconcelo AD |
6346 - 6357 |
W-modified CoB supported on Ag-activated TiO2 for hydrogen generation from alkaline NaBH4 solution Shen XC, Wang Q, Guo SQ, Liu BS, Sun ZY, Zhang ZY, Wang ZB, Zhao B, Ding WP |
6358 - 6364 |
Experiment on the separation of tail gases of ammonia plant via continuous hydrates formation with TBAB Sun Q, Liu J, Liu AX, Guo XQ, Yang LY, Zhang JW |
6365 - 6372 |
Nb-doped LiBH4 (010) surface for hydrogen desorption: First-principles calculations Yu SY, Ju X, Wan CB, Li SN |
6373 - 6390 |
Sorbent material property requirements for on-board hydrogen storage for automotive fuel cell systems Ahluwalia RK, Peng JK, Hua TQ |
6391 - 6404 |
A DSP-based interleaved boost DC-DC converter for fuel cell applications Somkun S, Sirisamphanwong C, Sukchai S |
6405 - 6421 |
Fuel cell systems with reforming of petroleum-based and synthetic-based diesel and kerosene fuels for APU applications Samsun RC, Pasel J, Peters R, Stolten D |
6422 - 6429 |
Sulfonated aromatic polyamides containing nitrile groups as proton exchange fuel cell membranes Wang CY, Shen B, Zhou Y, Xu C, Chen WT, Zhao XY, Li J |
6430 - 6439 |
Experimental influence of operating variables on the performances of MCFCs under SO2 poisoning Di Giulio N, Audasso E, Bosio B, Han J, McPhail SJ |
6440 - 6448 |
Performance analysis of direct Black Sea hydrogen sulphide (in artificial sea water)/hydrogen peroxide fuel cells Sanli AE, Mat MD |
6449 - 6458 |
Compressed hydrogen tanks for on-board application: Thermal behaviour during cycling de Miguel N, Cebolla RO, Acosta B, Moretto P, Harskamp F, Bonato C |
6459 - 6464 |
Performances of Cr2O3-hydrogen isotopes permeation barriers Li Q, Mo LB, Wang J, Yan K, Tang T, Rao YC, Yao WQ, Cao JL |
6465 - 6477 |
CFD benchmark on hydrogen release and dispersion in a ventilated enclosure: Passive ventilation and the role of an external wind Giannissi SG, Hoyes JR, Chernyauskiy B, Hooker P, Hall J, Venetsanos AG, Molkov V |
6478 - 6486 |
Effect of burst pressure on vented hydrogen-air explosion in a cylindrical vessel Guo J, Li Q, Chen DD, Hu KL, Shao K, Guo CM, Wang CJ |