2137 - 2146 |
Effect of ferrous iron concentration on anaerobic bio-hydrogen production from soluble starch Yang HJ, Shen JQ |
2147 - 2157 |
Biohydrogen production from molasses by anaerobic fermentation with a pilot-scale bioreactor system Ren NQ, Li JZ, Li BK, Wang Y, Liu SR |
2158 - 2169 |
Effect of gas sparging on continuous fermentative hydrogen production Kim DH, Han SK, Kim SH, Shin HS |
2170 - 2178 |
Kinetic study of biological hydrogen production by anaerobic fermentation Chen WH, Chen SY, Khanal SK, Sung SW |
2179 - 2192 |
Production of hydrogen by lignins fast pyrolysis Baumlin S, Broust F, Bazer-Bachi F, Bourdeaux T, Herbinet O, Ndiaye FT, Ferrer M, Lede J |
2193 - 2199 |
Steam and auto-thermal reforming of bio-ethanol over MgO and CeO2Ni supported catalysts Frusteri F, Freni S, Chiodo V, Donato S, Bonura G, Cavallaro S |
2200 - 2210 |
Fermentative hydrogen production with a draft tube fluidized bed reactor containing silicone-gel-immobilized anaerobic sludge Lin CN, Wu SY, Chang JS |
2211 - 2216 |
Investigation of the electrocatalytic activity of metalophthalocyanine complexes for hydrogen production from water Koca A, Sener MK, Kocak MB, Gul A |
2217 - 2222 |
Hydrogen production by using manganese ferrite: Evidences and benefits of a multi-step reaction mechanism Alvani C, La Barbera A, Ennas G, Padella F, Varsano F |
2223 - 2230 |
Phototrophic hydrogen production from glucose by pure and co-cultures of Clostridium butyricum and Rhodobacter sphaeroides Fang HHP, Zhu HG, Zhang T |
2231 - 2242 |
Effect of process variables on Pt/CeO2 catalyst behaviour for the PROX reaction Ayastuy JL, Gil-Rodriguez A, Gonzalez-Marcos MP, Gutierrez-Ortiz MA |
2243 - 2249 |
Co-current and counter-current modes for methanol steam reforming membrane reactor Gallucci F, Basile A |
2250 - 2255 |
Dehydrogenation of methyl-cyclohexane under multiphase reaction conditions Zhang LA, Xu GH, An Y, Chen CP, Wang QD |
2256 - 2265 |
Synthesis of new ferrite, Al-Cu ferrite, and its oxygen deficiency for solar H-2 generation from H2O Kaneko H, Yokoyama T, Fuse A, Ishihara H, Hasegawa N, Tamaura Y |
2266 - 2273 |
Effect of the heating rate on crystallization behavior of mechanically alloyed Mg50Ni50 amorphous alloy Aydinbeyli N, Celik ON, Gasan H, Aybar K |
2274 - 2283 |
Vehicular storage of hydrogen in insulated pressure vessels Aceves SM, Berry GD, Martinez-Frias J, Espinosa-Loza F |
2284 - 2291 |
Improvement of hydrogen-sorption characteristics of Mg by reactive mechanical grinding with Cr2O3 prepared by spray conversion Song M, Kwon S, Hong SH, Mumm DR, Bae JS |
2292 - 2298 |
Heat of reaction measurements of sodium borohydride alcoholysis and hydrolysis Zhang JS, Fisher TS, Gore JP, Hazra D, Ramachandran PV |
2299 - 2309 |
Thermal stratification in ribbed liquid hydrogen storage tanks Khurana TK, Prasad BVSSS, Ramamurthi K, Murthy SS |
2310 - 2328 |
A wide range modeling study of NOx formation and nitrogen chemistry in hydrogen combustion Frassoldati A, Faravelli T, Ranzi E |
2329 - 2336 |
Optimization of electrolytic input power for the production of hydrogen Kothari R, Buddhi D, Sawhney RL |
2337 - 2344 |
Effect of preparation conditions of CuO-CeO2-ZrO2 catalyst on CO removal from hydrogen-rich gas Dong XF, Zou HB, Lin WM |
2345 - 2355 |
Feasibility study on bioreactor strategies for enhanced photohydrogen production from Rhodopseudomonas palustris WP3-5 using optical-fiber-assisted illumination systems Chen CY, Lee CM, Chang JS |
2356 - 2369 |
Numerical simulation of hydrogen dispersion in the vicinity of a cubical building in stable stratified atmospheres Olvera HA, Choudhuri AR |
2370 - 2377 |
Research on the optimizing control technology based on fuzzy-neural network for hydrogen-fueled engines Yang ZZ, Wang LJ, Xiong SS, Li JD |
2378 - 2385 |
Preliminary analysis of transportation cost of nuclear off-peak power for hydrogen production based on water electrolysis Sakurai M, Ueno S |