5859 - 5867 |
Awareness, acceptability and attitudes towards hydrogen vehicles and filling stations: A Greater Stavanger case study and comparisons with London Thesen G, Langhelle O |
5868 - 5880 |
What do we know about public perceptions and acceptance of hydrogen? A critical review and new case study evidence Ricci M, Bellaby P, Flynn R |
5881 - 5886 |
Appropriate technologies for large-scale production of electricity and hydrogen fuel Kruger P |
5887 - 5896 |
Strategic design of hydrogen infrastructure considering cost and safety using multiobjective optimization Kim J, Moon I |
5897 - 5904 |
Catalytic electrolysis of ammonia on platinum in alkaline solution for hydrogen generation Zhou L, Cheng YF |
5905 - 5910 |
Aqueous methanol eletrolysis using proton conducting membrane for hydrogen production Sasikumar G, Muthumeenal A, Pethaiah SS, Nachiappan N, Balaji R |
5911 - 5930 |
Photovoltaic hydrogen generation Tributsch H |
5931 - 5940 |
Optimization of solar powered hydrogen production using photovoltaic electrolysis devices Gibson TL, Kelly NA |
5941 - 5946 |
Synthesis and photocatalytic characterization of a new photocatalyst BaZrO(3) Yuan YP, Zhang XL, Liu LF, Jiang XJ, Lv J, Li ZS, Zou ZG |
5947 - 5957 |
Comparative investigation of mesoporous- and non-mesoporous-assembled TiO(2) nanocrystals for photocatalytic H(2) production over N-doped TiO(2) under visible light irradiation Sreethawong T, Laehsalee S, Chavadej S |
5958 - 5966 |
Visible light active zeolite-based photocatalysts for hydrogen evolution from water Dubey N, Rayalu SS, Labhsetwar NK, Devotta S |
5967 - 5974 |
Carbon-doped In2O3 films for photoelectrochemical hydrogen production Sun Y, Murphy CJ, Reyes-Gil KR, Reyes-Garcia EA, Lilly JP, Raftery D |
5975 - 5980 |
Fabrication of CdS nanowires decorated with TiO(2) nanoparticles for photocatalytic hydrogen production under visible light irradiation Jang JS, Kim HG, Joshi UA, Jang JW, Lee JS |
5981 - 5985 |
The effect of butyrate concentration on photo-hydrogen production from acetate by Rhodopseudomonas faecalis RLD-53 Ren NQ, Liu BF, Ding J, Guo WQ, Cao GL, Xie GJ |
5986 - 5995 |
Reaction kinetics of reduction and oxidation of metal oxides for hydrogen production Go KS, Son SR, Kim SD |
5996 - 6005 |
Sulfur-iodine thermochemical cycle: HI decomposition flow sheet analysis Kane C, Revankar ST |
6006 - 6020 |
Cost analysis of a thermochemical Cu-Cl pilot plant for nuclear-based hydrogen production Orhan MF, Dincer I, Naterer GF |
6021 - 6030 |
Novel two-step SnO(2)/Sno water-splitting cycle for solar thermochemical production of hydrogen Abanades S, Charvin P, Lemont F, Flamant G |
6031 - 6036 |
Use of ionic liquids as absorbents to separate SO(2) in SO(2)/O(2) in thermochemical processes to produce hydrogen Lee KY, Gong GT, Son KH, Kim H, Jung KD, Kim CS |
6037 - 6045 |
Second Law viability of upgrading waste heat for thermochemical hydrogen production Naterer GF |
6046 - 6057 |
Advances in biological hydrogen production processes Das D, Veziroglu TN |
6058 - 6065 |
Enhanced cellulose-hydrogen production from corn stalk by lesser panda manure Fan YT, Xing Y, Ma HC, Pan CM, Hou HW |
6066 - 6075 |
Hydrogen production by biomass gasification in supercritical water with a fluidized bed reactor Lu YJ, Jin H, Guo LJ, Zhang XM, Cao CQ, Guo X |
6076 - 6081 |
Optimized over-expression of [FeFe] hydrogenases with high specific activity in Clostridium acetobutylicum von Abendroth G, Stripp S, Silakov A, Croux C, Soucaille P, Girbal L, Happe T |
6082 - 6091 |
16S rRNA-targeted probes for specific detection of Thermoanaerobacterium spp., Thermoanaerobacterium thermosaccharolyticum, and Caldicellulosiruptor spp. by fluorescent in situ hybridization in biohydrogen producing systems O-Thong S, Prasertsan P, Karakashev D, Angelidaki I |
6092 - 6099 |
Optimization of media nutrient composition for increased photofermentative hydrogen production by Synechocystis sp PCC 6803 Burrows EH, Chaplen FWR, Ely RL |
6100 - 6108 |
Improved hydrogen production by coupled systems of hydrogenase negative photosynthetic bacteria and fermentative bacteria in reverse micelles Singh A, Misra K |
6109 - 6115 |
Batch dark fermentation of powdered wheat starch to hydrogen gas: Effects of the initial substrate and biomass concentrations Argun H, Kargi F, Kapdan IK, Oztekin R |
6116 - 6123 |
Fermentative hydrogen production by the new marine Pantoea agglomerans isolated from the mangrove sludge Zhu DL, Wang GC, Qiao HJ, Cai JL |
6124 - 6132 |
Dark fermentation of xylose and glucose mix using isolated Thermoanaerobacterium thermosaccharolyticum W16 Ren NQ, Cao GL, Wang AJ, Lee DJ, Guo WQ, Zhu YH |
6133 - 6142 |
Self-immobilization of acidogenic mixed consortia on mesoporous material (SBA-15) and activated carbon to enhance fermentative hydrogen production Mohan SV, Mohanakrishna G, Reddy SS, Raju BD, Rao KSR, Sarma PN |
6143 - 6149 |
Ethanol oxidation on a nichrome-supported spherical platinum microparticle electrocatalyst prepared by electrodeposition Wang ZH, Li J, Dong XY, Wang D, Chen TW, Qiao HY, Huang AP |
6150 - 6164 |
Dynamic model of an auto-thermal gasoline fuel processor Boehme TR, Onder CH, Guzzella L |
6165 - 6171 |
Co-current and counter-current configurations for ethanol steam reforming in a dense Pd-Ag membrane reactor Gallucci F, De Falco M, Tosti S, Marrelli L, Basile A |
6172 - 6177 |
Activated carbons as catalysts for hydrogen production via methane decomposition Krzyzynski S, Kozlowski M |
6178 - 6187 |
Numerical analysis and performance assessment of metal hydride-based hydrogen storage systems Gambini M, Manno M, Vellini M |
6188 - 6194 |
Effects of mechanical milling on desorption kinetics and phase transformation of LiNH(2)/MgH(2) mixture Shahi RR, Yadav TP, Shaz MA, Srivastava ON |
6195 - 6200 |
Effect of co-dopants on hydrogen desorption/absorption of HfCl(4)- and TiO(2)-doped NaAlH(4) Suttisawat Y, Rangsunvigit P, Kitiyanan B, Kulprathipanja S |
6201 - 6204 |
Simultaneous determination of ammonia emission and hydrogen capacity variation during the cyclic testing for LiNH(2)-LiH hydrogen storage system Ikeda S, Kuriyama N, Kiyobayashi T |
6205 - 6215 |
Kinetics of sodium borohydride hydrolysis reaction for hydrogen generation Hung AJ, Tsai SF, Hsu YY, Ku JR, Chen YH, Yu CC |
6216 - 6221 |
The effect of doping NiCl2 on the dehydrogenation properties of LiAlH4 Sun T, Huang CK, Wang H, Sun LX, Zhu M |
6222 - 6231 |
A mathematical framework for modelling and evaluating natural gas pipeline networks under hydrogen injection Tabkhi F, Azzaro-Pantel C, Pibouleau L, Domenech S |
6232 - 6238 |
Proton exchange membrane fuel cell modelling based on a mixed moving least squares technique Tirnovan R, Giurgea S, Miraoui A, Cirrincione M |
6239 - 6252 |
Dynamic modeling and water management in proton exchange membrane fuel cell Haddad A, Bouyekhf R, El Moudni A |
6253 - 6261 |
High frequency decoupling strategy for the PEM fuel cell hybrid system Liu GD, Zhang JZ, Sun YW |
6262 - 6269 |
High fuel utilization operation of pure hydrogen fuel cells Nishikawa H, Sasou H, Kurihara R, Nakamura S, Kano A, Tanaka K, Aoki T, Ogami Y |
6270 - 6280 |
Semi-empirical along-the-channel model for a proton exchange membrane fuel cell Huisseune H, Willockx A, De Paepe M |
6281 - 6288 |
Mechanical behaviour of a fuel cell stack under vibrating conditions linked to aircraft applications part II: Three-dimensional modelling Rouss V, Candusso D, Charon W |
6289 - 6297 |
H2O2 treated carbon black as electrocatalyst support for polymer electrolyte membrane fuel cell applications Carmo M, Linardi M, Poco JGR |
6298 - 6307 |
The operating characteristics of solid oxide fuel cells driven by diesel autothermal reformate Kang I, Kang Y, Yoon S, Bae G, Bae J |
6308 - 6315 |
Effects of Si and Al concentrations in Fe-Cr alloy on the formation of oxide scales in H(2)-H(2)O Horita T, Yamaji K, Yokokawa H, Toji A, Uehara T, Ogasawara K, Kameda H, Matsuzaki Y, Yamashita S |
6316 - 6321 |
Feasibility of direct-biogas SOFC Shiratori Y, Oshima T, Sasaki K |
6322 - 6326 |
Effects of surface overpotential at the La(1-x)Sr(x)Co(1-y)Fe(y)O(3)-yttria stabilized zirconia interface in a model solid oxide fuel cell cathode Liu SM, Suo JP, Xiao JZ |
6327 - 6338 |
A steady-state simulation tool for MCFC systems suitable for on-line applications Greppi P, Bosio B, Arato E |
6339 - 6350 |
Pressure drop and flow distribution in parallel-channel configurations of fuel cells: U-type arrangement Wang JY |
6351 - 6356 |
Structure, morphology and electrocatalytic characteristics of nickel powders treated by mechanical milling Zhao XY, Ding Y, Ma LQ, Shen XD, Xu SY |
6357 - 6367 |
Studies on dual fuel operation of rubber seed oil and its bio-diesel with hydrogen as the inducted fuel Geo VE, Nagarajan G, Nagalingam B |
6368 - 6372 |
CO(2) sorption and desorption efficiency of Ca(2)SiO(4) Wang MH, Lee CG, Ryu CK |
6373 - 6384 |
Investigation of small-scale unintended releases of hydrogen: momentum-dominated regime Schefer RW, Houf WG, Williams TC |
6385 - 6392 |
Measurement of a wide range of hydrogen concentration with rapid response using dual pressure gauges Suzuki A, Nonaka H |
6393 - 6400 |
Boundary layer theory approach to the concentration layer adjacent to a ceiling wall at impinging region of a hydrogen leakage El-Amin MF, Kanayama H |