4463 - 4475 |
Hydrogen storage for mixed wind-nuclear power plants in the context of a Hydrogen Economy Taljan G, Fowler M, Canizares C, Verbic G |
4476 - 4487 |
Potentialities of hydrogen production in Algeria Boudries R, Dizene R |
4488 - 4494 |
Study of the oxygen evolution reaction on nickel-based composite coatings in alkaline media Kubisztal J, Budniok A |
4495 - 4500 |
Preparation and electrochemical properties of composite LaNix/Ni-S-Co alloy film Han Q, Chen JS, Liu KR, Wei XJ |
4501 - 4510 |
Cetyltrimethylammoniumbromide (CTAB)-assisted hydrothermal synthesis of ZnIn2S4 as an efficient visible-light-driven photocatalyst for hydrogen production Shen SH, Zhao L, Guo LJ |
4511 - 4519 |
Economic comparison of solar hydrogen generation by means of thermochemical cycles and electrolysis Graf D, Monnerie N, Roeb M, Schmitz M, Sattler C |
4520 - 4526 |
Biomass gasification in supercritical water: II. Effect of catalyst Yanik J, Ebale S, Kruse A, Saglam M, Yuksel M |
4527 - 4532 |
Effect of arabinose concentration on dark fermentation hydrogen production using different mixed cultures Danko AS, Abreu AA, Alves MM |
4533 - 4546 |
Bio-electrochemical evaluation of fermentative hydrogen production process with the function of feeding pH Mohan SV, Babu VL, Srikanth S, Sarma PN |
4547 - 4554 |
Steam reforming of technical bioethanol for hydrogen production Rass-Hansen J, Johansson R, Moller M, Christensen CH |
4555 - 4559 |
Effect of equilibrium shift by using lithium silicate pellets in methane steam reforming Essaki K, Muramatsu T, Kato M |
4560 - 4568 |
Reduction characteristics of CuFe2O4 and Fe3O4 by methane; CuFe2O4 as an oxidant for two-step thermochemical methane reforming Kang KS, Kim CH, Cho WC, Bae KK, Woo SW, Park CS |
4569 - 4576 |
Synthesis and characterization of bimetallic Cu-Ni/ZrO2 nanocatalysts: H-2 production by oxidative steam reforming of methanol Perez-Hernandez R, Galicia GM, Anaya DM, Palacios J, Angeles-Chavez C, Arenas-Alatorre J |
4577 - 4585 |
A model of steam reforming of iso-octane: The effect of thermal boundary conditions on hydrogen production and reactor temperature Shi LM, Bayless DJ, Prudich M |
4586 - 4592 |
Enhancement of the hydrogen storage characteristics of Mg by reactive mechanical grinding with Ni, Fe and Ti Kwon S, Baek S, Mumm DR, Hong SH, Song M |
4593 - 4606 |
Reactivity and hydrogen storage performances of magnesium-nickel-copper ternary mixtures prepared by reactive mechanical grinding Milanese C, Girella A, Bruni G, Cofrancesco P, Berbenni V, Villa M, Matteazzi P, Marini A |
4607 - 4611 |
Hydrogenation study of suction-cast Ti40Zr40Ni20 quasicrystal Huang HG, Li R, Yin C, Zheng ST, Zhang PC |
4612 - 4621 |
Filling procedure for vehicles with compressed hydrogen tanks Maus S, Hapke J, Ranong CN, Wuchner E, Friedlmeier G, Wenger D |
4622 - 4633 |
Dynamics of cryogenic hydrogen storage in insulated pressure vessels for automotive applications Ahluwalia RK, Peng JK |
4634 - 4639 |
Hydrogen cycle with sodium borohydride Cakanyildirim C, Guru M |
4640 - 4648 |
Continuous bubble humidification and control of relative humidity of H-2 for a PEMFC system Vasu G, Tangirala AK, Viswanathan B, Dhathathreyan KS |
4649 - 4654 |
Production of hydrogen by the electrochemical reforming of glycerol-water solutions in a PEM electrolysis cell Marshall AT, Haverkamp RG |
4655 - 4664 |
Modelling and evaluation of heating strategies for high temperature polymer electrolyte membrane fuel cell stacks Andreasen SJ, Kaer SK |
4665 - 4672 |
Performance of combined internally reformed intermediate/high temperature SOFC cycle compared to internally reformed two-staged intermediate temperature SOFC cycle Musa A, De Paepe M |
4673 - 4680 |
Chemical kinetics-based analysis for utilities of ZEC power generation system He BS, Li MY, Wang X, Zhu L, Wang LL, Xue JW, Chen ZX |
4681 - 4688 |
Effect of Co doping on the properties of Sr(0.8)Ce(0.2)MnO(3-delta) cathode for intermediate-temperature solid-oxide fuel cells Gu HT, Chen H, Gao L, Zheng YF, Zhu XF, Guo LC |
4689 - 4693 |
NOx reduction and NO2 emission characteristics in rich-lean combustion of hydrogen Shudo T, Omori K, Hiyama O |
4694 - 4701 |
Using electrochemical impedance to determine airflow rates O'Rourke J, Ramani M, Arcak M |
4702 - 4712 |
Investigation of small-scale unintended releases of hydrogen: Buoyancy effects Schefer RW, Houf WG, Williams TC |