6289 - 6297 |
Application of artificial neural networks (ANN) for modeling of industrial hydrogen plant Zamaniyan A, Joda F, Behroozsarand A, Ebrahimi H |
6298 - 6303 |
Mitigation of the delamination of LSM anode in solid oxide electrolysis cells using manganese-modified YSZ Li N, Keane M, Mahapatra MK, Singh P |
6304 - 6313 |
Steam reformation of hydrogen sulfide AuYeung N, Yokochi AFT |
6314 - 6322 |
Life cycle assessment of nuclear-based hydrogen production via a copper-chlorine cycle: A neural network approach Ozbilen A, Aydin M, Dincer I, Rosen MA |
6323 - 6334 |
H-2 evolution under visible light irradiation on La and Cr co-doped NaTaO3 prepared by spray pyrolysis from polymeric precursor Kang HW, Lim SN, Park SB, Park AHA |
6335 - 6343 |
Visible light hydrogen production on the novel ferrite NiFe2O4 Rekhila G, Bessekhouad Y, Trari M |
6344 - 6348 |
Photocatalytic hydrogen production for PEMFC supply: A new issue Rodriguez J, Thivel PX, Puzenat E |
6349 - 6356 |
Bioproduction of hydrogen by simultaneous saccharification and fermentation of cassava starch with 2-deoxyglucose-resistant mutant strains of Clostridium tyrobutyricum Jiang L, Zhu LY, Xu X, Lin M, Li YP, Li XT, Cui HY, Huang H |
6357 - 6367 |
Using a food and paper-cardboard waste blend as a novel feedstock for hydrogen production: Influence of key process parameters on microbial diversity Pendyala B, Chaganti SR, Lalman JA, Heath DD, Shanmugam SR, Veeravalli SS |
6368 - 6376 |
Electrochemical layer-by-layer fabrication of a novel three-dimensional Pt/graphene/carbon fiber electrode and its improved catalytic performance for methanol electrooxidation in alkaline medium Yao ZQ, Yue RR, Zhai CY, Jiang FX, Wang HW, Du YK, Wang CY, Yang P |
6377 - 6380 |
Solution combustion synthesized cobalt oxide catalyst precursor for NaBH4 hydrolysis Groven LJ, Pfeil TL, Pourpoint TL |
6381 - 6390 |
Hydrogen recovery from the purge stream of an HDA process using the concept of Mass Exchange Networks Fischer CD, Iribarren OA |
6391 - 6396 |
Study of partial oxidation reforming of methane to syngas over self-sustained electrochemical promotion catalyst Zhou XY, Huang H, Liu HT |
6397 - 6405 |
Chemical recycling of carbon dioxide emissions from a cement plant into dimethyl ether, a case study of an integrated process in France using a Reverse Water Gas Shift (RWGS) step Vibhatavata P, Borgard JM, Tabarant M, Bianchi D, Mansilla C |
6406 - 6416 |
Kinetic and thermodynamic studies of hydrogen adsorption on titanate nanotubes decorated with a Prussian blue analogue Zamora B, Al-Hajjaj AA, Shah AA, Bavykin DV, Reguera E |
6417 - 6424 |
Influence of transition metals Fe, Ni, and Nb on dehydrogenation characteristics of Mg(BH4)(2): Electronic structure mechanisms Shi B, Song Y |
6425 - 6435 |
Performance evaluation of hydrogen generation system with electroless-deposited Co-P/Ni foam catalyst for NaBh(4) hydrolysis Oh TH, Kwon S |
6436 - 6441 |
Synthesis of mono-disperse CoFe alloy nanoparticles with high activity toward NaBH4 hydrolysis Wen C, Zhang X, Lofland SE, Lauterbach J, Hattrick-Simpers J |
6442 - 6449 |
Improved low-temperature hydrogen generation from NH3BH3 and TiO2 composites pretreated with water Komova OV, Simagina VI, Kayl NL, Odegova GV, Netskina OV, Chesalou YA, Ozerova AM |
6450 - 6459 |
A cobalt-free oxygen transport membrane, BaFe0.9Zr0.1O3-delta, and its application for producing hydrogen Park CY, Lee TH, Dorris SE, Balachandran U |
6460 - 6468 |
Carbon nanostructure grown using bi-metal oxide as electrocatalyst support for proton exchange membrane fuel cell Puthusseri D, Baby TT, Parambhath VB, Natarajan R, Sundara R |
6469 - 6480 |
Degradation in phosphoric acid doped polymer fuel cells: A 6000 h parametric investigation Galbiati S, Baricci A, Casalegno A, Marchesi R |
6481 - 6493 |
Simulation and experimental analysis of the clamping pressure distribution in a PEM fuel cell stack Bates A, Mukherjee S, Hwang S, Lee SC, Kwon O, Choi GH, Park S |
6494 - 6502 |
Polybenzimidazole containing ether units as electrolyte for high temperature proton exchange membrane fuel cells Kang Y, Zou J, Sun ZN, Wang FH, Zhu H, Han KF, Yang WS, Song HH, Meng QH |
6503 - 6508 |
Study on assembly pressure of molten carbonate fuel cells based on in-situ sintered model Wang PJ, Liu S, Zhou L, Shao ZG, Yi BL |
6509 - 6525 |
Transient analysis of alkaline anion exchange membrane fuel cell anode Deng H, Huo S, Chang YF, Zhou YB, Jiao K |
6526 - 6536 |
Energy and exergy analysis of microfluidic fuel cell Zhang H, Leung MKH, Xuan J, Xu H, Zhang L, Leung DYC, Wang HZ |
6537 - 6551 |
Important role of chemical interaction on flame extinction in downstream interaction between stretched premixed H-2-air and CO-air flames Kim TK, Park J, Oh SH, Kwon OB, Baek SH, Ko S |
6552 - 6555 |
Comment on: "Experimental and numerical investigation on solar concentrating characteristics of a sixteen dish concentrator". By Xia et al., International Journal of Hydrogen Energy 2012; 37(24):18694-18703 Chang QH |
6556 - 6556 |
Response to Dr. Qihai Chang's comments on the manuscript: "Experimental and numerical investigate on solar concentrating characteristics of a sixteen-dish concentrator". International Journal of Hydrogen Energy 2012;37(24):18694-18703 Dai GL |