12653 - 12654 |
The hydrogen energy economy: An industry tycoon in sight? Winter CJ |
12655 - 12663 |
Measuring the relative efficiency of hydrogen energy technologies for implementing the hydrogen economy: An integrated fuzzy AHP/DEA approach Lee SK, Mogi G, Li ZL, Hui KS, Lee SK, Hui KN, Park SY, Ha YJ, Kim JW |
12664 - 12677 |
The importance of detailed data utilization on the performance evaluation of a grid-independent hybrid renewable energy system Erdinc O, Uzunoglu M |
12678 - 12685 |
Electrocatalytic oxidation of sodium borohydride on metal ad-atom modified Au(111) single crystal electrodes in alkaline solution Karabiberoglu SU, Pelit L, Gelmez B, Dursun Z |
12686 - 12697 |
Pd-Ni electrocatalysts for efficient ethanol oxidation reaction in alkaline electrolyte Zhang ZY, Xin L, Sun K, Li WZ |
12698 - 12705 |
New ternary mixed oxides of Fe, Ni and Mo for enhanced oxygen evolution Kumar M, Awasthi R, Pramanick AK, Singh RN |
12706 - 12714 |
Displacement triangular Ag/Pd nanoplate as methanol-tolerant electrocatalyst in oxygen reduction reaction Lee CL, Chiou HP, Syu CM, Liu CR, Yang CC, Syu CC |
12715 - 12724 |
Hydrogen evolution on nickel electrode in synthetic tap water - alkaline solution Petrov Y, Schosger JP, Stoynov Z, de Bruijn F |
12725 - 12741 |
Hybrid sulfur cycle flowsheets for hydrogen production using high-temperature gas-cooled reactors Gorensek MB |
12742 - 12752 |
First-principles study of the H-2 splitting processes on pure and transition-metal-doped Al (111) surfaces Peng Q, Chen G, Kang LJ, Mizuseki H, Kawazoe Y |
12753 - 12760 |
Mesoporous nanocomposite Fe/Al2O3-MCM-41: An efficient photocatalyst for hydrogen production under visible light Pradhan AC, Martha S, Mahanta SK, Parida KM |
12761 - 12769 |
Bio-hydrogen production from thin stillage using conventional and acclimatized anaerobic digester sludge Nasr N, Elbeshbishy E, Hafez H, Nakhla G, El Naggar MH |
12770 - 12779 |
Enhanced bio-hydrogen production from corn stalk by anaerobic fermentation using response surface methodology Xing Y, Fan SQ, Zhang JN, Fan YT, Hou HW |
12780 - 12793 |
Exergoeconomic analysis of a hybrid system based on steam biomass gasification products for hydrogen production Abuadala A, Dincer I |
12794 - 12802 |
Enhancement of phototrophic hydrogen production by Rhodobacter sphaeroides ZX-5 using fed-batch operation based on ORP level Li X, Dai ZZ, Wang YH, Zhang SL |
12803 - 12809 |
Bio-hydrogen production from acid hydrolyzed waste ground wheat by dark fermentation Sagnak R, Kargi F, Kapdan IK |
12810 - 12821 |
Hydrogen production from alcohol distillery wastewater containing high potassium and sulfate using an anaerobic sequencing batch reactor Searmsirimongkol P, Rangsunvigit P, Leethochawalit M, Chavadej S |
12822 - 12832 |
Methanol steam reforming in a planar wash coated microreactor integrated with a micro-combustor Tadbir MA, Akbari MH |
12833 - 12842 |
Microfibrous structured catalytic packings for miniature methanol fuel processor: Methanol steam reforming and CO preferential oxidation Ling M, Zhao GF, Chen W, Wang MM, Xue QS, Lu Y |
12843 - 12852 |
Microwave-activated methanol steam reforming for hydrogen production Durka T, Stefanidis GD, Van Gerven T, Stankiewicz AI |
12853 - 12868 |
Natural gas based hydrogen production with zero carbon dioxide emissions Lopez JAP, Manousiouthakis VI |
12869 - 12876 |
Reforming of methane and carbon dioxide by DC water plasma at atmospheric pressure Ni GH, Lan Y, Cheng C, Meng YD, Wang XK |
12877 - 12886 |
Experimental analysis of direct thermal methane cracking Abanades A, Ruiz E, Ferruelo EM, Hernandez F, Cabanillas A, Martinez-Val JM, Rubio JA, Lopez C, Gavela R, Barrera G, Rubbia C, Salmieri D, Rodilla E, Gutierrez D |
12887 - 12891 |
Enhancement of H-2 uptake due to morphological modulation in vanadium pentoxide foam Kim BH, Yun YJ, Hong WG, Kim CH, Lee SM, Yu HY, Kim HJ |
12892 - 12901 |
Modeling and analyzing the hydriding kinetics of Mg-LaNi5 composites by Chou model Pan YB, Wu YF, Li Q |
12902 - 12908 |
Hydrogen absorption enhancement of nanocrystalline Li3N/Li2C2 composite Liu YJ, Cheng Y, Ohba T, Kaneko K, Kanoh H |
12909 - 12917 |
A study of the ZrF4, NbF5, TaF5, and TiCl3 influences on the MgH2 sorption properties Malka IE, Pisarek M, Czujko T, Bystrzycki J |
12918 - 12922 |
Experimental and comparative study of metal hydride hydrogen tanks Souahlia A, Dhaou H, Askri F, Sofiene M, Jemni A, Ben Nasrallah S |
12923 - 12931 |
A new model to describe absorption kinetics of Mg-based hydrogen storage alloys Wu GX, Zhang JY, Li Q, Chou KC |
12932 - 12938 |
Improvement of hydriding and dehydriding rates of Mg via addition of transition elements Ni, Fe, and Ti Song MY, Kwon SN, Park HR, Bobet JL |
12939 - 12949 |
Intrinsic mechanisms on enhancement of hydrogen desorption from MgH2 by (001) surface doping Dai JH, Song Y, Yang R |
12950 - 12954 |
Hydrogen storage in Ni-B nanoalloy-doped 2D graphene Wang Y, Liu JH, Wang KA, Chen T, Tan X, Li CM |
12955 - 12964 |
Ammonia borane decomposition in the presence of cobalt halides Chiriac R, Toche F, Demirci UB, Krol O, Miele P |
12965 - 12976 |
Constructal flow distributor as a bipolar plate for proton exchange membrane fuel cells Ramos-Alvarado B, Hernandez-Guerrero A, Elizalde-Blancas F, Ellis MW |
12977 - 12990 |
Solid-phase temperature measurements in a HTPEM fuel cell Siegel C, Bandlamudi G, Heinzel A |
12991 - 13007 |
Numerical evaluation of various thermal management strategies for polymer electrolyte fuel cell stacks Sasmito AP, Birgersson E, Mujumdar AS |
13008 - 13013 |
Electrochemical nitridation of a stainless steel for PEMFC bipolar plates Wang HL, Turner JA |
13014 - 13021 |
Effect of immersion in NaOH solution on ferritic stainless steel as a bipolar plate for polymer electrolyte membrane fuel cells Kim KM, Kim JH, Lee YY, Kim KY |
13022 - 13031 |
Water quality and yield from polymer electrolyte membrane fuel cells Tibaquira JE, Hristovski KD, Westerhoff PK, Posner JD |
13032 - 13042 |
Corrosion behavior of SS316L in simulated and accelerated PEMFC environments Feng K, Wu GS, Li ZG, Cai X, Chu PK |
13043 - 13050 |
Influence of the bolt torque on PEFC performance with different gasket materials Gatto I, Urbani F, Giacoppo G, Barbera O, Passalacqua E |
13051 - 13058 |
Micro-spectroscopic study of the degradation of scandia and ceria stabilized zirconia electrolytes in solid oxide electrolysis cells Laguna-Bercero MA, Orera VM |
13059 - 13066 |
Cathode materials for La0.995Ca0.005NbO4 proton ceramic electrolyte Kravchyk KV, Quarez E, Solis C, Serra JM, Joubert O |
13067 - 13072 |
Synthesis and characterization of terbium doped barium cerates as a proton conducting SOFC electrolyte Meng XX, Yang NT, Song J, Tan XY, Ma ZF, Li K |
13073 - 13082 |
Electrical conduction behaviors and mechanical properties of Cu doping on B-site of (La0.8Ca0.2(Cr0.9Co0.1)O3-delta interconnect materials for SOFCs Fu YP, Wang HC, Ouyang J |
13083 - 13088 |
Micro-tubular, solid oxide fuel cell stack operated under single-chamber conditions Akhtar N, Kendall K |
13089 - 13095 |
A bi-functional cathode structure for alkaline-acid direct ethanol fuel cells An L, Zhao TS, Xu JB |
13096 - 13104 |
Effects of gas diffusion layer (GDL) and micro porous layer (MPL) on cathode performance in microbial fuel cells (MFCs) Santoro C, Agrios A, Pasaogullari U, Li BK |
13105 - 13113 |
Maintaining desired level of relative humidity throughout a fuel cell with spatially variable heat removal rates Tolj I, Bezmalinovic D, Barbir F |
13114 - 13121 |
Copper deposition on Pd membranes by electroless plating Acha E, van Delft YC, Overbeek J, Arias PL, Cambra JF |
13122 - 13131 |
Development of Korean hydrogen fueling station codes through risk analysis Kim E, Lee K, Kim J, Lee Y, Park J, Moon I |
13132 - 13137 |
Solar powered residential hydrogen fueling station Shah A, Mohan V, Sheffield JW, Martin KB |
13138 - 13149 |
Effect of hydrogen addition to intake gas on combustion and exhaust emission characteristics of a diesel engine Miyamoto T, Hasegawa H, Mikami M, Kojima N, Kabashima H, Urata Y |
13150 - 13157 |
Experimental study on combustion and emission characteristics of a hydrogen-enriched compressed natural gas engine under idling condition Deng J, Ma FH, Li S, He YT, Wang MY, Jiang L, Zhao SL |
13158 - 13170 |
Investigation of the effects of hydrogen on cylinder pressure in a split-injection diesel engine at heavy EGR Shin B, Cho Y, Han D, Song S, Chun KM |
13171 - 13180 |
Measurement and correlation of laminar flame speeds of CO and C-2 hydrocarbons with hydrogen addition at atmospheric and elevated pressures Wu FJ, Kelley AP, Tang CL, Zhu DL, Law CK |
13181 - 13193 |
Effect of flame stretch in downstream Interaction between premixed syngas-air flames Ha JS, Park J, Vu TM, Kwon OB, Yun JH, Keel SI |
13194 - 13206 |
Experimental determination of laminar burning velocities and Markstein lengths for 75% hydrous-ethanol, hydrogen and air gaseous mixtures Zhang ZH, Li GS, Ouyang L, Pan ZX, You FB, Gao XH |
13207 - 13217 |
An experimental and numerical study on characteristics of laminar premixed H-2/CO/CH4/air flames Cheng TS, Chang YC, Chao YC, Chen GB, Li YH, Wu CY |
13218 - 13224 |
Impact of hydrogen on the environment Nowotny J, Veziroglu TN |
13225 - 13232 |
Electric and plug-in hybrid vehicles influence on CO2 and water vapour emissions Silva C |
13233 - 13233 |
Hydrogen-enhanced degradation and oxide effects in zirconium alloys for nuclear applications (vol 36, pg 8619, 2011) Zielinski A, Sobieszczyk S |
13234 - 13234 |
Introduction-3rd Iranian fuel cell seminar Gharibi H |
13235 - 13240 |
The effect of slip velocity on saturation for multiphase condensing mixtures in a PEM fuel cell Kermani MJ, Stockie JM |
13241 - 13249 |
Modelling and evaluation of building integrated SOFC systems Kazempoor P, Dorer V, Weber A |
13250 - 13254 |
The effect of temperature and topological defects on H-2 adsorption on carbon nanotubes Zolfaghari A, Pourhossein P, Jooya HZ |
13255 - 13265 |
Refractive index determination in fuel cells using high-resolution laser heterodyne interferometer Olyaee S, Abadi MSE, Hamedi S, Finizadeh F |
13266 - 13271 |
Analytic parameter identification of proton exchange membrane fuel cell catalyst layer using electrochemical impedance spectroscopy Kheirmand M, Asnafi A |
13272 - 13280 |
Mathematical analysis of fuel cell strategic technologies development solutions in the automotive industry by the TOPSIS multi-criteria decision making method Sadeghzadeh K, Salehi MB |
13281 - 13287 |
Enhanced electrocatalytic activity of nickel particles electrodeposited onto poly (m-toluidine) film prepared in presence of CTAB surfactant on carbon paste electrode for formaldehyde oxidation in alkaline medium Raoof JB, Karimi MA, Hosseini SR, Mangelizade S |
13288 - 13294 |
Evaluation of sodium dodecyl sulfate effect on electrocatalytic properties of poly (4-aminoacetanilide)/nickel modified carbon paste electrode as an efficient electrode toward oxidation of ethylene glycol Ojani R, Raoof JB, Rahemi V |
13295 - 13300 |
Synthesis of ZSM-5 zeolite: Electrochemical behavior of carbon paste electrode modified with Ni (II)-zeolite and its application for electrocatalytic oxidation of methanol Raoof JB, Azizi N, Ojani R, Ghodrati S, Abrishamkar M, Chekin F |
13301 - 13309 |
Effect of polyaniline-doped trifluoromethane sulfonic acid nanofiber composite film thickness on electrode for methanol oxidation Gharibi H, Kakaei K, Zhiani M, Taghiabadi MM |
13310 - 13316 |
Synthesis and characterization of new proton conducting hybrid membranes for PEM fuel cells based on poly(vinyl alcohol) and nanoporous silica containing phenyl sulfonic acid Beydaghi H, Javanbakht M, Amoli HS, Badiei A, Khaniani Y, Ganjali MR, Norouzi P, Abdouss M |
13317 - 13324 |
Study of oxygen reduction reaction kinetics on multi-walled carbon nano-tubes supported Pt-Pd catalysts under various conditions Golikand AN, Asgari M, Lohrasbi E |
13325 - 13334 |
Optimization of the amount of Nafion in multi-walled carbon nanotube/Nafion composites as Pt supports in gas diffusion electrodes for proton exchange membrane fuel cells Gharibi H, Javaheri M, Kheirmand M, Mirzaie RA |
13335 - 13341 |
Methylene blue as electron promoters in microbial fuel cell Rahimnejad M, Najafpour GD, Ghoreyshi AA, Shakeri M, Zare H |