Hydrogen cycling of niobium and vanadium catalyzed nanostructured magnesium

被引:216
作者
Schimmel, HG
Huot, J
Chapon, LC
Tichelaar, FD
Mulder, FM
机构
[1] Delft Univ Technol, Fac Sci Appl, Dept Radiat Radionuclides & Reactors, NL-2629 JB Delft, Netherlands
[2] Univ Quebec Trois Rivieres, Inst Rech Hydrogene, Trois Rivieres, PQ G9A 5H7, Canada
[3] Rutherford Appleton Lab, ISIS Facil, Didcot OX11 0QX, Oxon, England
[4] Delft Univ Technol, Natl Ctr HREM, NL-2629 JB Delft, Netherlands
关键词
D O I
10.1021/ja051508a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The reaction of hydrogen gas with magnesium metal, which is important for hydrogen storage purposes, is enhanced significantly by the addition of catalysts such as Nb and V and by using nanostructured powders. In situ neutron diffraction on MgNb0.05 and MgV0.05 powders give a detailed insight on the magnesium and catalyst phases that exist during the various stages of hydrogen cycling. During the early stage of hydriding (and deuteriding), a MgH1 < x < 2 phase is observed, which does not occur in bulk MgH2 and, thus, appears characteristic for the small particles. The abundant H vacancies will cause this phase to have a much larger hydrogen diffusion coefficient, partly explaining the enhanced kinetics of nanostructured magnesium. It is shown that under relevant experimental conditions, the niobium catalyst is present as NbH1. Second, a hitherto unknown Mg-Nb perovskite phase could be identified that has to result from mechanical alloying of Nb and the MgO layer of the particles. Vanadium is not visible in the diffraction patterns, but electron micrographs show that the V particle size becomes very small, 2-20 nm. Nanostructuring and catalyzing the Mg enhance the adsorption speed that much that now temperature variations effectively limit the absorption speed and not, as for bulk, the slow kinetics through bulk MgH2 layers.
引用
收藏
页码:14348 / 14354
页数:7
相关论文
共 39 条
[1]   Physicochemical and textural characterization of vanadium-magnesium mixed oxides [J].
Balderas-Tapia, L ;
Wang, JA ;
Hernández-Pérez, I ;
Aguilar-Ríos, GG ;
Schacht, P .
MATERIALS LETTERS, 2004, 58 (24) :3034-3039
[2]   Effect of Nb2O5 content on hydrogen reaction kinetics of Mg [J].
Barkhordarian, G ;
Klassen, T ;
Bormann, R .
JOURNAL OF ALLOYS AND COMPOUNDS, 2004, 364 (1-2) :242-246
[3]   COMPARATIVE-STUDY OF THE FORMATION-DECOMPOSITION MECHANISMS AND KINETICS IN LANI5 AND MAGNESIUM REVERSIBLE HYDRIDES [J].
BELKBIR, L ;
JOLY, E ;
GERARD, N .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 1981, 6 (03) :285-294
[4]   Kinetics and mechanisms of metal hydrides formation - A review [J].
Bloch, J ;
Mintz, MH .
JOURNAL OF ALLOYS AND COMPOUNDS, 1997, 253 :529-541
[5]   X-RAY AND NEUTRON-DIFFRACTION STUDIES OF THE DIFFUSE PHASE-TRANSITION IN PBMG1/3NB2/3O3 CERAMICS [J].
BONNEAU, P ;
GARNIER, P ;
CALVARIN, G ;
HUSSON, E ;
GAVARRI, JR ;
HEWAT, AW ;
MORELL, A .
JOURNAL OF SOLID STATE CHEMISTRY, 1991, 91 (02) :350-361
[6]   Catalytic synergy in the oxidative dehydrogenation of propane over MgVO catalysts [J].
Carrazan, SRG ;
Peres, C ;
Bernard, JP ;
Ruwet, M ;
Ruiz, P ;
Delmon, B .
JOURNAL OF CATALYSIS, 1996, 158 (02) :452-476
[7]   PREPARATION, NEUTRON STRUCTURAL STUDY AND CHARACTERIZATION OF BANBO3 - A PAULI-LIKE METALLIC PEROVSKITE [J].
CASAIS, MT ;
ALONSO, JA ;
RASINES, I ;
HIDALGO, MA .
MATERIALS RESEARCH BULLETIN, 1995, 30 (02) :201-208
[8]   MODIFICATION OF THE B-SITE ORDER OF PBMG1/3NB2/3O3 CERAMICS BY THERMAL ANNEALING OR BY LA-DOPING [J].
DEMATHAN, N ;
HUSSON, E ;
GAUCHER, P ;
MORELL, A .
MATERIALS RESEARCH BULLETIN, 1990, 25 (04) :427-434
[9]  
FLANAGAN TB, 1992, HYDROGEN INTERMETALL, V2
[10]   SITE OCCUPANCY AND PHASE-STABILITY OF SOME METAL-HYDRIDES [J].
FUKAI, Y .
ZEITSCHRIFT FUR PHYSIKALISCHE CHEMIE NEUE FOLGE, 1989, 163 :165-174