Y. Zhou et al., ACTIVATION MECHANISM OF HYDROGEN-STORAGE ELECTRODE ALLOY ML(NICOMNTI)(5) PRODUCED BY GAS ATOMIZATION, International journal of hydrogen energy, 23(3), 1998, pp. 183-189
Citations number
10
Categorie Soggetti
Energy & Fuels","Physics, Atomic, Molecular & Chemical
Electrochemical activation behaviour of hydrogen-storage alloy Ml(NiCo
MnTi)(5) produced by conventional induction melting (CIM) and by Ar ga
s atomization (AGA) has been studied. It has been found that the surfa
ce oxide layer plays a minor part, while the change of energy inside a
lloy before and after hydriding is the major factor affecting the beha
viour of activation. The larger the change of energy inside the alloy
or the strain energy caused by H-atoms entering tetrahedral and octahe
dral sites during hydriding, the more difficult is the activation. The
effect of surface oxide him on the activation could to be considered
as the oxide film causing the energy of H-atoms entering the alloy to
be increased, since H-atoms must consume some energy to break the surf
ace oxide film initially, before entering the alloy. (C) 1997 Internat
ional Association for Hydrogen Energy.