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Improvement of the hydrogen-storage kinetics of Mg by reactive mechanical grinding with 10 wt.% Fe2O3and 5 wt.% Ni

โœ Scribed by MyoungYoup Song; SungNam Kwon; Daniel R. Mumm; SungHwan Baek; Seong-Hyeon Hong


Publisher
TechnoPress
Year
2006
Tongue
English
Weight
423 KB
Volume
12
Category
Article
ISSN
1598-9623

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Mge15 wt%Nie5 wt%Fe 2 O 3 (Mg155) was prepared by reactive mechanical grinding (RMG). Mg155 exhibited high hydriding and dehydriding rates even at the first cycle, and its activation was completed after only two hydridingedehydriding cycles. The activated Mg155 absorbed 5.06 and 5.38 wt% of hydroge

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Among samples of MgeNi, MgeNie5Fe 2 O 3 , and MgeNie5Fe, MgeNie5Fe had the highest hydriding and dehydriding rates. For the as-milled MgeNie5Fe alloy and the hydrided MgeNie5Fe alloy after activation, the weight percentages of the constituent phases were calculated using the FullProf program. The cr