0000000001136853

AUTHOR

B Joseph

showing 5 related works from this author

Effect of nano-structuring on hydrogen sorption properties of LaNi5 systems

2010

hydrogen storage LaNi5 nanostructuring hydrides ball milling
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Hydrogen sorption properties of the CaH2-MgB2-AlB2 system

2011

hydrogen storage borohydrides RHC ball milling
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Synthesis and characterization of nanocrystalline LaNi5 hydrogen storage materials

2009

With the growing environmental concerns of greenhouse gas emissions from the burning of fossil fuels, it is becoming increasingly important to switch to cleaner alternative fuels such as hydrogen [1]. Inter-metallic LaNi5 is one of the most widely used and studied solid-state hydrogen storage material – a pet material for the prototype systems using hydrogen fuel. However, nanostructuring effects on this systems are not yet fully explored. Recently we have carried out systematic studies regarding the effect of nanostructuring on the hydrogen sorption properties of this material [2]. Unlike some other potential hydrogen storage materials, which shows faster kinetics upon nanostructuring, the…

Nanostructuring ball milling hydrogen storage LaNi5
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Nanostructuring - a possible way to enhance the hydrogen sorption properties of materials

2009

Settore FIS/01 - Fisica Sperimentalehydridesball millinghydogen storagenanostructuring
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Effect of nano-structuring on hydrogen sorption properties of materials

2008

Storage of large quantities of hydrogen at safe pressures is a key factor in establishing a hydrogen-based economy [1]. Of the three ways of storing hydrogen, viz. by compressed gas, in liquid form, or as hydride, the latter is rather promising both for its relevant storage capacity and safety [2]. There are several materials which show reversible hydrogen absorption desorption properties. However, to be suitable for the on-board hydrogen storage for vehicular applications, the storage material should have the following properties: (a) high storage capacity; (b) moderate absorption/desorption temperatures; (c) fast hydrogenation/dehydrogenation kinetics; (d) high resistance to degradation a…

Hydrogen storage
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