Abstract Powders mixtures of nanosized MgH2 and suitable additives, obtained by high energy milling, have been studied as materials to be used in a functional solid state hydrogen reservoir. A prototype of a two stages reservoir is under development (patent pending). The hydrogen release from the main stage, with high capacity Mg-based hydrides, is primed by a primer stage containing commercial hydrides able to operate at room temperature
Hydrogenation properties and mechanical stability of pellets made starting from compressed ball-mill...
Demands for zero greenhouse-gas emission vehicles have sharpened with today’s increased focus on glo...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
In recent years, hydrogen has emerged as one of the best candidates in the field of renewable energy...
International audienceThe aim of the present work was a systematic investigation on MgH2 co-milled w...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
In the future, hydrogen could potentially serve as a common clean energy source. A major barrier to ...
Given the current situation in the energy industry, metal hydrides have captivated many attention fo...
International audienceMagnesium hydride owns the largest share of publications on solid materials fo...
Magnesium hydrides (MgH2) have attracted extensive attention as solid-state H2 storage, owing to the...
The preparation by high energy ball milling of nanostructured Mg-based materials with suitable prope...
SSCI-VIDE+ATARI+BGL:AAU:GPOInternational audienceAlthough hydrogen is widely recognized as a promisi...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
This work investigates the hydrogen storage potential of a variety of solid state materials. The wor...
Hydrogenation properties and mechanical stability of pellets made starting from compressed ball-mill...
Demands for zero greenhouse-gas emission vehicles have sharpened with today’s increased focus on glo...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
In recent years, hydrogen has emerged as one of the best candidates in the field of renewable energy...
International audienceThe aim of the present work was a systematic investigation on MgH2 co-milled w...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
In the future, hydrogen could potentially serve as a common clean energy source. A major barrier to ...
Given the current situation in the energy industry, metal hydrides have captivated many attention fo...
International audienceMagnesium hydride owns the largest share of publications on solid materials fo...
Magnesium hydrides (MgH2) have attracted extensive attention as solid-state H2 storage, owing to the...
The preparation by high energy ball milling of nanostructured Mg-based materials with suitable prope...
SSCI-VIDE+ATARI+BGL:AAU:GPOInternational audienceAlthough hydrogen is widely recognized as a promisi...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
This work investigates the hydrogen storage potential of a variety of solid state materials. The wor...
Hydrogenation properties and mechanical stability of pellets made starting from compressed ball-mill...
Demands for zero greenhouse-gas emission vehicles have sharpened with today’s increased focus on glo...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...