Hydrogenation properties and mechanical stability of pellets made starting from compressed ball-milled MgH2 powders mixed with catalysts (Nb2O5 and graphite) and a binding agent (aluminium powder) have been investigated. Structural characterization with X-ray diffraction and gas\u2013solid reaction kinetic and thermodynamic tests with a Sievert's apparatus have been done on the samples up to 50 hydrogen absorption/desorption (a/d) cycles. The best cycling behaviour and mechanical strength stability have been observed for pellets of catalysed MgH2 powders added with 5 wt% aluminium annealed in vacuum at 450 \ub0C before starting the a/d cycles. This mechanical stability to cycles has been attributed to the formation of a solid solution of al...
The improvement of hydrogen storage properties of ball-milled Mg-Al-Ti-Zr-C composite was studied in...
A cost effective catalyst is of great importance for consideration of MgH2 as potential hydrogen sto...
Although hydrogen is widely recognized as a promising energy carrier, its widespread adoption as alt...
Hydrogenation properties and mechanical stability of pellets made starting from compressed ball-mill...
Hydrogenation properties and mechanical stability of pellets made starting from compressed ball-mill...
Hydrogen, being a regenerative and environmentally harmless fuel, can play a crucial role in the ene...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
Magnesium hydrides (MgH2) have attracted extensive attention as solid-state H2 storage, owing to the...
none3noCompacted mixtures based on ball-milled magnesium hydride (MgH2) have gained significant rese...
International audienceReversible hydrogen storage in magnesium hydride is the most suitable solution...
Abstract Powders mixtures of nanosized MgH2 and suitable additives, obtained by high energy milling...
The effect of extended H2 sorption cycles on the structure and on the hydrogen storage performances ...
Magnesium based composites MgH2 + X (X=Ti, Co) were synthesized by ball milling in an argon atmosphe...
This work investigates the hydrogen storage potential of a variety of solid state materials. The wor...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
The improvement of hydrogen storage properties of ball-milled Mg-Al-Ti-Zr-C composite was studied in...
A cost effective catalyst is of great importance for consideration of MgH2 as potential hydrogen sto...
Although hydrogen is widely recognized as a promising energy carrier, its widespread adoption as alt...
Hydrogenation properties and mechanical stability of pellets made starting from compressed ball-mill...
Hydrogenation properties and mechanical stability of pellets made starting from compressed ball-mill...
Hydrogen, being a regenerative and environmentally harmless fuel, can play a crucial role in the ene...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
Magnesium hydrides (MgH2) have attracted extensive attention as solid-state H2 storage, owing to the...
none3noCompacted mixtures based on ball-milled magnesium hydride (MgH2) have gained significant rese...
International audienceReversible hydrogen storage in magnesium hydride is the most suitable solution...
Abstract Powders mixtures of nanosized MgH2 and suitable additives, obtained by high energy milling...
The effect of extended H2 sorption cycles on the structure and on the hydrogen storage performances ...
Magnesium based composites MgH2 + X (X=Ti, Co) were synthesized by ball milling in an argon atmosphe...
This work investigates the hydrogen storage potential of a variety of solid state materials. The wor...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
The improvement of hydrogen storage properties of ball-milled Mg-Al-Ti-Zr-C composite was studied in...
A cost effective catalyst is of great importance for consideration of MgH2 as potential hydrogen sto...
Although hydrogen is widely recognized as a promising energy carrier, its widespread adoption as alt...