The reaction of magnesium hydride with water is a very promising means to generate hydrogen for fuel cell applications as MgH2 is cheap, non-toxic, has a very long shelf life as well as an extremely high hydrogen storage capacity of up to 15.3 wt.% in hydrolysis reactions. However, pure MgH2 reacts only very slowly and incompletely with water and previous attempts to increase the hydrogen release kinetics and yields often involved the addition of large amounts of Bronsted acids, high-energy ball milling or expensive noble metal catalysts. Here, we present a systematic study on how MgH2 is easily activated by the addition of small amounts of certain metal halides to make it react with water in a highly dynamic fashion. Possible mechanisms of...
Magnesium hydride (MgH2) is one of the competitive hydrogen storage materials on account of abundant...
SSCI-VIDE+ATARI+BGL:AAU:GPOInternational audienceAlthough hydrogen is widely recognized as a promisi...
The high thermodynamic stability of MgH2 results in a hydrogen release temperature of 300 ºC at 1 at...
MgH2 is regarded as a potential hydrolysis material for the hydrogen generation due to its high theo...
Due to its relatively low cost, high hydrogen yield, and environmentally friendly hydrolysis byprodu...
Abstract. In this paper, magnesium hydride was used to react with water to produce the hydrogen gas....
Magnesium hydride could be considered as a good candidate for the hydrolysis reaction because it can...
Autonomous low-pressure hydrogen on demand system was found promising to supply fuel cell technology...
The hydrolysis reaction of many hydrides delivers very high hydrogen capacity and is very attractive...
The synthesis, characterization and hydrolysis properties of nanostructured MgH2 and Mg in a 0.6 M M...
We report the discovery of a new, chemical route for 'activating' the hydrogen store MgH2, that resu...
Magnesium hydrides are considered as the potential hydrogen storage materials. However, high work te...
>Magister Scientiae - MScThis study presents the successful characterization and hydrolysis of magn...
Hydrogen is a very promising source of fuel; it has already constituted a significant part of modern...
Abstract: Hydrogen generation from MgH2 is of interest to the research community due to various allu...
Magnesium hydride (MgH2) is one of the competitive hydrogen storage materials on account of abundant...
SSCI-VIDE+ATARI+BGL:AAU:GPOInternational audienceAlthough hydrogen is widely recognized as a promisi...
The high thermodynamic stability of MgH2 results in a hydrogen release temperature of 300 ºC at 1 at...
MgH2 is regarded as a potential hydrolysis material for the hydrogen generation due to its high theo...
Due to its relatively low cost, high hydrogen yield, and environmentally friendly hydrolysis byprodu...
Abstract. In this paper, magnesium hydride was used to react with water to produce the hydrogen gas....
Magnesium hydride could be considered as a good candidate for the hydrolysis reaction because it can...
Autonomous low-pressure hydrogen on demand system was found promising to supply fuel cell technology...
The hydrolysis reaction of many hydrides delivers very high hydrogen capacity and is very attractive...
The synthesis, characterization and hydrolysis properties of nanostructured MgH2 and Mg in a 0.6 M M...
We report the discovery of a new, chemical route for 'activating' the hydrogen store MgH2, that resu...
Magnesium hydrides are considered as the potential hydrogen storage materials. However, high work te...
>Magister Scientiae - MScThis study presents the successful characterization and hydrolysis of magn...
Hydrogen is a very promising source of fuel; it has already constituted a significant part of modern...
Abstract: Hydrogen generation from MgH2 is of interest to the research community due to various allu...
Magnesium hydride (MgH2) is one of the competitive hydrogen storage materials on account of abundant...
SSCI-VIDE+ATARI+BGL:AAU:GPOInternational audienceAlthough hydrogen is widely recognized as a promisi...
The high thermodynamic stability of MgH2 results in a hydrogen release temperature of 300 ºC at 1 at...