The production cost of materials for hydrogen storage is one of the major issues to be addressed in order to consider them suitable for large scale applications. In the last decades several authors reported on the hydrogen sorption properties of Mg and Mg-based systems. In this work magnesium industrial wastes of AZ91 alloy and Mg-10 wt.% Gd alloy are used for the production of hydrogen storage materials. The hydrogen sorption properties of the alloys were investigated by means of volumetric technique, in situ synchrotron radiation powder X-ray diffraction (SR-PXD) and calorimetric methods. The measured reversible hydrogen storage capacity for the alloys AZ91 and Mg-10 wt.% Gd are 4.2 and 5.8 wt.%, respectively. For the Mg-10 wt.% Gd alloy,...
The hydrogen sorption performance of different Mg-based materials as evaluated by manometric and cal...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
The Mg(NH2)2–2LiH composite has been regarded as a promising on-board hydrogen storage material, due...
The production cost of materials for hydrogen storage is one of the major issues to be addressed in ...
The production cost of materials for hydrogen storage is one of the major issues to be addressed in ...
Magnesium has been studied as a potential hydrogen storage material for several decades because of i...
Demands for zero greenhouse-gas emission vehicles have sharpened with today’s increased focus on glo...
Since about 1970, metal hydrides have been prosperously invested for hydrogen storage materials as a...
Magnesium hydrides (MgH2) have attracted extensive attention as solid-state H2 storage, owing to the...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
International audienceAbstract Hydrides based on magnesium and intermetallic compounds provide a via...
Magnesium-based alloys attract significant interest as cost-efficient hydrogen storage materials all...
Hydrides based on magnesium and intermetallic compounds provide a viable solution to the challenge o...
The hydrogen sorption performance of different Mg-based materials as evaluated by manometric and cal...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
The Mg(NH2)2–2LiH composite has been regarded as a promising on-board hydrogen storage material, due...
The production cost of materials for hydrogen storage is one of the major issues to be addressed in ...
The production cost of materials for hydrogen storage is one of the major issues to be addressed in ...
Magnesium has been studied as a potential hydrogen storage material for several decades because of i...
Demands for zero greenhouse-gas emission vehicles have sharpened with today’s increased focus on glo...
Since about 1970, metal hydrides have been prosperously invested for hydrogen storage materials as a...
Magnesium hydrides (MgH2) have attracted extensive attention as solid-state H2 storage, owing to the...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
International audienceAbstract Hydrides based on magnesium and intermetallic compounds provide a via...
Magnesium-based alloys attract significant interest as cost-efficient hydrogen storage materials all...
Hydrides based on magnesium and intermetallic compounds provide a viable solution to the challenge o...
The hydrogen sorption performance of different Mg-based materials as evaluated by manometric and cal...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
The Mg(NH2)2–2LiH composite has been regarded as a promising on-board hydrogen storage material, due...