We tried to improve the H2-sorption properties of Mg by mechanical grinding under H2 (reactive mechanical grinding) with Fe2O3 under various milling conditions. The sample Mg–10 wt.%Fe2O3 prepared by milling at a revolution speed of 250 rpm for 24 h has the best hydrogen-storage properties. It absorbs 5.05 wt.% hydrogen at 593 K under 12 bar H2 for 60 min at the first cycle. Its activation is accomplished after three hydriding–dehydriding cycles. The activated sample absorbs 4.22 wt.% hydrogen at 593 K, 12 bar H2 for 10 min. The reactive grinding of Mg with Fe2O3 increases the H2-sorption rates by facilitating nucleation (by creating defects on the surface of the Mg particles and by the additive), by making cracks on the surface of Mg parti...
We tried to improve the H2-sorption properties of Mg by mechanical grinding under H2 (reactive grind...
<div><p>Magnesium (Mg) is a light metal with relatively low cost. Its hydride (MgH2) is interesting ...
Among all the solid materials studied so far, magnesium is an attractive possibility to store hydrog...
We tried to improve the hydrogen sorption properties of Mg by mechanical grinding under H2 (reactive...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
The use of reactive mechanical grinding (MG under H2) of magnesium powder improves the hydrogen sorp...
Reactive mechanical grinding (MG under H2) of magnesium powder improves the hydrogen sorption proper...
The hydrogen sorption properties of Mg+10% WO3 and Mg+5% Cr2O3 mixtures made by reactive (under hydr...
The 71.5%Mg–23.5%Ni–5%Fe alloy prepared by reactive mechanical grinding for 4 h does not need activa...
The influence of mechanical grinding under hydrogen (Reactive Mechanical Grinding=RMG) on the chemic...
In this work, Mg was employed as a starting material. Ni, Fe and Ti were selected as additives to im...
Magnesium hydrides are considered as the potential hydrogen storage materials. However, high work te...
Among samples of Mg-Ni, Mg-Ni-5Fe2O3, and Mg-Ni-5Fe, Mg-Ni-5Fe had the highest hydriding and dehydri...
Given the current situation in the energy industry, metal hydrides have captivated many attention fo...
An Mg-10wt%Ni-5wt%Fe-5wt%Ti sample was prepared by mechanical grinding under H2 (reactive mechanical...
We tried to improve the H2-sorption properties of Mg by mechanical grinding under H2 (reactive grind...
<div><p>Magnesium (Mg) is a light metal with relatively low cost. Its hydride (MgH2) is interesting ...
Among all the solid materials studied so far, magnesium is an attractive possibility to store hydrog...
We tried to improve the hydrogen sorption properties of Mg by mechanical grinding under H2 (reactive...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
The use of reactive mechanical grinding (MG under H2) of magnesium powder improves the hydrogen sorp...
Reactive mechanical grinding (MG under H2) of magnesium powder improves the hydrogen sorption proper...
The hydrogen sorption properties of Mg+10% WO3 and Mg+5% Cr2O3 mixtures made by reactive (under hydr...
The 71.5%Mg–23.5%Ni–5%Fe alloy prepared by reactive mechanical grinding for 4 h does not need activa...
The influence of mechanical grinding under hydrogen (Reactive Mechanical Grinding=RMG) on the chemic...
In this work, Mg was employed as a starting material. Ni, Fe and Ti were selected as additives to im...
Magnesium hydrides are considered as the potential hydrogen storage materials. However, high work te...
Among samples of Mg-Ni, Mg-Ni-5Fe2O3, and Mg-Ni-5Fe, Mg-Ni-5Fe had the highest hydriding and dehydri...
Given the current situation in the energy industry, metal hydrides have captivated many attention fo...
An Mg-10wt%Ni-5wt%Fe-5wt%Ti sample was prepared by mechanical grinding under H2 (reactive mechanical...
We tried to improve the H2-sorption properties of Mg by mechanical grinding under H2 (reactive grind...
<div><p>Magnesium (Mg) is a light metal with relatively low cost. Its hydride (MgH2) is interesting ...
Among all the solid materials studied so far, magnesium is an attractive possibility to store hydrog...