We report that hydrogen gas can be easily produced from water at room temperature using a Mg nanopowder (30–1000 nm particles, average diameter 265 nm). The Mg nanopowder was produced by dc arc melting of a Mg ingot in a chamber with mixed-gas atmosphere (20% N2–80% Ar) at 0.1 MPa using custom-built nanopowder production equipment. The Mg nanopowder was passivated with a gas mixture of 1% O2 in Ar for 12 h in the final step of the synthesis, after which the nanopowder could be safely handled in ambient air. The nanopowder vigorously reacted with water at room temperature, producing 110 ml of hydrogen gas per 1 g of powder in 600 s. This amount corresponds to 11% of the hydrogen that could be generated by the stoichiometric reaction between ...
The synthesis, characterization and hydrolysis properties of nanostructured MgH2 and Mg in a 0.6 M M...
In order to improve the hydrogen storage properties of Mg, Mg@Mg17Al12 ultrafine particles (UFPs) wi...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
Water, through a metal–water reaction, is an appealing candidate to store and release hydrogen (H2),...
Nanodispersed powders, consisting of Mg, Mg and Ni, Mg and Pd, were synthesized in a water-cooled ch...
Hydrogen is a very promising source of fuel; it has already constituted a significant part of modern...
In this work, we developed a method to prepare ultrafine Mg nanoparticles around 40 nm by acetylene ...
Abstract. In this paper, magnesium hydride was used to react with water to produce the hydrogen gas....
The hydrolysis reaction of many hydrides delivers very high hydrogen capacity and is very attractive...
Autonomous low-pressure hydrogen on demand system was found promising to supply fuel cell technology...
One of the largest obstacles to the large scale application of hydrogen powered fuel cell vehicles i...
There is a considerable interest in developing magnesium and magnesium alloys in the form of nanopar...
By hydrogen plasma metal reaction method, we obtained Mg, Ni, Co, Cu and Fe nanoparticles. Mg nanopa...
The Mg-10.6 wt. % La-3.5 wt. % Ni nanoparticles are prepared by hydrogen plasma-metal reaction metho...
The Mg-10.2 at.% V nanoparticles are prepared by hydrogen plasma-metal reaction (HPMR) method. These...
The synthesis, characterization and hydrolysis properties of nanostructured MgH2 and Mg in a 0.6 M M...
In order to improve the hydrogen storage properties of Mg, Mg@Mg17Al12 ultrafine particles (UFPs) wi...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
Water, through a metal–water reaction, is an appealing candidate to store and release hydrogen (H2),...
Nanodispersed powders, consisting of Mg, Mg and Ni, Mg and Pd, were synthesized in a water-cooled ch...
Hydrogen is a very promising source of fuel; it has already constituted a significant part of modern...
In this work, we developed a method to prepare ultrafine Mg nanoparticles around 40 nm by acetylene ...
Abstract. In this paper, magnesium hydride was used to react with water to produce the hydrogen gas....
The hydrolysis reaction of many hydrides delivers very high hydrogen capacity and is very attractive...
Autonomous low-pressure hydrogen on demand system was found promising to supply fuel cell technology...
One of the largest obstacles to the large scale application of hydrogen powered fuel cell vehicles i...
There is a considerable interest in developing magnesium and magnesium alloys in the form of nanopar...
By hydrogen plasma metal reaction method, we obtained Mg, Ni, Co, Cu and Fe nanoparticles. Mg nanopa...
The Mg-10.6 wt. % La-3.5 wt. % Ni nanoparticles are prepared by hydrogen plasma-metal reaction metho...
The Mg-10.2 at.% V nanoparticles are prepared by hydrogen plasma-metal reaction (HPMR) method. These...
The synthesis, characterization and hydrolysis properties of nanostructured MgH2 and Mg in a 0.6 M M...
In order to improve the hydrogen storage properties of Mg, Mg@Mg17Al12 ultrafine particles (UFPs) wi...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...