Hydrogen is a very promising source of fuel; it has already constituted a significant part of modern innovations for power generation in automobile and space shuttle. Hydrogen can be produced from several sources and as a byproduct of some chemical processes, including the association of magnesium with water. The production yield of this later production method is limited by influences associated with the formation of passive oxide/hydroxide films on the surface of magnesium metal during reaction. The experiments within this project highlight optimization conditions towards improved hydrogen yield via magnesium hydrolysis. Reduced rate of hydroxide layer formation on Mg surface, hence increased production yield, is accomplished by exposing ...
Given the current situation in the energy industry, metal hydrides have captivated many attention fo...
This paper focuses on hydrogen production for green mobility applications (other applications are cu...
Magnesium hydride (MgH2) is one of the competitive hydrogen storage materials on account of abundant...
Hydrogen is a very promising source of fuel; it has already constituted a significant part of modern...
With the advent of time and growing world population, the demand of energy is rising everyday expone...
>Magister Scientiae - MScThis study presents the successful characterization and hydrolysis of magn...
Abstract. In this paper, magnesium hydride was used to react with water to produce the hydrogen gas....
Autonomous low-pressure hydrogen on demand system was found promising to supply fuel cell technology...
Au cours des dernières années, de nombreux efforts ont été consacrés à la production d'hydrogène à p...
Abstract: Low-grade magnesium (Mg) waste from post-consumer products and production waste cannot be ...
Magnesium-based hydrogen storage materials are considered to be one of the most promising solid-stat...
Over the past few years, many efforts have been dedicated to hydrogen production from hydrolysis rea...
Hydrogen is described as a sustainable energy carrier, but its storage has been challenging. Solid s...
Magnesium hydrides are considered as the potential hydrogen storage materials. However, high work te...
Philosophiae Doctor - PhDThe main objective of this study was to advance kinetic performances of for...
Given the current situation in the energy industry, metal hydrides have captivated many attention fo...
This paper focuses on hydrogen production for green mobility applications (other applications are cu...
Magnesium hydride (MgH2) is one of the competitive hydrogen storage materials on account of abundant...
Hydrogen is a very promising source of fuel; it has already constituted a significant part of modern...
With the advent of time and growing world population, the demand of energy is rising everyday expone...
>Magister Scientiae - MScThis study presents the successful characterization and hydrolysis of magn...
Abstract. In this paper, magnesium hydride was used to react with water to produce the hydrogen gas....
Autonomous low-pressure hydrogen on demand system was found promising to supply fuel cell technology...
Au cours des dernières années, de nombreux efforts ont été consacrés à la production d'hydrogène à p...
Abstract: Low-grade magnesium (Mg) waste from post-consumer products and production waste cannot be ...
Magnesium-based hydrogen storage materials are considered to be one of the most promising solid-stat...
Over the past few years, many efforts have been dedicated to hydrogen production from hydrolysis rea...
Hydrogen is described as a sustainable energy carrier, but its storage has been challenging. Solid s...
Magnesium hydrides are considered as the potential hydrogen storage materials. However, high work te...
Philosophiae Doctor - PhDThe main objective of this study was to advance kinetic performances of for...
Given the current situation in the energy industry, metal hydrides have captivated many attention fo...
This paper focuses on hydrogen production for green mobility applications (other applications are cu...
Magnesium hydride (MgH2) is one of the competitive hydrogen storage materials on account of abundant...