Titanium is reactive toward hydrogen forming metal hydride which has a potential application in energy storage and conversion. Titanium hydride has been widely studied for hydrogen storage, thermal storage, and battery electrodes applications. A special interest is using titanium for hydrogen production in a hydrogen sorption-enhanced steam reforming of natural gas. In the present work, non-isothermal dehydrogenation kinetics of titanium hydride and kinetics of hydrogenation in gaseous flow at isothermal conditions were investigated. The hydrogen desorption was studied using temperature desorption spectroscopy (TDS) while the hydrogen absorption and desorption in gaseous flow were studied by temperature programmed desorption (TPD). The...
The thermal decomposition of titanium hydride powder (delta-phase) to titanium (alpha-phase) was inv...
The research objective is to produce titanium hydride (TiH2) from the reaction between magnesium Hyd...
We improve our previous kinetic model of hydrogen transport in Ti [Y. Hamamoto et al., Nucl. Mater. ...
Titanium is reactive toward hydrogen forming metal hydride which has a potential application in ...
Titanium is reactive toward hydrogen forming metal hydride which has a potential application in ...
Titanium is reactive toward hydrogen forming metal hydride which has a potential application in ...
Titanium hydride is a well characterized binary hydride which is used as a high temperature H storag...
none3noWe study the kinetics of hydrogen sorption in Mg-Ti-H nanoparticles prepared by gas phase con...
Hydrogen storage is one of the most important industrial applications of titanium hydride (TiH 2 ). ...
Hydrogen storage is one of the most important industrial applications of titanium hydride (TiH 2 ). ...
Hydrogen storage is one of the most important industrial applications of titanium hydride (TiH 2 ). ...
Hydrogen storage is one of the most important industrial applications of titanium hydride (TiH 2 ). ...
Hydrogen absorption, ethylene adsorption and ethylene hydrogenation have been investigated on titani...
Hydrogen absorption, ethylene adsorption and ethylene hydrogenation have been investigated on titani...
Titanium is presently discussed as a catalyst to accelerate the hydrogenation kinetics of hydrogen ...
The thermal decomposition of titanium hydride powder (delta-phase) to titanium (alpha-phase) was inv...
The research objective is to produce titanium hydride (TiH2) from the reaction between magnesium Hyd...
We improve our previous kinetic model of hydrogen transport in Ti [Y. Hamamoto et al., Nucl. Mater. ...
Titanium is reactive toward hydrogen forming metal hydride which has a potential application in ...
Titanium is reactive toward hydrogen forming metal hydride which has a potential application in ...
Titanium is reactive toward hydrogen forming metal hydride which has a potential application in ...
Titanium hydride is a well characterized binary hydride which is used as a high temperature H storag...
none3noWe study the kinetics of hydrogen sorption in Mg-Ti-H nanoparticles prepared by gas phase con...
Hydrogen storage is one of the most important industrial applications of titanium hydride (TiH 2 ). ...
Hydrogen storage is one of the most important industrial applications of titanium hydride (TiH 2 ). ...
Hydrogen storage is one of the most important industrial applications of titanium hydride (TiH 2 ). ...
Hydrogen storage is one of the most important industrial applications of titanium hydride (TiH 2 ). ...
Hydrogen absorption, ethylene adsorption and ethylene hydrogenation have been investigated on titani...
Hydrogen absorption, ethylene adsorption and ethylene hydrogenation have been investigated on titani...
Titanium is presently discussed as a catalyst to accelerate the hydrogenation kinetics of hydrogen ...
The thermal decomposition of titanium hydride powder (delta-phase) to titanium (alpha-phase) was inv...
The research objective is to produce titanium hydride (TiH2) from the reaction between magnesium Hyd...
We improve our previous kinetic model of hydrogen transport in Ti [Y. Hamamoto et al., Nucl. Mater. ...