Finding stable solutions for hydrogen storage is one of the main challenges to boosting its deployment as an energy vector and contributing to the decarbonization of the energy sector. In this context, sodium borohydride (NaBH4) has been largely studied as a hydrogen storage material due to its significant advantages, such as low pressure, stability, and high hydrogen storage density. The development of catalysts and additive materials for the on-demand hydrolysis of NaBH4 for hydrogen release is a key research area. This work studies the effects of non-toxic and environmentally friendly additives for the hydrolysis process in terms of yield, lag time, hydrogen generation rate, and gravimetric density. Specifically, four additives, includin...
It is well-known that hydrogen for portable applications can be generated by hydrolysis of sodium bo...
Sodium borohydride (NaBH4) is regarded as an excellent hydrogen-generated material, but its irrevers...
The development of new practical hydrogen storage materials with high volumetric and gravimetric hyd...
Due to increasing energy demand and concern over the urban environment, there is a need to develop a...
The present manuscript faces the study of H2 generation and storage from catalytic hydrolysis of sod...
International audienceToday there is a consensus regarding the potential of NaBH4 as a good candidat...
In this work, hydrogen is produced by a hydrolysis process that uses sodium borohydride as a hydroge...
Worldwide, hydrogen is gaining ground since it is a promising alternative energy source to conventio...
Over the past decade, sodium borohydride (NaBH) has been extensively investigated as a potential hyd...
Hydrogen energy is an efficient and renewable clean energy source, and the key issue for its applica...
A study is reported on the generation and storage of hydrogen from sodium borohydride (NaBH4) soluti...
Le contexte environnemental (réchauffement climatique) et économique (épuisement des ressources en é...
It is clear that in order to satisfy global energy demands whilst maintaining sustainable levels of ...
Sodium borohydride (NaBH4) hydrolysis offers significant advantages in hydrogen storage for fuel cel...
Hydrogen storage and distribution will be two very important aspects of any renewable energy infrast...
It is well-known that hydrogen for portable applications can be generated by hydrolysis of sodium bo...
Sodium borohydride (NaBH4) is regarded as an excellent hydrogen-generated material, but its irrevers...
The development of new practical hydrogen storage materials with high volumetric and gravimetric hyd...
Due to increasing energy demand and concern over the urban environment, there is a need to develop a...
The present manuscript faces the study of H2 generation and storage from catalytic hydrolysis of sod...
International audienceToday there is a consensus regarding the potential of NaBH4 as a good candidat...
In this work, hydrogen is produced by a hydrolysis process that uses sodium borohydride as a hydroge...
Worldwide, hydrogen is gaining ground since it is a promising alternative energy source to conventio...
Over the past decade, sodium borohydride (NaBH) has been extensively investigated as a potential hyd...
Hydrogen energy is an efficient and renewable clean energy source, and the key issue for its applica...
A study is reported on the generation and storage of hydrogen from sodium borohydride (NaBH4) soluti...
Le contexte environnemental (réchauffement climatique) et économique (épuisement des ressources en é...
It is clear that in order to satisfy global energy demands whilst maintaining sustainable levels of ...
Sodium borohydride (NaBH4) hydrolysis offers significant advantages in hydrogen storage for fuel cel...
Hydrogen storage and distribution will be two very important aspects of any renewable energy infrast...
It is well-known that hydrogen for portable applications can be generated by hydrolysis of sodium bo...
Sodium borohydride (NaBH4) is regarded as an excellent hydrogen-generated material, but its irrevers...
The development of new practical hydrogen storage materials with high volumetric and gravimetric hyd...