Hydrogen future depends on large-scale storage, which can be provided by geological formations (such as caverns, aquifers, and depleted oil and gas reservoirs) to handle …
Overreliance on fossil fuels for human energy needs, combined with the associated negative environmental consequences in terms of greenhouse gas emissions, has shifted our focus …
T Amirthan, MSA Perera - International Journal of Hydrogen Energy, 2023 - Elsevier
Hydrogen has attracted attention worldwide with its favourable inherent properties to contribute towards a carbon-free green energy future. Australia aims to make hydrogen as …
Underground hydrogen storage (UHS) is a key strategy in the implementation of a large- scale hydrogen (H 2) economy and promotion of renewable energy development/utilization …
Global energy demand is increasing every year, and we face the drawbacks of extensive fossil fuel use in our daily lives more than ever. Hydrogen (H 2) is currently assessed as an …
NS Muhammed, B Haq, DA Al Shehri - International Journal of Hydrogen …, 2023 - Elsevier
The utilization of depleted natural gas reservoirs is a significant consideration for large-scale hydrogen (H 2) storage and production. However, accurate knowledge of cushion gas …
Replacement of fossil fuels with clean hydrogen has been recognized as the most feasible approach of implementing CO 2-free hydrogen economy globally. However, large-scale …
The substitution of fossil fuel with clean hydrogen (H 2) has been identified as a promising route to achieve net zero carbon emissions by this century. However, enough H 2 must be …
Rock/fluid interfacial tension (γ rock− fluid) govern the fluid flow dynamics, the injection/withdrawal rates, the gas storage capacity, and containment integrity during gas (H …