Palladium is capable of storing a large atomic percent of hydrogen at room temperature and allows for hydrogen to diffuse with a high mobility. These unique properties make it an efficient storage medium for hydrogen and hydrogen isotopes, such as tritium, a byproduct of nuclear reaction. Palladium thus can be used for applications where fast diffusion and large storage density are important. Better understanding of molecular level phenomena such as hydride phase transformation in the metal and the effect of defects in the materials provides clues to designing metal hydrides that perform better. Atomic simulations are useful in the evaluation of palladium-hydrides (Pd-H) systems as changes in composition can be more easily explored than with experiments. However, the complex behavior of the Pd-H system such as phase miscibility gap presents a huge challenge to developing accurate computational models. In this paper, we present the palladium hydride potentials to investigate and identify the relevant physical mechanisms necessary to describe the absorption of hydrogen within a metal lattice.
Skip Nav Destination
ASME 2017 Pressure Vessels and Piping Conference
July 16–20, 2017
Waikoloa, Hawaii, USA
Conference Sponsors:
- Pressure Vessels and Piping Division
ISBN:
978-0-7918-5793-9
PROCEEDINGS PAPER
EAM Potential for Hydrogen Storage Application Available to Purchase
Y. H. Park,
Y. H. Park
New Mexico State University, Las Cruces, NM
Search for other works by this author on:
I. Hijazi
I. Hijazi
Marshall University, Huntington, WV
Search for other works by this author on:
Y. H. Park
New Mexico State University, Las Cruces, NM
I. Hijazi
Marshall University, Huntington, WV
Paper No:
PVP2017-65845, V002T02A017; 5 pages
Published Online:
October 26, 2017
Citation
Park, YH, & Hijazi, I. "EAM Potential for Hydrogen Storage Application." Proceedings of the ASME 2017 Pressure Vessels and Piping Conference. Volume 2: Computer Technology and Bolted Joints. Waikoloa, Hawaii, USA. July 16–20, 2017. V002T02A017. ASME. https://doi.org/10.1115/PVP2017-65845
Download citation file:
33
Views
Related Proceedings Papers
Related Articles
Experimental Study of Thermal Management and Enhancement of Adsorption-Based Onboard Hydrogen Storage System
J. Electrochem. En. Conv. Stor (February,2022)
A Review of Heat Transfer Issues in Hydrogen Storage Technologies
J. Heat Transfer (December,2005)
Systems Modeling of Chemical Hydride Hydrogen Storage Materials for Fuel Cell Applications
J. Fuel Cell Sci. Technol (December,2011)
Related Chapters
Industrially-Relevant Multiscale Modeling of Hydrogen Assisted Degradation
International Hydrogen Conference (IHC 2012): Hydrogen-Materials Interactions
Evaluation of the Hydride Reorientation Behavior for Zircaloy-2 Liner Cladding with High Hydrogen Content during Interim Dry Storage Conditions
Zirconium in the Nuclear Industry: 20th International Symposium
The Nuclear and Related Industry
Decommissioning Handbook