Experimental and computational studies on absorption and desorption of multicomponent hydrogen isotopes from inert gas mixtures in a yttrium particle bed
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference25 articles.
1. The Status of Tritium Technology Development for Magnetic Fusion Energy
2. Feasibility of Chemical Getter Beds in Scavenging Tritium from Inert Gases
3. Titanium-sponge bed to scavenge tritium from inert gases
4. Equilibrium pressures of hydrogen and deuterium dissolved in titanium, zirconium and hafnium at low concentrations
5. Selective absorption of hydrogen isotopes in an inert gas in a zirconium particle bed
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2. Membranes for Hydrogen Separation;Chemical Reviews;2007-10-01
3. Developments and Design of Novel (Non-Palladium-Based) Metal Membranes for Hydrogen Separation;Industrial & Engineering Chemistry Research;2006-06-23
4. Heat and mass transfer in a concentric-annular-tube bed packed with ZrV1.9Fe0.1 particles;Journal of Alloys and Compounds;2004-07
5. Numerical Simulation of Elution Chromatography for Separation of H2-HD-D2 Mixtures Using a Palladium Particle Bed;Separation Science and Technology;1999-12-10
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