Hyperthermal Atomic Oxygen Generator

Hyperthermal Atomic Oxygen Generator

Paperback (12 Nov 2018)

Not available for sale

Includes delivery to the United States

Out of stock

This service is protected by reCAPTCHA and the Google Privacy Policy and Terms of Service apply.

Publisher's Synopsis

Characterization of the transport properties of oxygen through silver was continued. Specifically, experiments measuring the transport through Ag(111), Ag(110), Ag(100) single crystals and through Ag0.05 Zr alloy were completed. In addition, experiments using glow discharge excitation of oxygen to assist in the transport were completed. It was found that the permeability through the different orientations of single crystal Ag was the same, but significant differences existed in the diffusivity. The experimental ratio of diffusivities, however, was in reasonable agreement with theoretical estimates. Since the solubilities of orientations must be the same, this suggests some problems with the assumption K = DS. The glow discharge experiments show that there is a substantial increase in transport (factor of six) when the upstream pressure is dissociated to some fraction of atoms (which have a much higher sticking coefficient). These results indicate that there is a significant surface limitation because of dissociative adsorption of the molecules. Experiments with the Ag0.05 Zr alloy and its high-grain boundary and defect density show a permeability of greater than a factor of two over ordinary polycrystalline Ag, but it is unclear as to whether this is because of enhanced transport through these defects or whether the Zr and defects on the surface increased the sticking coefficient and therefore the transport. Khandelwal, Govind S. and Wu, Dongchuan Unspecified Center ADSORPTION; CRYSTAL DEFECTS; DIFFUSIVITY; DISSOCIATION; MOLECULES; OXYGEN ATOMS; PERMEABILITY; POLYCRYSTALS; SILVER; SINGLE CRYSTALS; TRANSPORT PROPERTIES; BOUNDARIES; DEFECTS; ESTIMATES; EXCITATION; GLOW DISCHARGES; GRAIN BOUNDARIES; OXYGEN; SOLUBILITY; ZIRCONIUM ALLOYS...

Book information

ISBN: 9781731159533
Publisher: Independently Published
Imprint: Independently Published
Pub date:
Language: English
Number of pages: 116
Weight: 286g
Height: 280mm
Width: 216mm
Spine width: 6mm