Published March 1999 | Version v1
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Use of Emanation Thermal Analysis in the characterization of nuclear waste forms and their alteration products

  • 1. Nuclear Research Institute Rez, plc, Rez (Czech Republic)

Description

Emanation Thermal Analysis (ETA) was used for the characterization of thermal behavior of two nuclear waste glasses, basalt volcanic glass and perovskite ceramics before and after hydrolytic treatment. The release of radon, formed by the spontaneous α-decay of 228Th and 224Ra and incorporated into samples to a maximum depth of 100 nm from the surface due to the recoil, was measured during heating of the samples from 20 to 1200degC and subsequent cooling. Temperatures of the annealing of surface roughness, micro-cracks and other defects, produced by manufacture and/or by subsequent treatment of glass and ceramic samples, were determined using the ETA. Microstructure changes of glass corrosion accompanying their dehydration and thermal decomposition were characterized by the radon release rate changes. The effect of hydrolytic alteration on the thermal behavior of the nuclear waste glass was revealed by ETA in an early corrosion stage. In the alteration product of the perovskite ceramics the diffusion mobility of radon was assessed in the temperature range 1000-1200degC. The thermal stability of radiation-induced defects in perovskite ceramic powder bombarded by He+ ions to doses of 1014 and 1016 ions/cm2 was determined by means of ETA. (author)

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Proceedings of the 2nd NUCEF international symposium NUCEF'98. Safety research and development of base technology on nuclear fuel cycle

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Publishing Information

Imprint Title
Proceedings of the 2nd NUCEF international symposium NUCEF'98. Safety research and development of base technology on nuclear fuel cycle
Imprint Pagination
744 p.
Journal Page Range
p. 341-357
Report number
JAERI-Conf--99-004

Conference

Title
2. NUCEF international symposium
Acronym
NUCEF'98
Dates
16-17 Nov 1998
Place
Hitachinaka, Ibaraki (Japan)

Optional Information

Notes
Imprint:Published in 2 volumes