Published March 18, 2010 | Version v1
Miscellaneous

Development Of Glass Matrices For HLW Radioactive Wastes

Description

Vitrification is currently the most widely used technology for the treatment of high level radioactive wastes (HLW) throughout the world. Most of the nations that have generated HLW are immobilizing in either borosilicate glass or phosphate glass. One of the primary reasons that glass has become the most widely used immobilization media is the relative simplicity of the vitrification process, e.g. melt waste plus glass forming frit additives and cast. A second reason that glass has become widely used for HLW is that the short range order (SRO) and medium range order (MRO) found in glass atomistically bonds the radionuclides and governs the melt properties such as viscosity, resistivity, sulphate solubility. The molecular structure of glass controls contaminant/radionuclide release by establishing the distribution of ion exchange sites, hydrolysis sites, and the access of water to those sites. The molecular structure is flexible and hence accounts for the flexibility of glass formulations to waste variability. Nuclear waste glasses melt between 1050-1150 C which minimizes the volatility of radioactive components such as Tc99, Cs137, and I129. Nuclear waste glasses have good long term stability including irradiation resistance. Process control models based on the molecular structure of glass have been mechanistically derived and have been demonstrated to be accurate enough to control the world's largest HLW Joule heated ceramic melter in the US since 1996 at 95% confidence.

Availability note (English)

Available from http://sti.srs.gov/fulltext/SRNS-STI-2009-00598.pdf; PURL: https://www.osti.gov/servlets/purl/974329-TUnofq/

Additional details

Publishing Information

Publisher
Nova Publishing Company
Imprint Place
New York, NY (United States)
Imprint Pagination
89 p.
Report number
SRNS-STI--2009-00598

Optional Information

Contract/Grant/Project number
AC09-08SR22470
Funding organization
US Department of Energy (United States)