DOE OSTI · 3685191
Induction Melter Processing Alternatives for High Level Radioactive Wastes – 26198
Abstract
This work investigates the potential to vitrify nuclear fuel directly, as well as the vitrification potential associated with experimental dissolver solutions. Greater understanding of the exothermicity is needed to quantify processing risk, especially with respect to potential phase changes and associated explosion hazards present in some systems. Thermal analysis was carried out on various simulants to elucidate the exothermic reaction potential from solid metal dissolution in glass and from the drying of alternative process dissolver solutions. Results from experimental testing of simulants to demonstrate vitrification potential and compatibility indicate that alternative dissolver flowsheets suppress the heat released during processing and that common silicate- and phosphate- based glass systems are potential candidates for direct vitrification. Direct vitrification (conversion) of fuel simulants was assessed using laboratory scale glass melts to obtain qualitative information on dissolution rates and waste loadings. Initial tests were successful to dissolve and incorporate metal directly into glass, although the kinetics and limits of dissolution and incorporation into glass are not fully understood.
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Amoroso, Jake [Savannah River National Laboratory (SRNL), Aiken, SC (United States)] (ORCID:000000033804487X), Swanson, Brinley [Savannah River National Laboratory (SRNL), Aiken, SC (United States)] (ORCID:000900076250932X). 2026-03-12. Induction Melter Processing Alternatives for High Level Radioactive Wastes – 26198. https://www.osti.gov/biblio/3685191
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