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Glass Property Models, Constraints, and Formulation Approaches for Vitrification of High-Level Nuclear Wastes at the US Hanford Site
Dongsang Kim
J. Korean Ceram. Soc.. 2015;52(2):92    DOI: https://doi.org/10.4191/kcers.2015.52.2.92

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Glass Property Models, Constraints, and Formulation Approaches for Vitrification of High-Level Nuclear Wastes at the US Hanford Site
Journal of the Korean Ceramic Society. 2015;52(2):92-102   Crossref logo
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High Level Waste (HLW) Vitrification Experience in the US: Application of Glass Product/Process Control to Other HLW and Hazardous Wastes
MRS Proceedings. 2008;1107:   Crossref logo
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Vitrification and testing of a Hanford high-level waste sample. Part 1: Glass fabrication, and chemical and radiochemical analysis
Journal of Nuclear Materials. 2005;345(1):19-30   Crossref logo
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Incineration/vitrification of simulated low-level institutional wastes in a joule-heated glass melter
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Vitrification of high-level wastes: A review of the computer thermal analyses for storage canisters
Nuclear Engineering and Design. 1982;67(3):447-458   Crossref logo
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Characterization of the glass-ceramic material prepared upon vitrification of an iron-containing surrogate of high-level wastes in a cold crucible
Glass Physics and Chemistry. 2007;33(6):576-586   Crossref logo
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Research and development of a high-efficiency one-stage melting converter-burial-bunker method for vitrification of high-level radioactive wastes
Nuclear Engineering and Design. 2001;205(1-2):133-144   Crossref logo
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Vitrification of high-level liquid waste: glass chemistry, process chemistry and process technology
Nuclear Engineering and Design. 2000;202(2-3):197-207   Crossref logo
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Vitrification and testing of a Hanford high-level waste sample. Part 2: Phase identification and waste form leachability
Journal of Nuclear Materials. 2005;345(1):31-40   Crossref logo
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Glass ceramic for the vitrification of high level waste with a high molybdenum content
Journal of Nuclear Materials. 2019;519:121-127   Crossref logo
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