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Reiser, Joelle T.; Lu, Xiaonan; Parruzot, Benjamin; Liu, Hongshen; Subramani, Tamilarasan; Kaya, Huseyin; Kissinger, Ryan M.; Crum, Jarrod V.; Ryan, Joseph V.; Navrotsky, Alexandra; Kim, Seong H.; Vienna, John D.
Journal of the American Ceramic Society, 09/2020, Volume: 104, Issue: 1Journal Article
Abstract Understanding composition‐structure‐property relationships of high‐alumina nuclear waste glasses are important for vitrification of nuclear waste at the Hanford Site. Two series of glasses were designed, one with varying Al:Si ratios and the other with (Al + Na):Si ratios based on the international simple glass (ISG, a simplified nuclear waste model glass), with Al 2 O 3 ranging from 0 to 23 mol% (0 to 32 wt%). The glasses were synthesized and characterized using electron probe microanalysis, X‐ray photoelectron spectroscopy, small angle X‐ray scattering, high‐temperature oxide melt solution calorimetry, and infrared spectroscopy. Glasses were crystal free, and the lowest Na 2 O and Al 2 O 3 glass formed an immiscible glass phase. Evolution of various properties—glass‐transition temperature, percentage of 4‐coordinated B, enthalpy of glass formation—and infrared spectroscopy results indicate that structural effects differ based on the glass series.
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