科技报告详细信息
Formulation and Characterization of Waste Glasses with Varying Processing Temperature
Kim, Dong-Sang ; Schweiger, M. J. ; Rodriguez, Carmen P. ; Lepry, William C. ; Lang, Jesse B. ; Crum, Jarrod V. ; Vienna, John D. ; Johnson, Fabienne ; Marra, James C. ; Peeler, David K.
关键词: AR FACILITIES;    CRUCIBLES;    GLASS;    INDUCTION;    PROCESSING;    WASTES waste glass;    glass formulation;    cold crucible induction melter;    high-level waste;    low-activity waste;   
DOI  :  10.2172/1028572
RP-ID  :  PNNL-20774
PID  :  OSTI ID: 1028572
Others  :  Other: EY7144147
Others  :  TRN: US1106019
学科分类:核能源与工程
美国|英语
来源: SciTech Connect
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【 摘 要 】

This report documents the preliminary results of glass formulation and characterization accomplished within the finished scope of the EM-31 technology development tasks for WP-4 and WP-5, including WP-4.1.2: Glass Formulation for Next Generation Melter, WP-5.1.2.3: Systematic Glass Studies, and WP-5.1.2.4: Glass Formulation for Specific Wastes. This report also presents the suggested studies for eventual restart of these tasks. The initial glass formulation efforts for the cold crucible induction melter (CCIM), operating at {approx}1200 C, with selected HLW (AZ-101) and LAW (AN-105) successfully developed glasses with significant increase of waste loading compared to that is likely to be achieved based on expected reference WTP formulations. Three glasses formulated for AZ-101HLW and one glass for AN-105 LAW were selected for the initial CCIM demonstration melter tests. Melter tests were not performed within the finished scope of the WP-4.1.2 task. Glass formulations for CCIM were expanded to cover additional HLWs that have high potential to successfully demonstrate the unique advantages of the CCIM technologies based on projected composition of Hanford wastes. However, only the preliminary scoping tests were completed with selected wastes within the finished scope. Advanced glass formulations for the reference WTP melter, operating at {approx}1200 C, were initiated with selected specific wastes to determine the estimated maximum waste loading. The incomplete results from these initial formulation efforts are summarized. For systematic glass studies, a test matrix of 32 high-aluminum glasses was completed based on a new method developed in this study.

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