Optimization of glass composition for the vitrification of nuclear waste at the Savannah River Plant
Description
Waste glasses of different compositions were compared in terms of leachability, viscosity, liquidus temperature, and coefficient of expansion. The compositions of the glasses were determined by statistical optimization. Waste glass of the optimized composition is more durable than the current reference composition but can still be processed at low temperature.
Physical Description
26 pages
Creation Information
Soper, P. D.; Roberts, G. J.; Lightner, L. F.; Walker, D. D. & Plodinec, M. J. January 1, 1982.
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Publishers
-
Du Pont de Nemours (E.I.) and Co., Aiken, SC (USA). Savannah River Lab.
Place of Publication: United States
-
Ferro Corp., Independence, OH (USA)
Place of Publication: United States
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Description
Waste glasses of different compositions were compared in terms of leachability, viscosity, liquidus temperature, and coefficient of expansion. The compositions of the glasses were determined by statistical optimization. Waste glass of the optimized composition is more durable than the current reference composition but can still be processed at low temperature.
Physical Description
26 pages
Notes
NTIS, PC A03/MF A01.
Subjects
Keywords
- Alkali Metal Compounds
- Alkaline Earth Metal Compounds
- Aluminium Compounds
- Aluminium Oxides
- Boron Compounds
- Boron Oxides
- Calcium Compounds
- Calcium Oxides
- Carbon Compounds
- Carbonaceous Materials
- Carbonates
- Chalcogenides
- Chemical Composition
- Coal
- Data
- Dissolution
- Energy Sources
- Experimental Data
- Fossil Fuels
- Fuels
- Glass
- Information
- Inorganic Ion Exchangers
- Ion Exchange Materials
- Iron Compounds
- Iron Oxides
- Lanthanum Compounds
- Lanthanum Oxides
- Leaching
- Lithium Compounds
- Lithium Oxides
- Magnesium Compounds
- Magnesium Oxides
- Management
- Manganese Compounds
- Manganese Oxides
- Materials
- Minerals
- National Organizations
- Nickel Compounds
- Nickel Oxides
- Numerical Data
- Optimization
- Oxide Minerals
- Oxides
- Oxygen Compounds
- Ph Value
- Phase Transformations
- Processing
- Quantity Ratio
- Radioactive Waste Processing
- Rare Earth Compounds
- Savannah River Plant
- Separation Processes
- Silica
- Silicon Compounds
- Silicon Oxides
- Sodium Carbonates
- Sodium Compounds
- Sodium Oxides
- Sodium Sulfates
- Solidification
- Sulfates
- Sulfur Compounds
- Titanium Compounds
- Titanium Oxides
- Transition Element Compounds
- Us Aec
- Us Doe
- Us Erda
- Us Organizations
- Viscosity
- Vitrification
- Waste Management
- Waste Processing 360602* -- Other Materials-- Structure & Phase Studies
- Zeolites
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Identifier
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- Other: DE82014178
- Report No.: DP-MS-81-108
- Report No.: CONF-820547-4
- Grant Number: AC09-76SR00001
- Digital Object Identifier: https://doi.org/10.2172/5264302
- Office of Scientific & Technical Information Report Number: 5264302
- Archival Resource Key: ark:/67531/metadc1071607
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Office of Scientific & Technical Information Technical Reports
Reports, articles and other documents harvested from the Office of Scientific and Technical Information.
Office of Scientific and Technical Information (OSTI) is the Department of Energy (DOE) office that collects, preserves, and disseminates DOE-sponsored research and development (R&D) results that are the outcomes of R&D projects or other funded activities at DOE labs and facilities nationwide and grantees at universities and other institutions.
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Creation Date
- January 1, 1982
Added to The UNT Digital Library
- Feb. 4, 2018, 10:51 a.m.
Description Last Updated
- Jan. 21, 2021, 6 p.m.
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Soper, P. D.; Roberts, G. J.; Lightner, L. F.; Walker, D. D. & Plodinec, M. J. Optimization of glass composition for the vitrification of nuclear waste at the Savannah River Plant, report, January 1, 1982; United States. (https://digital.library.unt.edu/ark:/67531/metadc1071607/: accessed July 16, 2024), University of North Texas Libraries, UNT Digital Library, https://digital.library.unt.edu; crediting UNT Libraries Government Documents Department.