Actions for Long-term uncertainty in radiological performance assessments of low-level waste facilities at Savannah River Site [electronic resource].
Long-term uncertainty in radiological performance assessments of low-level waste facilities at Savannah River Site [electronic resource].
- Published
- Washington, D.C. : United States. Dept. of Energy, 1991.
Oak Ridge, Tenn. : Distributed by the Office of Scientific and Technical Information, U.S. Dept. of Energy. - Physical Description
- Pages: (5 pages) : digital, PDF file
- Additional Creators
- Oak Ridge National Laboratory, United States. Department of Energy, and United States. Department of Energy. Office of Scientific and Technical Information
Access Online
- Restrictions on Access
- Free-to-read Unrestricted online access
- Summary
- Radiological performance assessments are being conducted for the Saltstone Disposal Facility and the E-Area Vaults at the Savannah River Site near Aiken, South Carolina. Saltstone is a solidified waste form which will contain very low levels of radionuclides but considerable levels of nitrate. The E-Area Vaults will contain solid, radioactively contaminated waste. Preliminary results of the assessments indicate that adequate performance will be very sensitive to the degradation scenario adopted for the cover and containment systems for these facilities. 2 refs.
- Report Numbers
- E 1.99:conf-920501-2
conf-920501-2 - Subject(s)
- Other Subject(s)
- Performance
- Forecasting
- Radioactive Waste Facilities
- Barium 137
- Biointrusion
- Carbon 14.
- Cesium 137
- Cobalt 60.
- Containment Systems
- Ground Cover
- Iodine 129
- Low-Level Radioactive Wastes
- Manganese 54.
- Nickel 63.
- Nitrates
- Radioactive Waste Disposal
- Rhodium 106
- Risk Assessment
- Ruthenium 106
- Savannah River Plant
- Selenium 75.
- Strontium 90.
- Technetium 99.
- Tritium
- Waste Forms
- Water Influx
- Yttrium 90.
- Zinc 65.
- Alkali Metal Isotopes
- Alkaline Earth Isotopes
- Barium Isotopes
- Beta Decay Radioisotopes
- Beta-Minus Decay Radioisotopes
- Beta-Plus Decay Radioisotopes
- Carbon Isotopes
- Cesium Isotopes
- Cobalt Isotopes
- Containment
- Days Living Radioisotopes
- Electron Capture Radioisotopes
- Engineered Safety Systems
- Even-Even Nuclei
- Even-Odd Nuclei
- Hours Living Radioisotopes
- Hydrogen Isotopes
- Intermediate Mass Nuclei
- Internal Conversion Radioisotopes
- Iodine Isotopes
- Isomeric Transition Isotopes
- Isotopes
- Light Nuclei
- Management
- Manganese Isotopes
- Materials
- Minutes Living Radioisotopes
- National Organizations
- Nickel Isotopes
- Nitrogen Compounds
- Nuclear Facilities
- Nuclei
- Odd-Even Nuclei
- Odd-Odd Nuclei
- Oxygen Compounds
- Radioactive Materials
- Radioactive Waste Management
- Radioactive Wastes
- Radioisotopes
- Rhodium Isotopes
- Ruthenium Isotopes
- Seconds Living Radioisotopes
- Selenium Isotopes
- Stable Isotopes
- Strontium Isotopes
- Technetium Isotopes
- Us Aec
- Us Doe
- Us Erda
- Us Organizations
- Waste Disposal
- Waste Management
- Wastes
- Years Living Radioi
- Years Living Radioisot
- Years Living Radioisotopes
- Yttrium Isotopes
- Zinc Isotopes
- Note
- Published through SciTech Connect.
01/01/1991.
"conf-920501-2"
"DE92002803"
8. international Radiation Protection Association conference, Montreal (Canada), 17-22 May 1992.
McDowell-Boyer, L.M. - Funding Information
- AC05-84OR21400
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