This study compiles and evaluates data from many sources to expand a base of data from which to estimate the activity concentrations and volumes of greater-than-Class C low-level waste that the Department of Energy will receive from the commercial power industry. Sources of these data include measurements of irradiated hardware made by or for the utilities that was classified for disposal in commercial burial sites, measurements of neutron flux in the appropriate regions of the reactor pressure vessel, analyses of elemental constituents of the particular structural material used for the components, and the activation analysis calculations done for hardware. Evaluations include results and assumptions in the activation analyses. Sections of ...
Sealed sources are small, relatively high-activity radioactive sources typically encapsulated in a m...
This appendix includes a four-page Physical Description report for each assembly type identified fro...
This document represents the final report of an ongoing study to provide radiological characterizati...
Mixed greater-than-Class C low-level radioactive waste (mixed GTCC LLW) is waste that combines two c...
This study identifies four categories of GTCC LLW: nuclear utility; sealed sources; DOE-held; and ot...
By the late 1980s, it was apparent that there was little support for any of the volume projections o...
This report evaluates the effects of concentration averaging practices on the disposal of greater-th...
This report develops and presents estimates for a set of three values that represent a reasonable ra...
Planning for the storage or disposal of greater-than-Class C low-level radioactive waste (GTCC LLW) ...
This study provides a quantitative framework for bounding unpackaged greater-than-Class C low-level ...
This report estimates packaging factors for several waste types that are potential greater-than-Clas...
The Greater-Than-Class C Nuclear Utility Projections System (GNUPS) was developed as a database for ...
Sealed sources are small, relatively high-activity radioactive sources typically encapsulated in a m...
This study describes the use of the Monte Carlo Neutron-Photon (MCNP) code for determining activatio...
This report provides brief profiles for 26 low-level and high-level waste treatment capabilities ava...
Sealed sources are small, relatively high-activity radioactive sources typically encapsulated in a m...
This appendix includes a four-page Physical Description report for each assembly type identified fro...
This document represents the final report of an ongoing study to provide radiological characterizati...
Mixed greater-than-Class C low-level radioactive waste (mixed GTCC LLW) is waste that combines two c...
This study identifies four categories of GTCC LLW: nuclear utility; sealed sources; DOE-held; and ot...
By the late 1980s, it was apparent that there was little support for any of the volume projections o...
This report evaluates the effects of concentration averaging practices on the disposal of greater-th...
This report develops and presents estimates for a set of three values that represent a reasonable ra...
Planning for the storage or disposal of greater-than-Class C low-level radioactive waste (GTCC LLW) ...
This study provides a quantitative framework for bounding unpackaged greater-than-Class C low-level ...
This report estimates packaging factors for several waste types that are potential greater-than-Clas...
The Greater-Than-Class C Nuclear Utility Projections System (GNUPS) was developed as a database for ...
Sealed sources are small, relatively high-activity radioactive sources typically encapsulated in a m...
This study describes the use of the Monte Carlo Neutron-Photon (MCNP) code for determining activatio...
This report provides brief profiles for 26 low-level and high-level waste treatment capabilities ava...
Sealed sources are small, relatively high-activity radioactive sources typically encapsulated in a m...
This appendix includes a four-page Physical Description report for each assembly type identified fro...
This document represents the final report of an ongoing study to provide radiological characterizati...