This report completes a technical evaluation of decommissioning planning for the former Molten Salt Reactor Experiment, which was shut down in December, 1969. The key issues revolve around the treatment and disposal of some five tons of solid fuel salt which contains over 30 kg of fissionable uranium-233 plus fission products and higher actinides. The chemistry of this material is complicated by the formation of elemental fluorine via a radiolysis reaction under certain conditions. Supporting studies carried out as part of this evaluation include (a) a broad scope analysis of possible options for storage/disposal of the salts, (b) calculation of nuclide decay in future years, (c) technical evaluation of the containment facility and hot cell...
Considering the necessity of the development of methods to reduce the burden of storage and disposal...
(MSR) is a design of an advanced reactor system from the GEN IV family working in thermal or epither...
In 1994, migration of {sup 233}U was discovered to have occurred at the Molten Salt Reactor Experime...
During FY 1995 considerable progress was made toward gaining a better understanding of the chemistry...
The Molten Salt Reactor Experiment (MSRE) site is located in Tennessee, on the U.S. Department of En...
The Molten Salt Reactor Experiment (MSRE) is an 8 MW reactor that was operated at Oak Ridge National...
This paper presents the results of a preliminary criticality safety study of some potential effects ...
The Molten Salt Reactor Experiment was operated in the sixties at Oak Ridge National Laboratory to t...
In its 70-year history, Idaho National Laboratory has pioneered significant nuclear advancements and...
The Molten Salt Reactor Experiment (MSRE) was operated at Oak Ridge National Laboratory (ORNL) from ...
This evaluation was performed by Pro2Serve in accordance with the Technical Specification for an Eng...
This report was prepared to identify the source documentation used to evaluate the drain tanks in th...
The remediation of the Molten Salt Reactor Experiment (MSRE) site includes the removal of about 37 k...
The Molten Salt Reactor Experiment Facility (MSRE) operated from 1965 to 1969. The fuel was a molten...
The remediation of the Molten Salt Reactor Experiment (MSRE) site includes the removal of about 37 k...
Considering the necessity of the development of methods to reduce the burden of storage and disposal...
(MSR) is a design of an advanced reactor system from the GEN IV family working in thermal or epither...
In 1994, migration of {sup 233}U was discovered to have occurred at the Molten Salt Reactor Experime...
During FY 1995 considerable progress was made toward gaining a better understanding of the chemistry...
The Molten Salt Reactor Experiment (MSRE) site is located in Tennessee, on the U.S. Department of En...
The Molten Salt Reactor Experiment (MSRE) is an 8 MW reactor that was operated at Oak Ridge National...
This paper presents the results of a preliminary criticality safety study of some potential effects ...
The Molten Salt Reactor Experiment was operated in the sixties at Oak Ridge National Laboratory to t...
In its 70-year history, Idaho National Laboratory has pioneered significant nuclear advancements and...
The Molten Salt Reactor Experiment (MSRE) was operated at Oak Ridge National Laboratory (ORNL) from ...
This evaluation was performed by Pro2Serve in accordance with the Technical Specification for an Eng...
This report was prepared to identify the source documentation used to evaluate the drain tanks in th...
The remediation of the Molten Salt Reactor Experiment (MSRE) site includes the removal of about 37 k...
The Molten Salt Reactor Experiment Facility (MSRE) operated from 1965 to 1969. The fuel was a molten...
The remediation of the Molten Salt Reactor Experiment (MSRE) site includes the removal of about 37 k...
Considering the necessity of the development of methods to reduce the burden of storage and disposal...
(MSR) is a design of an advanced reactor system from the GEN IV family working in thermal or epither...
In 1994, migration of {sup 233}U was discovered to have occurred at the Molten Salt Reactor Experime...