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Spent Fuel Matrix Degradation and Canister Corrosion: Quantifying the Effect of Hydrogen
Spent Fuel Matrix Degradation and Canister Corrosion: Quantifying the Effect of Hydrogen
Experimental Results for SimFuels
Experimental Results for SimFuels
Electrochemical Experiments Supporting the ANL Oxide Fuel Corrosion Model
Electrochemical Experiments Supporting the ANL Oxide Fuel Corrosion Model
Report on In-situ and Electrochemical Work for Model Validation
Report on In-situ and Electrochemical Work for Model Validation
In-Situ Electrochemical Testing of Uranium Oxide Alteration under Anoxic Conditions
In-Situ Electrochemical Testing of Uranium Oxide Alteration under Anoxic Conditions
Waste Form Degradation Model Status Report: Electrochemical Model for Used Fuel Matrix Degradation Rate
Waste Form Degradation Model Status Report: Electrochemical Model for Used Fuel Matrix Degradation Rate
Addition of Bromide to Radiolysis Model Formulation for Integration with the Mixed Potential Model
Addition of Bromide to Radiolysis Model Formulation for Integration with the Mixed Potential Model
Spent Fuel Matrix Spent Fuel Matrix Degradation and Canister Corrosion: Quantifying the Effect of Hydrogen on Radionuclide Source Term
Spent Fuel Matrix Spent Fuel Matrix Degradation and Canister Corrosion: Quantifying the Effect of Hydrogen on Radionuclide Source Term
In-Situ Electrochemical Testing of Uranium Oxide Alteration under Anoxic Conditions
In-Situ Electrochemical Testing of Uranium Oxide Alteration under Anoxic Conditions
Waste Form Degradation and Radionuclide Mobilization: Progress Report
Waste Form Degradation and Radionuclide Mobilization: Progress Report
Section 180(c) Proposed Policy Implementation Exercise: Lessons Learned?
Section 180(c) Proposed Policy Implementation Exercise: Lessons Learned?
RADTRAN 6/RadCat 6 User Guide, Rev 2
RADTRAN 6/RadCat 6 User Guide, Rev 2
RADTRAN 6 Technical Manual
RADTRAN 6 Technical Manual
Full-Scale Accident Testing in Support of Spent Nuclear Fuel Transportation
Full-Scale Accident Testing in Support of Spent Nuclear Fuel Transportation
Transportation Planning: Indigenous Dialogue
Transportation Planning: Indigenous Dialogue
In 2019, the NWMO commissioned Maawandoon Inc to lead Indigenous Dialogue session to support NWMO’s transportation planning for the long-term care of Canada’s used nuclear fuel. This research built upon and complemented public attitude research carried out in 2017 and 2018. The research methodology consisted of 7 Indigenous dialogue sessions and attendance at 3 Indigenous Annual General Assemblies (AGA)/meetings with dialogue components.
Views and Attitudes toward Nuclear Waste: National Survey Final Report
Views and Attitudes toward Nuclear Waste: National Survey Final Report
In 2002, the federal government passed a law to create the Nuclear Waste Management Organization, also known by its initials NWMO. The Nuclear Waste Management Organization (NWMO) was established by Ontario Power Generation Inc., Hydro-Québec and New Brunswick Power Corporation in accordance with the Nuclear Fuel Waste Act (NFWA) to assume responsibility for the long-term management of Canada’s used nuclear fuel. More specifically, the NWMO’s initial objective was to recommend a long-term approach for managing used nuclear fuel produced by Canada’s electricity generators.
EQ6 Calculations for Chemical Degradation of PWR LEU and PWR MOX Spent Fuel Waste Packages
EQ6 Calculations for Chemical Degradation of PWR LEU and PWR MOX Spent Fuel Waste Packages
Probabilistic External Criticality Evaluation
Probabilistic External Criticality Evaluation
Survey of National Programs for Managing High-Level Radioactive Waste and Spent Nuclear Fuel: 2022 Update
Survey of National Programs for Managing High-Level Radioactive Waste and Spent Nuclear Fuel: 2022 Update
In October 2009, the U.S. Nuclear Waste Technical Review Board (Board or NWTRB) published Survey of National Programs for Managing High-Level Radioactive Waste and Spent Nuclear Fuel. For each of the 13 national programs studied, the report catalogued 15 institutional arrangements that had been set in place and 15 technical approaches that had been taken to design repository systems for the long-term management of high-activity radioactive waste.