mellinger's An International Spent Nuclear Fuel Storage Facility PDF
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Extra info for An International Spent Nuclear Fuel Storage Facility Exploring a Russian Site as a Prototype
Department of Energy, Office of Civilian Radioactive Waste Management, October 1999, pp. 1–4. Theoretical Capacity of Yucca Mountain 120,000 Retain Current Nuclear Energy Capacity Yucca Mountain Statutory Capacity 90,000 60,000 2015 Reduces Technical Need For 2nd Repository Impact of AFCI Technology 30,000 0 1980 2000 2020 2040 Year FIGURE 3 Civilian spent fuel accumulation in the United States both with and without transmutation and uranium separation under the AFCI Program. S. Department of Energy.
All rights reserved. html HANDLING SPENT NUCLEAR FUEL 21 severe environmental restrictions will lead in turn to sharp price competition and corresponding instability. It is nuclear power, with its greater fuel resources using existing technologies, that may be able to stabilize the energy sector in the twenty-first century on an environmentally safe basis. The competitive advantages of this type of energy production are commonly known. Here I would like to focus on history, however: specifically those very joyous predictions that were made with regard to the rates of development of the nuclear energy sector in the 1960s.
Department of Energy. Report to Congress on Advanced Fuel Cycle Initiative: The Future Path for Advanced Spent Fuel Treatment and Transmutation Research. S. Department of Energy, 2003, pp. I-3, II-4. Copyright © National Academy of Sciences. All rights reserved. S. 0 SOURCE: James Laidler. Development of Separations Technologies Under the Advanced Fuel Cycle Initiative. Report to the ANTT Subcommittee. December 2002. 1 10 100 1,000 10,000 100,000 1,000,000 Time (years) <1000 Years 300,000 Years FIGURE 4 Radiotoxicity relative to natural uranium versus time, with and without uranium separation and transmutation.
An International Spent Nuclear Fuel Storage Facility Exploring a Russian Site as a Prototype by mellinger