Get An International Spent Nuclear Fuel Storage Facility: PDF
By Glenn E. Schweitzer and A. Chelsea Sharber, Editors
As a part of a long-standing collaboration on nuclear nonproliferation, the nationwide Academy of Sciences and the Russian Academy of Sciences held a joint workshop in Moscow in 2003 at the medical elements of a global radioactive disposal website in Russia. The passage of Russian legislation allowing the importation and garage of high-level radioactive fabric (primarily spent nuclear gasoline from reactors) has engendered curiosity from a few international governments, together with the united states, in exploring the potential for shifting fabric to Russia on a brief or everlasting foundation. The workshop concerned with the environmental features of the overall situation and features of a potential garage website, transportation to and in the website, boxes for transportation and garage, stock and responsibility, audits and inspections, and dealing with applied sciences.
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Additional info for An International Spent Nuclear Fuel Storage Facility: Exploring a Russian Site As a Prototype
Let us recall that the share of electricity produced by the nuclear power sector now totals 16 percent, and the majority of representatives of this industry express optimistic views regarding the long-term prospects for its development. It is noted that no substantial growth should be anticipated in the next 10–20 years. The most typical view is as follows: Hydrocarbon fuel will serve as the main source of energy in the coming decades because the entire current world infrastructure for energy production and consumption is based on this type of fuel.
I will try to provide one answer to this question later in this paper. Russia has created its Strategy for the Development of Nuclear Power in the First Half of the Twenty-First Century, the basic elements of which include the doubling of energy output and the formation of a closed nuclear fuel cycle. As a result, we must ensure fuller utilization of natural fissionable materials as well as those created during reactor operations, minimize the volume of radioactive wastes, and promote nuclear and radiation nonproliferation.
December 2002. would not be needed. With no reprocessing, a second repository is estimated to cost $35 billion. The total savings for disposal from separation of uranium and transmutation is estimated at about $53 billion. In addition to the significant cost savings for the first repository and the elimination of the need for a second repository, uranium separation and transmutation could serve the worthwhile goal of reducing the time required for the radiotoxicity of the waste in the repository to settle to the level of natural uranium, and this reduction would be from about 300,000 years to several hundred years, as shown in Figure 4.
An International Spent Nuclear Fuel Storage Facility: Exploring a Russian Site As a Prototype by Glenn E. Schweitzer and A. Chelsea Sharber, Editors