2012Physics of Atomic NucleiRequires access

Evolution of isotopic composition of reprocessed uranium during the multiple recycling in light water reactors with natural uranium feed

A. Yu. Smirnov, G. A. Sulaberidze, P. N. Alekseev, A. A. Dudnikov, V. A. Nevinitsa, V. N. Proselkov, A. V. Chibinyaev

Open publisher page 15 citations

Abstract

A complex approach based on the consistent modeling of neutron-physics processes and processes of cascade separation of isotopes is applied for analyzing physical problems of the multiple usage of reprocessed uranium in the fuel cycle of light water reactors. A number of scenarios of multiple recycling of reprocessed uranium in light water reactors are considered. In the process, an excess absorption of neutrons by the 236 U isotope is compensated by re-enrichment in the 235 U isotope. Specific consumptions of natural uranium for re-enrichment of the reprocessed uranium depending on the content of the 232 U isotope are obtained.

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A complex approach based on the consistent modeling of neutron-physics processes and processes of cascade separation of isotopes is applied for analyzing physical problems of the multiple usage of reprocessed uranium in the fuel cycle of light water reactors. A number of scenarios of multiple recycling of reprocessed uranium in light water reactors are considered. In the process, an excess absorption of neutrons by the 236 U isotope is compensated by re-enrichment in the 235 U isotope. Specific consumptions of natural uranium for re-enrichment of the reprocessed uranium depending on the content of the 232 U isotope are obtained.

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Available abstract

A complex approach based on the consistent modeling of neutron-physics processes and processes of cascade separation of isotopes is applied for analyzing physical problems of the multiple usage of reprocessed uranium in the fuel cycle of light water reactors. A number of scenarios of multiple recycling of reprocessed uranium in light water reactors are considered. In the process, an excess absorption of neutrons by the 236 U isotope is compensated by re-enrichment in the 235 U isotope. Specific consumptions of natural uranium for re-enrichment of the reprocessed uranium depending on the content of the 232 U isotope are obtained.

Key concepts: Uranium, Natural uranium, Isotopes of uranium, Enriched uranium, Isotope, Isotope separation, Cascade, Uranium-238

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