Formation of proliferation-resistant nuclear fuel supplies based on reprocessed uranium for Russian nuclear technologies recipient countries

The paper presents different strategies for the conversion of VVER-1000 reactors to reprocessed uranium fuel for estimating the time required to form a proliferation-resistant VVER-1000 fuel load based on uranium extracted from spent fuel of reactors of the same type cleared of minor actinides and f...

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Published inNuclear energy and technology Vol. 1; no. 2; pp. 111 - 116
Main Authors Fedorov, M.I., Dyachenko, A.I., Balagurov, N.A., Artisyuk, V.V.
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.10.2015
National Research Nuclear University (MEPhI)
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Abstract The paper presents different strategies for the conversion of VVER-1000 reactors to reprocessed uranium fuel for estimating the time required to form a proliferation-resistant VVER-1000 fuel load based on uranium extracted from spent fuel of reactors of the same type cleared of minor actinides and fission products. It has been shown that the change in the proliferation resistance status of generated plutonium in the VVER-1000 spent nuclear fuel is achieved by denaturation of plutonium through the increase in the concentration of 238Pu plutonium isotope in irradiated fuel. The initial presence of 236U uranium isotope in fresh uranium fuel of the VVER-1000 reactor has been shown to have an effect on the accumulation of 238Pu, a key isotope in the context of the barrier against unauthorized proliferation. Saving of uranium resources has been additionally analyzed for the considered strategies to convert VVER-1000 reactors to reprocessed uranium fuel for the purpose of improving the resource base of NPPs in Russia and recipient countries.
AbstractList The paper presents different strategies for the conversion of VVER-1000 reactors to reprocessed uranium fuel for estimating the time required to form a proliferation-resistant VVER-1000 fuel load based on uranium extracted from spent fuel of reactors of the same type cleared of minor actinides and fission products. It has been shown that the change in the proliferation resistance status of generated plutonium in the VVER-1000 spent nuclear fuel is achieved by denaturation of plutonium through the increase in the concentration of 238Pu plutonium isotope in irradiated fuel. The initial presence of 236U uranium isotope in fresh uranium fuel of the VVER-1000 reactor has been shown to have an effect on the accumulation of 238Pu, a key isotope in the context of the barrier against unauthorized proliferation. Saving of uranium resources has been additionally analyzed for the considered strategies to convert VVER-1000 reactors to reprocessed uranium fuel for the purpose of improving the resource base of NPPs in Russia and recipient countries.
Author Artisyuk, V.V.
Dyachenko, A.I.
Balagurov, N.A.
Fedorov, M.I.
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10.13182/NSE07-A2644
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Issue 2
Keywords VVER-1000
resources saving
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reprocessed uranium
spent nuclear fuel
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SubjectTerms burnup
reprocessed uranium
resources saving
spent nuclear fuel
VVER-1000
Title Formation of proliferation-resistant nuclear fuel supplies based on reprocessed uranium for Russian nuclear technologies recipient countries
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