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Galperin, A.; Radkowsky, A.; Todosow, M.
Thorium fuel utilization: Options and trends. Proceedings of three IAEA meetings held in Vienna in 1997, 1998 and 1999
Thorium fuel utilization: Options and trends. Proceedings of three IAEA meetings held in Vienna in 1997, 1998 and 1999
AbstractAbstract
[en] Two important issues may influence the development and public acceptance of the nuclear power worldwide: a reduction of proliferation potential and spent fuel disposal requirements of the nuclear fuel cycle. Both problems may be addressed effectively by replacement of uranium by thorium fertile part of the fuel. A practical and competitive fuel design to satisfy the described design objectives and constraints may be achieved by seed-blanket core, proposed by A. Radkowsky and implemented in Shippingport reactors. The main idea is to separate spatially the uranium part of the core (seed) from the thorium part of the core (blanket), and thus allow two separate fuel management routes for uranium and thorium parts of the fuel. The uranium part (seed) is optimized to supply neutrons to the subcritical thorium blanket. The blanket is designed to generate and bum insitu 233U. (author)
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International Atomic Energy Agency, Vienna (Austria); 375 p; ISBN 92-0-114202-1;
; ISSN 1011-4289;
; Nov 2002; p. 83-96; Advisory group meeting on thorium fuel cycle perspectives; Vienna (Austria); 16-18 Apr 1977; Advisory group meeting on thorium fuel utilization: Options and trends; Vienna (Austria); 28-30 Sep 1998; Technical committee meeting on utilisation of thorium fuel; Vienna (Austria); 15-17 Nov 1999; Options in emerging nuclear energy systems; Vienna (Austria); 15-17 Nov 1999; Also available on-line: http://www-pub.iaea.org/MTCD/publications/PDF/te_1319_web.pdf; 2 refs, 6 figs, 10 tabs


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Report
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Conference
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ACTINIDE NUCLEI, ACTINIDES, ALPHA DECAY RADIOISOTOPES, ELEMENTS, EVEN-ODD NUCLEI, FUEL CYCLE, HEAVY ION DECAY RADIOISOTOPES, HEAVY NUCLEI, ISOTOPES, KINETICS, MANAGEMENT, METALS, NEON 24 DECAY RADIOISOTOPES, NUCLEAR MATERIALS MANAGEMENT, NUCLEI, RADIOISOTOPES, REACTOR COMPONENTS, REACTOR CORES, SPONTANEOUS FISSION RADIOISOTOPES, STORAGE, TRANSURANIUM ELEMENTS, URANIUM ISOTOPES, YEARS LIVING RADIOISOTOPES
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