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Optimization of disposal method and scenario to Reduce High Level Waste Volume and Repository Footprint for HTGR

Article ID Journal Published Year Pages File Type
8067053 Annals of Nuclear Energy 2018 11 Pages PDF
Abstract
Moreover, by employing four-group partitioning technology without transmutation, the footprint can be reduced by 90% with a cooling time of 150 years.
Keywords
HTGRHLWFootprintHigh burn-up
Related Topics
Physical Sciences and Engineering Energy Energy Engineering and Power Technology
Preview
Optimization of disposal method and scenario to Reduce High Level Waste Volume and Repository Footprint for HTGR
Authors
Yuji Fukaya, Minoru Goto, Hirofumi Ohashi, Tetsuo Nishihara, Yasuhiro Tsubata, Tatsuro Matsumura,
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Journal
Annals of Nuclear Energy
Journal: Annals of Nuclear Energy
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High burn-up
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