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http://dx.doi.org/10.5516/NET.2008.40.6.517

SFR DEPLOYMENT STRATEGY FOR THE RE-USE OF SPENT FUEL IN KOREA  

Kim, Young-In (Korea Atomic Energy Research Institute)
Hong, Ser-Ghi (Korea Atomic Energy Research Institute)
Hahn, Do-Hee (Korea Atomic Energy Research Institute)
Publication Information
Nuclear Engineering and Technology / v.40, no.6, 2008 , pp. 517-526 More about this Journal
Abstract
The widespread concern regarding the management of spent fuel that mainly contributes to nuclear waste has led to the development of the sodium-cooled fast reactor (SFR) as one of the most promising future types of reactors at both national and international levels. Various reactor deployment scenarios with SFR introductions with different conversion ratios in the existing PWR-dominant nuclear fleet have been assessed to optimize the SFR deployment strategy to replace PWRs with the view toward a reduction in the level of spent fuel as well as efficient uranium utilization through its reuse in a closed fuel cycle. An efficient reactor deployment strategy with the SFR introduction starting in 2040 has been drawn based on an SFR deployment strategy in which burners are deployed prior to breakeven reactors to reduce the amount of PWR spent fuel substantially at the early deployment stage. The PWR spent fuel disposal is reduced in this way by 98% and the cumulative uranium demand for PWRs to 2100 is projected to be 445 ktU, implying a uranium savings of 115 ktU. The SFR mix ratio in the nuclear fleet near the year 2100 is estimated to be approximately 35-40%. PWRs will remain as a main power reactor type until 2100 and SFRs will support waste minimization and fuel utilization.
Keywords
Sodium cooled Fast Reactor; Burner; Breakeven Reactor; Spent Fuel;
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