An economic analysis has been performed to compare four nuclear fuel cycle options: a once-through cycle (OT), DUPIC recycling, thermal recycling using MOX fuel in a pressurized water reactor (PWR-MOX), and sodium fast reactor recycling employing pyroprocessing (Pyro-SFR). This comparison was made to suggest an economic competitive fuel cycle for the Republic of Korea. The fuel cycle cost (FCC) has been calculated based on the equilibrium material flows integrated with the unit cost of the fuel cycle components. The levelized fuel cycle costs (LFCC) have been derived in terms of mills/kWh for a fair comparison among the FCCs, and the results are as follows: OT 7.35 mills/kWh, DUPIC 9.06 mills/kWh, PUREX-MOX 8.94 mills/kWh, and Pyro-SFR 7.70 mills/kWh. Due to unavoidable uncertainties, a cost range has been applied to each unit cost, and an uncertainty study has been performed accordingly. A sensitivity analysis has also been carried out to obtain the break-even uranium price (215$/kgU) for the Pyro-SFR against the OT, which demonstrates that the deployment of the Pyro-SFR may be economical in the foreseeable future. The influence of pyrotechniques on the LFCC has also been studied to determine at which level the potential advantages of Pyro-SFR can be realized.
[1]
Won Il Ko,et al.
Nuclear fuel cycle cost analysis using a probabilistic simulation technique
,
1998
.
[2]
David Shropshire,et al.
Dynamic Systems Analysis Report for Nuclear Fuel Recycle
,
2008
.
[3]
Steve Fetter,et al.
The Economics of Reprocessing versus Direct Disposal of Spent Nuclear Fuel
,
2005
.
[4]
Won Il Ko,et al.
Comparative study of different nuclear fuel cycle options: Quantitative analysis on material flow
,
2011
.
[5]
Myung Seung Yang,et al.
Economic Analysis on Direct Use of Spent Pressurized Water Reactor Fuel in CANDU Reactors—I: DUPIC Fuel Fabrication Cost
,
2001
.
[6]
N Zarimpas,et al.
A review of the OECD/NEA study on the economics of the nuclear fuel cycle
,
1994
.
[7]
Aaas News,et al.
Book Reviews
,
1893,
Buffalo Medical and Surgical Journal.
[8]
P. M. S. Jones,et al.
The economics of the nuclear fuel cycle
,
1989
.
[9]
David Shropshire,et al.
Advanced Fuel Cycle Cost Basis
,
2007
.
[11]
Tadashi Inoue,et al.
Actinide recycling by pyro-process with metal fuel FBR for future nuclear fuel cycle system
,
2002
.