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長谷 竹晃; 小菅 義広*; 相楽 洋*; 中岫 翔; 能見 貴佳; 奥村 啓介
Progress in Nuclear Science and Technology (Internet), 7, p.41 - 46, 2025/03
This paper provides an overview of plutonium quantification in irradiated fuel including fuel debris at the Fukushima Daiichi Nuclear Power Plants, named Dual Time Measurement (DTM) method. Spontaneous fission nuclides in irradiated fuel decrease exponentially with the passage of time according to the mainly half-life of Cm-244 (half-life of about 18.11 years). By measuring neutrons two times with long time intervals, Pu-240 effective mass (half-life of about 6,500 years) and Cm-244 mass can be quantified. Pu mass can be quantified by utilizing the correlation between ratio of Cm-244/ Pu-240 effective mass and Pu/ Pu-240 effective mass. The applicability of DTM method was evaluated numerically. The results show that long time interval was required to reduce the random errors. In the case that the interval between the first and second measurements is 32 years, Pu-240 effective mass and Pu can be quantified with uncertainties of 10-50% depending on the presence of water in storage canister and the burnup condition of irradiated fuel including the mixture of several burnup compositions in fuel debris.
長谷 竹晃; 相楽 洋*; 小菅 義広*; 中岫 翔; 能見 貴佳; 奥村 啓介
第43回日本核物質管理学会年次大会会議論文集(インターネット), 3 Pages, 2022/11
Neutrons emitted from fuel debris are dominated by Cm-244, and plutonium cannot be quantified only by nondestructive measurements based on the neutron measurements. In this paper, focusing on the difference in half-lives of Cm-244 and plutonium, we devised a method to quantify the Pu-240 effective mass in fuel debris by measuring it two times and evaluated numerically its applicability. As the results, it was confirmed that long time interval, more than five years, will be required to evaluate the Pu-240 effective mass accurately. It was also confirmed that for fuel debris with high burnup, the Pu-240 effective mass will be overestimated by Cm-246, and we devised a method to correct for this.