Yomogida Takumi, Ouchi Kazuki, Oka Toshitaka, Kitatsuji Yoshihiro, Koma Yoshikazu, Konno Katuhiro
Nuclear Science and Engineering Center, Japan Atomic Energy Agency, Ibaraki, 319-1195, Japan.
Collaborative Laboratories for Advanced Decommissioning Science (CLADS), Japan Atomic Energy Agency, Ibaraki, 319-1194, Japan.
Sci Rep. 2022 May 16;12(1):7191. doi: 10.1038/s41598-022-11334-1.
Particles containing alpha (α) nuclides were identified from sediment in stagnant water in the torus room of the Fukushima Dai-ichi Nuclear Power Station(FDiNPS)'s Unit 2 reactor. We analyzed uranium (U), which is the main component of nuclear fuel, using scanning electron microscopy (SEM). Other α-nuclides (plutonium [Pu], americium [Am], and curium [Cm]) were detected by alpha track detection and the morphology of particles with α-nuclides were analyzed by SEM-energy dispersive X-Ray (EDX) analysis. Several uranium-bearing particles ranging from sub-µm to several µm in size were identified by SEM observation. These particles contained zirconium (Zr) and other elements which constituted fuel cladding and structural materials. The U/U isotope ratio in the solid fractions that included U particles was consistent with what was found for the nuclear fuel in the Unit 2 reactor. This indicated that the U of similar fuel composition had made finer. The α-nuclide-containing particles identified by alpha track analysis were several tens to several hundred µm in size. The EDX spectra showed that these particles mainly comprised iron (Fe). Since the amount of α-nuclide material was very small, Pu, Am, and Cm were adsorbed on the Fe particles. This study clarifies that the major morphologies of U and other α-nuclides in the sediment of stagnant water in the torus room of FDiNPS's Unit 2 reactor differed.
在福岛第一核电站2号机组反应堆环形室的滞水中,从沉积物中识别出了含有α核素的颗粒。我们使用扫描电子显微镜(SEM)分析了核燃料的主要成分铀(U)。通过α径迹检测法检测了其他α核素(钚[Pu]、镅[Am]和锔[Cm]),并通过SEM-能量色散X射线(EDX)分析对含有α核素的颗粒形态进行了分析。通过SEM观察识别出了几个尺寸范围从亚微米到几微米的含铀颗粒。这些颗粒含有锆(Zr)和构成燃料包壳及结构材料的其他元素。包含铀颗粒的固体部分中的U/U同位素比率与2号机组反应堆中核燃料的情况一致。这表明具有相似燃料成分的铀已经细化。通过α径迹分析识别出的含α核素颗粒尺寸为几十到几百微米。EDX光谱显示这些颗粒主要由铁(Fe)组成。由于α核素物质的量非常少,钚、镅和锔被吸附在了铁颗粒上。这项研究阐明了福岛第一核电站2号机组反应堆环形室滞水沉积物中铀和其他α核素的主要形态有所不同。