Laboratoire des Sciences Du Climat et de L'Environnement, LSCE/IPSL, UMR 8212 (CEA-CNRS-UVSQ), Université Paris-Saclay, F-91198, Gif-sur-Yvette Cedex, France.
CEA, DAM, DIF, F-91297, Arpajon, France.
Chemosphere. 2019 Jun;225:849-858. doi: 10.1016/j.chemosphere.2019.03.064. Epub 2019 Mar 15.
The Fukushima Dai-ichi Nuclear Power Plant (FDNPP) accident in Japan resulted in a major release of radionuclides into the environment. Compared to other radionuclides, few studies have investigated the fate of actinides in the environment. Accordingly, this research investigates the Pu composition in soil samples collected in paddy fields before and after the accident. Furthermore, the vertical distributions of Pu and U isotopic signatures, along with Cs activities, were measured in a sediment core collected in the Mano Dam reservoir, in the Fukushima Prefecture. Changes in the relative contributions of the major actinide sources (global fallout or FDNPP derived fallout) were investigated in sediment deposited in the reservoir. The distinct peak observed for all Pu isotope ratios (Pu/Pu, Pu/Pu and Pu/Pu) and for Cs concentrations in the sediment core was attributed to the Fukushima fallout, and coincided with the maximum atomic contribution of only 4.8 ± 1.0% of Pu from the FDNPP. Furthermore, U/U ratios measured in the sediment core remained close to the global fallout signature indicating there was likely no U from the FDNPP accident detected in the sediment core. More research is required on the environmental dynamics of trace actinides in landscapes closer to the FDNPP where there are likely to be greater abundances of FDNPP-derived Pu and U.
日本福岛第一核电站(FDNPP)事故导致大量放射性核素释放到环境中。与其他放射性核素相比,很少有研究调查锕系元素在环境中的归宿。因此,本研究调查了福岛县丸坝水库采集的稻田土壤样品中 Pu 的组成。此外,还测量了取自该水库的沉积岩心样品中 Pu 和 U 同位素特征以及 Cs 活度的垂直分布。研究了在水库沉积的沉积物中主要锕系元素(全球沉降或 FDNPP 衍生沉降)源的相对贡献变化。沉积岩心样品中所有 Pu 同位素比值(Pu/Pu、Pu/Pu 和 Pu/Pu)和 Cs 浓度的明显峰值归因于福岛沉降,与仅来自 FDNPP 的 Pu 原子贡献最大值 4.8 ± 1.0% 相吻合。此外,沉积岩心样品中测量的 U/U 比值接近全球沉降特征,表明在沉积岩心样品中可能未检测到来自 FDNPP 事故的 U。在距离 FDNPP 更近的景观中,需要对痕量锕系元素的环境动态进行更多研究,因为那里可能有更多来自 FDNPP 的 Pu 和 U。