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Caesium-rich micro-particles: A window into the meltdown events at the Fukushima Daiichi Nuclear Power Plant

机译:富含铯的微粒:福岛第一核电站发生融化事件的窗口

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摘要

The nuclear disaster at the Fukushima Daiichi Nuclear Power Plant (FDNPP) in March 2011 caused partial meltdowns of three reactors. During the meltdowns, a type of condensed particle, a caesium-rich micro-particle (CsMP), formed inside the reactors via unknown processes. Here we report the chemical and physical processes of CsMP formation inside the reactors during the meltdowns based on atomic-resolution electron microscopy of CsMPs discovered near the FDNPP. All of the CsMPs (with sizes of 2.0–3.4 μm) comprise SiO2 glass matrices and ~10-nm-sized Zn–Fe-oxide nanoparticles associated with a wide range of Cs concentrations (1.1–19 wt% Cs as Cs2O). Trace amounts of U are also associated with the Zn–Fe oxides. The nano-texture in the CsMPs records multiple reaction-process steps during meltdown in the severe FDNPP accident: Melted fuel (molten core)-concrete interactions (MCCIs), incorporating various airborne fission product nanoparticles, including CsOH and CsCl, proceeded via SiO2 condensation over aggregates of Zn-Fe oxide nanoparticles originating from the failure of the reactor pressure vessels. Still, CsMPs provide a mechanism by which volatile and low-volatility radionuclides such as U can reach the environment and should be considered in the migration model of Cs and radionuclides in the current environment surrounding the FDNPP.
机译:2011年3月,福岛第一核电站(FDNPP)发生核灾难,导致三个反应堆部分熔化。在熔化过程中,通过未知过程在反应器内部形成了一种冷凝颗粒,一种富铯微粒(CsMP)。在这里,我们根据在FDNPP附近发现的CsMP的原子分辨率电子显微镜,报告了在熔化期间反应堆内部CsMP形成的化学和物理过程。所有的CsMP(尺寸为2.0–3.4μm)均包含SiO2玻璃基质和约10nm大小的Zn-Fe氧化物纳米颗粒,且与多种Cs浓度相关(Cs2O为1.1–19%wt%Cs)。痕量的U也与Zn-Fe氧化物有关。 CsMPs中的纳米结构记录了严重FDNPP事故在融化过程中的多个反应过程步骤:熔化的燃料(熔融核)-混凝土相互作用(MCCI),结合了各种空气传播的裂变产物纳米颗粒,包括CsOH和CsCl,通过SiO2缩合进行Zn-Fe氧化物纳米颗粒的聚集体起因于反应堆压力容器的故障。尽管如此,CsMP提供了一种机制,通过该机制,挥发性和低挥发性放射性核素(例如U)可以到达环境,并且应在FDNPP当前环境中的Cs和放射性核素的迁移模型中予以考虑。

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