Department of Chemistry , Kyushu University , 744 Motooka , Nishi-ku, Fukuoka 819-0395 , Japan.
Faculty of Pure and Applied Sciences and Center for Research in Isotopes and Environmental Dynamics , University of Tsukuba , 1-1-1 Tennodai , Tsukuba , Ibaraki 305-8577 , Japan.
Environ Sci Technol. 2018 Mar 6;52(5):2586-2594. doi: 10.1021/acs.est.7b06309. Epub 2018 Feb 13.
Trace U was released from the Fukushima Daiichi Nuclear Power Plant (FDNPP) during the meltdowns, but the speciation of the released components of the nuclear fuel remains unknown. We report, for the first time, the atomic-scale characteristics of nanofragments of the nuclear fuels that were released from the FDNPP into the environment. Nanofragments of an intrinsic U-phase were discovered to be closely associated with radioactive cesium-rich microparticles (CsMPs) in paddy soils collected ∼4 km from the FDNPP. The nanoscale fuel fragments were either encapsulated by or attached to CsMPs and occurred in two different forms: (i) UO nanocrystals of ∼70 nm size, which are embedded into magnetite associated with Tc and Mo on the surface and (ii) Isometric (U,Zr)O nanocrystals of ∼200 nm size, with the U/(U+Zr) molar ratio ranging from 0.14 to 0.91, with intrinsic pores (∼6 nm), indicating the entrapment of vapors or fission-product gases during crystallization. These results document the heterogeneous physical and chemical properties of debris at the nanoscale, which is a mixture of melted fuel and reactor materials, reflecting the complex thermal processes within the FDNPP reactor during meltdown. Still CsMPs are an important medium for the transport of debris fragments into the environment in a respirable form.
在福岛第一核电站(FDNPP)熔毁期间,痕量 U 被释放出来,但核燃料释放成分的形态仍不清楚。我们首次报告了从 FDNPP 释放到环境中的核燃料纳米碎片的原子尺度特征。在距离 FDNPP 约 4 公里的稻田土壤中发现,与放射性铯富有的微粒(CsMPs)密切相关的固有 U 相纳米碎片。纳米级燃料碎片被 CsMPs 包裹或附着,有两种不同的形式:(i)嵌入到与表面上的 Tc 和 Mo 相关的磁铁矿中的约 70nm 大小的 UO 纳米晶体,以及(ii)等轴(U,Zr)O 纳米晶体,大小约为 200nm,U/(U+Zr)摩尔比在 0.14 到 0.91 之间,具有固有孔(约 6nm),表明在结晶过程中捕获了蒸气或裂变产物气体。这些结果记录了在纳米尺度上碎片的非均相物理和化学性质,这是熔融燃料和反应堆材料的混合物,反映了熔毁期间 FDNPP 反应堆内的复杂热过程。尽管如此,CsMPs 仍然是将碎片以可吸入形式输送到环境中的重要介质。