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Loss of radioactivity in radiocesium-bearing microparticles emitted from the Fukushima Dai-ichi nuclear power plant by heating

机译:福岛第一核电站通过加热排放的含放射性铯的微粒的放射性损失

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摘要

Radiocesium-bearing microparticles (CsPs) substantially made of silicate glass are a novel form of radiocesium emitted from the broken containment vessel of Fukushima Dai-ichi nuclear power plant. CsPs have a potential risk of internal radiation exposure caused by inhalation. Radiation-contaminated waste including CsPs is being burned in incinerators; therefore, this study has investigated the responses of CsPs to heating in air. The radioactivity of CsPs gradually decreased from 600 °C and was almost lost when the temperature reached 1000 °C. The size and spherical morphology of CsPs were almost unchanged after heating, but cesium including radiocesium, potassium and chlorine were lost, probably diffused away from the CsPs. Iron, zinc and tin originally dissolved in the glass matrix were crystallized to oxide nanoparticles inside the CsPs. When the CsPs were heated together with weathered granitic soil that is common in Fukushima, the radiocesium released from CsPs was sorbed by the surrounding soil. From these results, it is expected that the radioactivity of CsPs will be lost when radiation-contaminated waste including CsPs is burned in incinerators.
机译:基本由硅酸盐玻璃制成的含放射性铯的微粒(CsPs)是从福岛第一核电站破裂的安全壳中释放出的新型放射性铯。 CsPs可能会因吸入引起内部辐射暴露。包括CsPs在内的受辐射污染的废物正在焚化炉中燃烧;因此,本研究调查了CsPs对空气加热的响应。 CsPs的放射性从600 C逐渐降低,并在温度达到1000 C时几乎消失。加热后,CsPs的尺寸和球形形态几乎没有变化,但铯(包括放射性铯,钾和氯)损失了,很可能从CsPs扩散了出去。最初溶解在玻璃基质中的铁,锌和锡在CsPs中结晶为氧化物纳米颗粒。当CsPs与福岛常见的风化花岗岩土壤一起加热时,从CsPs释放的放射性铯被周围的土壤吸收。从这些结果可以预料,当在焚烧炉中燃烧包括CsPs在内的受辐射污染的废物时,CsPs的放射性将丧失。

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