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福岛第一核电站反应堆氢气爆炸数天后,在 120 公里远处发现了来自福岛第一核电站的空气传播钚和非天然铀。

Airborne Plutonium and non-natural Uranium from the Fukushima DNPP found at 120 km distance a few days after reactor hydrogen explosions.

机构信息

Helmholtz Zentrum München, German Research Center for Environmental Health, Institute of Radiation Protection , D-85764 Neuherberg, Germany.

出版信息

Environ Sci Technol. 2014 Apr 1;48(7):3808-14. doi: 10.1021/es404961w. Epub 2014 Mar 13.

Abstract

Plutonium (Pu) and non-natural uranium (U) originating from the Fukushima Daiichi Nuclear Power Plant (FDNPP) were identified in the atmosphere at 120 km distance from the FDNPP analyzing the ratio of number of atoms, following written as n(isotope)/n(isotope), of Pu and U. The n((240)Pu)/n((239)Pu), n((241)Pu)/n((239)Pu), n((234)U)/n((238)U), n((235)U)/n((238)U) and n((236)U)/n((238)U) in aerosol samples collected before and after the FDNPP incident were analyzed by accelerator mass spectrometry (AMS) and inductively coupled plasma mass spectrometry (ICPMS). The activity concentrations of (137)Cs and (134)Cs in the same samples were also analyzed by gamma spectrometry before the destructive analysis. Comparing the time series of analytical data on Pu and U obtained in this study with previously reported data on Pu, U, and radioactive Cs, we concluded that Pu and non-natural U from the FDNPP were transported in the atmosphere directly over a 120 km distance by aerosol and wind within a few days after the reactor hydrogen explosions. Effective dose of Pu were calculated using the data of Pu: (130 ± 21) nBq/m(3), obtained in this study. We found that the airborne Pu contributes only negligibly to the total dose at the time of the incident. However the analytical results show that the amount of Pu and non-natural U certainly increased in the environment after the incident.

摘要

在距离福岛第一核电站(FDNPP) 120 公里处的大气中,通过分析钚(Pu)和铀(U)的原子数比 n(同位素)/n(同位素),鉴定出源自 FDNPP 的 Pu 和非天然 U。通过加速器质谱法(AMS)和电感耦合等离子体质谱法(ICPMS)对 FDNPP 事故前后采集的气溶胶样品中的 n((240)Pu)/n((239)Pu)、n((241)Pu)/n((239)Pu)、n((234)U)/n((238)U)、n((235)U)/n((238)U)和 n((236)U)/n((238)U)进行了分析。在破坏性分析之前,还通过伽马谱法对同一样品中的 (137)Cs 和 (134)Cs 活性浓度进行了分析。将本研究中获得的 Pu 和 U 的分析数据时间序列与先前报告的 Pu、U 和放射性 Cs 数据进行比较,我们得出结论,反应堆氢气爆炸后几天内,FDNPP 的 Pu 和非天然 U 直接通过气溶胶和风在大气中长距离输送。利用本研究获得的 Pu:(130 ± 21) nBq/m(3)的数据,计算 Pu 的有效剂量。我们发现,在事件发生时,空气中的 Pu 对总剂量的贡献可以忽略不计。然而,分析结果表明,事件发生后环境中 Pu 和非天然 U 的数量肯定有所增加。

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