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2017 年一次未申报的大型核泄漏事件中放射性钌的空气传播浓度和化学特性。

Airborne concentrations and chemical considerations of radioactive ruthenium from an undeclared major nuclear release in 2017.

机构信息

Direction de l'Environnement, Institut de Radioprotection et de Sûreté Nucléaire, 13115 St Paul lez Durance, France;

Institute of Radioecology and Radiation Protection, Leibniz Universität Hannover, 30419 Hannover, Germany;

出版信息

Proc Natl Acad Sci U S A. 2019 Aug 20;116(34):16750-16759. doi: 10.1073/pnas.1907571116. Epub 2019 Jul 26.

Abstract

In October 2017, most European countries reported unique atmospheric detections of aerosol-bound radioruthenium (Ru). The range of concentrations varied from some tenths of µBq·m to more than 150 mBq·m The widespread detection at such considerable (yet innocuous) levels suggested a considerable release. To compare activity reports of airborne Ru with different sampling periods, concentrations were reconstructed based on the most probable plume presence duration at each location. Based on airborne concentration spreading and chemical considerations, it is possible to assume that the release occurred in the Southern Urals region (Russian Federation). The Ru age was estimated to be about 2 years. It exhibited highly soluble and less soluble fractions in aqueous media, high radiopurity (lack of concomitant radionuclides), and volatility between 700 and 1,000 °C, thus suggesting a release at an advanced stage in the reprocessing of nuclear fuel. The amount and isotopic characteristics of the radioruthenium release may indicate a context with the production of a large Ce source for a neutrino experiment.

摘要

2017 年 10 月,大多数欧洲国家报告了独特的大气气溶胶放射性钌(Ru)的检测结果。浓度范围从几十个微贝可/立方米到超过 150 毫贝可/立方米不等。如此高浓度(但无害)的广泛检测表明发生了相当大的释放。为了比较不同采样期空气中 Ru 的活性报告,基于每个地点最可能的羽流存在时间,对浓度进行了重建。根据空气中浓度的扩散和化学因素,可以假设该释放发生在俄罗斯联邦的南乌拉尔地区。Ru 的年龄估计约为 2 年。它在水介质中表现出高可溶性和低可溶性部分、高放射性纯度(缺乏伴随的放射性核素)以及 700 至 1000°C 之间的挥发性,因此表明在核燃料再处理的后期阶段发生了释放。放射性钌释放的数量和同位素特征可能表明与生产大量用于中微子实验的铈源有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4472/6708381/e7cd9d53e1b2/pnas.1907571116fig01.jpg

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