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欧盟地表空气中⁷Be的气候学研究。

A climatology of ⁷Be in surface air in European Union.

作者信息

Hernández-Ceballos M A, Cinelli G, Ferrer M Marín, Tollefsen T, De Felice L, Nweke E, Tognoli P V, Vanzo S, De Cort M

机构信息

European Commission, Joint Research Centre (JRC), Institute for Transuranium Elements (ITU), Nuclear Security Unit, Via Enrico Fermi 2749, I-21027 Ispra (VA), Italy.

European Commission, Joint Research Centre (JRC), Institute for Transuranium Elements (ITU), Nuclear Security Unit, Via Enrico Fermi 2749, I-21027 Ispra (VA), Italy.

出版信息

J Environ Radioact. 2015 Mar;141:62-70. doi: 10.1016/j.jenvrad.2014.12.003. Epub 2014 Dec 24.

Abstract

This study presents a European-wide analysis of the spatial and temporal distribution of the cosmogenic isotope (7)Be in surface air. This is the first time that a long term database of 34 sampling sites that regularly provide data to the Radioactivity Environmental Monitoring (REM) network, managed by the Joint Research Centre (JRC) in Ispra, is used. While temporal coverage varies between stations, some of them have delivered data more or less continuously from 1984 to 2011. The station locations were considerably heterogeneous, both in terms of latitude and altitude, a range which should ensure a high degree of representativeness of the results. The mean values of (7)Be activity concentration presented a spatial distribution value ranging from 2.0 to 5.4 mBq/m(3) over the European Union. The results of the ANOVA analysis of all (7)Be data available indicated that its temporal and spatial distributions were mainly explained by the location and characteristic of the sampling sites rather than its temporal distribution (yearly, seasonal and monthly). Higher (7)Be concentrations were registered at the middle, compared to high-latitude, regions. However, there was no correlation with altitude, since all stations are sited within the atmospheric boundary layer. In addition, the total and yearly analyses of the data indicated a dynamic range of (7)Be activity for each solar cycle and phase (maximum or minimum), different impact on stations having been observed according to their location. Finally, the results indicated a significant seasonal and monthly variation for (7)Be activity concentration across the European Union, with maximum concentrations occurring in the summer and minimum in the winter, although with differences in the values reached. The knowledge of the horizontal and vertical distribution of this natural radionuclide in the atmosphere is a key parameter for modelling studies of atmospheric processes, which are important phenomena to be taken into account in the case of a nuclear accident.

摘要

本研究对欧洲范围内地表空气中宇宙成因同位素⁷Be的时空分布进行了分析。这是首次使用由位于伊斯普拉的联合研究中心(JRC)管理的放射性环境监测(REM)网络中34个定期提供数据的采样点的长期数据库。虽然各站点的时间覆盖范围有所不同,但其中一些站点自1984年至2011年或多或少持续提供了数据。站点位置在纬度和海拔方面差异很大,这样的范围应能确保结果具有高度代表性。在欧盟范围内,⁷Be活度浓度的平均值呈现出2.0至5.4 mBq/m³的空间分布值。对所有可用的⁷Be数据进行方差分析的结果表明,其时空分布主要由采样点的位置和特征决定,而非其时间分布(年度、季节和月度)。与高纬度地区相比,中部地区记录到的⁷Be浓度更高。然而,由于所有站点都位于大气边界层内,因此与海拔没有相关性。此外,对数据的总体和年度分析表明,每个太阳周期和阶段(最大值或最小值)的⁷Be活度都有一个动态范围,根据站点位置观察到了不同的影响。最后,结果表明欧盟范围内⁷Be活度浓度存在显著的季节和月度变化,夏季浓度最高,冬季最低,尽管达到的值存在差异。了解这种天然放射性核素在大气中的水平和垂直分布是大气过程建模研究的关键参数,在核事故情况下,这些大气过程是需要考虑的重要现象。

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