Laboratory of Population Radiobiology, Institute of Plant and Animal Ecology, Ural Branch of the Russian Academy of Sciences, 8 Marta St., 202, Ekaterinburg, Russian Federation, 620144.
Laboratory of Common Radioecology, Institute of Plant and Animal Ecology, Ural Branch of the Russian Academy of Sciences, 8 Marta St., 202, Ekaterinburg, Russian Federation, 620144.
Environ Sci Pollut Res Int. 2018 May;25(14):13975-13987. doi: 10.1007/s11356-018-1544-y. Epub 2018 Mar 7.
The evaluation of radiation exposure in 14 species of herbaceous plants from the East-Ural Radioactive Trace (EURT) zone was performed, using the ERICA Tool, v. 1.2. Recent (up to 2015) levels of radionuclide activity concentration were measured in soil and vegetative plant mass. Pu content was used for the first time to estimate external dose rates for herbaceous plant species along the pollution gradient. In addition, a new approach to assessing the geometry of objects was adopted, including not only aboveground but also underground plant organs. This improved approach to the evaluation of radiation exposure confirms previous findings that herbaceous plant populations currently exist under low-level chronic exposure in the EURT area. This reassessment based on new data suggests a 48-977-fold increase in the total dose rate per plant organism at the most polluted site compared to background areas. The highest capacity for the transfer of Sr and Cs was observed in Taraxacum officinale and Plantago major. In these species, the total dose rate per plant exceeded 150 μGy h due to Sr + Cs + Pu radionuclide anthropogenic pollution in the EURT zone. All estimated total dose rates per plant were below the dose rate screening value of 400 μGy h.
采用 ERICA Tool v. 1.2 对来自东乌拉尔放射性轨迹(EURT)区的 14 种草本植物的辐射暴露进行了评估。最近(截至 2015 年)测量了土壤和植物生物量中的放射性核素活度浓度。首次使用 Pu 含量来估算沿污染梯度的草本植物物种的外照射率。此外,还采用了一种新的评估物体几何形状的方法,不仅包括地上部分,还包括地下植物器官。这种改进的辐射暴露评估方法证实了之前的发现,即在 EURT 地区,草本植物种群目前处于低水平慢性暴露下。基于新数据的重新评估表明,与背景区域相比,最污染点的每个植物生物的总剂量率增加了 48-977 倍。在 Taraxacum officinale 和 Plantago major 中观察到 Sr 和 Cs 的最大转移能力。在这些物种中,由于 EURT 区 Sr + Cs + Pu 放射性核素人为污染,每个植物的总剂量率超过 150 μGy h。所有估计的每个植物的总剂量率均低于 400 μGy h 的剂量率筛选值。