Department of Biology and Ecology, Faculty of Science, University of Kragujevac, 34000, Kragujevac, Serbia.
Department of Physics, Faculty of Science, University of Kragujevac, 34000, Kragujevac, Serbia.
Environ Monit Assess. 2021 Oct 25;193(11):749. doi: 10.1007/s10661-021-09536-7.
There are no results of comparative ecological studies of the radionuclide activity concentration in the plants and soil in relation to geological substrate. Presented research encompasses the comparative analysis of the concentration of four radionuclides, three natural (K, Ra, Th) and one artificial (Cs) in soil samples and aerial plant parts of Teucrium montanum from different natural habitats on serpentinite and calcareous geological substrate. The activity concentrations of radionuclides were measured with high purity germanium (HPGe) detector and expressed as Bq kg. The calculated activity concentrations of K, Ra, Th, and Cs in soil samples from serpentinite/calcareous habitats are in range 39.6-91.0/59.3-1018.8, 1.7-5.5/4.3-52.4, 2.4-10.9/5.9-72.9, and 57.2-844.9/29.6-701.5 Bq kg, respectively. The activity concentrations of K, Ra, Th, and Cs in plant samples are in range 152.9-445.9/228.0-521.4, n.d.-1.2/0.6-5.6, n.d./0.2-0.9, and 1.0-46.4/1.7-7.0 Bq kg, respectively. The obtained results showed that the quantities of Cs are greater in the soil and plant material from the serpentinite habitats, while quantities of K, Ra, and Th are greater in the soil and plant material from calcareous habitats. In general, the level of radioactivity in plants and soil depends on the type of the geological substrate. The content of radionuclides in plants is correlated with the radionuclide content in the soil. In addition to other specifics in physical and chemical properties, serpentinite habitats are characterized by an increased amount of Cs in the soil, which causes an increased amount of this radionuclide in plants such as Teucrium montanum.
目前的研究涵盖了对来自蛇纹岩和钙质地质基底不同自然生境的天蓝绣球植物地上部分和土壤中四种放射性核素(三种天然核素(K、Ra、Th)和一种人工核素(Cs))浓度的比较分析。使用高纯锗(HPGe)探测器测量放射性核素的活度浓度,并以 Bq kg 表示。蛇纹岩/钙质生境土壤样品中 K、Ra、Th 和 Cs 的计算活度浓度分别为 39.6-91.0/59.3-1018.8、1.7-5.5/4.3-52.4、2.4-10.9/5.9-72.9 和 57.2-844.9/29.6-701.5 Bq kg。植物样品中 K、Ra、Th 和 Cs 的活度浓度分别为 152.9-445.9/228.0-521.4、n.d.-1.2/0.6-5.6、n.d./0.2-0.9 和 1.0-46.4/1.7-7.0 Bq kg。结果表明,蛇纹岩生境土壤和植物材料中的 Cs 含量较高,而钙质生境土壤和植物材料中的 K、Ra 和 Th 含量较高。一般来说,植物和土壤的放射性活度水平取决于地质基底的类型。植物中放射性核素的含量与土壤中放射性核素的含量相关。除了物理和化学性质的其他特殊性外,蛇纹岩生境的土壤中 Cs 含量增加,导致天蓝绣球等植物中这种放射性核素的含量增加。