Adesiji N E, Ademola J A
Department of Physics, Federal University of Technology Akure, Akure, Ondo State, Nigeria; Department of Physics, University of Ibadan, Ibadan, Oyo State, Nigeria.
Department of Physics, University of Ibadan, Ibadan, Oyo State, Nigeria.
J Environ Radioact. 2019 May;201:1-4. doi: 10.1016/j.jenvrad.2019.01.011. Epub 2019 Feb 1.
The transfer factors (TFs) of naturally occurring radionuclides, U and Th from soil to different cassava plant compartments were calculated. Cassava is widely cultivated in Nigeria and contributes significantly to the food supply of the nation. There is sparsity of data on the TFs in Nigeria, and no TF data from any African country were included in the International Atomic Energy Agency's compilation of TFs for the tropical ecosystem. Samples of tin tailings and soil samples from virgin land were used to formulate three soil groups; group-A (soil from virgin land only), group-B (tailings only) and group-C (equal dry mass combination of tailings and soil from virgin land). Pot experiments were set up to determine the TFs of U and Th. The activity concentrations of U and Th in the dried samples of the soil and plant compartments were determined using a sodium iodide detector. The TF of U ranged from below detection limit (BDL) to 0.01 in the tuber samples, BDL to 0.23 in the stem samples and BDL to 0.90 in the leaf samples, while the TF of Th ranged between 0.006 and 0.49 for tuber samples, 0.03 and 0.65 in stem samples and 0.03 and 1.54 in the leaf samples. There were significant difference in the TF of U and Th between the soil groups. The leaf compartment generally had most of the highest TF values while the tuber samples had most of the lowest TF values for both radionuclides.
计算了天然存在的放射性核素铀和钍从土壤到不同木薯植株部位的转移因子(TFs)。木薯在尼日利亚广泛种植,对该国的粮食供应贡献显著。尼日利亚关于转移因子的数据稀少,国际原子能机构热带生态系统转移因子汇编中未包含任何非洲国家的转移因子数据。利用锡尾矿样品和原始土地的土壤样品形成了三个土壤组;A组(仅原始土地的土壤)、B组(仅尾矿)和C组(尾矿与原始土地土壤的等干质量组合)。设置盆栽试验以确定铀和钍的转移因子。使用碘化钠探测器测定土壤和植株部位干燥样品中铀和钍的活度浓度。铀的转移因子在块根样品中范围为低于检测限(BDL)至0.01,在茎样品中为BDL至0.23,在叶样品中为BDL至0.90,而钍的转移因子在块根样品中为0.006至0.49,在茎样品中为0.03至0.65,在叶样品中为0.03至1.54。不同土壤组之间铀和钍的转移因子存在显著差异。对于这两种放射性核素,叶部位通常具有大多数最高的转移因子值,而块根样品具有大多数最低的转移因子值。