This study focuses on determination of soil to plant transfer factor (TF) of long lived radionuclides Sr-90 and Cs-137. Sr-90 and Cs-137 activity concentration in agricultural soil samples was ranged between LT 0.3 and 1.3 Bq kg(-1) and 14 and 30 Bq kg(-1), from LT 2.6 to 7.2 Bq kg(-1) and 5 to 13 Bq kg(-1) fresh matter in roots and from 0.4 to 1.1 Bq kg(-1) and LT 0.2 to 0.7 Bq kg(-1) fresh matter in the rest parts of plant, respectively. Calculated values for Sr-90 and Cs-137 TF from soil to plant ranged from 0.57 to 11.2 and 0.01 to 0.43, respectively
Soil-to-crop transfer factor (TF) is a key parameter that directly affects the internal dose assessm...
In order to compare soil-to-plant transfer factors (TFs) of fallout 137Cs and those of native stable...
Our article deals with the accumulation of artificial (Cs-137) and natural (K-40) radionuclides in t...
This study focuses on determination of soil to plant transfer factor (TF) of long lived radionuclide...
Radiocesium and radiostrontium are among the most problematic soil contaminants following nuclear fa...
Radiocesium and radiostrontium are among the most problematic soil contaminants following nuclear fa...
It is important to obtain local transfer factors (TFs) of long-lived radionuclides for assessment of...
Soil-to-plant transfer factors (TFs) of fallout 137Cs and stable Cs were determined for various crop...
Transfer factors of natural radionuclides and (CS)-C-137 from soil to plants used in traditional med...
Soil-to-plant transfer factor (TF) is one of the important parameters in radiation dose assessment m...
The radionuclide uptake by crops strongly depends on soil fertility and biological features of plant...
Strontium (Sr) is not an essential element to plants; however, high soil-to-crop transfer factors (T...
In long-term dose assessment models for radioactive waste disposal, an important exposure pathway to...
Obtaining local soil-to-crop transfer factor (TF) is important because climates, soil types and vege...
A soil-to-crop transfer factor, TF, is a key parameter that directly affects the internal dose asses...
Soil-to-crop transfer factor (TF) is a key parameter that directly affects the internal dose assessm...
In order to compare soil-to-plant transfer factors (TFs) of fallout 137Cs and those of native stable...
Our article deals with the accumulation of artificial (Cs-137) and natural (K-40) radionuclides in t...
This study focuses on determination of soil to plant transfer factor (TF) of long lived radionuclide...
Radiocesium and radiostrontium are among the most problematic soil contaminants following nuclear fa...
Radiocesium and radiostrontium are among the most problematic soil contaminants following nuclear fa...
It is important to obtain local transfer factors (TFs) of long-lived radionuclides for assessment of...
Soil-to-plant transfer factors (TFs) of fallout 137Cs and stable Cs were determined for various crop...
Transfer factors of natural radionuclides and (CS)-C-137 from soil to plants used in traditional med...
Soil-to-plant transfer factor (TF) is one of the important parameters in radiation dose assessment m...
The radionuclide uptake by crops strongly depends on soil fertility and biological features of plant...
Strontium (Sr) is not an essential element to plants; however, high soil-to-crop transfer factors (T...
In long-term dose assessment models for radioactive waste disposal, an important exposure pathway to...
Obtaining local soil-to-crop transfer factor (TF) is important because climates, soil types and vege...
A soil-to-crop transfer factor, TF, is a key parameter that directly affects the internal dose asses...
Soil-to-crop transfer factor (TF) is a key parameter that directly affects the internal dose assessm...
In order to compare soil-to-plant transfer factors (TFs) of fallout 137Cs and those of native stable...
Our article deals with the accumulation of artificial (Cs-137) and natural (K-40) radionuclides in t...