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Transfer of 137Cs into Maize (Zea mays L.) at Different Growth Stages in the Area Contaminated by the Chernobyl Chornobyl Fallout

delete2026-08-13
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OA
AI
Т
Т. А. Парамонова *
O
Olga Denisova
N
N. V. Kuzmenkova
L
Leonid Turykhin
M
Maria Godyaeva
А
Аlexei Konoplev
DOI:10.3390/toxics14080714delete
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Abstract

Abstract

En 中文
Accumulation of radionuclides in crop products can pose public health risks. Parameters of 137Cs root uptake by maize were investigated at four growth stages, from leaf development to ripening (June–September), in the post-Chornobyl area of the Plavsk radioactive hotspot (the Tula region of Russia). It was established that the chernozem of the agrosystem still contains about 180 kBq 137Cs m−2. Seasonal trends of 137Cs activity concentrations in above- and belowground parts of maize differ appreciably. In aerial parts, the 137Cs accumulation rate increases as vegetative organs develop from June to July, then drops when generative organs appear in August. In the belowground biomass, the 137Cs content increases with the growth of fine roots, which serve as relative concentrators of the radionuclide. However, at all stages of growth, radionuclide transfer to maize occurs with low intensity. It does not directly depend on changes in biomass, dry matter content, or 40K content, and only slightly relates to the ash content. The transfer factor is estimated to be 6.2 × 10−3 for cob kernels (grain) and 3.8 × 10−2 for stems and leaves, which corresponds to the IAEA-recommended values and ensures acceptable levels of 137Cs accumulation in crop products produced in the territory.
Keywords:
radiocaesium
Chornobyl
root uptake
bioaccumulation
transfer factor
seasonal variations
maize

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Toxics cover
Toxics
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4.1
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Lomonosov Moscow State University
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