阔叶树土壤对238U、226Ra和210Pb迁移因子分析

IF 0.9 4区 工程技术 Q3 NUCLEAR SCIENCE & TECHNOLOGY Nuclear Technology & Radiation Protection Pub Date : 2022-01-01 DOI:10.2298/ntrp2203219v
I. Vukasinovic
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引用次数: 0

摘要

本文利用文献中一些现有研究的数据,分析了土壤到不同原生阔叶树叶片的238U、226Ra和210Pb转移因子,这些转移因子是在以前被铀存在修改过的地点和本底放射性水平的地点进行的。阔叶树种白骨栎、亚种白骨栎、山梨树、白骨栎、圆叶白骨栎、白杨和黄叶桉。无论是落叶源还是常绿源,受影响地的椴(Tilia spp.)和背景地的七叶树(Aesculus hippocastanum L.)均被纳入研究范围。在这里引用的论文中,还提供了有关基本土壤参数的数据:pH值、总Ca [gkg-1]、砂[%]和粉砂+粘土[%]组分。土壤(n=14)活性浓度[Bqkg-1]干重(238U = 22 ~ 6606, 226Ra = 38 ~ 7700, 210Pb = 37 ~ 7500)和树叶(238U = 2.7 ~ 137.6 (n=10), 226Ra = 2.6 ~ 134.2 (n=14), 210Pb = 27 ~ 77.2 (n=14))均为对数变换后的正态分布。本研究的假设是,与土壤参数和土壤中放射性核素活性浓度的影响相比,所研究的阔叶树种之间的生物学差异对所研究的放射性核素从土壤到树叶的转移因子的影响较小。基于土壤活性浓度和至少一个基本土壤参数,采用多元线性回归方法,研究了238U、226Ra和210Pb 3种阔叶植物的土壤-叶片转移因子值是否可以在第一次近似下进行统计预测。
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Analysis of 238U, 226Ra, and 210Pb transfer factors from soil to the leaves of broadleaf tree species
This analysis of 238U, 226Ra and 210Pb transfer factors from the soil to the leaves of different native broadleaf trees at sites previously modified by uranium presence and at the site of background radioactivity levels, was conducted using data from a few available studies from the literature. The broadleaf tree species Quercus ilex, Quercus suber, Eucalyptus camaldulensis, Quercus pyrenaica, Quercus ilex rotundifolia, Populus sp. and Eucalyptus botryoides Sm. at the affected sites and Tilia spp. and Aesculus hippocastanum L. at the back ground site were in cluded in the study regardless of the deciduous or evergreen origins of the leaves. In the papers cited here, data about basic soil parameters: pH, total Ca [gkg-1], sand [%], and silt + clay [%] fractions were also available. All the collected data of activity concentration [Bqkg-1] dry weight in the soil (n=14) which was in the range: 22-6606 for 238U, 38-7700 for 226Ra, and 37-7500 for 210Pb, and the tree leaves in the range: 2.7-137.6 for 238U (n=10), 2.6-134.2 for 226Ra (n=14), and 27-77.2 for 210Pb (n=14), indicated that it was normally distributed after log-transformation. The present study was conducted under the hypothesis that biological differences between the examined broadleaf tree species have a lesser influence on the transfer factors of the investigated radionuclides from soil to tree leaves compared to the impact of the soil parameters and radionuclides activity concentrations in the soil. Consequently, it was examined whether 238U, 226Ra, and 210Pb soil-to-leaves transfer factor values for average broadleaf species could be predicted statistically in the first approximation based on their activity concentration in the soil and at least one basic soil parameter using multiple linear regression.
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来源期刊
Nuclear Technology & Radiation Protection
Nuclear Technology & Radiation Protection NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
2.00
自引率
41.70%
发文量
10
审稿时长
6-12 weeks
期刊介绍: Nuclear Technology & Radiation Protection is an international scientific journal covering the wide range of disciplines involved in nuclear science and technology as well as in the field of radiation protection. The journal is open for scientific papers, short papers, review articles, and technical papers dealing with nuclear power, research reactors, accelerators, nuclear materials, waste management, radiation measurements, and environmental problems. However, basic reactor physics and design, particle and radiation transport theory, and development of numerical methods and codes will also be important aspects of the editorial policy.
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