Statistical Evaluation of the Tritium Content of Aquatic Ecosystems at NPP Sites

IF 0.9 Q4 CHEMISTRY, INORGANIC & NUCLEAR Radiochemistry Pub Date : 2024-05-16 DOI:10.1134/s1066362224020174
L. G. Bondarenko, V. N. Dushin, A. D. Sadykin, S. I. Shabalev
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Abstract

The lognormal statistical distribution was used to present the reliable integrated data on the content of various physicochemical forms of tritium in air, natural water, and components of aquatic ecosystems at nuclear facility sites. Statistics of lognormal distributions took into account the left truncation, which reflects the effect of finite sensitivity of measurements. The statistics of lognormal distributions were used to obtain estimates for ecosystems of NPP sites at limited sets of data. Specific activities were estimated for various forms of tritium such as HTO (free water), TFWT (tissue free water tritium), and OBT (organically bound tritium). The measurement results show that the specific activity of tritium in the body in bound forms was, as a rule, higher than its specific activity in free water in the ambient environment. Equilibrium concentration ratios (CRs) (partition coefficients of hydrogen) ranged from 1 to about 20. The results obtained by the Radium Institute research team agree with those obtained by the researchers from Canada and France for the specific activity of tritium in different chemical forms in environmental samples.

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核电厂厂址水生生态系统氚含量的统计评估
摘要 采用对数正态分布统计方法,给出了核设施所在地空气、天然水和水生生态系统成分中各种物理化学形式的氚含量的可靠综合数据。对数正态分布统计考虑了左截断,这反映了测量的有限灵敏度的影响。对数正态分布统计用于在有限的数据集上获得核电厂所在地生态系统的估计值。对 HTO(自由水)、TFWT(组织自由水氚)和 OBT(有机结合氚)等各种形式的氚的比活度进行了估算。测量结果表明,人体内结合态氚的比活度通常高于环境中自由水中氚的比活度。平衡浓度比(CRs)(氢的分配系数)从 1 到 20 左右不等。镭研究所研究小组获得的结果与加拿大和法国研究人员获得的环境样本中不同化学形态氚的比活度结果一致。
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来源期刊
Radiochemistry
Radiochemistry CHEMISTRY, INORGANIC & NUCLEAR-
CiteScore
1.30
自引率
33.30%
发文量
51
期刊介绍: Radiochemistry  is a journal that covers the theoretical and applied aspects of radiochemistry, including basic nuclear physical properties of radionuclides; chemistry of radioactive elements and their compounds; the occurrence and behavior of natural and artificial radionuclides in the environment; nuclear fuel cycle; radiochemical analysis methods and devices; production and isolation of radionuclides, synthesis of labeled compounds, new applications of radioactive tracers; radiochemical aspects of nuclear medicine; radiation chemistry and after-effects of nuclear transformations.
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