下日涅坎斯基地块裂隙岩矿物中Cs、Sr、Am吸附与分布的温度依赖性

IF 0.9 Q4 CHEMISTRY, INORGANIC & NUCLEAR
A. A. Rodionova, I. E. Vlasova, V. O. Yapaskurt, V. G. Petrov, S. E. Vinokurov
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引用次数: 0

摘要

高放废物产生的热量提高了储存库近地表区的温度,在预测建模中应考虑这一因素对放射性废物深度处置时宿主裂隙岩石环境中放射性核素行为的影响。研究了Nizhnekansky地块裂隙岩样表面Cs、Sr、Am的吸附行为及其随温度的空间分布。在25 ~ 70℃范围内,随着温度的升高,样品表面Sr和Am的分布系数增加,而Cs的分布系数没有增加。这种差异可能与这些放射性核素吸收的不同机制有关。Cs、Sr和Am在裂隙样品的矿物相上分布不均匀,并优先保留在Ca(Sr)-沸石上,形成裂隙的矿物组成。通过定量分析确定了放射性核素在不同矿物相/组合上的相分布系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Temperature Dependence of the Sorption and Distribution of Cs, Sr, and Am on Fractured Rock Minerals of the Nizhnekansky Massif

Temperature Dependence of the Sorption and Distribution of Cs, Sr, and Am on Fractured Rock Minerals of the Nizhnekansky Massif

The heat generation by high-level waste raises the temperature in the near-surface zone of the repository, and the effect of this factor on the behavior of radionuclides in the host fractured rock environment upon deep disposal of radioactive waste (RW) should be considered in predictive modeling. The sorption behavior and spatial distribution of Cs, Sr, and Am on the surface of a fractured rock sample of the Nizhnekansky massif depending on temperature were studied. The distribution coefficients of Sr and Am on the sample surface increase with increasing temperature from 25 to 70°C, whereas the Cs distribution coefficient does not increase. This difference may be associated with different mechanisms of the sorption of these radionuclides. Cs, Sr, and Am are nonuniformly distributed on mineral phases of the fractured sample and are preferentially retained on Ca(Sr)-zeolite forming the mineral composition of the fractures. The coefficients of the phase distribution of radionuclides on separate mineral phases/associations were determined by quantitative analysis.

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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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