Aspects of Modeling of the Degradation of Engineered Safety Barriers Based on Portland Cement in Radionuclide Migration Problems

IF 0.9 Q4 CHEMISTRY, INORGANIC & NUCLEAR
K. A. Boldyrev
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引用次数: 0

Abstract

Materials based on Portland cement and concrete are widely used for radioactive waste solidification and construction of engineered safety barriers at radioactive waste repositories. As compared to other candidate matrices, cement also exhibits the potential for chemical immobilization by reacting with many radionuclides and binding them. The water permeation through the bulk of concrete leads to its degradation, to a change in the composition of its pore water, and to transformations of solid mineral phases constituting the concrete. The long-term degradation of concrete can be estimated using geochemical modeling. A procedure for forecasting the degradation of materials based on Portland cement concrete is described. The model takes into account the stages of cement hydration and chemical degradation. The geochemical changes in the course of concrete degradation were calculated using numerical modeling with the PhreeqC code. Schemes of the stepwise concrete degradation are considered for estimating the radionuclide transport. Relevant radionuclide distribution coefficients are applied to each stage. The duration of concrete degradation stages largely depends on the filtering water composition.

Abstract Image

Abstract Image

放射性核素迁移问题中基于硅酸盐水泥的工程安全屏障降解建模的各个方面
摘要 以波特兰水泥和混凝土为基础的材料被广泛用于放射性废物固化和放射性废物贮存库工程安全屏障的建造。与其他候选基质相比,水泥还具有与许多放射性核素发生反应并将其结合的化学固定潜力。水通过大体积混凝土的渗透导致其降解、孔隙水成分的变化以及构成混凝土的固体矿物相的转化。混凝土的长期降解可以通过地球化学模型进行估算。本文介绍了一种基于波特兰水泥混凝土的材料降解预测程序。该模型考虑了水泥水化和化学降解阶段。利用 PhreeqC 代码进行数值建模,计算了混凝土降解过程中的地球化学变化。在估算放射性核素迁移时,考虑了混凝土逐步降解的方案。每个阶段都采用了相关的放射性核素分布系数。混凝土降解阶段的持续时间在很大程度上取决于过滤水的成分。
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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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