论文标题
核废料形式的建模:最先进和观点
Modeling of Nuclear Waste Forms: State-of-the-Art and Perspectives
论文作者
论文摘要
计算建模是核废料研究的重要方面。特别是,当使用实验努力互补时,原子模拟为核废料存储库安全案例的科学基础做出了贡献。在这里,我们讨论了一些成功的原子模拟和实验协同作用的核废料管理原子模型的最新和观点。特别是,我们在此处讨论:(1)原子模拟研究混合价铀氧化物中铀氧化态的潜力,以及(2)胶结屏障材料保留了放射性核素的能力,例如226RA和90SR,以及螺柱/metastudtite二级二级二氧化物次级二氧化碳二级阶段,以纳入np和np和Am anp和am。我们在这里做出的新贡献是通过C-S-H(硅酸盐水合物)阶段对SR掺入的计算。
Computational modeling is an important aspect of the research on nuclear waste materials. In particular, atomistic simulations, when used complementary to experimental efforts, contribute to the scientific basis of safety case for nuclear waste repositories. Here we discuss the state-of-the-art and perspectives of atomistic modeling for nuclear waste management on a few cases of successful synergy of atomistic simulations and experiments. In particular, we discuss here: (1) the potential of atomistic simulations to investigate the uranium oxidation state in mixed valence uranium oxides and (2) the ability of cementitious barrier materials to retain radionuclides such as 226Ra and 90Sr, and of studtite/metastudtite secondary peroxide phases to incorporate actinides such as Np and Am. The new contribution we make here is the computation of the incorporation of Sr by C-S-H (calcium silicate hydrate) phases.