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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Retention and diffusion of radioactive and toxic species on cementitious systems: Main outcome of the CEBAMA project
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Retention and diffusion of radioactive and toxic species on cementitious systems: Main outcome of the CEBAMA project

机译:放射性和毒物物种对水泥系统的保留和扩散:CEBAMA项目的主要结果

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摘要

Cement-based materials are key components in radioactive waste repository barrier systems. To improve the available knowledge base, the European CEBAMA (Cement-based materials) project aimed to provide insight on general processes and phenomena that can be easily transferred to different applications. A bottom up approach was used to study radionuclide retention by cementitious materials, encompassing both individual cement mineral phases and hardened cement pastes. Solubility experiments were conducted with Be, Mo and Se under high pH conditions to provide realistic solubility limits and radionuclide speciation schemes as a prerequisite for meaningful adsorption studies. A number of retention mechanisms were addressed including adsorption, solid solution formation and precipitation of radionuclides within new solid phases formed during cement hydration and evolution. Sorption/desorption experiments were carried out on several anionic radionuclides and/or toxic elements which have received less attention to date, namely: Be, Mo, Tc, I, Se, Cl, Ra and C-14. Solid solution formation between radionuclides in a range of oxidation states (Se, I and Mo) with the main aqueous components (OH-, SO4-2, Cl-) of cementitious systems on AFm phases were also investigated.
机译:基于水泥的材料是放射性废物储存库屏障系统的关键组成部分。为了改善可用知识库,欧洲的Cebama(基于水泥的材料)项目旨在为一般过程和现象提供洞察力,可以轻松转移到不同的应用程序。用于研究胶凝材料的放射性核素保留的自下而上的方法,包括单独水泥矿物相和硬化水泥浆料。在高pH条件下,在高pH条件下用Mo和Se进行溶解度实验,以提供现实的溶解度限制和放射性核素物种规范,作为有意义的吸附研究的先决条件。解决了许多保留机制,包括在水泥水合和进化期间形成的新固相的吸附,固溶体形成和放射性核素的沉淀。对几种阴离子放射性核素和/或有毒元素进行吸附/解吸实验,所述阴离子放射性核素和/或有毒元素迄今为止,即:是,Mo,Tc,I,Se,Cl,Ra和C-14。还研究了在一系列氧化态(Se,I和Mo)中的放射性核素之间的固溶体形成,其在AFM阶段的水泥系统的主要水性组分(OH-,SO4-2,CL-)。

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