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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Uptake of Ra-226 in cementitious systems: A complementary solution chemistry and atomistic simulation study
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Uptake of Ra-226 in cementitious systems: A complementary solution chemistry and atomistic simulation study

机译:胶凝系统中的RA-226的摄取:互补解决方案化学和原子模拟研究

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The uptake of Ra-226 to various cement hydration phases such as calcium-silicate-hydrates (C-S-H), ettringite (AFt) and monosulfate (AFm) as well as hardened cement pastes (HCP) made from ordinary Portland cement and low pH cement, respectively, was studied in batch-type sorption experiments under anoxic conditions. Besides sorption kinetics, the effects of solution composition and solid to liquid ratios were analyzed. Uptake kinetics were generally fast, leading to sorption equilibrium in less than 30 days. In particular, a strong retention of Ra-226 by C-S-H phases was observed with a dependency of distribution coefficients on the Ca/Si - ratio of the C-S-H and the alkali content in solution. Atomistic simulation provided evidence that, in addition to Ra sorption on surface sites, the uptake of Ra due to exchange for Ca in the C-S-H interlayer space is a plausible uptake mechanism, in particular at low Ca/Si-ratios. Experiments performed on HCP revealed a correlation between sorption distribution coefficients of Ra-226 and C-S-H content and composition. Experiments on C-S-H alteration showed that upon carbonation previously bound Ra is predominantly released into the pore solution, although some Ra can be retained by newly formed calcite.
机译:RA-226对各种水泥水合阶段的吸收,例如钙 - 硅酸钙 - 水合物(CSH),Ettringite(AFT)和单硫酸盐(AFM)以及由普通波特兰水泥和低pH水泥制成的硬化的水泥糊(HCP),分别在缺氧条件下分批型吸附实验研究。除了吸附动力学之外,分析了溶液组合物的影响和固体对液体比率。摄取动力学通常很快,导致吸附均衡在不到30天内。特别地,通过C-S-H与溶液中的C-S-H与碱含量的Ca / Si比对分布系数的依赖性观察到Ra-226的强度依赖于C-S-H相。原子仿真提供了证据表明,除了表面位点上的Ra吸附外,在C-S-H中间空间中换取CA的换热是一种可粘性的吸收机制,特别是在低Ca / Si比上。对HCP进行的实验显示RA-226和C-S-H含量和组成的吸附分布系数之间的相关性。 C-S-H改变的实验表明,在碳酸化上,先前结合的Ra主要被释放到孔溶液中,尽管可以通过新形成的方解石保留一些Ra。

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