Laboratory for Waste Management, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland.
Environ Sci Technol. 2011 Oct 15;45(20):8765-71. doi: 10.1021/es2012897. Epub 2011 Sep 26.
Nuclear waste disposal concepts developed worldwide foresee the use of cementitious materials for the immobilization of long-lived intermediate level waste (ILW). This waste form may contain significant amounts of neptunium-237, which is expected to be present as Np(IV) under the reducing conditions encountered after the closure of the repository. Predicting the release of Np(IV) from the cementitious near field of an ILW repository requires a sufficiently detailed understanding of its interaction with the main sorbing components of hardened cement paste (HCP). In this study, the uptake of Np(IV) by calcium silicate hydrates (C-S-H) and HCP has been investigated using extended X-ray absorption fine structure (EXAFS) spectroscopy. The EXAFS studies on Np(IV)-doped C-S-H and HCP samples reveal that Np(IV) is predominantly incorporated in the structure of C-S-H phases having different Ca:Si ratios. The two main species identified correspond to Np(IV) in C-S-H with a Ca:Si mol ratio of 1.65 as in fresh cement and with a Ca:Si mol ratio of 0.75 as in highly degraded cement. The local structure of Np(IV) changes with the Ca:Si mol ratio and does not depend on pH. Furthermore, Np(IV) shows the same coordination environment in C-S-H and HCP samples. This study shows that C-S-H phases are responsible for the Np(IV) uptake by cementitious materials and further that incorporation in the interlayer of the C-S-H structure is the dominant uptake mechanism.
全世界开发的核废料处置概念设想使用胶凝材料来固定长寿命中放废物(ILW)。这种废物形式可能含有大量的镎-237,预计在封存后遇到的还原条件下,镎-237将以 Np(IV) 的形式存在。预测 ILW 储存库的胶凝近场中 Np(IV) 的释放需要对其与硬化水泥浆(HCP)主要吸附成分的相互作用有足够详细的了解。在这项研究中,使用扩展 X 射线吸收精细结构(EXAFS)光谱研究了钙硅酸盐水合物(C-S-H)和 HCP 对 Np(IV)的吸收。对 Np(IV)掺杂的 C-S-H 和 HCP 样品的 EXAFS 研究表明,Np(IV)主要掺入具有不同 Ca:Si 比的 C-S-H 相中。确定的两个主要物种对应于 C-S-H 中 Np(IV)的 Ca:Si 摩尔比为 1.65,与新鲜水泥中的 Ca:Si 摩尔比相同,而与高度降解的水泥中的 Ca:Si 摩尔比为 0.75。Np(IV)的局部结构随 Ca:Si 摩尔比而变化,与 pH 值无关。此外,Np(IV)在 C-S-H 和 HCP 样品中表现出相同的配位环境。这项研究表明,C-S-H 相是胶凝材料吸收 Np(IV)的原因,进一步表明在 C-S-H 结构的夹层中掺入是主要的吸收机制。