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Uranyl(VI) sorption in calcium silicate hydrate phases. A quantum chemical study of tobermorite models

机译:硅酸钙水合物阶段的铀酰(VI)吸附。 鸟料模型的量子化学研究

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Using density functional theory, we present the first quantum chemical study on uranyl, UO22+, absorption into the interlayer region of calcium silicate hydrate (CSH) phases, the main constituents of fresh and degraded cement. We modeled CSH phases by tobermorite 14 A with various ratios of Ca/Si (C/S). Uranyl (VI) sorbed in the interlayer exhibits mainly coordination number 4. At higher C/S values, uranyl hydrolyzes and exhibits OH ligands in the first coordination shell. EXAFS data compare well with calculated structural features of sorption complexes. However, none of the sorption complexes determined displays all measured distances, suggesting that several sorption complexes co-exist. Our results represent the first comprehensive atomic scale model of actinyl sorption complexes in CSH and, together with pertinent EXAFS results, supports the hypothesis that interlayer absorption contributes to a considerable extent to the uptake of uranyl by CSH. Characteristic U-Si distances are assigned to the coordination mode of uranyl sorbed at SiO4 tetrahedra of CSH. Measured U-Ca distances appear due to U-O-Ca bridges, the number of which defines the U-Ca distance. We characterized the energy of UO22+ sorption by calculated exchange energies of Ca2+ or 2H(+) by UO22+. For higher C/S this analysis reveals correlations between the preferred sites for uranyl sorption and the compensating charge, estimated empirically, of the functional groups forming the site. The sites with stronger compensation, mainly defect-derived and threefold coordinative sites, were calculated to be the most favorable ones.
机译:采用密度函数理论,我们介绍了铀酰,UO222 +,吸收到硅酸钙水合物(CSH)相中层间区域的第一个量子化学研究,新鲜和降解水泥的主要成分。我们通过Tobermorite 14a模拟CSH相,具有CA / Si(C / S)的各种比例。中间层中的铀酰(VI)吸附于中间层主要配位。在较高的C / S值,铀酰水解并在第一配位壳中显示OH配体。 EXAFS数据与吸附复合物的结构特征相比很好。然而,没有测定的吸附复合物没有显示所有测量的距离,表明有几种吸附复合物共存。我们的研究结果代表了CSH中的抗胰蛋白吸附络合物的第一个综合原子尺度模型,以及相关的EXAFS结果,支持中间层吸收对CSH的摄取有相当程程度的假设。特征U-Si距离被分配给CSIO4 Tetrahedra的铀酰泡的配位模式。由于U-O-CA网桥,测量的U-CA距离出现,其数量定义U-CA距离。我们通过UO22 +计算了Ca2 +或2h(+)的交换能量来表征UO22 +吸附的能量。对于较高的C / S,该分析揭示了铀酰吸附的优选位点与经验估计的补偿电荷之间的相关性的相关性。补偿较强的遗址,主要是缺陷衍生的和三倍协调场所,是最有利的。

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