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Sorption of trivalent lanthanides and actinides onto montmorillonite: Macroscopic, thermodynamic and structural evidence for ternary hydroxo and carbonato surface complexes on multiple sorption sites

机译:三价镧系元素和act系元素在蒙脱石上的吸附:宏观,热力学和结构证据表明三价羟基和碳酸盐表面复合物在多个吸附位点上

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The credibility of long-term safety assessments of radioactive waste repositories may be greatly enhanced by a molecular level understanding of the sorption processes onto individual minerals present in the near- and far-fields. In this study we couple macroscopic sorption experiments to surface complexation modelling and spectroscopic investigations, including extended X-ray absorption fine structure (EXAFS) and time-resolved laser fluorescence spectroscopies (TRLFS), to elucidate the uptake mechanism of trivalent lanthanides and actinides (Ln/An(III)) by montmorillonite in the absence and presence of dissolved carbonate. Based on the experimental sorption isotherms for the carbonate-free system, the previously developed 2 site protolysis non electrostatic surface complexation and cation exchange (2SPNE SC/CE) model needed to be complemented with an additional surface complexation reaction onto weak sites. The fitting of sorption isotherms in the presence of carbonate required refinement of the previously published model by reducing the strong site capacity and by adding the formation of Ln/An(III)-carbonato complexes both on strong and weak sites. EXAFS spectra of selected Am samples and TRLFS spectra of selected Cm samples corroborate the model assumptions by showing the existence of different surface complexation sites and evidencing the formation of Lni/An(III) carbonate surface complexes. In the absence of carbonate and at low loadings, Ln/An(III) form strong inner-sphere complexes through binding to three Al(O,OH)(6) octahedra, most likely by occupying vacant sites in the octahedral layers of montmorillonite, which are exposed on (010) and {110} edge faces. At higher loadings, Ln/An(III) binds to only one Al octahedron, forming a weaker, edge-sharing surface complex. In the presence of carbonate, we identified a ternary mono- or dicarbonato Ln/An(III) complex binding directly to one Al(O,OH)(6) octahedron, revealing that type-A ternary complexes form with the one or two carbonate groups pointing away from the surface into the solution phase. Within the spectroscopically observable concentration range these complexes could only be identified on the weak sites, in line with the small strong site capacity suggested by the refined sorption model. When the solubility of carbonates was exceeded, formation of an Am carbonate hydroxide could be identified. The excellent agreement between the thermodynamic model parameters obtained by fitting the macroscopic data, and the spectroscopically identified mechanisms, demonstrates the mature state of the 2SPNE SC/CE model for predicting and quantifying the retention of Ln/An(III)l elements by montmorillonite-rich clay rocks. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过分子水平了解近场和远场中存在的单个矿物的吸附过程,可以大大提高对放射性废物库的长期安全性评估的信誉。在这项研究中,我们将宏观吸附实验与表面络合模型和光谱研究相结合,包括扩展X射线吸收精细结构(EXAFS)和时间分辨激光荧光光谱(TRLFS),以阐明三价镧系元素和act系元素(Ln在不存在和存在溶解碳酸盐的情况下由蒙脱石/ An(III))。基于无碳酸盐体系的实验吸附等温线,需要将先前开发的2位质子分解非静电表面络合和阳离子交换(2SPNE SC / CE)模型与弱位点上的其他表面络合反应进行补充。在碳酸盐存在下,吸附等温线的拟合需要通过减小强位点容量并增加强和弱位点上的Ln / An(III)-碳原子络合物的形成来完善先前发布的模型。选定的Am样品的EXAFS光谱和选定的Cm样品的TRLFS光谱通过显示不同表面络合位点的存在并证明Lni / An(III)碳酸盐表面络合物的形成,证实了模型假设。在无碳酸盐和低负荷的情况下,Ln / An(III)通过与三个Al(O,OH)(6)八面体的结合形成强内球络合物,很可能是占据了蒙脱土八面体层的空位,它们暴露在(010)和{110}端面上。在较高的载荷下,Ln / An(III)仅与一个Al八面体结合,形成较弱的边缘共享表面复合物。在存在碳酸盐的情况下,我们确定了直接与一个Al(O,OH)(6)八面体直接结合的三元一元或二元碳酸Ln / An(III)配合物,揭示了A型三元配合物与一种或两种碳酸盐形成远离表面指向溶液阶段的基团。在光谱可观察的浓度范围内,只能根据弱点识别出这些络合物,这与精确的吸附模型所建议的小强点容量一致。当碳酸盐的溶解度超过时,可以确定形成了碳酸氢铵。通过拟合宏观数据获得的热力学模型参数与光谱鉴定的机理之间的极好的一致性,证明了2SPNE SC / CE模型的成熟状态,该模型用于通过蒙脱石预测和量化Ln / An(III)l元素的保留。丰富的粘土岩。 (C)2016 Elsevier Ltd.保留所有权利。

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