Drot R, Simoni E, Alnot M, Ehrhardt JJ
Groupe de Radiochimie, Institut de Physique Nucléaire d'Orsay, Bât. 100, Orsay, 91406, France
J Colloid Interface Sci. 1998 Sep 15;205(2):410-416. doi: 10.1006/jcis.1998.5652.
In order to characterize the structure of the surface complexes formed by interaction between uranyl and europium (III) ions and the surface of solid matrices, optical and X-ray photoelectron spectroscopies experiments on uranyl/europium loaded phosphate solids (Th4P2O7(PO4)4, ZrP2O7, and Zr2O(PO4)2) have been performed. The use of complimentary spectroscopic techniques allows an identification of the sorption mechanism and a structural characterization of the sorption sites and the sorbed species on phosphate surfaces. The samples were prepared from aqueous uranyl or europium solutions in the pH range from 1.5 to 6.0. The surface coverage was varied from 1 to 40 % of a monolayer. The differences between the emission spectra of europium ions either sorbed on the surface of phosphate samples or doped inside the solid unambiguously indicates that these sorbed ions are exclusively located on the surface and that they do not migrate inside the matrix, which shows clearly that surface complexation is involved during the sorption process. The U4f XPS spectrum of uranyl ions sorbed on zirconium diphosphate exhibits only one component, while the spectrum corresponding to uranium on thorium matrix shows two different unresolved peaks attributed to two different chemical environments. These results, corroborated by the uranyl emission spectra and the associated decay times and those obtained by optical spectroscopy of europium sorbed on the same solids, have been interpreted in terms of two sorption sites probably formed by the oxygens of the PO4 and P2O7 surface groups. Copyright 1998 Academic Press.
为了表征铀酰离子与铕(III)离子相互作用形成的表面络合物以及固体基质表面的结构,我们对负载铀酰/铕的磷酸盐固体(Th4P2O7(PO4)4、ZrP2O7和Zr2O(PO4)2)进行了光学和X射线光电子能谱实验。使用互补的光谱技术能够确定吸附机制,并对磷酸盐表面的吸附位点和吸附物种进行结构表征。样品由pH值在1.5至6.0范围内的铀酰或铕水溶液制备而成。表面覆盖率在单层的1%至40%之间变化。吸附在磷酸盐样品表面或掺杂在固体内部的铕离子发射光谱之间的差异明确表明,这些吸附离子仅位于表面,且不会在基质内部迁移,这清楚地表明吸附过程涉及表面络合作用。吸附在二磷酸锆上的铀酰离子的U4f XPS光谱仅显示一个组分,而钍基质上与铀对应的光谱显示出两个不同的未解析峰,这归因于两种不同的化学环境。这些结果得到了铀酰发射光谱及其相关衰减时间的证实,以及通过对吸附在相同固体上的铕进行光谱学研究所得结果的支持,并根据可能由PO₄和P₂O₇表面基团的氧形成的两个吸附位点进行了解释。版权所有1998年学术出版社。