Instituto de Ciências da Terra - Porto, DGAOT, Faculdade de Ciências, Universidade do Porto, Rua do Campo Alegre 687, 4169-007 Porto, Portugal; Geobiotec. Departamento de Geociências da Universidade de Aveiro, Campo Universitário de Santiago, 3810-193 Aveiro, Portugal.
Departamento de Química Inorgánica, Facultad de Ciencias, Universidad de Málaga. Campus de Teatino s/n, 29071 Málaga, Spain.
J Hazard Mater. 2016 Nov 5;317:246-258. doi: 10.1016/j.jhazmat.2016.05.060. Epub 2016 May 20.
The UO2(2+) adsorption on smectite (samples BA1, PS2 and PS3) with a heterogeneous structure was investigated at pH 4 (I=0.02M) and pH 6 (I=0.2M) in batch experiments, with the aim to evaluate the influence of pH, layer charge location and crystal thickness distribution. Mean crystal thickness distribution of smectite crystallite used in sorption experiments range from 4.8nm (sample PS2), to 5.1nm (sample PS3) and, to 7.4nm (sample BA1). Smaller crystallites have higher total surface area and sorption capacity. Octahedral charge location favor higher sorption capacity. The sorption isotherms of Freundlich, Langmuir and SIPS were used to model the sorption experiments. The surface complexation and cation exchange reactions were modeled using PHREEQC-code to describe the UO2(2+) sorption on smectite. The amount of UO2(2+) adsorbed on smectite samples decreased significantly at pH 6 and higher ionic strength, where the sorption mechanism was restricted to the edge sites of smectite. Two binding energy components at 380.8±0.3 and 382.2±0.3eV, assigned to hydrated UO2(2+) adsorbed by cation exchange and by inner-sphere complexation on the external sites at pH 4, were identified after the U4f7/2 peak deconvolution by X-photoelectron spectroscopy. Also, two new binding energy components at 380.3±0.3 and 381.8±0.3eV assigned to AlOUO2(+) and SiOUO2(+) surface species were observed at pH 6.
在 pH 4(I=0.02M)和 pH 6(I=0.2M)的分批实验中,研究了具有非均相结构的八氧化二铀(2+)在蒙脱石(BA1、PS2 和 PS3 样品)上的吸附,目的是评估 pH、层电荷位置和晶体厚度分布的影响。用于吸附实验的蒙脱石微晶的平均晶体厚度分布范围从 4.8nm(PS2 样品)到 5.1nm(PS3 样品),再到 7.4nm(BA1 样品)。较小的晶体具有更高的总表面积和吸附能力。八面体电荷位置有利于更高的吸附能力。Freundlich、Langmuir 和 SIPS 吸附等温线用于模拟吸附实验。使用 PHREEQC 代码模拟表面络合和阳离子交换反应,以描述八氧化二铀(2+)在蒙脱石上的吸附。在 pH 6 和更高的离子强度下,蒙脱石上吸附的八氧化二铀(2+)量显著减少,此时吸附机制仅限于蒙脱石的边缘位点。在 U4f7/2 峰解卷积后,通过 X 光电子能谱鉴定出在 pH 4 时,两个结合能组分分别为 380.8±0.3 和 382.2±0.3eV,分别归因于水合 UO2(2+)通过阳离子交换和外部位点的内球络合吸附。此外,在 pH 6 时还观察到两个新的结合能组分,分别为 380.3±0.3 和 381.8±0.3eV,分别归因于 AlOUO2(+)和 SiOUO2(+)表面物种。