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蒙脱石上铀(VI)吸附络合物与溶液化学的关系

Uranium(VI) Sorption Complexes on Montmorillonite as a Function of Solution Chemistry.

作者信息

Chisholm-Brause CJ, Berg JM, Matzner RA, Morris DE

机构信息

School of Marine Science, College of William and Mary, VIMS, Gloucester Point, Virginia, 23062

出版信息

J Colloid Interface Sci. 2001 Jan 1;233(1):38-49. doi: 10.1006/jcis.2000.7227.

Abstract

We have investigated the effect of changes in solution chemistry on the nature of uranyl sorption complexes on montmorillonite (SAz-1) at different surface coverages (1.43-53.6 µmol/g). Uranyl uptake onto SAz-1 between pH 3 and 7 was determined in both titration and batch-mode experiments. These pH values result in solutions that contain a range of monomeric and oligomeric aqueous uranyl species. Continuous-wave and time-resolved emission spectroscopies were used to investigate the nature of U(VI) sorbed to SAz-1. A discrete set of uranyl surface complexes has been identified over a wide range of pH values at these low to moderate coverages. For all samples, two surface complexes are detected with spectral characteristics commensurate with an inner-sphere complex and an exchange-site complex; the relative abundance of these two species is similar over these pH values at low coverage (1.43-2.00 µmol/g). In addition, surface species having spectra consistent with polymeric hydroxide-like sorption complexes form at the moderate coverages ( approximately 34-54 µmol/g), increasing in abundance as the capacity of the amphoteric surface sites is exceeded. Furthermore, a species with spectral characteristics anticipated for an outer-sphere surface complex is observed for wet paste samples at low pH (3.7-4.4) and both low ( approximately 2 µmol/g) and moderate ( approximately 40 µmol/g) coverage. There are only subtle differences in the nature of sorption complexes formed at different pH values but similar coverages, despite markedly different uranyl speciation in solution. These results indicate that the speciation in the solution has minimal influence on the nature of the sorption complex under these experimental conditions. The primary control on the nature and abundance of the different uranyl sorption complexes appears to be the relative abundance and reactivity of the different sorption sites. Copyright 2001 Academic Press.

摘要

我们研究了溶液化学变化对不同表面覆盖度(1.43 - 53.6 µmol/g)下蒙脱石(SAz - 1)上铀酰吸附络合物性质的影响。在滴定和批量模式实验中测定了pH值为3至7时SAz - 1对铀酰的吸附情况。这些pH值对应的溶液中含有一系列单体和低聚态的水合铀酰物种。采用连续波和时间分辨发射光谱研究吸附在SAz - 1上的U(VI)的性质。在这些低至中等覆盖度下,已在很宽的pH值范围内鉴定出一组离散的铀酰表面络合物。对于所有样品,检测到两种表面络合物,其光谱特征与内球络合物和交换位点络合物相符;在低覆盖度(1.43 - 2.00 µmol/g)下,这两种物种在这些pH值范围内的相对丰度相似。此外,在中等覆盖度(约34 - 54 µmol/g)下形成了光谱与聚合氢氧化物类吸附络合物一致的表面物种,随着两性表面位点容量被超过,其丰度增加。此外,在低pH值(3.7 - 4.4)以及低(约2 µmol/g)和中等(约40 µmol/g)覆盖度的湿糊样品中观察到一种具有外球表面络合物预期光谱特征的物种。尽管溶液中铀酰的形态明显不同,但在不同pH值但相似覆盖度下形成的吸附络合物性质只有细微差异。这些结果表明,在这些实验条件下,溶液中的形态对吸附络合物的性质影响极小。不同铀酰吸附络合物的性质和丰度的主要控制因素似乎是不同吸附位点的相对丰度和反应性。版权所有2001年学术出版社。

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