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利用 TRLFS 和激发发射矩阵的 PARAFAC 技术,通过 pH 值对水合氧化铝上的 U(VI)多相形态进行鉴定和定量。

Identification and Quantification of Multiphase U(VI) Speciation on Gibbsite with pH Using TRLFS and PARAFAC of Excitation Emission Matrices.

机构信息

Centre for Radiochemistry Research, Department of Chemistry, The University of Manchester, Manchester M13 9PL, U.K.

Research Centre for Radwaste Disposal and Williamson Research Centre for Molecular Environmental Science, Department of Earth and Environmental Sciences, The University of Manchester, Manchester M13 9PL, U.K.

出版信息

Environ Sci Technol. 2024 Oct 8;58(40):17916-17925. doi: 10.1021/acs.est.4c06133. Epub 2024 Sep 24.

Abstract

The significant abundance of uranium in radioactive waste inventories worldwide necessitates a thorough understanding of its behavior. In this work, the speciation of uranyl(VI), (UO) in a gibbsite system under ambient conditions has been determined as a function of pH by deconvolution and analysis of luminescence spectroscopic data. Uniquely, a combined experimental and statistical approach utilizing time-resolved luminescence spectroscopy and parallel factor analysis (PARAFAC) of excitation emission matrices has been successfully utilized to identify four separate luminescent U(VI) species in the uranyl-gibbsite system for the first time. The speciation of all luminescent U(VI) species in an environmentally relevant system over a pH range of 6-11 is discerned through the analysis of emission fingerprints at low temperature (20 K). Comparison of the deconvoluted luminescence spectra with mineral standards and geochemical models of the system allows the assignment of the luminescent chemical species as metaschoepite, Na-compreignacite, surface adsorbed ≡AlO-UO(OH) and ≡AlO-UO(CO) complexes, with assignments supported by fitting of extended X-ray absorption fine structure data. The combined spectroscopic techniques in this study show that assignment and quantification of uranyl(VI) species in a sorption system over a large pH range can be accurately achieved using PARAFAC to deconvolute a three way emission spectroscopic data set.

摘要

全球放射性废物库存中铀的丰度很高,这就需要我们深入了解其行为。在这项工作中,通过对发光光谱数据的解卷积和分析,确定了环境条件下三水铝石体系中铀酰(VI)(UO)的形态随 pH 的变化。独特的是,首次成功地利用时间分辨发光光谱和激发发射矩阵的平行因子分析(PARAFAC)相结合的实验和统计方法,在铀酰-三水铝石体系中鉴定出了四种单独的发光 U(VI)物种。通过在低温(20 K)下分析发射指纹,在环境相关体系中 pH 范围为 6-11 时,可辨别所有发光 U(VI)物种的形态。通过与矿物标准和体系的地球化学模型比较解卷积的发光光谱,可以将发光化学物质分配为类水磷钙铀矿、Na-普雷尼凯石、表面吸附的 ≡AlO-UO(OH)和 ≡AlO-UO(CO)配合物,扩展 X 射线吸收精细结构数据的拟合支持这些分配。本研究中的综合光谱技术表明,在较大 pH 范围内的吸附体系中,通过 PARAFAC 解卷积三向发射光谱数据集,可以准确地对铀酰(VI)物种进行分配和定量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/422f/11466309/b2b6358063dd/es4c06133_0001.jpg

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