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双束宏观-微束X 射线荧光光谱仪在开发历史砂浆及相关材料特性定量方法中的应用。

Usefulness of a Dual Macro- and Micro-Energy-Dispersive X-Ray Fluorescence Spectrometer to Develop Quantitative Methodologies for Historic Mortar and Related Materials Characterization.

机构信息

Department of Analytical Chemistry, Faculty of Science and Technology , University of Basque Country UPV/EHU , P.O. Box 644, 48080 Bilbao , Basque Country Spain.

Department of Analytical Chemistry, Faculty of Pharmacy , University of the Basque Country UPV/EHU , P.O. Box 450, 01080 , Vitoria-Gasteiz , Basque Country Spain.

出版信息

Anal Chem. 2018 May 1;90(9):5795-5802. doi: 10.1021/acs.analchem.8b00216. Epub 2018 Apr 20.

DOI:10.1021/acs.analchem.8b00216
PMID:29641899
Abstract

Wavelength dispersive X-ray fluorescence (WD-XRF) spectrometry has been widely used for elemental quantification of mortars and cements. In this kind of instrument, samples are usually prepared as pellets or fused beads and the whole volume of sample is measured at once. In this work, the usefulness of a dual energy dispersive X-ray fluorescence spectrometer (ED-XRF), working at two lateral resolutions (1 mm and 25 μm) for macro and microanalysis respectively, to develop quantitative methods for the elemental characterization of mortars and concretes is demonstrated. A crucial step before developing any quantitative method with this kind of spectrometers is to verify the homogeneity of the standards at these two lateral resolutions. This new ED-XRF quantitative method also demonstrated the importance of matrix effects in the accuracy of the results being necessary to use Certified Reference Materials as standards. The results obtained with the ED-XRF quantitative method were compared with the ones obtained with two WD-XRF quantitative methods employing two different sample preparation strategies (pellets and fused beads). The selected ED-XRF and both WD-XRF quantitative methods were applied to the analysis of real mortars. The accuracy of the ED-XRF results turn out to be similar to the one achieved by WD-XRF, except for the lightest elements (Na and Mg). The results described in this work proved that μ-ED-XRF spectrometers can be used not only for acquiring high resolution elemental map distributions, but also to perform accurate quantitative studies avoiding the use of more sophisticated WD-XRF systems or the acid extraction/alkaline fusion required as destructive pretreatment in Inductively coupled plasma mass spectrometry based procedures.

摘要

波长色散 X 射线荧光光谱法(WD-XRF)已广泛用于灰浆和水泥的元素定量分析。在这种仪器中,样品通常制备成压片或熔融珠,然后一次性测量整个样品体积。在这项工作中,演示了一种双能色散 X 射线荧光光谱仪(ED-XRF)的有用性,该仪器在两个横向分辨率(1mm 和 25μm)下分别用于宏观和微观分析,以开发用于灰浆和混凝土元素特征化的定量方法。在使用这种光谱仪开发任何定量方法之前,一个关键步骤是验证标准在这两个横向分辨率下的均匀性。这种新的 ED-XRF 定量方法还证明了基质效应在结果准确性中的重要性,有必要使用认证参考材料作为标准。ED-XRF 定量方法获得的结果与使用两种不同样品制备策略(压片和熔融珠)的两种 WD-XRF 定量方法获得的结果进行了比较。选择的 ED-XRF 和两种 WD-XRF 定量方法都应用于实际灰浆的分析。ED-XRF 结果的准确性与 WD-XRF 相当,除了最轻的元素(Na 和 Mg)。这项工作的结果证明,μ-ED-XRF 光谱仪不仅可以用于获取高分辨率元素图谱分布,还可以进行准确的定量研究,避免使用更复杂的 WD-XRF 系统或基于感应耦合等离子体质谱的程序所需的酸提取/碱性熔融等破坏性预处理。

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