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A novel confocal XRF-Raman spectrometer and FPM model for analysis of solid objects and liquid substances

机译:一种新型共焦XRF拉曼光谱仪和用于分析固体物质和液体物质的FPM模型

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摘要

A new table-top combined spectrometer was designed and constructed consisting of X-ray fluorescence and Raman spectrometers for spot-analysis of elementary and chemical composition of solid and liquid substances for industrial analytical applications. For XRF analysis a silicon drift detector and an air-cooled low-power transmission type X-ray tube were built in the combined XRF-Raman spectrometer. Both spectrometer units were connected hermetically to a sealed radiation chamber that can be optionally evacuated or it can be filled with helium under atmospheric pressure in order to improve the analytical sensitivity in the region of low-atomic numbers. The XRF and the Raman devices operate in a confocal geometrical arrangement, where the three axes of the Raman laser beam, the exciter X-ray beam, and the X-ray detection channel focus on the same spot of the examined object. The confocal spot of the combined spectrometer can be positioned along the vertical axis with an optional selected step-size of over 0.2 mm. For the precise geometrical adjustment of the focal spot on the sample surface an optical positioning system was designed and built into the irradiation chamber consisting of a mini camera and two mini laser modules. A new FPM model, its algorithm of numerical solution and software were developed for quantitative XRF analysis. The FPM model is based on application of a series of virtual monochromatic X-ray sources used for excitation of the sample elements substituting the experimentally determined spectra of the X-ray tube. The numerical FPM calculations were performed in a matrix-oriented MATLAB programming environment by using self-made software. The model uses both K- and L-lines for the improvement of the accuracy of the calculations and to extend the range of the atomic number of the analysed chemical elements. This FPM model is suitable for the calculation of the concentrations of chemical elements in 4-5 orders of magnitude for liquid and solid materials. In order to maximise the analytical information simultaneous analyses of the Cu content were performed by Raman and XRF spectrometry in an aqueous solution of CuSO4 and citric acid. This experiment proved the synergy of the combined use of these two analytical methods, since both molecular and atomic composition could be analysed quantitatively in the same liquid sample.
机译:设计并构建了一种新的桌面组合光谱仪,由X射线荧光和拉曼光谱仪组成,用于分析工业分析应用的固体和液体物质的基本和化学成分。对于XRF分析,在组合的XRF拉曼光谱仪中建立了硅漂移检测器和风冷的低功率传输型X射线管。这两个光谱仪单元都密封地连接到密封的辐射室,所述密封的辐射室可任选地抽空,或者它可以在大气压下填充氦气,以提高低原子数区域的分析敏感性。 XRF和拉曼装置以共聚焦几何布置操作,其中拉曼激光束的三个轴,激励器X射线束和X射线检测通道聚焦在所检查对象的相同点上。组合光谱仪的共焦点可以沿垂直轴定位,任选的选定步进尺寸超过0.2mm。为了精确地调整样品表面上的焦点,设计了光学定位系统并内置于由迷你相机和两个迷你激光模块组成的照射室中。开发了一种新的FPM模型,其数值解决方案和软件算法用于定量XRF分析。 FPM模型基于应用一系列虚拟单色X射线源,用于激励代替X射线管的实验确定的光谱的样本元素。通过使用自制作软件在面向矩阵的MATLAB编程环境中执行数值FPM计算。该模型使用K-and L-线来提高计算的准确性,并延长分析的化学元素的原子序数的范围。该FPM模型适用于计算液体和固体材料的4-5个级别中化学元素的浓度。为了最大化Cu含量的分析信息,通过拉曼和XRF光谱法在CuSO4和柠檬酸的水溶液中进行Cu含量。该实验证明了这种两种分析方法的合并使用的协同作用,因为分子和原子组合物可以在相同的液体样品中定量分析。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2019年第8期|1652-1664|共13页
  • 作者单位

    Budapest Univ Technol & Econ Inst Nucl Tech Muegyet Rkp 9 H-1111 Budapest Hungary;

    Paks II Ltd POB 116 H-7030 Paks Hungary;

    Budapest Univ Technol & Econ Inst Nucl Tech Muegyet Rkp 9 H-1111 Budapest Hungary;

    Budapest Univ Technol & Econ Inst Nucl Tech Muegyet Rkp 9 H-1111 Budapest Hungary;

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