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Quantitative trace element analysis of individual fly ash particles by means of X-ray microfluorescence

机译:X射线微荧光法定量粉煤灰颗粒的痕量元素分析

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A new quantification procedure was developed for the evaluation of X-ray microfluorescence (XRF) data sets obtained from individual particles, based on iterative Monte Carlo (MC) simulation. Combined with the high sensitivity of synchrotron radiation-induced XRF spectroscopy, the method was used to obtain quantitative information down to trace-level concentrations from micrometer-sized particulate matter. The detailed XRF simulation model was validated by comparison of calculated and experimental XRF spectra obtained for glass microsphere standards, resulting in uncertainties in the range of 3-10% for the calculated elemental sensitivities. The simulation model was applied for the quantitative analysis of X-ray tube and synchrotron radiation-induced scanning micro-XRF spectra of individual coal and wood fly ash particles originating from different Hungarian power, plants. By measuring the same particles by both methods the major, minor, and trace element compositions of the particles were determined. The uncertainty of the MC based quantitative analysis scheme is estimated to be in the range of 5-30%. [References: 21]
机译:基于迭代蒙特卡洛(MC)模拟,开发了一种新的量化程序,用于评估从单个粒子获得的X射线微荧光(XRF)数据集。结合高灵敏度的同步辐射X射线荧光光谱法,该方法用于从微米级颗粒物获得低至痕量浓度的定量信息。通过比较玻璃微球标准品的计算XRF光谱和实验XRF光谱,验证了详细的XRF模拟模型,从而导致计算出的元素敏感性的不确定性在3-10%的范围内。该仿真模型用于X射线管的定量分析和同步辐射辐射诱导的来自不同匈牙利电厂的煤粉煤灰和木粉煤灰颗粒的扫描微XRF光谱。通过两种方法测量相同的颗粒,可以确定颗粒的主要,次要和痕量元素组成。基于MC的定量分析方案的不确定度估计为5-30%。 [参考:21]

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