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A distance correction method for improving the accuracy of particle coal online X-ray fluorescence analysis - Part 1: Theoretical dependence of XRF intensity on the distance

机译:一种距离校正方法,提高粒煤在线X射线荧光分析的准确性 - 第1部分:XRF强度对距离的理论依赖性

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摘要

During online X-ray fluorescence (XRF) measurement, the distance from XRF spectrometer to the sample surface always changes due to the rough surface textures of pulverized coal, resulting in changes in the X-ray fluorescent intensity and inaccuracy of online XRF measurement. To solve the impact of the sample's rough surface textures on the measurement accuracy, the theory and validity details of the dependence of XRF intensity on the distance as well as the comparison of the formula derivation and experimental verification were elaborated in the present research. A typical XRF calculation model has been built for theoretical derivation. The expression of the relationship between the XRF intensity and the distance from XRF spectrometer to sample surface was derived, where the variation of the distance influenced five physical phenomena: (1) absorption of X-rays by the air, (2) irradiated surface area of the samples, (3) changes in exit angle, (4) changes in solid angle and (5) absorption of X-ray fluorescence by the air. The intensities of the Fe K alpha spectral lines in iron were calculated and agreed with the experiments very well, indicating that the expression of the dependence was accurate. The dependence of X-ray fluorescence intensity on the distance is the theoretical basis of the distance correction method to improve the accuracy of online XRF analysis techniques in industrial processes.
机译:在在线X射线荧光(XRF)测量期间,由于粉煤煤的粗糙表面纹理,从XRF光谱仪到样品表面的距离总是变化,导致X射线荧光强度和在线XRF测量的不准确性发生变化。为了解决样品粗糙表面纹理对测量精度的影响,在本研究中阐述了XRF强度对距离的依赖性的理论和有效性细节以及公式推导和实验验证的比较。构建了一个典型的XRF计算模型用于理论推导。推导出XRF强度与XRF光谱仪距离与样品表面之间关系的表达,其中距离的变化影响了五种物理现象:(1)空气吸收X射线,(2)辐照表面积在样品中,(3)出射角的变化,(4)固体变化和(5)空气吸收X射线荧光。计算铁中的FeKα光谱线的强度并同意实验非常好,表明依赖性的表达是准确的。 X射线荧光强度对距离的依赖性是距离校正方法的理论基础,以提高工业过程中在线XRF分析技术的准确性。

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