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A distance correction method for improving the accuracy of particle coal online X-ray fluorescence analysis - Part 2: Method and experimental investigation

机译:一种提高粒子煤X射线荧光分析精度的距离校正方法 - 第2部分:方法和实验研究

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摘要

The distance from X-Ray Fluorescence (XRF) spectrometer to sample surface always changes with the different coal's particle sizes, resulting in the inaccuracy of online XRF measurement. To improve the accuracy of particle coal online XRF analysis, a distance correction method was established elaborated by iteration, which was based on the relationship between the XRF intensity and the distance. In order to verify the effectiveness of this method, five different particle size coal samples with same components have been measured by the online XRF analyzer directly above the conveyor belt, in the meanwhile, the distances between XRF spectrometer and samples' surface were obtained by a laser rangefinder. The results showed that the average distances are decreased with decreasing the particle size. By comparing the results of before and after applying the distance correction method, we demonstrated that the measurement accuracy of online XRF analysis for particle coal can be significantly increased. The distance correction method can be used for the development of online XRF analysis techniques applicable for real-time industrial processes.
机译:X射线荧光(XRF)光谱仪对样品表面的距离总是随着不同煤的粒度变化,导致在线XRF测量的不准确性。为了提高粒子煤在线XRF分析的准确性,通过迭代建立距离校正方法,其基于XRF强度与距离之间的关系。为了验证该方法的有效性,通过在传送带上方直接通过在线XRF分析仪测量具有相同组件的五种不同的粒度煤样,同时,XRF光谱仪和样品表面之间的距离是通过A获得的激光测距仪。结果表明,随着粒度的降低,平均距离减小。通过比较施加距离校正方法之前和之后的结果,我们证明了粒子煤炭XRF分析的测量精度可以显着增加。距离校正方法可用于开发适用于实时工业过程的在线XRF分析技术。

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