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Evaluation of uncertainty in the energy dispersive X-ray fluorescence determination of platinum in alumina

机译:能量色散X射线荧光法测定氧化铝中铂的不确定度评估

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Evaluation of uncertainty in the Energy Dispersive X-ray Fluorescence (EDXRF) spectrometric determination of platinum in alumina catalysts is discussed. Pressed pellets of the platinum standard and a catalyst sample were prepared by using microcrystalline cellulose powder as the base material. A linear calibration of the Xray fluorescence spectrometer was obtained in the range of 0.1-3 mg g(-1) of platinum using pellets of matrix matched synthetic standards. The calibration function was obtained through bivariate least squares fitting, in conjunction with weighted regression of the residuals. The EDXRF results were compared with those obtained by instrumental neutron activation analysis and inductively coupled plasma optical emission spectrometry. Analysis of variance established the statistical parity of the results obtained by all the three techniques. A comprehensive evaluation of the various sources of uncertainty in the complete measurement process was carried out using a bottom-up approach. The main source of uncertainty was identified as the calibration of the EDXRF spectrometer, in which the major share was attributed to the intercept of the calibration function.
机译:讨论了能量色散X射线荧光光谱(EDXRF)测定氧化铝催化剂中铂的不确定度的评估。通过使用微晶纤维素粉末作为基础材料,制备铂标准品的压制颗粒和催化剂样品。使用基质匹配的合成标准品颗粒,在0.1-3 mg g(-1)的铂范围内获得X射线荧光光谱仪的线性校准。通过二元最小二乘拟合以及残差的加权回归获得校准函数。将EDXRF结果与通过仪器中子活化分析和电感耦合等离子体发射光谱法获得的结果进行比较。方差分析建立了通过所有三种技术获得的结果的统计均等性。使用自下而上的方法对整个测量过程中各种不确定性来源进行了综合评估。不确定性的主要来源被确定为EDXRF光谱仪的校准,其中主要份额归因于校准功能的拦截。

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