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MATRIX-INDEPENDENT XRF METHODS FOR CERTIFICATION OF STANDARD REFERENCE MATERIALS

机译:矩阵无关的XRF方法,用于标准参考资料的认证

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The Spectrochemical Methods Group of the Analytical Chemistry Division at the National Institute of Standards and Technology develops and applies matrix-independent methods for its certification of Standard Reference Materials~? (SRM). Such methods are required to achieve accuracy, i.e., to minimize potential sources of analytical uncertainty. This paper delineates a matrix-independent method for X-ray fluorescence spectrometry that uses destructive sample preparation instead of matrix corrections. The method is based on borate fusion of samples and synthesis of calibration standards that closely mimic the complete composition of the fused samples. The method is described in detail and illustrated using recent work on cements and zeolites. A typical uncertainty budget is itemized and sources of uncertainty are discussed. Expanded relative uncertainties are 1 % or lower. The technique is applicable to major, minor and sometimes trace constituents. Excellent agreement is demonstrated with both a classical gravimetric method and instrumental neutron activation analysis.
机译:国家标准与技术研究所分析化学划分的分析化学划分的谱系统方法为其标准参考资料认证开发并应用了矩阵无关的方法〜? (SRM)。需要这些方法来实现准确性,即最小化分析不确定性的潜在来源。本文描绘了用于X射线荧光光谱法的矩阵无关方法,其使用破坏性样品制备而不是基质校正。该方法基于样品的硼酸盐融合和校准标准的合成,其密切地模仿熔融样品的完整组成。该方法详细描述并使用最近的水泥和沸石的工作说明。典型的不确定性预算是逐项列出的,并且讨论了不确定性的来源。扩大的相对不确定性是1%或更低。该技术适用于主要,次要,有时痕量的成分。经典重量法和仪器中子激活分析,证明了优秀的一致性。

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