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首页> 外文期刊>X-Ray Spectrometry: An International Journal >Calibrating standards using chemical reagents for glass bead x-ray fluorescence analyses of geochemical samples
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Calibrating standards using chemical reagents for glass bead x-ray fluorescence analyses of geochemical samples

机译:使用化学试剂校准地球化学样品的玻璃珠X射线荧光分析标准品

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摘要

Calibration standards for glass bead x-ray fluorescence (XRF) analysis of geochemical samples are discussed in this article. Although rock references issued by geological organizations have often been applied to glass bead XRF, several problems remain: limited varieties and numbers, and uncertainty related to uncertified (recommended or preferred) values. Various geological references (e.g. rocks, sediments, and materials) having extensive elemental composition have often been applied for calibration. The XRF intensities must be corrected using an appropriate matrix-correction method because the matrix effect resulting from the application of various references was not negligible. Attempts have been made to extend the calibration range by geological reference with such approaches as blending some references and adding chemical reagents to references. However, geological references for the calibrating standards should be used intact because the reliability of the certified values of references is lost. Synthesized calibrating standards with chemical reagents have constitutive properties which are superior to those of the rock references. Synthesized standards can ensure the traceability of the analytical procedure and the resultant accuracy and propriety of calibration curves. Reliable calibration curves are obtainable by designing such parameters as the number of plots, plotting arrangements, and calibrating ranges. Synthesized standards must be prepared by fitting the elemental composition to each geological sample. This discussion reviews calibration standards applying rock references or chemical reagents related to glass bead XRF. Copyright (C) 2008 John Wiley & Sons, Ltd.
机译:本文讨论了地球化学样品的玻璃微珠X射线荧光(XRF)分析的校准标准。尽管由地质组织发布的岩石参考文献经常被应用于XRF玻璃珠,但仍然存在一些问题:品种和数量有限,以及与未经认证(推荐或推荐)值相关的不确定性。具有广泛元素组成的各种地质​​参考文献(例如岩石,沉积物和材料)通常已用于校准。必须使用适当的矩阵校正方法来校正XRF强度,因为应用各种参考文献所产生的矩阵效应不可忽略。已经尝试通过诸如混合一些参考并且向参考添加化学试剂的方法来通过地质参考来扩展校准范围。但是,应完整使用用于校准标准品的地质参考资料,因为会丢失参考资料认证值的可靠性。用化学试剂合成的校准标样的本构特性优于岩石参考标准。合成的标准品可确保分析过程的可追溯性以及校准曲线的准确性和适当性。通过设计诸如绘图数量,绘图布置和校准范围之类的参数,可以获得可靠的校准曲线。必须通过将元素组成适合每个地质样品来制备合成标准品。该讨论回顾了应用与玻璃微珠XRF相关的岩石参照物或化学试剂的校准标准。版权所有(C)2008 John Wiley&Sons,Ltd.

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