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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Evaluation and calibration of a Field Portable X-Ray Fluorescence spectrometer for quantitative analysis of siliciclastic soils and sediments
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Evaluation and calibration of a Field Portable X-Ray Fluorescence spectrometer for quantitative analysis of siliciclastic soils and sediments

机译:硅质土和沉积物定量分析的现场便携式X射线荧光光谱仪的评估和校准

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摘要

This paper documents.the evaluation of a Field Portable X-Ray Fluorescence spectrometer (FP-XRF) as a bench top laboratory unit with regard to quantitative elemental analysis of siliciclastic soils and sediments. With the end-user in mind, we outline a calibration scheme that offers significant improvement in data quality over the manufacturer's calibration. Our calibration approach is based on Standard Reference Materials (SRMs) as calibration standards, the use of least-squares regression techniques that allow for uncertainty in both x and y data (i. e., type Ⅱ linear regression), propagation of error with respect to predicted concentrations, and goodness of fit evaluation. Data presented include the repeated analysis of numerous standard reference sediments and soils, which are used to evaluate the instrument response to changes in concentration, signal stability over the course of ~1 year, and calibration model suitability. We present Hudson River estuary sediment data along with independent confirmatory analyses as a demonstration. Our results for the estuarine sediments are in very good agreement with independent laboratory analyses, indicating that the FP-XRF is comparable to traditional laboratory instrument/analytical techniques, and capable of providing high quality data for numerous elements.
机译:本文记录了作为台式实验室单元的现场便携式X射线荧光光谱仪(FP-XRF)对硅质碎屑土壤和沉积物的定量元素分析的评估。考虑到最终用户,我们概述了一种校准方案,与制造商的校准相比,该方案可显着改善数据质量。我们的校准方法基于标准参考材料(SRM)作为校准标准,使用最小二乘回归技术,该技术允许x和y数据都存在不确定性(即Ⅱ型线性回归),误差相对于预测值的传播浓度和拟合优度评估。所提供的数据包括对许多标准参考沉积物和土壤的重复分析,这些分析物用于评估仪器对浓度变化的响应,约1年内的信号稳定性以及校准模型的适用性。我们将展示哈德逊河河口沉积物数据以及独立的验证性分析,以作为演示。我们对河口沉积物的结果与独立的实验室分析非常吻合,这表明FP-XRF可与传统的实验室仪器/分析技术相提并论,并且能够为众多元素提供高质量的数据。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2011年第2期|p.395-405|共11页
  • 作者单位

    Lamont-Doherty Earth Observatory of Columbia University, Palisades,NY, 10964, USA;

    Lamont-Doherty Earth Observatory of Columbia University, Palisades,NY, 10964, USA;

    Schlumberger-Doll Research, Cambridge, MA, 02139;

    Environmental Science Department, Barnard College, New York, NY,10025, USA;

    Lamont-Doherty Earth Observatory of Columbia University, Palisades,NY, 10964, USA,Environmental Science Department, Barnard College, New York, NY,10025, USA;

    Department of Earth and Environmental Sciences, Columbia University,New York, NY, 10025, USA;

    Environmental Science Department, Barnard College, New York, NY,10025, USA;

    Environmental Science Department, Barnard College, New York, NY,10025, USA;

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