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Calibration of portable X-ray fluorescence equipment for the geochemical analysis of carbonate matrices

机译:用于碳酸盐基质地球化学分析的便携式X射线荧光设备的校准

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摘要

A methodology was developed for the calibration of carbonate matrices using portable X-ray fluorescence equipment (pXRF), which involved the analysis of 11 solid mixtures prepared with certified reference material PACS-3 and an analytical CaCO3 reagent as diluent. Of the 31 elements detected in the solid mixtures, significant linear regressions (P < 0.001) were obtained for 20 of them (Al, As, Ca, Cu, Fe, Hg, Mn, Mo, P, Pb, S, Si, Sr, Ti, Zn, K, V, Rb, Y, Zr). The first 17 yielded the best fit with a correlation coefficient of >0.90. The elements Rb, Zr and Y could have been reliably measured with the pXRF if their certified concentrations in PACS-3 were reported, given that they showed a highly significant correlation (P < 0.001) with their respective percentages in the solid mixture. The main advantages of the calibration method include (1) its low cost resulting from the use of a single certified reference material, (2) an excellent linear fit (R = 0.924 to 1.000, for Mo and Zn, respectively), obtained in the calibration, and (3) the possibility of combination with other calibration techniques reported in the literature. The new calibration technique was used to determine the concentrations of major and trace elements in carbonate sediments of the Yucatan continental shelf. Finally, the spatial sampling resolution of the pXRF, equivalent to the diameter of the X-ray beam, was determined to be 625 +/- 0.55 mm. This methodology allows rapid analysis, low cost and shows an excellent application to carbonate matrices. (C) 2019 Elsevier B.V. All rights reserved.
机译:开发了一种使用便携式X射线荧光设备(pXRF)校准碳酸盐基质的方法,该方法涉及分析以认证的参考材料PACS-3和分析型CaCO3试剂作为稀释剂制备的11种固体混合物。在固体混合物中检测到的31种元素中,其中20种(Al,As,Ca,Cu,Fe,Hg,Mn,Mo,P,Pb,S,Si,Sr)获得了显着的线性回归(P <0.001) ,Ti,Zn,K,V,Rb,Y,Zr)。前17个产生最佳拟合,相关系数> 0.90。如果报告了PACS-3中Rb,Zr和Y的元素在固体混合物中的百分比具有高度显着的相关性(P <0.001),则可以用pXRF可靠地测量Rb,Zr和Y元素。校准方法的主要优点包括:(1)使用单一认证的参考材料可降低成本;(2)优异的线性拟合度(对于Mo和Zn分别为R = 0.924至1.000)。 (3)与文献中报道的其他校准技术结合使用的可能性。新的校准技术用于确定尤加坦大陆架碳酸盐沉积物中主要和微量元素的浓度。最后,pXRF的空间采样分辨率等于X射线束的直径,确定为625 +/- 0.55 mm。这种方法可以进行快速分析,低成本,并显示出对碳酸盐基质的出色应用。 (C)2019 Elsevier B.V.保留所有权利。

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  • 来源
    《Sedimentary geology》 |2019年第8期|105517.1-105517.7|共7页
  • 作者

  • 作者单位

    Univ Autonoma Baja California Inst Invest Oceanol Posgrad Oceanog Costera Fac Ciencias Marinas Apdo Postal 76 Ensenada 22800 Baja California Mexico;

    Univ Autonoma Baja California Inst Invest Oceanol Campus Punta Morro Apdo Postal 453 Ensenada 22800 Baja California Mexico;

    Univ Autonoma Baja California Fac Ciencias Marinas Apdo Postal 76 Ensenada 22800 Baja California Mexico;

    Univ Santiago de Compostela Fac Biol Dept Edafol & Quim Agr Campus Vida Santiago De Compostela 15782 Spain;

    UNAM Unidad Quim Sisal Fac Quim Puerto De Abrigo S-N Sisal 97356 Yucatan Mexico;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Major and trace elements; Carbonate sediments; pXRF calibration procedure; pXRF resolution; Yucatan continental shelf;

    机译:主要和微量元素;碳酸盐沉积物;pXRF校准程序;pXRF分辨率;尤加坦大陆架;

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