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Portable x-ray fluorescence measurement viability in organic rich soils: pXRF response as a function of organic matter presence.

机译:在富含有机物的土壤中进行便携式X射线荧光测量的可行性:pXRF响应随有机物的存在而变化。

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摘要

Portable X-Ray fluorescence provides a cost effective method for producing rapid geochemical data. With advancements in X-Ray generation and detection technology, pXRF has become feasible for use on pedologic materials. Factors affecting pXRF soil measurements such as heterogeneity, moisture content, object geometry, and matrix interferences are widely recognized. However, the influence of organic matter on pXRF soil measurements is poorly understood. This study examined the influence of organic matter fraction on pXRF trace metal measurements in a soil matrix. Incremental addition of three organic matter surrogates (cellulose, graphite powder, and confectioner's sugar) was used to investigate the influence of increasing organic matter content up to approximately 30%. Each organic matter surrogate was independently added to and homogenized with samples of Natural Resources Canada Till-1 standard reference material that was initially expunged of organic matter through combustion. Incremental addition was performed 20 times for each surrogate, and concentrations of arsenic, chromium, iron, manganese, lead, rubidium, strontium, thorium, titanium, vanadium, zinc and zirconium were measured as a function of varying organic matter fractions using a Thermo Scientific Niton XL3t GOLDD+ 950 XRF analyzer. Results demonstrate attenuation of the pXRF signal and elementally-dependent deviation from the expected concentration with increasing sample organic matter fraction. Based on the results, a pXRF organic matter fraction-dependent calibration method was developed and its performance was evaluated using four unmodified NRCan soil standards (Till-1, Till-2, Till-3, Till-4) with known organic matter content. In general, the new method improved measurement accuracy compared to conventional pXRF calibration methods. Because soils inherently contain varying amounts of organic matter, these results suggest more accurate geochemical data can be generated via pXRF if soil organic matter fraction is quantified and taken into account during measurement calibration.
机译:便携式X射线荧光技术提供了一种经济高效的方法来生成快速的地球化学数据。随着X射线生成和检测技术的进步,pXRF已成为可用于儿科材料的可行方法。广泛认识到影响pXRF土壤测量的因素,例如异质性,水分含量,物体几何形状和基质干扰。但是,人们对有机物对pXRF土壤测量的影响知之甚少。这项研究检查了有机质分数对土壤基质中pXRF痕量金属测量的影响。增量添加了三种有机物替代物(纤维素,石墨粉和糖果糖),以研究将有机物含量提高至大约30%的影响。将每种有机物质替代物分别添加到加拿大自然资源公司Till-1标准参考物质的样品中并进行均质化,该样品最初通过燃烧去除了有机物。每种替代物进行增量添加20次,并使用Thermo Scientific测量了砷,铬,铁,锰,铅,rub,锶,th,钛,钒,锌和锆的浓度,作为不同有机物含量的函数Niton XL3t GOLDD + 950 XRF分析仪结果表明,随着样品有机物含量的增加,pXRF信号的衰减以及与预期浓度的元素相关偏差。根据结果​​,开发了一种pXRF依赖于有机物含量的校准方法,并使用有机物含量已知的四种未经修饰的NRCan土壤标准品(Till-1,Till-2,Till-3,Till-4)评估了其性能。通常,与传统的pXRF校准方法相比,该新方法提高了测量精度。由于土壤固有地含有不同数量的有机物,因此这些结果表明,如果对土壤有机物含量进行量化并在测量校准过程中加以考虑,则可以通过pXRF生成更准确的地球化学数据。

著录项

  • 作者

    Ravansari, Roozbeh.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Geology.;Agriculture.
  • 学位 M.S.
  • 年度 2016
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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