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Inter-laboratory comparison of ED-XRF/PIXE analytical techniques in the elemental analysis of filter-deposited multi-elemental certified reference materials representative of ambient particulate matter

机译:ED-XRF / PIXE分析技术在滤波器沉积多元素认证参考资料的元素分析中的实验室间比较,其颗粒物质

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摘要

The quantification of the elemental concentration of ambient particulate matter is a challenging task because the observed elemental loadings are not well above the detection limit for most analytical techniques. Although nondestructive nuclear techniques are widely used for the chemical characterization of ambient aerosol, only one multi-element standard reference filter material that mimics ambient aerosol composition has become recently available in the market. To ensure accuracy, reliability and comparability of instruments performance, multiple reference materials with different elemental mass loadings are necessary. In this study, an intercomparison exercise was performed to evaluate the measurement uncertainty and instruments performance using multi-element dust standard reference samples deposited on PTFE filters. The filter samples, produced by means of dust dispersion, were tested in terms of homogeneity, reproducibility and long-term stability (≈40 months). Eight laboratories participated in the exercise. The evaluation of the results reported by the participants was performed by using two sets of reference values: a) the concentrations reported by the Expert Laboratory, b) the robust average concentrations reported by all participants. Most of the reported on the certificate of analysis elements were efficiently detected in the sample loadings prepared as representative for atmospheric samples by the Expert Laboratory. The average absolute relative difference between the reported and the reference values ranged between 0.1% (Ti) and 33.7% (Cr) (CRM-2584). The participants efficiently detected most of the elements except from the elements with atomic number lower than 16 (i.e. P, Al, Mg). The average absolute percentage difference between the participants results and the assigned value as derived by the expert laboratory was 17.5 ± 18.1% (CRM-2583; Cr, Pb excluded) and 16.7 ± 16.7% (CRM-2584; Cr, P excluded). The average "relative robust standard deviation" of the results reported by all participants was 25.1% (CRM-2583) and 22.8% (CRM-2584).
机译:环境颗粒物质的元素浓度的定量是一个具有挑战性的任务,因为观察到的元素负载不太高于最高的检测限,以获得大多数分析技术。尽管非破坏性的核技术广泛用于环境气溶胶的化学表征,但只有一个模拟环境气溶胶组合物的一种多元素标准参考过滤材料已在市场上获得。为确保仪器性能的准确性,可靠性和可比性,需要具有不同元素大容量载荷的多种参考材料。在这项研究中,进行了使用沉积在PTFE过滤器上的多元素粉尘标准参考样品来评估测量不确定性和仪器性能。通过灰尘分散体产生的过滤器样品在均匀性,再现性和长期稳定性(≈40个月)方面进行测试。八个实验室参加了这项运动。通过使用两组参考价值来进行参与者报告的结果的评估:a)专家实验室报告的浓度b)所有参与者报告的强大平均浓度。大多数报道的分析元件的证书上作为代表由专家实验室大气样本制备的样品负载量有效地检测。报告的平均绝对相对差异和参考值之间的范围为0.1%(Ti)和33.7%(Cr)(CRM-2584)。参与者有效地检测到除了从低于16的原子数(即P,Al,MG)的元素之外的大部分元素。参与者的结果和由专家实验室获得的分配的值之间的平均绝对百分比差异为17.5±18.1%(CRM-2583;铬,铅除外)和16.7±16.7%(CRM-2584;铬,P除外)。所有参与者报告的结果的平均“相对稳健的标准偏差”为25.1%(CRM-2583)和22.8%(CRM-2584)。

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  • 来源
    《Science of the total environment》 |2021年第1期|146449.1-146449.14|共14页
  • 作者单位

    ERL Institute of Nuclear & Radiological Sciences & Technology Energy & Safety N.CS.R. 'Demokritos' 15310 Athens Greece;

    ERL Institute of Nuclear & Radiological Sciences & Technology Energy & Safety N.CS.R. 'Demokritos' 15310 Athens Greece Institute of Nuclear and Particle Physics N.CS.R. 'Demokritos' 15310 Athens Greece;

    Institute of Nuclear and Particle Physics N.CS.R. 'Demokritos' 15310 Athens Greece;

    Institute of Nuclear and Particle Physics N.CS.R. 'Demokritos' 15310 Athens Greece;

    National Institute of Nuclear Physics (INFN) 50019 Sesto Fiorentino FI Italy;

    Nuclear Science and Instrumentation Laboratory Physics Section International Atomic Energyy Agency 2444 Seibersdorf Austria;

    Institute of Applied Nuclear Physics University of Tirana Tirana Albania;

    National Institute of Meteorology and Hydrology 1784 Sofia Bulgaria;

    Institute for Medical Research and Occupational Health Ksaverska cesta 2 p.p. 291 10001 Zagreb Croatia;

    AGH University of Science and Technology Faculty of Physics and Applied Computer Science Krakow Poland;

    Department of Chemistry Environmental Pollution Control Laboratory Aristotle University of Thessaloniki University Campus 54124 Thessaloniki Greece;

    Institute for Nuclear Research (Atomki) H-4026 Debrecen Bern ter 18/c Hungary;

    Centre for Energy Research Konkoly-Thege Miklos ut 29-33 H-1 121 Budapest Hungary;

    ERL Institute of Nuclear & Radiological Sciences & Technology Energy & Safety N.CS.R. 'Demokritos' 15310 Athens Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Multi-elemental reference material; Interlaboratory comparison; PTFE filter; Dust dispersion; XRF; PIXE;

    机译:多元素参考材料;Interlaboratory比较;PTFE过滤器;灰尘分散;XRF;像素;

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