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首页> 外文期刊>Atmospheric environment >Evaluation of airborne particulate matter and metals data in personal, indoor and outdoor environments using ED-XRF and ICP-MS and co-located duplicate samples
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Evaluation of airborne particulate matter and metals data in personal, indoor and outdoor environments using ED-XRF and ICP-MS and co-located duplicate samples

机译:使用ED-XRF和ICP-MS以及位于同一地点的重复样品评估个人,室内和室外环境中的空气中颗粒物和金属数据

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摘要

Factors and sources affecting measurement uncertainty associated with monitoring metals in airborne particulate matter (PM) were investigated as part of the Windsor, Ontario Exposure Assessment Study (WOEAS). The assessment was made using co-located duplicate samples and a comparison of two analytical approaches: ED-XRF and ICP-MS. Sampling variability was estimated using relative percent difference (RPD) of co-located duplicate samples. The comparison of ICP-MS and ED-XRF results yields very good correlations (R~2 ≥ 0.7) for elements present at concentrations that pass both ICP-MS and ED-XRF detection limits (e.g. Fe, Mn, Zn, Pb and Cu). PM concentration ranges (median, sample number) of 24-h indoor PM_(10) and personal PM_(10) filters, and outdoor PM_(2.5) filters were determined to be 2.2-40.7 (11.0, n = 48) μg m~(-3), 8.0-48.3 (11.9, n = 48) μg m~(-3), and 17.1-42.3 (21.6, n = 18) μg m~(-3), respectively. The gravimetric analytical results reveal that the variations in PM mass measurements for same-day sampling are insignificant compared to temporal or spatial variations: 92%, 100% and 96% of indoor, outdoor and personal duplicate samples, respectively, pass the quality criteria (RPD ≤ 20%). Uncertainties associated with ED-XRF elemental measurements of S, Ca, Mn, Fe and Zn for 24-h filter samples are low: 78%-100% of the duplicate samples passed the quality criteria. In the case of 24-h filter samples using ICP-MS, more elements passed the quality criteria due to the lower detection limits. These were: Li, Na, K, Ca, Si, AI, V, Fe, Mn, Co, Cu, Mo, Ag, Zn, Pb, As, Mg, Sb, Sn, Sr, Th, Ti, Tl, and U. Low air concentrations of metals (near or below instrumental detection limits) and/or inadvertent introduction of metal contamination are the main causes for excluding elements based on the pass/fail criteria. Uncertainty associated with elemental measurements must be assessed on an element-by-element basis.
机译:作为安大略省温莎暴露评估研究(WOEAS)的一部分,研究了与监测空气中颗粒物(PM)中的金属相关的影响测量不确定度的因素和来源。评估是使用位于同一地点的重复样本并比较两种分析方法:ED-XRF和ICP-MS。使用共置一式两份样本的相对百分比差异(RPD)估计采样变异性。 ICP-MS和ED-XRF结果的比较对于以同时通过ICP-MS和ED-XRF检测限的浓度存在的元素(例如,Fe,Mn,Zn,Pb和Cu)产生很好的相关性(R〜2≥0.7) )。将24小时室内PM_(10)和个人PM_(10)过滤器以及室外PM_(2.5)过滤器的PM浓度范围(中位数,样品数量)确定为2.2-40.7(11.0,n = 48)μgm〜 (-3),8.0-48.3(11.9,n = 48)μgm〜(-3)和17.1-42.3(21.6,n = 18)μgm〜(-3)。重量分析结果表明,与时间或空间变化相比,当日采样的PM质量测量值的变化微不足道:分别有92%,100%和96%的室内,室外和个人重复样品通过了质量标准( RPD≤20%)。 ED-XRF对24小时过滤器样品的S,Ca,Mn,Fe和Zn元素测量的不确定度很低:重复样品中有78%-100%通过了质量标准。对于使用ICP-MS的24小时过滤器样品,由于较低的检测限,更多的元素通过了质量标准。它们是:Li,Na,K,Ca,Si,Al,V,Fe,Mn,Co,Cu,Mo,Ag,Zn,Pb,As,Mg,Sb,Sn,Sr,Th,Ti,Tl和U.金属中的空气浓度低(接近或低于仪器检测极限)和/或无意引入的金属污染是根据合格/不合格标准排除元素的主要原因。与元素测量相关的不确定性必须在逐个元素的基础上进行评估。

著录项

  • 来源
    《Atmospheric environment》 |2010年第2期|235-245|共11页
  • 作者单位

    Environmental Health Science Research Bureau, Safe Environments Programme, HECSB, Health Canada, Ottawa, Ontario K1A 0K9, Canada;

    Environmental Health Science Research Bureau, Safe Environments Programme, HECSB, Health Canada, Ottawa, Ontario K1A 0K9, Canada Earth Sciences Department, University of Ottawa, Ottawa, Ontario K1N 6N5, Canada;

    Water, Air and Climate Change Bureau, Safe Environments Programme, HECSB, Health Canada, Ottawa, Ontario K1A OPS, Canada;

    National Exposure Research Laboratory, US Environmental Protection Agency, MD-E205-04, Research Triangle Park, NC 27711, USA;

    Environmental Health Science Research Bureau, Safe Environments Programme, HECSB, Health Canada, Ottawa, Ontario K1A 0K9, Canada;

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

    particulate matter; uncertainty; metals; exposure assessment; air pollution; ICP-MS; ED-XRF;

    机译:颗粒物不确定;金属;暴露评估;空气污染;ICP-MS;X射线荧光;

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