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首页> 外文期刊>Journal of environmental monitoring: JEM >Interlaboratory evaluation of trace element determination in workplace air filter samples by inductively coupled plasma mass spectrometry
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Interlaboratory evaluation of trace element determination in workplace air filter samples by inductively coupled plasma mass spectrometry

机译:电感耦合等离子体质谱法对实验室空气过滤器样品中痕量元素测定的实验室间评估

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摘要

Inductively coupled plasma mass spectrometry (ICP-MS) is becoming more widely used for trace elemental analysis in the occupational hygiene field, and consequently new ICP-MS international standard procedures have been promulgated by ASTM International and ISO. However, there is a dearth of interlaboratory performance data for this analytical methodology. In an effort to fill this data void, an interlaboratory evaluation of ICP-MS for determining trace elements in workplace air samples was conducted, towards fulfillment of method validation requirements for international voluntary consensus standard test methods. The study was performed in accordance with applicable statistical procedures for investigating interlaboratory precision. The evaluation was carried out using certified 37-mm diameter mixed-cellulose ester (MCE) filters that were fortified with 21 elements of concern in occupational hygiene. Elements were spiked at levels ranging from 0.025 to 10 μg filter ~(-1), with three different filter loadings denoted "Low", "Medium" and "High". Participating laboratories were recruited from a pool of over fifty invitees; ultimately twenty laboratories from Europe, North America and Asia submitted results. Triplicates of each certified filter with elemental contents at three different levels, plus media blanks spiked with reagent, were conveyed to each volunteer laboratory. Each participant was also provided a copy of the test method which each participant was asked to follow; spiking levels were unknown to the participants. The laboratories were requested to prepare the filters by one of three sample preparation procedures, i.e., hotplate digestion, microwave digestion or hot block extraction, which were described in the test method. Participants were then asked to analyze aliquots of the prepared samples by ICP-MS, and to report their data in units of μg filter -1. Most interlaboratory precision estimates were acceptable for medium- and high-level spikes (RSD <25%), but generally yielded greater uncertainties than were anticipated at the outset of the study.
机译:电感耦合等离子体质谱法(ICP-MS)越来越广泛地用于职业卫生领域中的痕量元素分析,因此,ASTM International和ISO颁布了新的ICP-MS国际标准程序。但是,这种分析方法缺乏实验室间绩效数据。为了填补这一数据空白,对ICP-MS进行了实验室间评估,以确定工作场所空气样品中的微量元素,以实现国际自愿共识标准测试方法的方法验证要求。这项研究是根据适用的统计程序进行的,以研究实验室间的精密度。评估是使用经认证的直径37毫米的混合纤维素酯(MCE)过滤器进行的,该过滤器采用了职业卫生中涉及的21种元素进行强化。元素的添加浓度为0.025至10μg过滤器〜(-1),三种不同的过滤器负载分别表示为“低”,“中”和“高”。参与实验室是从五十多个受邀者中招募的;最终,来自欧洲,北美和亚洲的20个实验室提交了结果。每个合格过滤器一式三份,其元素含量在三个不同的水平,再加上掺有试剂的空白培养基,被输送到每个志愿者实验室。还向每个参与者提供了测试方法的副本,要求每个参与者遵循该方法;参与者不知道加标水平。要求实验室通过以下三种样品制备程序中的一种来制备过滤器,即加热板消化,微波消化或热块萃取,这些方法在测试方法中进行了描述。然后要求参与者通过ICP-MS分析准备好的样品的等分试样,并以μg过滤器-1为单位报告其数据。对于中高水平的峰峰(RSD <25%),大多数实验室间的精密度估计是可以接受的,但是通常产生的不确定性比研究开始时预期的更大。

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