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首页> 外文期刊>Analytical and bioanalytical chemistry >Evaluation of the state-of-the-art measurement capabilities for selected PBDEs and decaBB in plastic by the international intercomparison CCQM-P114
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Evaluation of the state-of-the-art measurement capabilities for selected PBDEs and decaBB in plastic by the international intercomparison CCQM-P114

机译:通过国际比对CCQM-P114评估塑料中多溴二苯醚和十溴联苯醚的最新测量能力

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An international intercomparison involving eight national metrology institutes (NMIs) was conducted to establish their current measurement capabilities for determining five selected congeners from the brominated flame retardant classes polybrominated diphenyl ethers and polybrominated biphenyls. A candidate reference material consisting of polypropylene fortified with technical mixtures of penta-, octa- and decabromo diphenyl ether and decabromo biphenyl, which was thoroughly assessed for material homogeneity and stability, was used as study material. The analytical procedures applied by the participants differed with regard to sample pre-treatment, extraction, clean-up, employed calibrants and type of calibration procedure as well as regarding analytical methods used for separation, identification and quantification of the flame retardant congeners (gas chromatography coupled to an electron capture detector (GC-ECD), gas chromatography-mass spectrometry in the electron ionisation mode (GC-EI-MS), gas chromatography-mass spectrometry in the electron capture negative ionisation mode (GC-ECNI-MS), and liquid chromatography- inductive coupled plasma-mass spectrometry (LC-ICP-MS)). The laboratory means agreed well with relative standard deviations of the mean of means of 1.9%, 4.8%, 5.5% and 5.4% for brominated diphenyl ether (BDE) 47, 183 and 209 and for the brominated biphenyl (BB) congener 209, respectively. For BDE 206, a relative standard deviation of 28.5% was obtained. For all five congeners, within-laboratory relative standard deviations of six measurements obtained under intermediate precision conditions were between 1% and 10%, and reported expanded measurements uncertainties typically ranged from 4% to 10% (8% to 14% for BDE 206). Furthermore, the results are in good agreement with those obtained in the characterization exercise for determining certified values for the flame retardant congeners in the same material. The results demonstrate the state-of-the-art measurement capabilities of NMIs for quantifying representative BDE congeners and BB 209 in a polymer. The outcome of this intercomparison (pilot study) in conjunction with possible improvements for employing exclusively calibrants with thoroughly assessed purity suggests that a key comparison aiming at underpinning calibration and measurement capability (CMC) claims of NMIs can be conducted.
机译:进行了一次国际比对,其中涉及八个国家计量机构(NMI),以建立其当前的测量能力,以便从溴化阻燃剂类别多溴二苯醚和多溴联苯中确定五个同类物。候选参比材料由聚丙烯制成,该材料由五,二和十溴联苯醚和十溴联苯的技术混合物强化,并经过了材料均质性和稳定性的全面评估,用作研究材料。参与者采用的分析程序在样品预处理,提取,净化,使用的校准剂和校准程序类型以及用于分离,鉴定和定量阻燃同类物(气相色谱)的分析方法方面有所不同耦合到电子捕获检测器(GC-ECD),电子电离模式下的气相色谱-质谱(GC-EI-MS),电子捕获负电离模式下的气相色谱-质谱(GC-ECNI-MS),液相色谱-电感耦合等离子体质谱(LC-ICP-MS)。实验室平均值与溴化二苯醚(BDE)47、183和209以及溴化联苯(BB)同源物209的平均值相对标准偏差分别为1.9%,4.8%,5.5%和5.4% 。对于BDE 206,获得的相对标准偏差为28.5%。对于所有五个同类物,在中等精度条件下获得的六次测量的实验室内相对标准偏差在1%至10%之间,并且报告的扩展测量不确定度通常在4%至10%的范围内(对于BDE 206为8%至14%) 。此外,结果与在确定相同材料中阻燃同类物的认证值的表征练习中获得的结果高度吻合。结果证明了NMI的最新测量能力,可用于量化聚合物中代表性的BDE同系物和BB 209。这种比对的结果(试点研究),以及对使用纯度经过全面评估的纯净校准剂的可能改进,表明可以进行旨在支持NMI的校准和测量能力(CMC)声明的关键比较。

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