Research Centre for Toxic Compounds in the Environment (RECETOX) , Masaryk University , Kamenice 753/5 , Brno , 62500 Czech Republic.
Department of Earth Sciences , University of Toronto , 22 Russell Street , Toronto , Ontario M5S 3B1 , Canada.
Environ Sci Technol. 2018 Aug 21;52(16):9295-9303. doi: 10.1021/acs.est.8b02715. Epub 2018 Jul 31.
The Interlaboratory Study of Novel Flame Retardants (INTERFLAB 2) was conducted by 20 laboratories in 12 countries to test the precision and accuracy of the analysis of 24 "novel" flame retardants (NFRs). Laboratories analyzed NFRs in injection-ready test mixtures, in extracts of residential dust, and in residential dust to evaluate the influence of dust handling and extraction. For test mixtures, mean reported concentrations of PBT, PBEB, EH-TBB, TBBPA, TBDP-TAZTO, TBOEP, α-TBCO, β-DBE-DBCH, and total HBCDD differed by >25% relative to reference values. Coefficients of variation were higher in dusts/dust extracts than in test mixtures. Concentrations among laboratories ranged over 3-4 orders of magnitude for HBB, TBP-DBPE, TBP-AE, and TDCIPP in dust extracts and dusts. Most laboratories produced repeatable dust concentrations, but differences reported in the literature among laboratories of <70% could be due to analytical variability, and the attribution of such differences to other causes should be made with caution. Most variations in accuracy and precision were introduced by matrix effects and/or sample processing, rather than instrumental analysis. We recommend recovery correction to improve accuracy. There is a need to improve analytical methods and to validate methods on complex matrices such as standard reference materials for dust or spiked matrices.
国际新型阻燃剂实验室间研究(INTERFLAB 2)由 12 个国家的 20 个实验室开展,旨在测试 24 种“新型”阻燃剂(NFRs)分析的精密度和准确度。实验室分析了注塑前准备测试混合物中的 NFRs、住宅灰尘提取物中的 NFRs 以及住宅灰尘中的 NFRs,以评估灰尘处理和提取的影响。对于测试混合物,相对于参考值,报告的 PBT、PBEB、EH-TBB、TBBPA、TBDP-TAZTO、TBOEP、α-TBCO、β-DBE-DBCH 和总 HBCDD 的平均浓度差异超过 25%。与测试混合物相比,灰尘/灰尘提取物中的变异系数更高。在灰尘提取物和灰尘中,HBB、TBP-DBPE、TBP-AE 和 TDCIPP 的实验室间浓度范围跨越 3-4 个数量级。大多数实验室都能产生可重复的灰尘浓度,但文献中报道的实验室间差异小于 70%可能是由于分析变异性引起的,因此应谨慎归因于其他原因。准确度和精密度的大多数变化是由基质效应和/或样品处理引起的,而不是仪器分析引起的。我们建议进行回收率校正以提高准确度。需要改进分析方法,并在复杂基质(如灰尘标准参考物质或加标基质)上验证方法。