首页> 外文期刊>Analytical and Bioanalytical Chemistry >Determination of 252–302 Da and tentative identification of 316–376 Da polycyclic aromatic hydrocarbons in Standard Reference Materials 1649a Urban Dust and 1650b and 2975 Diesel Particulate Matter by accelerated solvent extraction–HPLC-GC-MS
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Determination of 252–302 Da and tentative identification of 316–376 Da polycyclic aromatic hydrocarbons in Standard Reference Materials 1649a Urban Dust and 1650b and 2975 Diesel Particulate Matter by accelerated solvent extraction–HPLC-GC-MS

机译:加速溶剂萃取-HPLC-GC-MS测定标准参考物质1649a城市粉尘和1650b和2975柴油中的252-302 Da含量并初步鉴定316-376 Da多环芳烃

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We have assessed and compared the extraction recoveries of polycyclic aromatic hydrocarbons (PAHs) with molecular weights of 252, 276, 278, 300 and 302 from diesel particulate matter (PM) and urban air particles using ultrasonically assisted extraction and accelerated solvent extraction methods, and evaluated the effects of sample and treatment parameters. The results show that accelerated solvent extraction can extract PAHs more efficiently from diesel PM than ultrasonically assisted extraction. They also show that PAHs are more difficult to extract from diesel PM than from urban air particles. Using toluene and maximum instrumental settings (200 °C, 3,000 psi and five extraction cycles) with 30-min static extraction times > 85% of the analytes were estimated to be extracted from the diesel particles, but four extraction cycles with just 5-min static extraction times under these conditions seem to be sufficient to extract > 95% of the analytes from the urban air particles. The accelerated solvent extraction method was validated using the Standard Reference Materials (SRM) 1649a, Urban Dust, and SRM 2975 and SRM 1650a, Diesel Particulate Matter, from the US National Institute of Standards and Technology (NIST). PAH concentrations determined by on-line high-performance liquid chromatography–gas chromatography–mass spectrometry (HPLC-GC-MS) following the developed accelerated solvent extraction method were generally higher than the certified and reference NIST values and concentrations reported in the literature (e.g. the estimated concentration of benzo[a]pyrene in SRM 2975 was 15-fold higher than the NIST-certified value), probably because the extraction recoveries were higher than in previous studies. The developed accelerated solvent extraction method was used to analyse high molecular (HMW) weight PAHs (MW > 302) in the investigated SRMs, and more than 170 (SRM 1649a), 80 (SRM 1650b) and 60 (SRM 2975) potential high molecular weight PAHs were tentatively identified in them, with molecular weights (depending on the SRM sample analysed) of 316, 326, 328, 340, 342, 350, 352, 366, 374 and 376. This is, to our knowledge, the first study to tentatively report PAHs with molecular weights of 316, 326, 328, 342, 350, 352, 366 and 376 in diesel particulate matter. GC-MS chromatograms obtained in selected ion monitoring mode (extracted ions for the abovementioned m/z) and full-scan mass spectra of tentatively identified high molecular weight PAHs are shown in the Electronic supplementary material.
机译:我们已经评估并比较了超声辅助提取和加速溶剂提取方法从柴油机颗粒物(PM)和城市空气颗粒中提取分子量分别为252、276、278、300和302的多环芳烃(PAH)的回收率,以及评估样品和治疗参数的效果。结果表明,与超声辅助萃取相比,加速溶剂萃取可以更有效地从柴油机PM中萃取PAHs。他们还表明,从柴油机PM中提取多环芳烃比从城市空气颗粒中提取PAHs更困难。使用甲苯和最大仪器设置(200°C,3,000 psi和五个萃取循环),静态萃取时间为30分钟,估计从柴油颗粒中萃取了> 85%的分析物,而四个萃取循环仅需5分钟在这些条件下的静态提取时间似乎足以从城市空气颗粒中提取> 95%的分析物。使用美国国家标准技术研究院(NIST)的标准参考材料(SRM)1649a(城市粉尘)和SRM 2975和SRM 1650a(柴油颗粒物)对加速溶剂萃取方法进行了验证。按照高效的溶剂萃取方法,通过在线高效液相色谱-气相色谱-质谱(HPLC-GC-MS)测定的PAH浓度通常高于文献中报道的认证和参考NIST值和浓度(例如SRM 2975中苯并[a] re的估计浓度比NIST认证的值高15倍),这可能是因为提取回收率高于以前的研究。所开发的加速溶剂萃取方法用于分析所研究SRM中的高分子(HMW)重量PAH(MW> 302),以及超过170(SRM 1649a),80(SRM 1650b)和60(SRM 2975)潜在的高分子初步确定了其中的PAH分子量,其分子量(取决于分析的SRM样品)为316、326、328、340、342、350、352、366、374和376。据我们所知,这是首次研究暂时报告柴油微粒物质中分子量分别为316、326、328、342、350、352、366和376的PAH。电子补充材料中显示了在选定的离子监测模式下获得的GC-MS色谱图(上述m / z的提取离子)和初步确定的高分子量PAH的全扫描质谱图。

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