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环境中六至八环多环芳烃的液相色谱 - 大气压激光电离 - 质谱(LC - APLI - MS)分析

Liquid chromatography-atmospheric pressure laser ionization-mass spectrometry (LC-APLI-MS) analysis of polycyclic aromatic hydrocarbons with 6-8 rings in the environment.

作者信息

Thiäner Jan B, Achten Christine

机构信息

Institute of Geology and Palaeontology-Applied Geology, University of Münster, Corrensstraße 24, 48149, Münster, Germany.

出版信息

Anal Bioanal Chem. 2017 Mar;409(7):1737-1747. doi: 10.1007/s00216-016-0121-9. Epub 2016 Dec 22.

DOI:10.1007/s00216-016-0121-9
PMID:28005157
Abstract

A method has been developed for the sensitive and rapid analysis of polycyclic aromatic hydrocarbons (PAHs) in environmental samples using liquid chromatography time-of-flight mass spectrometry as well as the selective atmospheric pressure laser ionization (APLI) process (LC-APLI-MS). Upon analyzing 34 PAHs, the limits of detection of this method were found to range from 0.008 to 1.824 pg (0.024 pg for benzo[a]pyrene). The method therefore provides 30-fold to 5,400-fold increased sensitivity compared with the established GC-MS technique. This LC-APLI-MS method was optimized for higher molecular weight PAHs (C-C PAHs with 6-8 rings), which are difficult to detect or cannot be detected by GC-MS. Using the LC-APLI-MS method, various 6- to 8-ring PAHs were detected in environmental samples for the first time. After developing the method, it was successfully validated in ruggedness tests. The concentrations determined by the LC-APLI-MS method were in good accord with the certified concentrations in three certified reference materials (contaminated soils and sediments). Upon applying the method to environmental samples, it was found that (1) the presence of dibenzo[a,i]pyrene and dibenzo[a,h]pyrene in urban soil samples could only be detected using LC-APLI-MS (i.e., not GC-MS) due to its high sensitivity, (2) a bituminous coal sample yielded 211 tentative peaks from aromatic compounds in the C-C range, and (3) eleven of those compounds occurred in different environmental samples in similar patterns. Hence, 6- to 8-ring PAHs occur in solid environmental samples in which other 6-ring PAHs such as indeno[1,2,3-cd]pyrene or benzo[ghi]perylene may also be present. Some of these numerous higher molecular weight PAH compounds could have very high carcinogenic potential, which will need to be elucidated to ensure the reliability of PAH risk assessments.

摘要

已开发出一种方法,用于使用液相色谱飞行时间质谱以及选择性大气压激光电离(APLI)过程(LC-APLI-MS)对环境样品中的多环芳烃(PAHs)进行灵敏且快速的分析。在分析34种PAHs时,发现该方法的检测限范围为0.008至1.824 pg(苯并[a]芘为0.024 pg)。因此,与既定的GC-MS技术相比,该方法的灵敏度提高了30倍至5400倍。这种LC-APLI-MS方法针对更高分子量的PAHs(具有6至8个环的C-C PAHs)进行了优化,这些PAHs难以通过GC-MS检测或无法被其检测到。使用LC-APLI-MS方法,首次在环境样品中检测到了各种6至8环的PAHs。该方法开发完成后,在耐用性测试中成功得到验证。通过LC-APLI-MS方法测定的浓度与三种有证标准物质(污染土壤和沉积物)中的认证浓度高度一致。将该方法应用于环境样品时,发现:(1)由于其高灵敏度,城市土壤样品中仅使用LC-APLI-MS(即非GC-MS)才能检测到二苯并[a,i]芘和二苯并[a,h]芘的存在;(2)一个烟煤样品在C-C范围内产生了211个来自芳香族化合物的暂定峰;(3)其中11种化合物以相似的模式出现在不同的环境样品中。因此,6至8环的PAHs存在于固体环境样品中,其中可能还存在其他6环PAHs,如茚并[1,2,3-cd]芘或苯并[ghi]苝。这些众多较高分子量的PAH化合物中的一些可能具有非常高的致癌潜力,这需要加以阐明以确保PAH风险评估的可靠性。

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