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Fast analysis of 29 polycyclic aromatic hydrocarbons (PAHs) and nitro-PAHs with ultra-high performance liquid chromatography-atmospheric pressure photoionization-tandem mass spectrometry

机译:超高效液相色谱-常压光电离-串联质谱法快速分析29种多环芳烃(PAHs)和硝基PAHs

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摘要

Polycyclic aromatic hydrocarbons (PAHs) and nitro-PAHs are ubiquitous in the environment. Some of them are probable carcinogens and some are source markers. This work presents an ultra-high performance liquid chromatography-atmospheric pressure photoionization-tandem mass spectrometry (UHPLC-APPI-MS/MS) method for simultaneous analysis of 20 PAHs and nine nitro-PAHs. These compounds are separated in 15 minutes in the positive mode and 11 minutes in the negative mode, one half of GC/MS analysis time. Two pairs of precursor/product ions are offered, which is essential for confirmation. This method separates and quantifies benzo[a]pyrene (the most toxic PAHs) and non-priority benzo[e]pyrene (isomers, little toxicity) to avoid overestimation of toxin levels, demonstrating its importance for health-related researches. With 0.5% 2,4-difluoroanisole in chlorobenzene as the dopant, limits of detection of PAHs except acenaphthylene and those of nitro-PAHs except 2-nitrofluoranthene are below 10 pg and 3 pg, respectively, mostly lower than or comparable to those reported using LC-related systems. The responses were linear over two orders of magnitude with fairly good accuracy and precision. Certified reference materials and real aerosol samples were analyzed to demonstrate its applicability. This fast, sensitive, and reliable method is the first UHPLC-APPI-MS/MS method capable of simultaneously analyzing 29 environmentally and toxicologically important PAHs and nitro-PAHs.
机译:多环芳香烃(PAH)和硝基PAH在环境中无处不在。其中有些可能是致癌物,有些是来源标记。这项工作提出了一种超高效液相色谱-常压光电离-串联质谱法(UHPLC-APPI-MS / MS),用于同时分析20种PAH和9种硝基PAH。在正离子模式下,这些化合物在15分钟内被分离,在负离子模式下,它们在11分钟内被分离,这是GC / MS分析时间的一半。提供了两对前体/产物离子,这对于确认至关重要。该方法分离并定量了苯并[a] py(毒性最高的PAHs)和非优先级苯并[e] py(异构体,毒性很小),以避免高估毒素水平,从而证明了其在健康相关研究中的重要性。以0.5%2,4-二氟苯甲醚在氯苯中作为掺杂剂,除ph烯和2-PA以外的硝基PAHs的检出限分别低于10μpg和3μpg,大多数低于或等于所报道的与LC相关的系统。响应在两个数量级上是线性的,具有相当好的准确性和精密度。对经过认证的参考材料和真实气溶胶样品进行了分析,以证明其适用性。这种快速,灵敏和可靠的方法是首个能够同时分析29种对环境和毒理学重要的PAH和硝基PAH的UHPLC-APPI-MS / MS方法。

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