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准确分析 C1-C4 多环芳香硫杂环化合物。

Toward the accurate analysis of C1-C4 polycyclic aromatic sulfur heterocycles.

机构信息

Department of Chemistry, Tufts University, 62 Talbot Avenue, Medford, Massachusetts 02155, USA.

出版信息

Anal Chem. 2012 Mar 6;84(5):2245-52. doi: 10.1021/ac202845x. Epub 2012 Feb 15.

Abstract

Polycyclic aromatic sulfur heterocycles (PASH) are sulfur analogues of polycyclic aromatic hydrocarbons (PAH). Alkylated PAH attract much attention as carcinogens, mutagens, and as diagnostics for environmental forensics. PASH, in contrast, are mostly ignored in the same studies due to the conspicuous absence of gas chromatography/mass spectrometry (GC/MS) retention times and fragmentation patterns. To obtain these data, eight coal tar and crude oils were analyzed by automated sequential GC-GC. Sample components separated based on their interactions with two different stationary phases. Newly developed algorithms deconvolved combinatorially selected ions to identify and quantify PASH in these samples. Simultaneous detection by MS and pulsed flame photometric detectors (PFPD) provided additional selectivity to differentiate PASH from PAH when coelution occurred. A comprehensive library of spectra and retention indices is reported for the C(1)-C(4) two-, three-, and four-ring PASH. Results demonstrate the importance of using multiple fragmentation patterns per homologue (MFPPH) compared to selected ion monitoring (SIM) or extraction (SIE) to identify isomers. Since SIM/SIE analyses dramatically overestimate homologue concentrations, MFPPH should be used to correctly quantify PASH for bioavailability, weathering, and liability studies.

摘要

多环芳烃硫杂环(PASH)是多环芳烃(PAH)的硫类似物。烷基化 PAH 因其致癌性、致突变性以及作为环境取证的诊断工具而备受关注。相比之下,由于缺乏气相色谱/质谱(GC/MS)保留时间和碎片模式,PASH 在相同的研究中大多被忽视。为了获得这些数据,使用自动顺序 GC-GC 对 8 种煤焦油和原油进行了分析。样品成分根据与两种不同固定相的相互作用进行分离。新开发的算法通过组合选择的离子进行解卷积,以识别和定量这些样品中的 PASH。当共洗脱发生时,MS 和脉冲火焰光度检测器(PFPD)的同时检测提供了额外的选择性,以区分 PASH 和 PAH。报告了 C(1)-C(4) 双环、三环和四环 PASH 的综合光谱和保留指数库。结果表明,与选择离子监测(SIM)或提取(SIE)相比,每个同系物使用多个碎片模式(MFPPH)对异构体进行鉴定的重要性。由于 SIM/SIE 分析大大高估了同系物浓度,因此应使用 MFPPH 正确量化 PASH 的生物利用度、风化和责任研究。

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