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用于石油馏分分析的激光诱导声解吸/傅里叶变换离子回旋共振质谱法

Laser-induced acoustic desorption/fourier transform ion cyclotron resonance mass spectrometry for petroleum distillate analysis.

作者信息

Crawford Kenroy E, Campbell J Larry, Fiddler Marc N, Duan Penggao, Qian Kuangnan, Gorbaty Martin L, Kenttämaa Hilkka I

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47909, USA.

出版信息

Anal Chem. 2005 Dec 15;77(24):7916-23. doi: 10.1021/ac0511501.

Abstract

Laser-induced acoustic desorption (LIAD) coupled with a 3-T Fourier transform ion cyclotron resonance mass spectrometer (FT-ICR) allows the simultaneous analysis of both the nonpolar and polar components in petroleum distillates. The LIAD/FT-ICR method was validated by examining model compounds representative of the various classes of polar and nonpolar hydrocarbons commonly found in petroleum. LIAD successfully desorbs all the compounds as intact neutral molecules into the FT-ICR. Electron ionization (EI) at low energies (10 eV) and chemical ionization using cyclopentadienyl cobalt radical cation (CpCo*+) were employed to ionize the desorbed molecules. The EI experiments lead to extensive fragmentation of many of the hydrocarbon compounds studied. However, the CpCo*+ ion ionizes all the hydrocarbon compounds by producing only pseudomolecular ions without other fragmentation, with the exception of one compound (*CH3 loss occurs). Examination of two different petroleum distillate samples revealed hundreds of compounds. The most abundant components have an even molecular weight; i.e., they are likely to contain no (or possibly an even number of) nitrogen atoms.

摘要

激光诱导声解吸(LIAD)与一台3T傅里叶变换离子回旋共振质谱仪(FT-ICR)联用,能够同时分析石油馏分中的非极性和极性成分。通过检测代表石油中常见各类极性和非极性烃的模型化合物,对LIAD/FT-ICR方法进行了验证。LIAD成功地将所有化合物作为完整的中性分子解吸到FT-ICR中。采用低能量(10 eV)的电子电离(EI)和使用环戊二烯基钴自由基阳离子(CpCo*+)的化学电离来使解吸的分子离子化。EI实验导致所研究的许多烃类化合物发生广泛的碎片化。然而,除了一种化合物(发生CH3损失)外,CpCo+离子仅通过产生假分子离子而不产生其他碎片化来使所有烃类化合物离子化。对两种不同的石油馏分样品进行检测,发现了数百种化合物。含量最丰富的成分具有偶数分子量;也就是说,它们可能不含(或可能含有偶数个)氮原子。

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