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利用超音速气相色谱-质谱联用技术对复杂混合物进行快速、高灵敏度的多农药分析。

Fast, high-sensitivity, multipesticide analysis of complex mixtures with supersonic gas chromatography-mass spectrometry.

作者信息

Kochman Maya, Gordin Alexander, Goldshlag Paulina, Lehotay Steven J, Amnirav Aviv

机构信息

School of Chemistry, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

J Chromatogr A. 2002 Oct 18;974(1-2):185-212. doi: 10.1016/s0021-9673(02)01245-1.

Abstract

We developed a new instrumental approach, termed Supersonic GC-MS, which achieves fast, sensitive, confirmatory and quantitative analysis of a broad range of pesticides in complex agricultural matrices. Our Supersonic GC-MS system is a modification of a bench-top Agilent 6890 GC+5972 MSD with a supersonic molecular beam (SMB) interface and fly-through EI ion source. One of the main advantages of Supersonic GC-MS is an enhanced molecular ion (M+) in the resulting mass spectra. For example, the M+ was observed in all 88 pesticides that we studied using the Supersonic GC-MS whereas only 36 of 63 (57%) pesticides that we investigated in standard GC-MS exhibited a M+. We also found that the degree of matrix interference is exponentially reduced with the fragment mass by about 20-fold per 100 amu increasing mass. The enhancement of the M+ combined with the reduction in matrix background noise permit rapid full scan analysis of a potentially unlimited number of pesticides, unlike selected ion monitoring or MS-MS in which specific conditions are required in segments for targeted pesticides. Furthermore, unlike the case with chemical ionization, EI-SMB-MS spectra still give accurate identification of compounds using common mass spectral libraries. In practice,we found thatlibraries favor mass spectra in which the M+ appears, thus Supersonic GC-MS produced better spectra for compound identification than standard GC-MS. To achieve even lower identification limits, the M+ plus a second major ion (still using full scan data) gives higher signal-to-chemical noise ratios than the traditional 3-ion approach. The replacement of two low-mass ions with the M+ (supersonic two-ions method) results in a significant reduction of matrix interference by a factor of up to 90. Another main advantage of Supersonic GC-MS is its exceptional suitability for fast GC-MS with high carrier gas flow-rate. Fast Supersonic GC-MS was able to analyze thermally labile pesticides, such as carbamates, that are difficult or impossible to analyze in standard GC-MS. Large volume injection using a ChromatoProbe was also demonstrated, in the 6 min analysis of pesticides at 20 ng/g in a spice matrix.

摘要

我们开发了一种新的仪器分析方法,称为超音速气相色谱 - 质谱联用技术(Supersonic GC-MS),它能够对复杂农业基质中的多种农药进行快速、灵敏、确证性和定量分析。我们的超音速气相色谱 - 质谱联用系统是对台式安捷伦6890气相色谱仪 + 5972质谱仪的改进,配备了超音速分子束(SMB)接口和飞越式电子轰击(EI)离子源。超音速气相色谱 - 质谱联用技术的主要优势之一是在所得质谱图中增强了分子离子(M +)。例如,我们使用超音速气相色谱 - 质谱联用技术研究的所有88种农药中都观察到了分子离子,而在标准气相色谱 - 质谱联用中我们研究的63种农药中只有36种(57%)呈现出分子离子。我们还发现,基质干扰程度随着碎片质量每增加100原子质量单位(amu)呈指数级降低约20倍。分子离子的增强与基质背景噪声的降低相结合,使得能够对潜在无限数量的农药进行快速全扫描分析,这与选择离子监测或串联质谱不同,后者针对目标农药在不同片段需要特定条件。此外,与化学电离的情况不同,电子轰击 - 超音速分子束 - 质谱联用(EI-SMB-MS)光谱仍可使用常见的质谱库准确鉴定化合物。在实际应用中,我们发现质谱库更青睐出现分子离子的质谱图,因此超音速气相色谱 - 质谱联用技术比标准气相色谱 - 质谱联用技术产生更好的用于化合物鉴定的质谱图。为了实现更低的检测限,分子离子加上第二个主要离子(仍使用全扫描数据)比传统的三离子方法具有更高的信号与化学噪声比。用分子离子取代两个低质量离子(超音速双离子法)可使基质干扰显著降低高达90倍。超音速气相色谱 - 质谱联用技术的另一个主要优势是其特别适合高载气流速的快速气相色谱 - 质谱联用分析。快速超音速气相色谱 - 质谱联用技术能够分析热不稳定农药,如氨基甲酸酯类农药,而这些农药在标准气相色谱 - 质谱联用中很难或无法分析。在对香料基质中20 ng/g的农药进行6分钟分析时,还展示了使用ChromatoProbe进行大体积进样。

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