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快速气相色谱-质谱联用的实用方法。

Practical approaches to fast gas chromatography-mass spectrometry.

作者信息

Mastovská Katerina, Lehotay Steven J

机构信息

USDA, Agricultural Research Service, Eastern Regional Research Center, 600 East Mermaid Lane, Wyndmoor, PA 19038, USA.

出版信息

J Chromatogr A. 2003 Jun 6;1000(1-2):153-80. doi: 10.1016/s0021-9673(03)00448-5.

DOI:10.1016/s0021-9673(03)00448-5
PMID:12877170
Abstract

Fast gas chromatography-mass spectrometry (GC-MS) has the potential to be a powerful tool in routine analytical laboratories by increasing sample throughput and improving laboratory efficiency. However, this potential has rarely been met in practice because other laboratory operations and sample preparation typically limit sample throughput, not the GC-MS analysis. The intent of this article is to critically review current approaches to fast analysis using GC-MS and to discuss practical considerations in addressing their advantages and disadvantages to meet particular application needs. The practical ways to speed the analytical process in GC and MS individually and in combination are presented, and the trade-offs and compromises in terms of sensitivity and/or selectivity are discussed. Also, the five main current approaches to fast GC-MS are described, which involve the use of: (1) short, microbore capillary GC columns; (2) fast temperature programming; (3) low-pressure GC-MS; (4) supersonic molecular beam for MS at high GC carrier gas flow; and (5) pressure-tunable GC-GC. Aspects of the different fast GC-MS approaches can be combined in some cases, and different mass analyzers may be used depending on the analytical needs. Thus, the capabilities and costs of quadrupole, ion trap, time-of-flight, and magnetic sector instruments are discussed with emphasis placed on speed. Furthermore, applications of fast GC-MS that appear in the literature are compiled and reviewed. At this time, the future usefulness of fast GC-MS depends to some extent upon improvement of existing approaches and commercialization of interesting new techniques, but moreover, a greater emphasis is needed to streamline overall laboratory operations and sample preparation procedures if fast GC-MS is to become implemented in routine applications.

摘要

快速气相色谱 - 质谱联用(GC - MS)有潜力成为常规分析实验室中的强大工具,可提高样品通量并提升实验室效率。然而,这一潜力在实际中很少得以实现,因为其他实验室操作和样品前处理通常会限制样品通量,而非GC - MS分析本身。本文旨在批判性地回顾当前使用GC - MS进行快速分析的方法,并讨论在解决其优缺点以满足特定应用需求时的实际考量。介绍了在气相色谱(GC)和质谱(MS)中单独及联合加速分析过程的实际方法,并讨论了在灵敏度和/或选择性方面的权衡与折衷。此外,还描述了当前快速GC - MS的五种主要方法,包括使用:(1)短的、微径毛细管GC柱;(2)快速程序升温;(3)低压GC - MS;(4)在高GC载气流速下用于质谱的超音速分子束;以及(5)压力可调谐GC - GC。在某些情况下,不同快速GC - MS方法的各个方面可以结合使用,并且可根据分析需求使用不同的质量分析器。因此,讨论了四极杆、离子阱、飞行时间和磁扇区仪器的性能及成本,并重点强调了速度方面。此外,还对文献中出现的快速GC - MS应用进行了整理和综述。目前,快速GC - MS未来的实用性在一定程度上取决于现有方法的改进以及有趣新技术的商业化,但更重要的是,如果要在常规应用中实施快速GC - MS,需要更加注重简化整体实验室操作和样品前处理程序。

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