Eawag, Swiss Federal Institute of Aquatic Science and Technology, 8600 Dübendorf, Switzerland.
Anal Bioanal Chem. 2010 Jun;397(3):943-51. doi: 10.1007/s00216-010-3608-9. Epub 2010 Mar 16.
This article provides an overview of the state-of-the-art and future trends of the application of LC-high resolution mass spectrometry to the environmental analysis of polar micropollutants. Highly resolved and accurate hybrid tandem mass spectrometry such as quadrupole/time-of-flight and linear ion trap/orbitrap technology allows for a more reliable target analysis with reference standards, a screening for suspected analytes without reference standards, and a screening for unknowns. A reliable identification requires both high resolving power and high mass spectral accuracy to increase selectivity against the matrix background and for a correct molecular formula assignment to unknown compounds. For the identification and structure elucidation of unknown compounds within a reasonable time frame and with a reasonable soundness, advanced automated software solutions as well as improved prediction systems for theoretical fragmentation patterns, retention times, and ionization behavior are needed.
本文概述了 LC-高分辨质谱在环境分析中应用于极性微量污染物的最新技术和未来趋势。高分辨和精确的混合串联质谱技术,如四极杆/飞行时间和线性离子阱/轨道阱技术,可以更可靠地进行基于标准物质的目标分析、对无标准物质的疑似分析物进行筛选,以及对未知物进行筛选。可靠的鉴定需要高分辨率和高质量准确度,以提高对基质背景的选择性,并对未知化合物进行正确的分子公式赋值。为了在合理的时间内,以合理的可靠性,对未知化合物进行鉴定和结构解析,需要先进的自动化软件解决方案以及改进的理论断裂模式、保留时间和电离行为的预测系统。