Mazur D M, Polyakova O V, Artaev V B, Lebedev A T
Lomonosov Moscow State University, Organic Chemistry Department, 119991 Moscow, Russia.
LECO Corporation, 3000 Lakeview Avenue, St. Joseph, MI, USA.
Environ Pollut. 2017 Mar;222:242-250. doi: 10.1016/j.envpol.2016.12.049. Epub 2016 Dec 28.
The most common mass spectrometry approach analyzing contamination of the environment deals with targeted analysis, i.e. detection and quantification of the selected (priority) pollutants. However non-targeted analysis is becoming more often the method of choice for environmental chemists. It involves implementation of modern analytical instrumentation allowing for comprehensive detection and identification of the wide variety of compounds of the environmental interest present in the sample, such as pharmaceuticals and their metabolites, musks, nanomaterials, perfluorinated compounds, hormones, disinfection by-products, flame retardants, personal care products, and many others emerging contaminants. The paper presents the results of detection and identification of previously unreported organic compounds in snow samples collected in Moscow in March 2016. The snow analysis allows evaluation of long-term air pollution in the winter period. Gas chromatography coupled to a high resolution time-of-flight mass spectrometer has enabled us with capability to detect and identify such novel analytes as iodinated compounds, polychlorinated anisoles and even Ni-containing organic complex, which are unexpected in environmental samples. Some considerations concerning the possible sources of origin of these compounds in the environment are discussed.
分析环境污染的最常见质谱方法是靶向分析,即对选定的(优先)污染物进行检测和定量。然而,非靶向分析正越来越多地成为环境化学家的首选方法。它涉及采用现代分析仪器,以便全面检测和鉴定样品中存在的各种具有环境意义的化合物,如药物及其代谢物、麝香、纳米材料、全氟化合物、激素、消毒副产物、阻燃剂、个人护理产品以及许多其他新兴污染物。本文展示了2016年3月在莫斯科采集的雪样中先前未报告的有机化合物的检测和鉴定结果。雪样分析有助于评估冬季的长期空气污染情况。气相色谱与高分辨率飞行时间质谱联用,使我们有能力检测和鉴定碘化化合物、多氯代苯甲醚甚至含镍有机络合物等新型分析物,这些在环境样品中是意想不到的。文中还讨论了这些化合物在环境中可能的来源。