Xu Jingsha, He Jun, Xu Honghui, Ji Dongsheng, Snape Colin, Yu Huan, Jia Chunrong, Wang Chengjun, Gao Jianfa
Department of Chemical and Environmental Engineering, International Doctoral Innovation Centre, University of Nottingham Ningbo China Ningbo P. R. China.
Zhejiang Meteorological Science Institute Hangzhou P. R. China.
RSC Adv. 2018 Oct 4;8(59):34136-34150. doi: 10.1039/c8ra04991b. eCollection 2018 Sep 28.
Three monosaccharide anhydrides (MAs: levoglucosan, mannosan, and galactosan) and sugar alcohols (arabitol and mannitol) are widely used as organic tracers for source identification of aerosols emitted from biomass burning and fungal spores, respectively. In the past, these two types of organic tracer have been measured separately or conjointly using different analytical techniques, with which a number of disadvantages have been experienced during the application to environmental aerosol samples, including organic solvent involved extraction, time-consuming derivatization, or poor separation efficiency due to overlapping peaks, Hence, in this study a more environment-friendly, effective and integrated extraction and analytical method has been developed for simultaneous determination of the above mentioned organic tracers in the same aerosol sample using ultrasonication and high performance liquid chromatography with tandem mass spectrometry (HPLC-MS/MS). The ultrasonication assisted extraction process using ultrapure water can achieve satisfactory recoveries in the range of 100.3 ± 1.3% to 108.4 ± 1.6% for these tracers. All the parameters related to LC and MS/MS have been optimized to ensure good identification and pronounced intensity for each compound. A series of rigorous validation steps have been conducted. This newly developed analytical method using ultrasonication and HPLC-MS/MS has been successfully applied to environmental aerosol samples of different pollution levels for the simultaneous measurement of the above mentioned five organic tracers from biomass burning and fungal spores.
三种单糖酐(MAs:左旋葡聚糖、甘露聚糖和半乳聚糖)和糖醇(阿拉伯糖醇和甘露醇)分别被广泛用作生物质燃烧和气溶胶真菌孢子排放源识别的有机示踪剂。过去,这两种有机示踪剂已分别或联合使用不同的分析技术进行测量,在应用于环境气溶胶样品时遇到了许多缺点,包括涉及有机溶剂的萃取、耗时的衍生化,或由于峰重叠导致的分离效率低下。因此,在本研究中,开发了一种更环保、有效且集成的萃取和分析方法,使用超声处理和高效液相色谱-串联质谱(HPLC-MS/MS)同时测定同一气溶胶样品中的上述有机示踪剂。使用超纯水的超声辅助萃取过程对这些示踪剂的回收率在100.3±1.3%至108.4±1.6%范围内,令人满意。与液相色谱和串联质谱相关的所有参数均已优化,以确保对每种化合物有良好的识别和显著的强度。已进行了一系列严格的验证步骤。这种新开发的使用超声处理和HPLC-MS/MS的分析方法已成功应用于不同污染水平的环境气溶胶样品,以同时测量上述来自生物质燃烧和气溶胶真菌孢子的五种有机示踪剂。