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用环境电喷雾电离源对颗粒和气体进行在线表征。

Online characterization of particles and gases with an ambient electrospray ionization source.

机构信息

Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, United States.

出版信息

Anal Chem. 2012 Nov 6;84(21):9253-8. doi: 10.1021/ac302024y. Epub 2012 Oct 11.

Abstract

Methods for online characterization and quantification of gas- and particle-phase species greatly facilitate the study of aerosol particle formation and reaction mechanisms. An online method for aerosol analysis has been developed by altering a conventional electrospray ionization mass spectrometer to direct the aerosol flow through the nebulizing gas inlet. Interaction between the aerosol and electrospray droplets produces ions that are subsequently analyzed by MS or MS/MS with a quadrupole ion trap mass analyzer. Performance is assessed using both particle-phase (cesium iodide, glycine) and gas-phase (dimethylamine, dimethylnapthylamine) analytes as well as a secondary organic aerosol (SOA) produced by ozonolysis of α-pinene. Analyte signal intensity is strongly dependent on solubility in the electrospray solvent, suggesting that the predominant ionization mechanism involves extraction of the analyte into the electrospray droplets. For gas-phase analytes, gas-phase charge transfer also appears to play a minor role in ion formation. As currently configured, the source is capable of characterizing oligomers in a SOA at a mass loading of <30 μg/m(3) and quantifying alkyl amine concentrations between approximately 8 ppb and 1 ppm.

摘要

在线描述和量化气相和颗粒相物质的方法极大地促进了气溶胶颗粒形成和反应机制的研究。通过改变传统的电喷雾电离质谱仪,将气溶胶流引导至雾化气体入口,开发了一种用于气溶胶分析的在线方法。气溶胶与电喷雾液滴之间的相互作用产生离子,随后通过四极离子阱质谱分析仪进行 MS 或 MS/MS 分析。使用颗粒相(碘化铯、甘氨酸)和气相(二甲胺、二甲基萘胺)分析物以及臭氧氧化α-蒎烯产生的二次有机气溶胶(SOA)来评估性能。分析物信号强度强烈依赖于电喷雾溶剂中的溶解度,这表明主要的电离机制涉及将分析物萃取到电喷雾液滴中。对于气相分析物,气相电荷转移似乎也在离子形成中起次要作用。按照目前的配置,该源能够在质量负荷 <30 μg/m3 的情况下对 SOA 中的低聚物进行特征描述,并定量约 8 ppb 至 1 ppm 之间的烷基胺浓度。

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