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利用气溶胶流动大气压力余晖质谱法(AeroFAPA-MS)实时分析环境有机气溶胶。

Real-Time Analysis of Ambient Organic Aerosols Using Aerosol Flowing Atmospheric-Pressure Afterglow Mass Spectrometry (AeroFAPA-MS).

机构信息

†Institute of Inorganic and Analytical Chemistry, Johannes Gutenberg-Universität, 55128 Mainz, Germany.

‡College of Physical Sciences, University of Aberdeen, Aberdeen AB243UE, United Kingdom.

出版信息

Environ Sci Technol. 2015 May 5;49(9):5571-8. doi: 10.1021/es506186c. Epub 2015 Apr 21.

Abstract

Organic compounds contribute to a major fraction of atmospheric aerosols and have significant impacts on climate and human health. However, because of their chemical complexity, their measurement remains a major challenge for analytical instrumentation. Here we present the development and characterization of a new soft ionization technique that allows mass spectrometric real-time detection of organic compounds in aerosols. The aerosol flowing atmospheric-pressure afterglow (AeroFAPA) ion source is based on a helium glow discharge plasma, which generates excited helium species and primary reagent ions. Ionization of the analytes occurs in the afterglow region after thermal desorption and produces mainly intact quasimolecular ions, facilitating the interpretation of the acquired mass spectra. We illustrate that changes in aerosol composition and concentration are detected on the time scale of seconds and in the ng m(-3) range. Additionally, the successful application of AeroFAPA-MS during a field study in a mixed forest region is presented. In general, the observed compounds are in agreement with previous offline studies; however, the acquisition of chemical information and compound identification is much faster. The results demonstrate that AeroFAPA-MS is a suitable tool for organic aerosol analysis and reveal the potential of this technique to enable new insights into aerosol formation, growth, and transformation in the atmosphere.

摘要

有机化合物是大气气溶胶的主要组成部分,对气候和人类健康有重大影响。然而,由于其化学复杂性,它们的测量仍然是分析仪器的主要挑战。在这里,我们介绍了一种新的软电离技术的开发和特性,该技术允许实时质谱检测气溶胶中的有机化合物。气溶胶流动大气压后辉光(AeroFAPA)离子源基于氦辉光放电等离子体,该等离子体产生激发的氦物质和初级反应离子。分析物的电离发生在热解吸后的余晖区,主要产生完整的准分子离子,有利于解释获得的质谱。我们表明,气溶胶成分和浓度的变化可以在秒的时间尺度和纳克/立方米的范围内检测到。此外,还介绍了在混合林地区的现场研究中成功应用 AeroFAPA-MS 的情况。总的来说,观察到的化合物与以前的离线研究一致;然而,获取化学信息和化合物鉴定的速度要快得多。结果表明,AeroFAPA-MS 是一种适合有机气溶胶分析的工具,并揭示了该技术在大气气溶胶形成、增长和转化方面提供新见解的潜力。

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