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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Development of an automatic linear calibration method for high-resolution single-particle mass spectrometry: improved chemical species identification for atmospheric aerosols
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Development of an automatic linear calibration method for high-resolution single-particle mass spectrometry: improved chemical species identification for atmospheric aerosols

机译:高分辨率单粒子质谱的自动线性校准方法的开发:改进的大气气溶胶化学物质鉴定

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摘要

The mass resolution of laser desorption ionization (LDI) single-particle aerosol mass spectrometry (SPAMS) is usually low (~500), which has been greatly improved by the recent development of the delayed ion extraction technique. However, due to large fluctuations among LDI processes during each laser shot, accurate calibration of the mass-to-charge ratio for high-resolution SPAMS (HR-SPAMS) spectra is challenging. Here we developed an automatic linear calibration method to improve the accuracy of mass-to-charge (m∕z) measurement for single atmospheric aerosol particles. Laboratory-generated sea spray aerosol and atmospheric ambient aerosol were tested. After the calibration, the fluctuation ranges of the reference ions' (e.g.,?Pb+ and SO4+) m∕z reaches ±0.018 for sea spray aerosol and ±0.024 for ambient aerosol in average mass spectra. With such m∕z accuracy, the HR-SPAMS spectra of sea spray aerosol can easily identify elemental compositions of organic peaks, such as Cx, CxHy and CxHyOz. While the chemical compositions of ambient aerosols are more complicated, CxHy, CxHyOz and CNO peaks can also be identified based on their accurate mass. With the improved resolution, the time series of peaks with small m∕z differences can be separated and measured. In addition, it is also found that applying high-resolution data with enhanced mass calibration can significantly affect particle classification (identification) using the ART-2a algorithm, which classify particles based on similarities among single-particle mass spectra.
机译:激光解吸电离(LDI)单粒子气溶胶质谱(垃圾邮件)的质量分辨率通常是低(〜500),通过延迟离子提取技术的最近发展得到了大大提高。然而,由于每个激光射击期间LDI过程的大波动,高分辨率垃圾邮件(HR-SPAMS)光谱的质量对电力比的精确校准是具有挑战性的。在这里,我们开发了一种自动线性校准方法,以提高单个大气气溶胶颗粒的质量电荷(M / Z)测量的精度。测试了实验室生成的海喷雾气溶胶和大气环境气溶胶。校准后,参考离子的波动范围(例如,ΔPB+和SO4 +)M / z达到海浪气溶胶的±0.018,平均质量光谱的环境气溶胶±0.024。具有这种M / Z精度,海浪喷雾气溶胶的HR-SPAMS光谱可以容易地识别有机峰的元素组成,例如Cx,Cxhy和Cxhyoz。虽然环境气溶胶的化学成分更复杂,但也可以基于其精确的质量来鉴定CXHY,CXHYOZ和CNO峰。通过改进的分辨率,可以分离和测量具有小M / Z差异的峰的时间序列。另外,还发现,使用增强质量校准的高分辨率数据可以显着地影响使用本ART-2A算法的粒子分类(识别),其基于单粒子质谱之间的相似性对粒子进行分类。

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