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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Quantifying and improving the optical performance of the laser ablation aerosol particle time of flight mass spectrometer (LAAPToF) instrument
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Quantifying and improving the optical performance of the laser ablation aerosol particle time of flight mass spectrometer (LAAPToF) instrument

机译:量化和提高激光烧蚀气溶胶颗粒的光学性能(LaPraptof)仪器的激光烧蚀气溶胶颗粒时间

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摘要

Single particle mass spectrometer (SPMS) instruments have been used for in-situ chemical characterization of atmospheric aerosols, both in the field and laboratory, for over two decades. SPMSs typically combine precise optical particle sizing with laser desorption and ionization followed by time of flight mass spectrometry. Among the advantages of SPMSs over other aerosol chemistry measurement techniques are their single particle resolution and high sensitivity to trace chemical species. The AeroMegt Laser Ablation Aerosol Particle Time of Flight Mass Spectrometer (LAAPToF) is a commercially available member of this instrument class, aiming for a compact size and simplicity for the end user. This article quantifies the performance of LAAPToF with an emphasis on optical counting efficiency. Recommendations for improving detection compared to the base LAAPToF hardware are described. Our results show that changes to the optical detection scheme can lead to over two orders of magnitude improvement in optical counting efficiency in the size range 500-2000 nm vacuum aerodynamic diameter. We also present mass spectral performance for characterizing atmospherically relevant particles in a comparison to a current SPMS design, the Particle Analysis by Laser Mass Spectrometry. Copyright (c) 2020 American Association for Aerosol Research
机译:单粒子质谱仪(SPMS)仪器已被用于现场和实验室的大气气溶胶的原位化学特征,超过二十几年。 SPMSs通常将精确的光学粒子尺寸与激光解吸和电离结合,然后是飞行时间质谱法。在其他气溶胶化学测量技术上的SPMSS的优点是它们的单颗粒分辨率和对痕量化学物质的高敏感性。飞行质谱仪(LaPraptof)的Ansomegt激光消融气溶胶颗粒(LaAptof)是该仪器类的市售构件,旨在为最终用户提供紧凑的尺寸和简单性。本文量化了LapTof的性能,重点是光学计数效率。描述了与基础LAPTOF硬件相比改善检测的建议。我们的结果表明,光学检测方案的变化可能导致光学计数效率的两个数量级改善,尺寸范围为500-2000 nm真空空气动力学直径。我们还存在用于表征大气相关颗粒的质谱性能,以与电流SPMS设计的比较,激光质谱法的颗粒分析。版权所有(c)2020美国气溶胶研究协会

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