推动纳米气溶胶测量进入新的十年--关于 Airmodus 粒度放大镜 2.0 的技术说明

J. Sulo, J. Enroth, A. Pajunoja, J. Vanhanen, K. Lehtipalo, T. Petäjä, M. Kulmala
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引用次数: 0

摘要

摘要精确测量 10 纳米以下气溶胶粒子的粒度分布仍然是一项挑战。在此,我们介绍一种新版本的 Airmodus 粒度放大镜(PSM 2.0),它是一种基于冷凝粒子计数器的仪器,粒度范围为 1-12 nm。与早期的 PSM 版本相比,它的粒度范围有所扩大,能够直接检测正在形成的团块和颗粒,并研究它们的生长过程,而不会遇到与颗粒充电相关的难题。它还使 PSM 的活化粒度分布测量与传统迁移率粒度仪的迁移率粒度分布测量相互重叠。在实地测量过程中,我们将 PSM 2.0 的性能与迁移率粒度光谱仪、原始 A10 粒度放大镜和中性簇与空气离子光谱仪(NAIS)的性能进行了比较。此外,还将校准结果与 A10 仪器进行了比较。结果表明,PSM 2.0 能够激活 2 纳米以下的团块,2-12 纳米之间的浓度和粒度分布情况与 NAIS 相比尤为出色。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pushing nano-aerosol measurements towards a new decade – technical note on the Airmodus particle size magnifier 2.0
Abstract. Accurate measurement of the size distribution of sub-10 nm aerosol particles is still a challenge. Here we introduce a novel version of the Airmodus particle size magnifier (PSM 2.0), which is a condensation-particle-counter-based instrument with a sizing range of 1–12 nm. The extended size range compared to the earlier PSM version enables the direct detection of forming clusters and particles as well as the study of their growth processes without the challenges related to particle charging. It also gives an overlap between the activation size distribution measurements with the PSM and mobility size distribution measurements with conventional mobility particle sizers. We compared the performance of PSM 2.0 to that of a mobility particle size spectrometer, the original A10 particle size magnifier, and a Neutral cluster and Air Ion Spectrometer (NAIS) during field measurements. Also, calibration results were compared against the A10 instrument. The results show that PSM 2.0 is able to activate sub-2 nm clusters and that the concentration and size distribution between 2–12 nm compare well, especially with the NAIS.
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