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HELIOS/SICRIT/mass spectrometry for analysis of aerosols in engine exhaust

Authors :
Christoph Haisch
Anastasios Kontses
Miikka Dal Maso
Klemens M. Thaler
Zissis Samaras
Panu Karjalainen
Sanna Saarikoski
Andreas Vohburger
Minna Aurela
Markus Weber
Reinhard Niessner
Hilkka Timonen
Zisimos Toumasatos
Joni Kalliokoski
Genny A. Pang
Sampsa Martikainen
Jorma Keskinen
Pauli Simonen
Lorenza Gilardi
Tampere University
Physics
Source :
Aerosol Science and Technology. 55:886-900
Publication Year :
2021
Publisher :
Informa UK Limited, 2021.

Abstract

Current legislations typically characterize systems of aerosols, such as from vehicle exhaust, primarily by number concentration and size distributions. While potential health threats have a dependence on the particle size, the chemical composition of particles, including the volatile and semi-volatile components adsorbed onto nonvolatile particle cores present at roadside and urban settings, is important in understanding the impact of exhaust particles on health. To date, the only tools suitable for an online in-depth chemical aerosol characterization are aerosol mass spectrometers, which are typically composed of complex and cost intensive instrumentation. We present a new analytical system, which combines a novel inexpensive infrared-radiation-based evaporation system (HELIOS) with a commercially available highly efficient atmospheric ionization source (SICRIT) connected to a rather low-price ion-trap mass spectrometer. Our inexpensive, robust and mobile aerosol characterization HELIOS/SICRIT/Mass Spectrometry system enables highly sensitive chemical analysis of particle-associated volatile substances. We validate the HELIOS/SICRIT/Mass Spectrometry system in laboratory experiments with coated particles generated under controlled conditions, and show that the system is capable of identification of combustion-generated polycyclic aromatic hydrocarbons and relative quantification of individual chemical species adsorbed on particle surfaces. We then employ our system to analyze real-world vehicle engine exhaust aerosol and show through time-resolved measurements with high time resolution (

Details

ISSN :
15217388 and 02786826
Volume :
55
Database :
OpenAIRE
Journal :
Aerosol Science and Technology
Accession number :
edsair.doi.dedup.....e0c5525543724998d8f14e2fb9e94614
Full Text :
https://doi.org/10.1080/02786826.2021.1909699