A Field-Based Approach for Determining ATOFMS Instrument Sensitivities to Ammonium and Nitrate
- 19 October 2002
- journal article
- Published by American Chemical Society (ACS) in Environmental Science & Technology
- Vol. 36 (22) , 4868-4879
- https://doi.org/10.1021/es015823i
Abstract
Aerosol time-of-flight mass spectrometry (ATOFMS) instruments measure the size and chemical composition of individual particles in real-time. ATOFMS chemical composition measurements are difficult to quantify, largely because the instrument sensitivities to different chemical species in mixed ambient aerosols are unknown. In this paper, we develop a field-based approach for determining ATOFMS instrument sensitivities to ammonium and nitrate in size-segregated atmospheric aerosols, using tandem ATOFMS-impactor sampling. ATOFMS measurements are compared with collocated impactor measurements taken at Riverside, CA, in September 1996, August 1997, and October 1997. This is the first comparison of ion signal intensities from a single-particle instrument with quantitative measurements of atmospheric aerosol chemical composition. The comparison reveals that ATOFMS instrument sensitivities to both and decline with increasing particle aerodynamic diameter over a 0.32−1.8 μm calibration range. The stability of this particle size dependence is tested over the broad range of fine particle concentrations (PM1.8 = 17.6 ± 2.0−127.8 ± 1.8 μg m-3), ambient temperatures (23−35 °C), and relative humidity conditions (21−69%), encountered during the field experiments. This paper describes a potentially generalizable methodology for increasing the temporal and size resolution of atmospheric aerosol chemical composition measurements, using tandem ATOFMS-impactor sampling.Keywords
This publication has 30 references indexed in Scilit:
- Effects of Meteorological Conditions on Aerosol Composition and Mixing State in Bakersfield, CAEnvironmental Science & Technology, 2002
- Real-time measurements of the chemical composition of size-resolved particles during a Santa Ana wind episode, California USAAtmospheric Environment, 2001
- Evolution of Atmospheric Particles along Trajectories Crossing the Los Angeles BasinEnvironmental Science & Technology, 2000
- A review of atmospheric aerosol measurementsAtmospheric Environment, 2000
- Humidity effects on the mass spectra of single aerosol particlesAtmospheric Environment, 1998
- Atmospheric Radiocarbon Calibration to 45,000 yr B.P.: Late Glacial Fluctuations and Cosmogenic Isotope ProductionScience, 1998
- Real-Time Monitoring of the Surface and Total Composition of Aerosol ParticlesAerosol Science and Technology, 1997
- Real-Time Measurement of Correlated Size and Composition Profiles of Individual Atmospheric Aerosol ParticlesEnvironmental Science & Technology, 1996
- Aerodynamic Particle Sizing versus Light Scattering Intensity Measurement as Methods for Real-Time Particle Sizing Coupled with Time-of-Flight Mass SpectrometryAnalytical Chemistry, 1996
- Study of inorganic ammonium compounds in individual marine aerosol particles by laser microprobe mass spectrometryAnalytica Chimica Acta, 1987