Articles | Volume 11, issue 8
https://doi.org/10.5194/amt-11-4617-2018
https://doi.org/10.5194/amt-11-4617-2018
Research article
 | 
09 Aug 2018
Research article |  | 09 Aug 2018

Effects of temperature, pressure, and carrier gases on the performance of an aerosol particle mass analyser

Ta-Chih Hsiao, Li-Hao Young, Yu-Chun Tai, and Po-Kai Chang

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Cited articles

Allen, M. D. and Raabe, O. G.: Slip Correction Measurements of Spherical Solid Aerosol Particles in an Improved Millikan Apparatus, Aerosol Sci. Technol., 4, 269–286, 1985. 
Bau, S., Bémer, D., Grippari, F., Appert-Collin, J.-C., and Thomas, D.: Determining the effective density of airborne nanoparticles using multiple charging correction in a tandem DMA/ELPI setup, J. Nanopart. Res., 16, 1–13, 2014. 
Broday, D. M. and Rosenzweig, R.: Deposition of fractal-like soot aggregates in the human respiratory tract, J. Aerosol Sci., 42, 372–386, 2011. 
Chuang, H.-C., Hsiao, T.-C., Wang, S.-H., Tsay, S.-C., and Lin, N.-H.: Characterization of Particulate Matter Profiling and Alveolar Deposition from Biomass Burning in Northern Thailand: The 7-SEAS Study, Aerosol Air Qual. Res., 16, 2581–2602, 2016. 
DeCarlo, P. F., Slowik, J. G., Worsnop, D. R., Davidovits, P., and Jimenez, J. L.: Particle Morphology and Density Characterization by Combined Mobility and Aerodynamic Diameter Measurements. Part 1: Theory, Aerosol Sci. Technol., 38, 1185–1205, 2004. 
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Short summary
Ambient pressure and temperature can vary with location, which implies that classifying aerosol particle mass using APM might be influenced at high-altitude sites. On the other hand, when using the APM as a particle classifier coupled with inductively coupled plasma mass spectrometry, argon would be required as the carrier gas. Therefore, air, oxygen and carbon dioxide were selected as carrier gases to evaluate the effect of gas viscosity and the mean free path on the performance of APM.