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A large eddy simulation of turbulent particle-laden flow inside a cubical differentially heated cavity
Dehbi, A., Kalilainen, J., Lind, T., & Auvinen, A. (2017). A large eddy simulation of turbulent particle-laden flow inside a cubical differentially heated cavity. Journal of Aerosol Science, 103, 67-82. https://doi.org/10.1016/j.jaerosci.2016.10.003
Measuring air borne nanoparticles for characterizing hyphenated RDD-SMPS-ICPMS instrumentation
Hess, A., Tarik, M., Losert, S., Ilari, G., & Ludwig, C. (2016). Measuring air borne nanoparticles for characterizing hyphenated RDD-SMPS-ICPMS instrumentation. Journal of Aerosol Science, 92, 130-141. https://doi.org/10.1016/j.jaerosci.2015.10.007
Experimental investigation of a turbulent particle-laden flow inside a cubical differentially heated cavity
Kalilainen, J., Rantanen, P., Lind, T., Auvinen, A., & Dehbi, A. (2016). Experimental investigation of a turbulent particle-laden flow inside a cubical differentially heated cavity. Journal of Aerosol Science, 100, 73-87. https://doi.org/10.1016/j.jaerosci.2016.06.001
Observation of new particle formation on Curonian Spit located between continental Europe and Scandinavia
Mordas, G., Plauškaite, K., Prokopčiuk, N., Dudoitis, V., Bozzetti, C., & Ulevicius, V. (2016). Observation of new particle formation on Curonian Spit located between continental Europe and Scandinavia. Journal of Aerosol Science, 97, 38-55. https://doi.org/10.1016/j.jaerosci.2016.03.002
Combustion process apportionment of carbonaceous particulate emission from a diesel fuel burner
Mueller, L., Schnelle-Kreis, J., Jakobi, G., Orasche, J., Jing, L., Canonaco, F., … Zimmermann, R. (2016). Combustion process apportionment of carbonaceous particulate emission from a diesel fuel burner. Journal of Aerosol Science, 100, 61-72. https://doi.org/10.1016/j.jaerosci.2016.06.003
A hyphenated SMPS-ICPMS coupling setup: size-resolved element specific analysis of airborne nanoparticles
Hess, A., Tarik, M., & Ludwig, C. (2015). A hyphenated SMPS-ICPMS coupling setup: size-resolved element specific analysis of airborne nanoparticles. Journal of Aerosol Science, 88, 109-118. https://doi.org/10.1016/j.jaerosci.2015.05.016
Fast and precise measurement in the sub-20nm size range using a Scanning Mobility Particle Sizer
Tröstl, J., Tritscher, T., Bischof, O. F., Horn, H. G., Krinke, T., Baltensperger, U., & Gysel, M. (2015). Fast and precise measurement in the sub-20nm size range using a Scanning Mobility Particle Sizer. Journal of Aerosol Science, 87, 75-87. https://doi.org/10.1016/j.jaerosci.2015.04.001
Hygroscopic properties of fresh and aged wood burning particles
Martin, M., Tritscher, T., Jurányi, Z., Heringa, M. F., Sierau, B., Weingartner, E., … Lohmann, U. (2013). Hygroscopic properties of fresh and aged wood burning particles. Journal of Aerosol Science, 56, 15-29. https://doi.org/10.1016/j.jaerosci.2012.08.006
Direct observation of water uptake and release in individual submicrometer sized ammonium sulfate and ammonium sulfate/adipic acid particles using X-ray microspectroscopy
Zelenay, V., Ammann, M., Křepelová, A., Birrer, M., Tzvetkov, G., Vernooij, M. G. C., … Huthwelker, T. (2011). Direct observation of water uptake and release in individual submicrometer sized ammonium sulfate and ammonium sulfate/adipic acid particles using X-ray microspectroscopy. Journal of Aerosol Science, 42(1), 38-51. https://doi.org/10.1016/j.jaerosci.2010.11.001
Inversion of tandem differential mobility analyser (TDMA) measurements
Gysel, M., McFiggans, G. B., & Coe, H. (2009). Inversion of tandem differential mobility analyser (TDMA) measurements. Journal of Aerosol Science, 40(2), 134-151. https://doi.org/10.1016/j.jaerosci.2008.07.013
Hygroscopic growth and water uptake kinetics of two-phase aerosol particles consisting of ammonium sulfate, adipic and humic acid mixtures
Sjogren, S., Gysel, M., Weingartner, E., Baltensperger, U., Cubison, M. J., Coe, H., … Peter, T. (2007). Hygroscopic growth and water uptake kinetics of two-phase aerosol particles consisting of ammonium sulfate, adipic and humic acid mixtures. Journal of Aerosol Science, 38(2), 157-171. https://doi.org/10.1016/j.jaerosci.2006.11.005
Coating of soot and (NH<sub>4</sub>)<sub>2</sub>SO<sub>4</sub> particles by ozonolysis products of <em>α</em>-pinene
Saathoff, H., Naumann, K. H., Schnaiter, M., Schöck, W., Möhler, O., Schurath, U., … Baltensperger, U. (2003). Coating of soot and (NH4)2SO4 particles by ozonolysis products of α-pinene. Journal of Aerosol Science, 34(10), 1297-1321. https://doi.org/10.1016/S0021-8502(03)00364-1
Drop size measurements using two different optical devices
Dehbi, A. (2001). Drop size measurements using two different optical devices. Journal of Aerosol Science, 32. https://doi.org/10.1016/S0021-8502(01)00080-5
The effect of liquid temperature on pool scrubbing of aerosols
Dehbi, A. (1997). The effect of liquid temperature on pool scrubbing of aerosols. Journal of Aerosol Science, 28. https://doi.org/10.1016/S0021-8502(97)85352-9
Study of HI, HBr and NO<sub>2</sub> adsorption on graphite and silver aerosol particles using short-lived isotopes
Ammann, M., Baltensperger, U., Bochert, U. K., Eichler, B., Gäggeler, H. W., Jost, D. T., … Weber, A. P. (1995). Study of HI, HBr and NO2 adsorption on graphite and silver aerosol particles using short-lived isotopes. Journal of Aerosol Science, 26(1), 61-70. https://doi.org/10.1016/0021-8502(94)00087-F
17.P.15 Design of the test matrix for POSEIDON pool scrubbing experiments using the BUSCA-PSI code
Dehbi, A., Guentay, S., & Suckow, D. (1994). 17.P.15 Design of the test matrix for POSEIDON pool scrubbing experiments using the BUSCA-PSI code. Journal of Aerosol Science, 25(SUPPL. 1), 275-276. https://doi.org/10.1016/0021-8502(94)90368-9