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Modelling the gas-particle partitioning and water uptake of isoprene-derived secondary organic aerosol at high and low relative humidity
Amaladhasan, D. A., Heyn, C., Hoyle, C. R., El Haddad, I., Elser, M., Pieber, S. M., … Zuend, A. (2022). Modelling the gas-particle partitioning and water uptake of isoprene-derived secondary organic aerosol at high and low relative humidity. Atmospheric Chemistry and Physics, 22(1), 215-244. https://doi.org/10.5194/acp-22-215-2022
Brown carbon in primary and aged coal combustion emission
Ni, H., Huang, R. J., Pieber, S. M., Corbin, J. C., Stefenelli, G., Pospisilova, V., … Dusek, U. (2021). Brown carbon in primary and aged coal combustion emission. Environmental Science and Technology, 55(9), 5701-5710. https://doi.org/10.1021/acs.est.0c08084
Infrared-absorbing carbonaceous tar can dominate light absorption by marine-engine exhaust
Corbin, J. C., Czech, H., Massabò, D., Buatier de Mongeot, F., Jakobi, G., Liu, F., … Gysel, M. (2019). Infrared-absorbing carbonaceous tar can dominate light absorption by marine-engine exhaust. npj Climate and Atmospheric Science, 2, 12 (10 pp.). https://doi.org/10.1038/s41612-019-0069-5
Secondary organic aerosol formation from smoldering and flaming combustion of biomass: a box model parametrization based on volatility basis set
Stefenelli, G., Jiang, J., Bertrand, A., Bruns, E. A., Pieber, S. M., Baltensperger, U., … El Haddad, I. (2019). Secondary organic aerosol formation from smoldering and flaming combustion of biomass: a box model parametrization based on volatility basis set. Atmospheric Chemistry and Physics, 19(17), 11461-11484. https://doi.org/10.5194/acp-19-11461-2019
Predominance of secondary organic aerosol to particle-bound reactive oxygen species activity in fine ambient aerosol
Zhou, J., Elser, M., Huang, R. J., Krapf, M., Fröhlich, R., Bhattu, D., … Dommen, J. (2019). Predominance of secondary organic aerosol to particle-bound reactive oxygen species activity in fine ambient aerosol. Atmospheric Chemistry and Physics, 19(23), 14703-14720. https://doi.org/10.5194/acp-19-14703-2019
Evolution of the chemical fingerprint of biomass burning organic aerosol during aging
Bertrand, A., Stefenelli, G., Jen, C. N., Pieber, S. M., Bruns, E. A., Ni, H., … Marchand, N. (2018). Evolution of the chemical fingerprint of biomass burning organic aerosol during aging. Atmospheric Chemistry and Physics, 18(10), 7607-7624. https://doi.org/10.5194/acp-18-7607-2018
Influence of the vapor wall loss on the degradation rate constants in chamber experiments of levoglucosan and other biomass burning markers
Bertrand, A., Stefenelli, G., Pieber, S. M., Bruns, E. A., Temime-Roussel, B., Slowik, J. G., … Marchand, N. (2018). Influence of the vapor wall loss on the degradation rate constants in chamber experiments of levoglucosan and other biomass burning markers. Atmospheric Chemistry and Physics, 18(15), 10915-10930. https://doi.org/10.5194/acp-18-10915-2018
Brown and black carbon emitted by a marine engine operated on heavy fuel oil and distillate fuels: optical properties, size distributions, and emission factors
Corbin, J. C., Pieber, S. M., Czech, H., Zanatta, M., Jakobi, G., Massabò, D., … Gysel, M. (2018). Brown and black carbon emitted by a marine engine operated on heavy fuel oil and distillate fuels: optical properties, size distributions, and emission factors. Journal of Geophysical Research D: Atmospheres, 123(11), 6175-6195. https://doi.org/10.1029/2017JD027818
Trace metals in soot and PM<sub>2.5</sub> from heavy-fuel-oil combustion in a marine engine
Corbin, J. C., Mensah, A. A., Pieber, S. M., Orasche, J., Michalke, B., Zanatta, M., … Gysel, M. (2018). Trace metals in soot and PM2.5 from heavy-fuel-oil combustion in a marine engine. Environmental Science and Technology, 52(11), 6714-6722. https://doi.org/10.1021/acs.est.8b01764
Identification of secondary aerosol precursors emitted by an aircraft turbofan
Kiliç, D., El Haddad, I., Brem, B. T., Bruns, E., Bozetti, C., Corbin, J., … Prévôt, A. S. H. (2018). Identification of secondary aerosol precursors emitted by an aircraft turbofan. Atmospheric Chemistry and Physics, 18(10), 7379-7391. https://doi.org/10.5194/acp-18-7379-2018
Characterization of gas-phase organics using proton transfer reaction time-of-flight mass spectrometry: residential coal combustion
Klein, F., Pieber, S. M., Ni, H., Stefenelli, G., Bertrand, A., Kilic, D., … Prévôt, A. S. H. (2018). Characterization of gas-phase organics using proton transfer reaction time-of-flight mass spectrometry: residential coal combustion. Environmental Science and Technology, 52(5), 2612-2617. https://doi.org/10.1021/acs.est.7b03960
Gas-phase composition and secondary organic aerosol formation from standard and particle filter-retrofitted gasoline direct injection vehicles investigated in a batch and flow reactor
Pieber, S. M., Kumar, N. K., Klein, F., Comte, P., Bhattu, D., Dommen, J., … Prévôt, A. S. H. (2018). Gas-phase composition and secondary organic aerosol formation from standard and particle filter-retrofitted gasoline direct injection vehicles investigated in a batch and flow reactor. Atmospheric Chemistry and Physics, 18(13), 9929-9954. https://doi.org/10.5194/acp-18-9929-2018
Mitigation of secondary organic aerosol formation from log wood burning emissions by catalytic removal of aromatic hydrocarbons
Pieber, S. M., Kambolis, A., Ferri, D., Bhattu, D., Bruns, E. A., Elsener, M., … Baltensperger, U. (2018). Mitigation of secondary organic aerosol formation from log wood burning emissions by catalytic removal of aromatic hydrocarbons. Environmental Science and Technology, 52(22), 13381-13390. https://doi.org/10.1021/acs.est.8b04124
Primary emissions and secondary aerosol production potential from woodstoves for residential heating: influence of the stove technology and combustion efficiency
Bertrand, A., Stefenelli, G., Bruns, E. A., Pieber, S. M., Temime-Roussel, B., Slowik, J. G., … Marchand, N. (2017). Primary emissions and secondary aerosol production potential from woodstoves for residential heating: influence of the stove technology and combustion efficiency. Atmospheric Environment, 169, 65-79. https://doi.org/10.1016/j.atmosenv.2017.09.005
Review of urban secondary organic aerosol formation from gasoline and diesel motor vehicle emissions
Gentner, D. R., Jathar, S. H., Gordon, T. D., Bahreini, R., Day, D. A., El Haddad, I., … Robinson, A. L. (2017). Review of urban secondary organic aerosol formation from gasoline and diesel motor vehicle emissions. Environmental Science and Technology, 51(3), 1074-1093. https://doi.org/10.1021/acs.est.6b04509
Gasoline cars produce more carbonaceous particulate matter than modern filter-equipped diesel cars
Platt, S. M., El Haddad, I., Pieber, S. M., Zardini, A. A., Suarez-Bertoa, R., Clairotte, M., … Prévôt, A. S. H. (2017). Gasoline cars produce more carbonaceous particulate matter than modern filter-equipped diesel cars. Scientific Reports, 7, 4926 (9 pp.). https://doi.org/10.1038/s41598-017-03714-9
Characterization of gas-phase organics using proton transfer reaction time-of-flight mass spectrometry: cooking emissions
Klein, F., Platt, S. M., Farren, N. J., Detournay, A., Bruns, E. A., Bozzetti, C., … El Haddad, I. (2016). Characterization of gas-phase organics using proton transfer reaction time-of-flight mass spectrometry: cooking emissions. Environmental Science and Technology, 50(3), 1243-1250. https://doi.org/10.1021/acs.est.5b04618
Indoor terpene emissions from cooking with herbs and pepper and their secondary organic aerosol production potential
Klein, F., Farren, N. J., Bozzetti, C., Daellenbach, K. R., Kilic, D., Kumar, N. K., … El Haddad, I. (2016). Indoor terpene emissions from cooking with herbs and pepper and their secondary organic aerosol production potential. Scientific Reports, 6, 36623 (7 pp.). https://doi.org/10.1038/srep36623
Inorganic salt interference on CO<sub>2</sub><sup>+</sup> in aerodyne AMS and ACSM organic aerosol composition studies
Pieber, S. M., El Haddad, I., Slowik, J. G., Canagaratna, M. R., Jayne, J. T., Platt, S. M., … Prévôt, A. S. H. (2016). Inorganic salt interference on CO2+ in aerodyne AMS and ACSM organic aerosol composition studies. Environmental Science and Technology, 50(19), 10494-10503. https://doi.org/10.1021/acs.est.6b01035
Transformation of logwood combustion emissions in a smog chamber: Formation of secondary organic aerosol and changes in the primary organic aerosol upon daytime and nighttime aging
Tiitta, P., Leskinen, A., Hao, L., Yli-Pirilä, P., Kortelainen, M., Grigonyte, J., … Sippula, O. (2016). Transformation of logwood combustion emissions in a smog chamber: Formation of secondary organic aerosol and changes in the primary organic aerosol upon daytime and nighttime aging. Atmospheric Chemistry and Physics, 16(20), 13251-13269. https://doi.org/10.5194/acp-16-13251-2016