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Found 21 results
Filters: Keyword is secondary organic aerosol  [Clear All Filters]
Holanda B.A, Pohlker M.L, Walter D., Saturno J., Sorgel M., Ditas J., Ditas F., Schulz C., Franco M.A, Wang Q et al..  2020.  Influx of African biomass burning aerosol during the Amazonian dry season through layered transatlantic transport of black carbon-rich smoke. 20:4757-4785.
Andreae M.O.  2019.  Emission of trace gases and aerosols from biomass burning - an updated assessment. 19:8523-8546.
Huang L.B, Coddens E.M, Grassian VH.  2019.  Formation of organosulfur compounds from aqueous phase reactions of S(IV) with methacrolein and methyl vinyl ketone in the presence of transition metal ions. 3:1749-1755.
Cappa CD, Zhang X.L, Russell LM, Collier S., Lee A.KY, Chen C.L, Betha R., Chen S.J, Liu J., Price D.J et al..  2019.  Light absorption by ambient black and brown carbon and its dependence on black carbon coating state for two California, USA, cities in winter and summer. Journal of Geophysical Research-Atmospheres. 124:1550-1577.
Shrivastava M., Andreae M.O, Artaxo P., Barbosa H.MJ, Berg L.K, Brito J., Ching J., Easter RC, Fan J.W, Fast J.D et al..  2019.  Urban pollution greatly enhances formation of natural aerosols over the Amazon rainforest. Nature Communications. 10
Andreae M.O, Afchine A., Albrecht R., Holanda B.A, Artaxo P., Barbosa H.MJ, Borrmann S., Cecchini M.A, Costa A., Dollner M. et al..  2018.  Aerosol characteristics and particle production in the upper troposphere over the Amazon Basin. Atmospheric Chemistry and Physics. 18:921-961.
Kwon D., Or V.W, Sovers M.J, Tang M.J, Kleiber P.D, Grassian VH, Young M.A.  2018.  Optical property measurements and single particle analysis of secondary organic aerosol produced from the aqueous-phase reaction of ammonium sulfate with methylglyoxal. 2:356-365.
Li W.H, Li L.J, Chen C.L, Kacarab M., Peng W.H, Price D., Xu J., Cocker D.R.  2018.  Potential of select intermediate-volatility organic compounds and consumer products for secondary organic aerosol and ozone formation under relevant urban conditions. Atmospheric Environment. 178:109-117.
Chen C.L, Li L.J, Tang P., Cocker D.R.  2018.  SOA formation from photooxidation of naphthalene and methylnaphthalenes with m-xylene and surrogate mixtures. Atmospheric Environment. 180:256-264.
Kim MJ, Novak G.A, Zoerb M.C, Yang M.X, Blomquist B.W, Huebert B.J, Cappa CD, Bertram TH.  2017.  Air-sea exchange of biogenic volatile organic compounds and the impact on aerosol particle size distributions. Geophysical Research Letters. 44:3887-3896.
Kuang X.M, Scott J.A, da Rocha G.O, Betha R., Price D.J, Russell LM, Cocker D.R, Paulson SE.  2017.  Hydroxyl radical formation and soluble trace metal content in particulate matter from renewable diesel and ultra low sulfur diesel in at-sea operations of a research vessel. Aerosol Science and Technology. 51:147-158.
Mikhailov E.F, Mironova S., Mironov G., Vlasenko S., Panov A., Chi X.G, Walter D., Carbone S., Artaxo P., Heimann M. et al..  2017.  Long-term measurements (2010-2014) of carbonaceous aerosol and carbon monoxide at the Zotino Tall Tower Observatory (ZOTTO) in central Siberia. Atmospheric Chemistry and Physics. 17:14365-14392.
Konovalov I.B, Beekmann M., Berezin E.V, Formenti P., Andreae M.O.  2017.  Probing into the aging dynamics of biomass burning aerosol by using satellite measurements of aerosol optical depth and carbon monoxide. Atmospheric Chemistry and Physics. 17:4513-4537.
Murphy B.N, Woody M.C, Jimenez JL, Carlton A.MG, Hayes PL, Liu S, Ng N.L, Russell LM, Setyan A., Xu L et al..  2017.  Semivolatile POA and parameterized total combustion SOA in CMAQv5.2: impacts on source strength and partitioning. Atmospheric Chemistry and Physics. 17:11107-11133.
Arndt J., Sciare J., Mallet M., Roberts GC, Marchand N., Sartelet K., Sellegri K., Dulac F., Healy R.M, Wenger J.C.  2017.  Sources and mixing state of summertime background aerosol in the north-western Mediterranean basin. Atmospheric Chemistry and Physics. 17:6975-7001.
Pohlker M.L, Pohlker C., Ditas F., Klimach T., de Angelis I.H, Araujo A., Brito J., Carbone S., Cheng Y.F, Chi X.G et al..  2016.  Long-term observations of cloud condensation nuclei in the Amazon rain forest - Part 1: Aerosol size distribution, hygroscopicity, and new model parametrizations for CCN prediction. Atmospheric Chemistry and Physics. 16:15709-15740.
Tang M., Alexander J.M, Kwon D., Estillore A.D, Laskina O., Young M.A, Kleiber P.D, Grassian VH.  2016.  Optical and physicochemical properties of brown carbon aerosol: Light scattering, FTIR extinction spectroscopy, and hygroscopic growth. Journal of Physical Chemistry A. 120:4155-4166.
Li L., Tang P., Nakao S., Chen C.L, Cocker D.R.  2016.  Role of methyl group number on SOA formation from monocyclic aromatic hydrocarbons photooxidation under low-NOx conditions. Atmospheric Chemistry and Physics. 16:2255-2272.
Estillore A.D, Hettiyadura A.PS, Qin Z., Leckrone E., Wombacher B., Humphry T., Stone E.A, Grassian VH.  2016.  Water uptake and hygroscopic growth of organosulfate aerosol. Environmental Science & Technology. 50:4259-4268.
Liu Y.C, Liggio J, Li SM, Breznan D., Vincent R., Thomson E.M, Kumarathasan P., Das D., Abbatt J., Antinolo M. et al..  2015.  Chemical and toxicological evolution of carbon nanotubes during atmospherically relevant aging processes. Environmental Science & Technology. 49:2806-2814.
Fast J.D, Allan J., Bahreini R., Craven J., Emmons L., Ferrare R., Hayes PL, Hodzic A., Holloway J., Hostetler C. et al..  2014.  Modeling regional aerosol and aerosol precursor variability over California and its sensitivity to emissions and long-range transport during the 2010 CalNex and CARES campaigns. Atmospheric Chemistry and Physics. 14:10013-10060.