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Original Articles

Nanoparticle Chemical Composition During New Particle Formation

, , &
Pages 1041-1048 | Received 11 Feb 2011, Accepted 06 Apr 2011, Published online: 09 May 2011

REFERENCES

  • Asmi , E. , Frey , A. , Virkkula , A. , Ehn , M. , Manninen , H. E. , Timonen , H. , Tolonen-Kivimaki , O. , Aurela , M. , Hillamo , R. and Kulmala , M. 2010 . Hygroscopicity and Chemical Composition of Antarctic Sub-Micrometre Aerosol Particles and Observations of New Particle Formation . Atmos. Chem. Phys. , 10 : 4253 – 4271 .
  • Bzdek , B. R. and Johnston , M. V. 2010 . New Particle Formation and Growth in the Troposphere . Anal. Chem. , 82 : 7871 – 7878 .
  • Dal Maso , M. , Kulmala , M. , Lehtinen , K. E. J. , Makela , J. M. , Aalto , P. and O’Dowd , C. D. 2002 . Condensation and Coagulation Sinks and Formation of Nucleation Mode Particles in Coastal and Boreal Forest Boundary Layers . J. Geophys. Res.—Atmos. , 107 : 8097 DOI: 8010.1029/2001jd001053
  • Dal Maso , M. , Kulmala , M. , Riipinen , I. , Wagner , R. , Hussein , T. , Aalto , P. P. and Lehtinen , K. E. J. 2005 . Formation and Growth of Fresh Atmospheric Aerosols: Eight Years of Aerosol Size Distribution Data from SMEAR II, Hyytiala, Finland . Boreal Environ. Res. , 10 : 323 – 336 .
  • Draxler , R. R. and Rolph , G. D. 2011 . “ HYSPLIT (HYbrid Single-Particle Lagrangian Integrated Trajectory) Model Access Via NOAA ARL Ready Website ” . (http://ready.arl.noaa.gov/HYSPLIT.php). NOAA Air Resources Laboratory, Silver Spring, MD
  • Dusek , U. , Frank , G. P. , Curtius , J. , Drewnick , F. , Schneider , J. , Kurten , A. , Rose , D. , Andreae , M. O. , Borrmann , S. and Poschl , U. 2010 . Enhanced Organic Mass Fraction and Decreased Hygroscopicity of Cloud Condensation Nuclei (CCN) During New Particle Formation Events . Geophys. Res. Lett. , 37 : L03804 DOI: 03810.01029/02009gl040930
  • Ehn , M. , Petaja , T. , Birmili , W. , Junninen , H. , Aalto , P. and Kulmala , M. 2007 . Non-Volatile Residuals of Newly Formed Atmospheric Particles in the Boreal Forest . Atmos. Chem. Phys. , 7 : 677 – 684 .
  • Held , A. , Rathbone , G. J. and Smith , J. N. 2009 . A Thermal Desorption Chemical Ionization Ion Trap Mass Spectrometer for the Chemical Characterization of Ultrafine Aerosol Particles . Aerosol Sci. Technol. , 43 : 264 – 272 .
  • Iida , K. , Stolzenburg , M. R. , McMurry , P. H. and Smith , J. N. 2008 . Estimating Nanoparticle Growth Rates from Size-Dependent Charged Fractions: Analysis of New Particle Formation Events in Mexico City . J. Geophys. Res.—Atmos. , 113 : D05207 DOI: 05210.01029/02007jd009260
  • Kuang , C. , Riipinen , I. , Sihto , S. L. , Kulmala , M. , McCormick , A. V. and McMurry , P. H. 2010 . An Improved Criterion for New Particle Formation in Diverse Atmospheric Environments . Atmos. Chem. Phys. , 10 : 8469 – 8480 .
  • Kulmala , M. , Vehkamaki , H. , Petaja , T. , Dal Maso , M. , Lauri , A. , Kerminen , V. M. , Birmili , W. and McMurry , P. H. 2004 . Formation and Growth Rates of Ultrafine Atmospheric Particles: A Review of Observations . J. Aerosol Sci. , 35 : 143 – 176 .
  • Luther , G. W. and Stecher , H. A. 1997 . Preface: Historical Background . J. Geophys. Res.—Atmos. , 102 : 16215 – 16217 .
  • McMurry , P. H. , Ghimire , A. , Ahn , H. K. , Sakurai , H. , Moore , K. , Stolzenburg , M. and Smith , J. N. 2009 . Sampling Nanoparticles for Chemical Analysis by Low Resolution Electrical Mobility Classification . Environ. Sci. Technol. , 43 : 4653 – 4658 .
  • Merikanto , J. , Spracklen , D. V. , Mann , G. W. , Pickering , S. J. and Carslaw , K. S. 2009 . Impact of Nucleation on Global CCN . Atmos. Chem. Phys. , 9 : 8601 – 8616 .
  • O’Dowd , C. D. , Yoon , Y. J. , Junkerman , W. , Aalto , P. , Kulmala , M. , Lihavainen , H. and Viisanen , Y. 2007 . Airborne Measurements of Nucleation Mode Particles I: Coastal Nucleation and Growth Rates . Atmos. Chem. Phys. , 7 : 1491 – 1501 .
  • Riipinen , I. , Manninen , H. E. , Yli-Juuti , T. , Boy , M. , Sipila , M. , Ehn , M. , Junninen , H. , Petaja , T. and Kulmala , M. 2009 . Applying the Condensation Particle Counter Battery (CPCB) to Study the Water-Affinity of Freshly-Formed 2–9 nm Particles in Boreal Forest . Atmos. Chem. Phys. , 9 : 3317 – 3330 .
  • Smith , J. N. , Barsanti , K. C. , Friedli , H. R. , Ehn , M. , Kulmala , M. , Collins , D. R. , Scheckman , J. H. , Williams , B. J. and McMurry , P. H. 2010 . Observations of Aminium Salts in Atmospheric Nanoparticles and Possible Climatic Implications . Proc. Natl. Acad. Sci. U.S.A. , 107 : 6634 – 6639 .
  • Smith , J. N. , Dunn , M. J. , VanReken , T. M. , Iida , K. , Stolzenburg , M. R. , McMurry , P. H. and Huey , L. G. 2008 . Chemical Composition of Atmospheric Nanoparticles Formed from Nucleation in Tecamac, Mexico: Evidence for an Important Role for Organic Species in Nanoparticle Growth . Geophys. Res. Lett. , 35 : L04808 DOI: 04810.01029/02007gl032523
  • Smith , J. N. , Moore , K. F. , Eisele , F. L. , Voisin , D. , Ghimire , A. K. , Sakurai , H. and McMurry , P. H. 2005 . Chemical Composition of Atmospheric Nanoparticles During Nucleation Events in Atlanta . J. Geophys. Res.—Atmos. , 110 : D22s03 DOI: 10.1029/2005jd005912
  • Smith , J. N. , Moore , K. F. , McMurry , P. H. and Eisele , F. L. 2004 . Atmospheric Measurements of Sub-20 nm Diameter Particle Chemical Composition by Thermal Desorption Chemical Ionization Mass Spectrometry . Aerosol Sci. Technol. , 38 : 100 – 110 .
  • Solomon , S. , Qin , D. , Manning , M. , Chen , Z. , Marquis , M. , Averyt , K. B. , Tignor , M. and Miller , H. L. 2007 . Climate Change 2007: The Physical Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change , 996 Cambridge : Cambridge University Press .
  • Spracklen , D. V. , Carslaw , K. S. , Kulmala , M. , Kerminen , V. M. , Sihto , S. L. , Riipinen , I. , Merikanto , J. , Mann , G. W. , Chipperfield , M. P. , Wiedensohler , A. , Birmili , W. and Lihavainen , H. 2008 . Contribution of Particle Formation to Global Cloud Condensation Nuclei Concentrations . Geophys. Res. Lett. , 35 : L06808 DOI: 06810.01029/02007gl033038
  • Stecher , H. A. , Luther , G. W. , MacTaggart , D. L. , Farwell , S. O. , Crosley , D. R. , Dorko , W. D. , Goldan , P. D. , Beltz , N. , Krischke , U. , Luke , W. T. , Thornton , D. C. , Talbot , R. W. , Lefer , B. L. , Scheuer , E. M. , Benner , R. L. , Wu , J. G. , Saltzman , E. S. , Gallagher , M. S. and Ferek , R. J. 1997 . Results of the Gas-Phase Sulfur Intercomparison Experiment (GASIE): Overview of Experimental Setup, Results and General Conclusions . J. Geophys. Res.—Atmos. , 102 : 16219 – 16236 .
  • Voisin , D. , Smith , J. N. , Sakurai , H. , McMurry , P. H. and Eisele , F. L. 2003 . Thermal Desorption Chemical Ionization Mass Spectrometer for Ultrafine Particle Chemical Composition . Aerosol Sci. Technol. , 37 : 471 – 475 .
  • Wang , S. Y. and Johnston , M. V. 2006 . Airborne Nanoparticle Characterization with a Digital Ion Trap-Reflectron Time of Flight Mass Spectrometer . Int. J. Mass Spec. , 258 : 50 – 57 .
  • Wang , S. Y. , Zordan , C. A. and Johnston , M. V. 2006 . Chemical Characterization of Individual, Airborne Sub-10-nm Particles and Molecules . Anal. Chem. , 78 : 1750 – 1754 .
  • Zordan , C. A. , Pennington , M. R. and Johnston , M. V. 2010 . Elemental Composition of Nanoparticles with the Nano Aerosol Mass Spectrometer . Anal. Chem. , 82 : 8034 – 8038 .
  • Zordan , C. A. , Wang , S. and Johnston , M. V. 2008 . Time-Resolved Chemical Composition of Individual Nanoparticles in Urban Air . Environ. Sci. Technol. , 42 : 6631 – 6636 .

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