Difference between revisions of "PAM references"

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== Paper's Regarding PAM Laboratory Application ==
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This page has been merged with the [https://sites.google.com/site/pamwiki/ PAM Google Site] created by Andy Lambe.
  
''' Published by Original PAM Developers: '''
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== Selected Smog Chamber Papers  ==
  
* '''''Dependence of SOA oxidation on organic aerosol mass concentration and OH exposure: experimental PAM chamber studies.''''' E. Kang, D. W. Toohey, and W. H. Brune. Atmos. Chem. Phys. Discuss., 10, 24053-24089, 2010[http://www.atmos-chem-phys-discuss.net/10/24053/2010/acpd-10-24053-2010.pdf]
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'''Allen Robinson's Group as part of [http://caps.web.cmu.edu/index.html The Center for Atmospheric Particle Studies]:'''
  
* '''''Introducing the concept of Potential Aerosol Mass (PAM).''''' E. Kang, M. J. Root, D. W. Toohey, and W. H. Brune. Atmos. Chem. Phys., 7, 5727-5744, 2007[http://www.atmos-chem-phys.net/7/5727/2007/acp-7-5727-2007.pdf]
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* '''''Photo-Oxidation of Low-Volatility Organics Found in Motor Vehicle Emissions: Production and Chemical Evolution of Organic Aerosol Mass.''''' M.A. Miracolo, A.A. Presto, A.T. Lambe, C.J. Hennigan, N.M. Donahue, J.H. Kroll, D.R. Worsnop, and A.L. Robinson. Environ. Sci. Technol., 2010, 44 (5), pp 1638–1643. [http://dx.doi.org/10.1021/es902635c Abstract]
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* '''''Secondary Organic Aerosol Formation from High-NOx Photo-Oxidation of Low Volatility Precursors: n-Alkanes.''''' A.A. Presto, M.A. Miracolo, N.M. Donahue, and A.L. Robinson. Environ. Sci. Technol., 2010, 44 (6), pp 2029–2034. [http://dx.doi.org/10.1021/es903712r Abstract]
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* '''''Mixing and phase partitioning of primary and secondary organic aerosols.''''' A. Asa-Awuku, M. A. Miracolo, J. H. Kroll, A. L. Robinson, N. M. Donahue. Geophys Res. Letters, Vol. 36, L15827, 5 PP., 2009. [http://dx.doi.org/10.1029/2009GL039301 Abstract]
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* '''''Intermediate-Volatility Organic Compounds: A Potential Source of Ambient Oxidized Organic Aerosol.''''' A.A. Presto, M.A. Miracolo,  J.H. Kroll, D.R. Worsnop, A.L. Robinson and N. M. Donahue.  Environ. Sci. Technol., 2009, 43 (13), pp 4744–4749. [http://dx.doi.org//10.1021/es803219q Abstract]
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'''Aerosol Physics Group at [http://venda.uku.fi/research/aerosol/index.shtml The Department of Physics at University of Kuopio, Finland]:'''
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* '''''New particle formation from the oxidation of direct emissions of pine seedling.''''' L. Q. Hao, P. Yli-Pirilä, P. Tiitta, S. Romakkaniemi, P. Vaattovaara, M. K. Kajos, J. Rinne, J. Heijari, A. Kortelainen, P. Miettinen, J. H. Kroll, J. K. Holopainen, J. N. Smith, J. Joutsensaari, M. Kulmala, D. R. Worsnop, and A. Laaksonen. Atmos. Chem. Phys., 9, 8121-8137, 2009. [http://www.atmos-chem-phys.org/9/8121/2009/acp-9-8121-2009.html Abstract]

Latest revision as of 16:36, 31 March 2012

This page has been merged with the PAM Google Site created by Andy Lambe.

Selected Smog Chamber Papers

Allen Robinson's Group as part of The Center for Atmospheric Particle Studies:

  • Photo-Oxidation of Low-Volatility Organics Found in Motor Vehicle Emissions: Production and Chemical Evolution of Organic Aerosol Mass. M.A. Miracolo, A.A. Presto, A.T. Lambe, C.J. Hennigan, N.M. Donahue, J.H. Kroll, D.R. Worsnop, and A.L. Robinson. Environ. Sci. Technol., 2010, 44 (5), pp 1638–1643. Abstract
  • Secondary Organic Aerosol Formation from High-NOx Photo-Oxidation of Low Volatility Precursors: n-Alkanes. A.A. Presto, M.A. Miracolo, N.M. Donahue, and A.L. Robinson. Environ. Sci. Technol., 2010, 44 (6), pp 2029–2034. Abstract
  • Mixing and phase partitioning of primary and secondary organic aerosols. A. Asa-Awuku, M. A. Miracolo, J. H. Kroll, A. L. Robinson, N. M. Donahue. Geophys Res. Letters, Vol. 36, L15827, 5 PP., 2009. Abstract
  • Intermediate-Volatility Organic Compounds: A Potential Source of Ambient Oxidized Organic Aerosol. A.A. Presto, M.A. Miracolo, J.H. Kroll, D.R. Worsnop, A.L. Robinson and N. M. Donahue. Environ. Sci. Technol., 2009, 43 (13), pp 4744–4749. Abstract


Aerosol Physics Group at The Department of Physics at University of Kuopio, Finland:

  • New particle formation from the oxidation of direct emissions of pine seedling. L. Q. Hao, P. Yli-Pirilä, P. Tiitta, S. Romakkaniemi, P. Vaattovaara, M. K. Kajos, J. Rinne, J. Heijari, A. Kortelainen, P. Miettinen, J. H. Kroll, J. K. Holopainen, J. N. Smith, J. Joutsensaari, M. Kulmala, D. R. Worsnop, and A. Laaksonen. Atmos. Chem. Phys., 9, 8121-8137, 2009. Abstract