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Effect of internal mixture on black carbon radiative forcing Cover

Effect of internal mixture on black carbon radiative forcing

Open Access
|Jan 2012

References

  1. Adachi K , Chung S. H , Buseck P. R . Shapes of soot aerosol particles and implications for their effects on climate . J. Geophys. Res . 2010 ; 115 : D15206 D15209 .
  2. Alexander D. T. L , Crozier P. A , Anderson J. R . Brown carbon spheres in East Asian outflow and their optical properties . Science . 2008 ; 321 : 833 836 .
  3. Andreae M. O , Gelencsér A . Black carbon or brown carbon? The nature of light-absorbing carbonaceous aerosols . Atmos. Chem. Phys . 2006 ; 6 : 3131 3148 .
  4. Arola , A , Schuster , G , Myhre , G , Kazadzis , S , Dey , S . and co-authors . 2011 . Inferring absorbing organic carbon content from AERONET data . Atmos. Chem. Phys . 11 : 215 225 .
  5. Atwater M. A . Planetary albedo changes due to aerosols . Science . 1970 ; 170 : 64 66 .
  6. Bond T. C , Habib G , Bergstrom R. W . Limitations in the enhancement of visible light absorption due to mixing state . J. Geophys. Res . 2006 ; 111 : D20211 D20213 .
  7. Bond , T. C , Streets , D. G , Yarber , K. F , Nelson , S. M , Woo , J.-H . and co-authors . 2004 . A technology-based global inventory of black and organic carbon emissions from combustion . J. Geophys. Res . 109 : D14203 D14243 .
  8. Bond T. C , Zarzycki C , Flanner M. G , Koch D. M . Quantifying immediate radiative forcing by black carbon and organic matter with the Specific Forcing Pulse . Atmos. Chem. Phys . 2011 ; 11 : 1505 1525 .
  9. Brasil A. M , Farias T. L , Carvalho M. G . Evaluation of the fractal properties of cluster-cluster aggregates . Aerosol Sci. Technol . 2000 ; 33 : 440 454 .
  10. Chakrabarty , R. K , Moosmüller , H , Arnott , W. P , Garro , M. A , Slowik , J. G . and co-authors . 2007 . Light scattering and absorption by fractal-like carbonaceous chain aggregates: comparison of theories and experiment . Appl. Opt . 46 : 6990 7006 .
  11. Chin , M , Ginoux , P , Kinne , S , Torres , O , Holben , B. N . and co-authors . 2002 . Tropospheric aerosol optical thickness from the GOCART model and comparisons with satellite and sun photometer measurements . J. Atmos. Sci . 59 : 461 483 .
  12. Choi M. Y , Mulholland G. W , Hamins A , Kashiwagi T . Comparisons of the soot volume fraction using gravimetric and light extinction techniques . Combust. Flame . 1995 ; 102 : 161 169 .
  13. Chung C. E , Ramanathan V , Kim D , Podgorny I. A . Global anthropogenic aerosol direct forcing derived from satellite and ground-based observations . J. Geophys. Res . 2005 ; 110 : D24207 D24217 .
  14. Chýlek P , Wong J . Effect of absorbing aerosols on global radiation budget . Geophys. Res. Lett . 1995 ; 22 : 929 931 .
  15. Coz E , Leck C . Morphology and state of mixture of atmospheric soot aggregates during the winter season over Southern Asia–a quantitative approach . Tellus . 2011 ; 63B : 107 116 .
  16. Cressman G. P . An operational objective analysis system . Mon. Wea. Rev . 1959 ; 87 : 367 374 .
  17. Farias T. L , Köylü Ü. Ö , Carvalho M. G . Range of validity of the Rayleigh-Debye-Gans theory for optics of fractal aggregates . Appl. Opt . 1996 ; 35 : 6560 6567 .
  18. Filippov A. V , Zurita M , Rosner D. E . Fractal-like aggregates: relation between morphology and physical properties . J. Colloid Interface Sci . 2000 ; 229 : 261 273 .
  19. Forrest S. R , Witten T. A. Jr . Long-range correlations in smoke-particle aggregates . J. Phys. A: Math. Gen . 1979 ; 12 : L109 L117 .
  20. Foster , P , Ramaswamy , V , Artaxo , P , Berntsen , T , Betts , R . and co-authors . 2007 . Changes in atmospheric constituents and in radiative forcing . In : Climate Change 2007: The Physical Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change . ( eds S. Solomon , D. Qin , M. Manning , Z. Chen , M. Marquis , and et al .). Cambridge University Press : CambridgeUnited Kingdom and New York, NY, USA , 129 234 .
  21. Gyawali M , Arnott W , Lewis K , Moosmüller H . In situ aerosol optics in Reno, NV, USA during and after the summer 2008 California wildfires and the influence of absorbing and non-absorbing organic coatings on spectral light absorption . J. Geophys. Res . 2009 ; 9 : 8007 8015 .
  22. Holben, B. N ., Tanré, D ., Smirnov, A ., Eck, T. F ., Slutsker, I . and co-authors . 2001 . An emerging ground-based aerosol climatology: aerosol optical depth from AERONET . 106 : 12067 12097 .
  23. IPCC . Climate change 2007 . In : The Physical Scientific Basis. Contribution of Working Group I to the Forth Assessment Report of the Intergovernmental Panel on Climate Change . Cambridge University Press : CambridgeUK and New York, NY .
  24. Jacobson M. Z . A physically-based treatment of elemental carbon optics: implications for global direct forcing of aerosols . Nature . 2000 ; 27 : 217 220 .
  25. Jacobson M. Z . Strong radiative heating due to the mixing state of black carbon in atmospheric aerosols . Environ. Sci. Technol . 2001 ; 409 : 695 697 .
  26. Katrinak K. A , Rez P , Perkes P. R , Buseck P. R . Fractal geometry of carbonaceous aggregates from an urban aerosol . J. Geophys. Res . 1993 ; 27 : 539 547 .
  27. Kim D , Wang C , Ekman A. M. L , Barth M. C , Rasch P. J . Distribution and direct radiative forcing of carbonaceous and sulfate aerosols in an interactive size-resolving aerosol-climate model . J. Geophys. Res . 2008 ; 113 : D16309 D16336 .
  28. Kirchstetter T. W , Novakov T , Hobbs P. V . Evidence that the spectral dependence of light absorption by aerosols is affected by organic carbon . J. Heat Transfer . 2004 ; 109 : D21208 D21212 .
  29. Köylü Ü. Ö , Faeth G. M . Optical properties of overfire soot in buoyant turbulent diffusion flames at long residence times . J. Quant. Spectrosc. Radiat. Transfer . 1994 ; 116 : 152 159 .
  30. Li H , Liu C , Bi L , Yang P , Kattawar G. W . Numerical accuracy of “equivalent” spherical approximations for computing ensemble-averaged scattering properties of fractal soot aggregates . J. Geophys. Res . 2010 ; 111 : 2127 2132 .
  31. Liu L , Mishchenko M. I . Effects of aggregation on scattering and radiative properties of soot aerosols . J. Quant. Spectrosc. Radiat. Transfer . 2005 ; 110 : 1 10 .
  32. Liu L , Mishchenko M. I . Scattering and radiative properties of complex soot and soot-containing aggregate particles . J. Quant. Spectrosc. Radiat. Transfer . 2007 ; 106 : 262 273 .
  33. Liu L , Mishchenko M. I , Arnott W. P . A study of radiative properties of fractal soot aggregates using the superposition T-matrix method . J. Heat Transfer . 2008 ; 109 : 2656 2663 .
  34. Liu F , Smallwood G. J . Radiative properties of numerically generated fractal soot aggregates: the importance of configuration averaging . Proc. Natl. Acad. Sci. USA . 2010 ; 132 : 1 6 .
  35. Moffet R. C , Prather K. A . In-situ measurements of the mixing state and optical properties of soot with implications for radiative forcing estimates . J. Quant. Spectrosc. Radiat. Transfer . 2009 ; 106 : 11872 11877 .
  36. Moosmüller H , Chakrabarty R. K , Arnott W. P . Aerosol light absorption and its measurement: a review . J. Geophys. Res . 2009 ; 110 : 844 878 .
  37. Myhre G , Hoyle C. R , Berglen T. F , Johnson B. T , Haywood J. M . Modeling of the solar radiative impact of biomass burning aerosols during the Dust and Biomass-burning Experiment (DABEX) . Aerosol Sci. Technol . 2008 ; 113 : D00C16 D00C10 .
  38. Nyeki S , Colbeck I . Fractal dimension analysis of single, in-situ, restructured carbonaceous aggregates . Nature Geosci . 1995 ; 23 : 109 120 .
  39. Ramana , M. V , Ramanathan , V , Feng , Y , Yoon , S. C , Kim , S. W . and co-authors . 2010 . Warming influenced by the ratio of black carbon to sulphate and the black-carbon source . Nature Geosci . 3 : 542 545 .
  40. Ramanathan V , Carmichael G . Global and regional climate changes due to black carbon . J. Geophys. Res . 2008 ; 1 : 221 227 .
  41. Ramanathan , V , Crutzen , P. J , Lelieveld , J , Mitra , A. P , Althausen , D . and co-authors . 2001 . Indian Ocean Experiment: an integrated analysis of the climate forcing and effects of the great Indo-Asian haze . Proc. Natl. Acad. Sci. USA . 106 : 28371 28398 .
  42. Sato , M , Hansen , J , Koch , D , Lacis , A , Ruedy , R . and co-authors . 2003 . Global atmospheric black carbon inferred from AERONET . J. Geophys. Res . 100 : 6319 6324 .
  43. Schnaiter , M , Linke , C , Möhler , O , Naumann , K. H , Saathoff , H . and co-authors . 2005 . Absorption amplification of black carbon internally mixed with secondary organic aerosol . 110 : D19204 D19211 .
  44. Seinfeld J. H , Pandis S. N . Atmospheric Chemistry and Physics: From Air Pollution to Climate Change . John Wiley & Sons, NY . 1998
  45. Sorensen C. M . Light scattering by fractal aggregates: a review . J. Colloid Interface Sci . 2001 ; 35 : 648 687 .
  46. Sorensen C. M , Roberts G. C . The prefactor of fractal aggregates . Atmos. Chem. Phys . 1997 ; 186 : 447 452 .
  47. Textor , C , Schulz , M , Guibert , S , Kinne , S , Balkanski , Y . and co-authors . 2006 . Analysis and quantification of the diversities of aerosol life cycles within AeroCom . Aerosol Sci. Technol . 6 : 1777 1813 .
  48. Tumolva , L , Park , J. Y , Kim , J. S , Miller , A. L , Chow , J. C . and co-authors . 2010 . Morphological and elemental classification of freshly emitted soot particles and atmospheric ultrafine particles using the TEM/EDS . Part. Part. Syst. Charact . 44 : 202 215 .
  49. Van-Hulle P , Weill M. E , Talbaut M , Coppalle A . Comparison of numerical studies characterizing optical properties of soot aggregates for improved EXSCA measurements . Appl. Opt . 2002 ; 19 : 47 57 .
  50. Xu Y. L . Electromagnetic scattering by an aggregate of spheres . J. Comput. Phys . 1995 ; 34 : 4573 4588 .
  51. Xu Y. L . Calculation of the addition coefficients in electromagnetic multisphere-scattering theory . Appl. Opt . 1996 ; 127 : 285 298 .
  52. Xu Y. L . Electromagnetic scattering by an aggregate of spheres: far field . J. Quant. Spectrosc. Radiat. Transfer . 1997 ; 36 : 9496 9508 .
  53. Xu Y. L , Gustafson B. Å. S . A generalized multiparticle Mie-solution: further experimental verification . Phys. Chem. Chem. Phys . 2001 ; 70 : 395 419 .
  54. Xue H , Khalizov A. F , Wang L , Zheng J , Zhang R . Effects of dicarboxylic acid coating on the optical properties of soot . 2009 ; 11 : 7869 7875 .
Language: English
Page range: 10925 - 10925
Submitted on: Jun 10, 2011
Published on: Jan 1, 2012
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2012 Chul E. Chung, Kyunghwa Lee, Detlef Müller, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.