Skip to main content
Have a personal or library account? Click to login
Modelling of long-range transport of Southeast Asia biomass-burning aerosols to Taiwan and their radiative forcings over East Asia Cover

Modelling of long-range transport of Southeast Asia biomass-burning aerosols to Taiwan and their radiative forcings over East Asia

Open Access
|Jan 2014

References

  1. Ackermann I. J. , Hass H. , Memmesheimer M. , Ebel A. , Binkowski F. S. , co-authors . Modal aerosol dynamics model for Europe: development and first applications . Atmos. Environ . 1998 ; 32 : 2981 2999 .
  2. Andreae M. O. , Browell E. V. , Garstang M. , Gregory G. L. , Harriss R. C. , co-authors . Biomass-burning emissions and associated haze layers over Amazonia . J. Geophys. Res. Atmos . 1988 ; 93 : 1509 1527 .
  3. Barnard J. C. , Fast J. , Paredes-Miranda D. G. , Arnott W. P. , Laskin A . Technical note: evaluation of the WRF-Chem “Aerosol Chemical to Aerosol Optical Properties” module using data from the MILAGRO campaign . Atmos. Chem. Phys . 2010 ; 10 : 7325 7340 .
  4. Boschetti L. , Roy D. P. , Justice C. O . Using NASA's world wind virtual globe for interactive internet visualization of the global MODIS burned area product . Int. J. Remote Sens . 2008 ; 29 : 3067 3072 .
  5. Chan C. Y. , Chan L. Y. , Harris J. M. , Oltmans S. J. , Blake D. R. , co-authors . Characteristics of biomass burning emission sources, transport, and chemical speciation in enhanced springtime tropospheric ozone profile over Hong Kong . J. Geophys. Res. Atmos . 2003 ; 108 : 4015 .
  6. Cheng M. T. , Horng C. L. , Su Y. R. , Lin L. K. , Lin Y. C. , co-authors . Particulate matter characteristics during agricultural waste burning in Taichung City, Taiwan . J. Hazard. Mater . 2009 ; 165 : 187 192 .
  7. Christopher S. A. , Kliche D. V. , Chou J. , Welch R. M . First estimates of the radiative forcing of aerosols generated from biomass burning using satellite data . J. Geophys. Res. Atmos . 1996 ; 101 : 21265 21273 .
  8. Chu D. A. , Kaufman Y. J. , Ichoku C. , Remer L. A. , Tanre D. , co-authors . Validation of MODIS aerosol optical depth retrieval over land . Geophys. Res. Lett . 2002 ; 29
  9. Chung C.E. , Ramanathan V. , Decremer D . Observationally constrained estimates of carbonaceous aerosol radiative forcing . Proc. Natl. Acad. Sci. U S A . 2012 ; 109 : 11624 11629 .
  10. Crutzen P. J. , Andreae M. O . Biomass burning in the Tropics – impact on atmospheric chemistry and biogeochemical cycles . Science . 1990 ; 250 : 1669 1678 .
  11. Draxler R. R. , Hess G. D . An overview of the Hysplit-4 modelling system for trajectories, dispersion, deposition . Aust.Meteorol. Mag . 1998 ; 47 : 295 308 .
  12. Dubovik O. , Holben B. N. , Eck T. F. , Smirnov A. , Kaufman Y. J. , co-authors . Variability of absorption and optical properties of key aerosol types observed in worldwide locations . J. Atmos. Sci . 2002 ; 59 : 590 608 .
  13. Dubovik O. , Smirnov A. , Holben B. N. , King M. D. , Kaufman Y. J. , co-authors . Accuracy assessments of aerosol optical properties retrieved from AERONET sun and sky-radiance measurements . J. Geophys. Res . 2000 ; 105 : 9791 9806 .
  14. Dwyer E. , Gregoire J. M. , Malingreau J. P . A global analysis of vegetation fires using satellite images: spatial and temporal dynamics . Ambio . 1998 ; 27 : 175 181 .
  15. Fast J. D. , Gustafson W. I. Jr. , Easter R. C. , Zaveri R. A. , Barnard J. C. , co-authors . Evolution of ozone, particulates, and aerosol direct forcing in an urban area using a new fully-coupled meteorology, chemistry, and aerosol model . J. Geophys. Res . 2006 ; 111 D21305 .
  16. Fiebig M. , Petzold A. , Wandinger U. , Wendisch M. , Kiemle C. , co-authors . Optical closure for an aerosol column: method, accuracy, and inferable properties applied to a biomass-burning aerosol and its radiative forcing . J. Geophys. Res . 2002 ; 107 ( D21 ): 8130 .
  17. Fu J. S. , Hsu N. C. , Gao Y. , Huang K. , Li C. , co-authors . Evaluating the influences of biomass burning during 2006 BASE-ASIA: a regional chemical transport modelling . Atmos. Chem. Phys . 2012 ; 12 : 3837 3855 .
  18. Giglio L. , Csiszar I. , Justice C. O . Global distribution and seasonality of active fires as observed with the Terra and Aqua Moderate Resolution Imaging Spectroradiometer (MODIS) sensors . J. Geophys. Res-Biogeo . 2006a ; 111 G02016 .
  19. Giglio L. , van der Werf G. R. , Randerson J. T. , Collatz G. J. , Kasibhatla P . Global estimation of burned area using MODIS active fire observations . Atmos. Chem. Phys . 2006b ; 6 : 957 974 .
  20. Grell G. , Freitas S. R. , Stuefer M. , Fast J . Inclusion of biomass burning in WRF-Chem: impact of wildfires on weather forecasts . Atmos. Chem. Phys . 2011 ; 11 : 5289 5303 .
  21. Grell G. A. , Peckham S. E. , Schmitz R. , McKeen S. A. , Frost G. , co-authors . Fully coupled “online” chemistry within the WRF model . Atmos. Environ . 2005 ; 39 : 6957 6975 .
  22. Holben B. N. , Eck T. F. , Slutsker I. , Tanré D. , Buis J. P. , co-authors . AERONET – a federated instrument network and data archive for aerosol characterization . Rem. Sens. Environ . 1998 ; 66 : 1 16 .
  23. Holben B. N. , Tanré D , Smirnov A. , Eck T. F. , Slutsker I. , co-authors . An emerging ground-based aerosol climatology: aerosol optical depth from AERONET . J. Geophys. Res . 2001 ; 106 ( D11 ): 12067 12097 .
  24. Ichoku C. , Kaufman Y. J. , Giglio L. , Li Z. , Fraser R. H. , co-authors . Comparative analysis of daytime fire detection algorithms using AVHRR data for the 1995 fire season in Canada: perspective for MODIS . Int. J. Remote Sens . 2003 ; 24 : 1669 1690 .
  25. IPCC, 2007 . Climate change 2007: Impacts, adaptation and vulnerability. Rep., Contribution of Working Group II to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change . Cambridge, UK : Cambridge University Press .
  26. Jaffe D. , Bertschi I. , Jaegle L. , Novelli P. , Reid J. S. , co-authors . Long-range transport of Siberian biomass burning emissions and impact on surface ozone in western North America . Geophys. Res. Lett . 2004 ; 31 L16106 .
  27. Jacobson M . Global direct radiative forcing due to multicomponent anthropogenic and natural aerosols . J. Geophys. Res . 2001 ; 106 : 1551 1568 .
  28. Kasischke E. S. , Hewson J. H. , Stocks B. , van der Werf G. , Randerson J . The use of ATSR active fire counts for estimating relative patterns of biomass burning – a study from the boreal forest region . Geophys. Res. Lett . 2003 ; 30 ( 18 ): 1969 .
  29. Lamarque J.-F. , Bond T.C. , Eyring V. , Granier C. , Heil A. , co-authors . Historical (1850–2000) gridded anthropogenic and biomass burning emissions of reactive gases and aerosols: methodology and application . Atmos. Chem. Phys . 2010 ; 10 : 7017 7039 .
  30. Levine J. S. , Cofer W. R. , Cahoon D. R. , Winstead E. L . Biomass burning: a driver for global change . Environ. Sci. Tech . 1995 ; 29 ( 3 ): 120A 125 .
  31. Li T. C. , Wu C. Y. , Chen W. H. , Yuan C. S. , Wu S. P. , co-authors . Diurnal variation and chemical characteristics of atmospheric aerosol particles and their source fingerprints at Xiamen Bay . Aerosol. Air Qual. Res . 2013 ; 13 : 596 607 .
  32. Lin C. Y. , Chang C. C. , Chan C. Y. , Kuo C. H. , Chen W. C. , co-authors . Characteristics of springtime profiles and sources of ozone in the low troposphere over northern Taiwan . Atmos. Environ . 2010 ; 44 : 182 193 .
  33. Lin C. Y. , Hsu H. M. , Lee Y. H. , Kuo C. H. , Sheng Y. F. , co-authors . A new transport mechanism of biomass burning from Indochina as identified by modeling studies . Atmos. Chem. Phys . 2009 ; 9 : 7901 7911 .
  34. Lin N. H. , Tasy S.C. , Reid J.S. , Yen M.C. , Sheu G. R. , co-authors . An overview of regional experiments on biomass burning aerosols and related pollutants in Southeast Asia: from BASE-ASIA and Dongsha Experiment to 7-SEAS . Atmos. Environ . 2013 ; 78 : 1 19 .
  35. Liousse C. , Penner J. E. , Chuang C. , Walton J. J. , Eddleman H. , co-authors . A global three-dimensional model study of carbonaceous aerosols . J. Geophys. Res . 1996 ; 101 ( D14 ): 19411 19432 .
  36. Liu H. Y. , Chang W. L. , Oltmans S. J. , Chan L. Y. , Harris J. M . On springtime high ozone events in the lower troposphere from Southeast Asian biomass burning . Atmos. Environ . 1999 ; 33 : 2403 2410 .
  37. Martonchik J. V. , Diner D. J. , Kahn R. , Gaitley B. , Holben B. N . Comparison of MISR and AERONET aerosol optical depths over desert sites . Geophys. Res. Lett . 2004 ; 31 L16102 .
  38. Morrison H. , Curry J. A. , Khvorostyanov V. I . A new double-moment microphysics parameterization for application in cloud and climate model. Part I: description . J. Atmos. Sci . 2005 ; 62 : 1665 1676 .
  39. Myhre G. , Berntsen T. K. , Haywood J. M. , Sundet J. K. , Holben B. N. , co-authors . Modeling the solar radiative impact of aerosols from biomass burning during the Southern African Regional Science Initiative (SAFARI-2000) experiment . J. Geophys. Res . 2003 ; 108 ( D13 ): 8501 .
  40. Oanh N. T. K. , Ly B. T. , Tipayarom D. , Manandhar B. R. , Prapat P. , co-authors . Characterization of particulate matter emission from open burning of rice straw . Atmos. Environ . 2011 ; 45 : 493 502 .
  41. Ramanathan V. , Carmichael G . Global and regional climate changes due to black carbon . Nat. Geosci . 2008 ; 1 : 221 227 .
  42. Ramanathan V. , Crutzen P. J . New directions: atmospheric brown “Clouds.” . Atmos. Environ . 2003 ; 37 : 4033 4035 .
  43. Ramanathan V. , Crutzen P. J. , Kiehl J. T. , Rosenfeld D . Atmosphere – aerosols, climate, and the hydrological cycle . Science . 2001 ; 294 : 2119 2124 .
  44. Ramanathan V. , Ramana M. V. , Roberts G. , Kim D. , Corrigan C. , co-authors . Warming trends in Asia amplified by brown cloud solar absorption . Nature . 2007 ; 448 : 575 U575 .
  45. Reid J. S. , Hyer E. J. , Johnson R. S. , Holben B. N. , Yokelson R. J. , co-authors . Observing and understanding the Southeast Asian aerosol system by remote sensing: an initial review and analysis for the Seven Southeast Asian Studies (7SEAS) program . Atmos. Res . 2013 ; 122 : 403 468 .
  46. Remer L. A. , Kaufman Y. J. , Tanré D. , Mattoo S. , Chu D. A. , co-authors . The MODIS aerosol algorithm, products, and validation . J. Atmos. Sci . 2005 ; 62 ( 4 ): 947 973 .
  47. Ryu S. Y. , Kwon B. G. , Kim Y. J. , Kim H. H. , Chun K. J . Characteristics of biomass burning aerosol and its impact on regional air quality in the summer of 2003 at Gwangju, Korea . Atmos. Res . 2007 ; 84 : 362 373 .
  48. Schell B. , Ackermann I. J. , Hass H. , Binkowski F. S. , Ebel A . Modeling the formation of secondary organic aerosol within a comprehensive air quality model system . J. Geophys. Res. Atmos . 2001 ; 106 : 275 28 . 293 .
  49. Skamarock W. C. , Klemp J. B. , Dudhia J. , Barker D. M. , Duda M. G. , co-authors . 2008 . A Description of the Advanced Research WRF Version 3. NCAR Tech. Note, NCAR/TN-475+STR, 8 pp. Natl. Cent. Atmos. Res. Boulder, CO, USA .
  50. Stockwell W. R. , Middleton P. , Chang J. S. , Tang X. Y . The 2nd generation regional acid deposition model chemical mechanism for regional air-quality modeling . J. Geophys. Res. Atmos . 1990 ; 95 : 16343 16367 .
  51. U.S. National Emissions Inventory data and documentation, CHIEF website . Online at http://www.epa.gov/ttn/chief/net/2005inventory.html .
  52. Tian D. , Hu Y. T. , Wang Y. H. , Boylan J. W. , Zheng M. , co-authors . Assessment of biomass burning emissions and their impacts on urban and regional PM2.5: a Georgia case study . Environ. Sci. Technol . 2009 ; 43 : 299 305 .
  53. Tripathi S. N. , Dey S. , Chandel A. , Srivastava S. , Singh R. P. , co-authors . Comparison of MODIS and AERONET derived aerosol optical depth over the Ganga Basin, India . Ann. Geophys . 2005 ; 23 : 1093 1101 .
  54. van der Werf G. R. , Randerson J. T. , Giglio L. , Collatz G. J. , Kasibhatla P. S. , co-authors . Interannual variability in global biomass burning emissions from 1997 to 2004 . Atmos. Chem. Phys . 2006 ; 6 : 3423 3441 .
  55. Wang S. H. , Lin N. H. , Chou M. D. , Woo J. H . Estimate of radiative forcing of Asian biomass burning aerosols during the period of TRACE-P . J. Geophys. Res. Atmos . 2007 ; 112 D10222 .
  56. Wiedinmyer C. , Akagi S. K. , Yokelson R. J. , Emmons L. K. , Al-Saadi J. A. , co-authors . The Fire INventory from NCAR (FINN): a high resolution global model to estimate the emissions from open burning . Geosci. Model Dev . 2011 ; 4 : 625 641 .
  57. Yen M. C. , Peng C. M. , Chen T. C. , Chen C. S. , Lin N. H. , co-authors . Climate and weather characteristics in association with the active fires in northern Southeast Asia and spring air pollution in Taiwan during 2010 7-SEAS/Dongsha . Exp. Atmos. Environ . 2013 ; 78 : 35 50 .
  58. Zhang Q. , Streets D. G. , Carmichael G. R. , He K. B. , Huo H. , co-authors . Asian emissions in 2006 for the NASA INTEX-B mission . Atmos. Chem. Phys . 2009 ; 9 : 5131 5153 .
  59. Zhao C. , Leung L. R. , Easter R. , Hand J. , Avise J . Characterization of speciated aerosol direct radiative forcing over California . J. Geophys. Res-Atmos . 2013 ; 118 : 2372 2238 .
  60. Zhao C. , Liu X. , Leung L. R. , Johnson B. , McFarlane S. A. , co-authors . The spatial distribution of mineral dust and its shortwave radiative forcing over North Africa: Modeling sensitivities to dust emissions and aerosol size treatments . Atmos. Chem. Phys . 2010 ; 10 : 8821 8838 .
  61. Zhao C. , Liu X. , Leung L. R. , Hagos S . Radiative impact of mineral dust on monsoon precipitation variability over West Africa . Atmos. Chem. Phys . 2011 ; 11 : 1879 1893 .
Language: English
Page range: 23733 - 23733
Submitted on: Jan 2, 2014
Accepted on: Sep 11, 2014
Published on: Jan 1, 2014
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2014 Chuan-Yao Lin, Chun Zhao, Xiaohong Liu, Neng-Huei Lin, Wei-Nei Chen, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.