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Articles

Characteristic time for the scavenging of fine particles due to coagulation with coarse particles

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References

  • Binkowski, F. S., and S. J. Roselle. 2003. Models-3 community multiscale air quality (CMAQ) model aerosol component: 1. model description. Journal of Geophysical Research 108 (D6):4183. doi: 10.1029/2001JD001409.
  • Chun, Y., J. Kim, J. C. Choi, K. O. Boo, S. N. Oh, and M. Lee. 2001. Characteristic number size distribution of aerosol during Asian Dust Period in Korea. Atmospheric Environment 35 (15):2715–21. doi: 10.1016/S1352-2310(00)00404-0.
  • Chun, Y., J. Kim, J. C. Choi, and D. S. Shin. 1999. The characteristics of the aerosol number concentration observed in Seoul and Anmyondo during an yellow sand phenomenon. Journal of Korean Society for Atmospheric Environment 15:575–86.
  • Friedlander, S. K., W. Koch, and H. H. Main. 1991. Scavenging of a coagulating fine aerosol by a coarse particle mode. Journal of Aerosol Science 22 (1):1–8. doi: 10.1016/0021-8502(91)90088-Y.
  • Fuchs, N. A. 1964. The mechanics of aerosols. New York, NY: Pergamon.
  • Hinds, W. C. 1999. Aerosol technology: Properties, behavior, and measurement of airborne particles. 2nd ed. New York, NY: John Wiley & Sons.
  • Jeong, J. I., and M. Choi. 2004. A bimodal moment model for the simulation of particle growth. Journal of Aerosol Science 35 (9):1071–90. doi: 10.1016/j.jaerosci.2004.04.005.
  • Jung, C. H., Y. P. Kim, and K. W. Lee. 2002. Simulation of the influence of coarse mode particles on the properties of fine mode particles. Journal of Aerosol Science 33 (8):1201–16. doi: 10.1016/S0021-8502(02)00066-6.
  • Kwon, M., K. Choi, S. Seo, J. Ryu, S. Won, J. Lim, J. Ku, S. Jang, and J. Han. 2010. A study on management of major indoor air pollutants by house type in Korea (II): Indoor air pollutants and health effects in residential detached and multiplex/terraced house. Seoul, Korea: Korea National Institute of Environmental Research.
  • Kwon, M. H., S. K. Jang, J. M. Ryu, S. Y. Seo, S. R. Won, S. J. Jung, and J. H. Lim. 2009. A study on management of major indoor air pollutants by house type in Korea (I): Indoor air pollution and health effects in residential apartment. Seoul, Korea: Korea National Institute of Environmental Research.
  • Lee, K. W. 1983. Change of particle size distribution during Brownian coagulation. Journal of Colloid and Interface Science 92 (2):315–25. doi: 10.1016/0021-9797(83)90153-4.
  • Lee, K. W., Y. J. Lee, and D. S. Han. 1997. The log-normal size distribution theory for Brownian coagulation in the low Knudsen number regime. Journal of Colloid and Interface Science 188 (2):486–92. doi: 10.1006/jcis.1997.4773.
  • Lee, S. R., and C. Y. Wu. 2005. Size distribution evolution of fine aerosols due to intercoagulation with coarse aerosols. Aerosol Science and Technology 39 (4):358–70. doi: 10.1080/027868290931753.
  • Manktelow, P. T., K. S. Carslaw, G. W. Mann, and D. V. Spracklen. 2010. The impact of dust on sulfate aerosol, CN and CCN during an east Asian dust storm. Atmospheric Chemistry and Physics 10 (2):365–82. doi: 10.5194/acp-10-365-2010.
  • Papastefanou, C. 2006. Residence time of tropospheric aerosols in association with radioactive nuclides. Applied Radiation and Isotopes 64 (1):93–100. doi: 10.1016/j.apradiso.2005.07.00.
  • Pratsinis, S. E. 1988. Simultaneous nucleation, condensation, and coagulation in aerosol reactors. Journal of Colloid and Interface Science 124 (2):416–27. doi: 10.1016/0021-9797(88)90180-4.
  • Ramnarine, E., J. K. Kodros, A. L. Hodshire, C. R. Lonsdale, M. J. Alvarado, and J. R. Pierce. 2019. Effects of near-source coagulation of biomass burning aerosols on global predictions of aerosol size distributions and implications for aerosol radiative effects. Atmospheric Chemistry and Physics 19 (9):6561–77. doi: 10.5194/acp-19-6561-2019.
  • Seinfeld, J. H., and S. N. Pandis. 2012. Atmospheric chemistry and physics: From air pollution to climate change. 2nd ed. Hoboken, NJ: John Wiley & Sons.
  • Shao, Y., and C. H. Dong. 2006. A review on east Asian dust storm climate, modelling and monitoring. Global and Planetary Change 52 (1–4):1–22. doi: 10.1016/j.gloplacha.2006.02.011.
  • Song, P., J. Fei, C. Li, and X. Huang. 2019. Simulation of an Asian dust storm event in May 2017. Atmosphere 10 (3):135. doi: 10.3390/atmos10030135.
  • Song, S., J. E. Kim, E. Lim, J. W. Cha, and J. Kim. 2015. Physical, chemical and optical properties of an Asian dust and haze episodes observed at Seoul in 2010 (in Korean). Journal of Korean Society for Atmospheric Environment 31 (2):131–42. doi: 10.5572/KOSAE.2015.31.2.131.
  • Tsai, I. C., J. P. Chen, Y. C. Lin, C. C. K. Chou, and W. N. Chen. 2015. Numerical investigation of the coagulation mixing between dust and hygroscopic aerosol particles and its impacts. Journal of Geophysical Research: Atmospheres 120 (9):4213–33. doi: 10.1002/2014JD022899.
  • Uematsu, M., R. A. Duce, J. M. Prospero, L. Chen, J. T. Merrill, and R. L. McDonald. 1983. Transport of mineral aerosol from Asia over the North Pacific Ocean. Journal of Geophysical Research: Oceans 88 (C9):5343–52. doi: 10.1029/JC088iC09p05343.
  • Wexler, A. S., F. W. Lurmann, and J. H. Seinfeld. 1994. Modelling urban and regional aerosols—I. model development. Atmospheric Environment 28 (3):531–46. doi: 10.1016/1352-2310(94)90129-5.
  • Whitby, E. R., and P. H. McMurry. 1997. Modal aerosol dynamics modeling. Aerosol Science and Technology 27 (6):673–88. doi: 10.1080/02786829708965504.
  • Whitby, E. R., P. H., McMurry, U. Shankar, and F. S. Binkowski. 1991. Modal aerosol dynamics modeling. Research Triangle Park, NC: Computer Sciences Corp.

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