725
Views
2
CrossRef citations to date
0
Altmetric
Research Article

Current situation of atmospheric nanoparticles in Fukue Island, Japan

, , , , , , & show all
Pages 1-12 | Received 15 Sep 2017, Accepted 27 Jun 2018, Published online: 25 Oct 2018

References

  • Backman, J., Rizzo, L. V., Hakala, J., Nieminen, T., Manninen, H. E. and co-authors. 2012. On the diurnal cycle of urban aerosols, black carbon and the occurrence of new particle formation events in springtime Sao Paulo, Brazil. Atmos. Chem. Phys. 12, 11733–11751.
  • Baltensperger, U., Kalberer, M., Dommen, J., Paulsen, D., Alfarra, M. R. and co-authors. 2005. Secondary organic aerosols from anthropogenic and biogenic precursors. Faraday Discuss. 130, 265–278.
  • Chandra, I., Kim, S., Seto, T., Otani, Y., Takami, A. and co-authors. 2016. New particle formation under the influence of the long-range transport of air pollutants in East Asia. Atmos. Environ. 141, 30–40.
  • Cheung, H. C., Morawska, L. and Ristovski, Z. D. 2011. Observation of new particle formation in subtropical urban environment. Atmos. Chem. Phys. 11, 3823–3833.
  • Cusack, M., Alastuey, A. and Querol, X. 2013. Case studies of new particle formation and evaporation processes in the western Mediterranean regional background. Atmos. Environ. 81, 651–659.
  • Dal Maso, M., Kulmala, M., Riipinen, I., Wagner, R., Hussein, T. and co-authors. 2005. Formation and growth of fresh atmospheric aerosol: eight years of aerosol size distribution data from SMEAR II, Hyytiala, Finland. Boreal Environ. Res. 10, 323–336.
  • Emanuelsson, E. U., Hallquist, M., Kristensen, K., Glasius, M., Bohn, B. and co-authors. 2013. Formation of anthropogenic secondary organic aerosol (SOA) and its influence on biogenic SOA properties. Atmos. Chem. Phys. 13, 2837–2855.
  • Heintzenberg, J., Wehner, B. and Birmili, W. 2007. How to find bananas in the atmospheric aerosol’s: new approach for analyzing atmospheric nucleation and growth events. Tellus 59, 273–282.
  • Hua, S., Tian, H., Wang, K., Zhu, C., Gao, J., and co-authors. 2016. Atmospheric emission inventory of hazardous air pollutants from China's cement plants: Temporal trends, spatial variation characteristics and scenario projections. Atmos. Environ. 128, 1–9.
  • Jin, Y., Andersson, H. and Zhang, S. 2016. Air pollution control policies in China: a retrospective and prospects. Int. J. Environ. Res. Public Health 13, 1219.
  • Kim, Y., Kim, S.-W., Yoon, S.-C., Park, J.-S., Lim, J.-H., and co-authors. 2016. Characteristics of formation and growth of atmospheric nanoparticles observed at four regional background sites in Korea. Atmos. Res. 168, 80–91.
  • Kim, Y., Yoon, S.-C., Kim, S.-W., Kim, K.-Y., Lim, H.-C., and co-authors. 2013. Observation of new particle formation and growth events in Asian continental outflow. Atmos. Environ. 64, 160–168.
  • Kulmala, M., Kontkanen, J., Junninen, H., Lehtipalo, K., Manninen, H. E. and co-authors. 2013. Direct observations of atmospheric aerosol nucleation. Science 339, 943–946.
  • Kurokawa, J., Ohara, T., Morikawa, T., Hanayama, S., Janssens-Maenhout, G. and co-authors. 2013. Emissions of air pollutants and greenhouse gases over Asian regions during 2000–2008: regional Emission inventory in ASia (REAS) version 2. Atmos. Chem. Phys. 13, 11019–11058.
  • Lang, J., Zhang, Y., Zhou, Y., Cheng, S., Chen, D. and co-authors. 2017. Trends of PM2.5 and chemical composition in Beijing, 2000–2015. Aerosol Air Qual. Res. 17, 412–425.
  • Li, J., Li, Y., Bo, Y. and Xie, S. 2016. High-resolution historical emission inventories of crop residue burning in fields in China for the period 1990-2013. Atmos. Environ. 138, 152–161.
  • Li, T.-C., Yuan, C.-S., Huang, H.-C., Lee, C.-L., Wu, S.-P. and co-authors. 2016. Inter-comparison of seasonal variation, chemical characteristics, and source identification of atmospheric fine particles on both sides of the Taiwan Strait. Sci. Rep. 6, 22956.
  • Martinsson, J., Monteil, G., Sporre, M. K., Kaldal Hansen, A. M., Kristensson, A. and co-authors. 2017. Exploring sources of biogenic secondary organic aerosol compounds using chemical analysis and the FLEXPART model. Atmos. Chem. Phys. 17, 11025–11040.
  • Modini, R. L., Ristovski, Z. D., Johnson, G. R., He, C., Surawski, N. and co-authors. 2009. New particle formation and growth at a remote, sub-tropical coastal location. Atmos. Chem. Phys. 9, 7607–7621.
  • Peng, Y., Cui, J., Cao, Y., Du, Y., Chan, A. and co-authors. 2016. Impact of manufacturing transfer on SO2 emissions in Jiangsu Province, China. Atmosphere 7, 69.
  • Qiu, X., Duan, L., Chai, F., Wang, S., Yu, Q. and co-authors. 2016. Deriving high-resolution emission inventory of open biomass burning in China based on satellite observations. Environ. Sci. Technol. 50, 11779–11786.
  • Salma, I., Nemeth, Z., Weidinger, T., Kovacs, B. and Kristof, G. 2016. Measurement, growth types and shrinkage of newly formed aerosol particles at an urban research platform. Atmos. Chem. Phys. 16, 7837–7851.
  • Seto, T., Kim, S., Otani, Y., Takami, A., Kaneyasu, N. and co-authors. 2013. New particle formation and growth associated with East-Asian long-range transportation observed at Fukue Island, Japan in March 2012. Atmos. Environ. 74, 29–36.
  • Song, C., Wu, L., Xie, Y., He, J., Chen, X. and co-authors. 2017. Air pollution in China: status and spatiotemporal variations. Environ. Pollut. 227, 334–347.
  • Skrabalova, L., Zikova, N. and Zdimal, V. 2015. Shrinkage of newly formed particles in an urban environment. Aerosol Air Qual. Res. 15, 1313–1324.
  • Takami, A., Miyoshi, T., Shimono, A. and Hatakeyama, S. 2005. Chemical composition of fine aerosol measured by AMS at Fukue Island, Japan during APEX period. Atmos. Environ. 39, 4913–4924.
  • Wang, K., Tian, H., Hua, S., Zhu, C., Gao, J. and co-authors. 2016. A comprehensive emission inventory of multiple air pollutants from iron and steel industry in China: temporal trends and spatial variation characteristics. Sci. Total Environ. 559, 7–14.
  • Wakamatsu, S., Morikawa, T. and Ito, A. 2013. Air pollution trends in Japan between 1970 and 2012 and impact of urban air pollution countermeasures. Asian J. Atmos. Environ. 7, 177–190.
  • Wu, Y., Gu, B., Erisman, J. W., Reis, S., Fang, Y. and co-authors. 2016. PM2.5 pollution is substantially affected by ammonia emissions in China. Environ. Pollut. 218, 86–94.
  • Xia, Y., Zhao, Y. and Nielsen, C. P. 2016. Benefits of China's efforts in gaseous pollutant control indicated by the bottom-up emissions and satellite observations 2000-2014. Atmos. Environ. 136, 43–53.
  • Xiong, T., Jiang, W. and Gao, W. 2016. Current status and prediction of major atmospheric emissions from coal-fired power plants in Shandong Province, China. Atmos. Environ. 124, 46–52.
  • Xue, Y., Tian, H., Yan, J., Zhou, Z., Wang, J. and co-authors. 2016a. Temporal trends and spatial variation characteristics of primary air pollutants emissions from coal-fired industrial boilers in Beijing, China. Environ. Pollut. 213, 717–726.
  • Xue, Y., Zhou, Z., Nie, T., Wang, K., Nie, L. and co-authors. 2016b. Trends of multiple air pollutants emissions from residential coal combustion in Beijing and its implication on improving air quality for control measures. Atmos. Environ. 142, 303–312.
  • Yao, X., Choi, M. Y., Lau, N. T., Lau, A. P. S., Chan, C. K. and co-authors. 2010. Growth and shrinkage of new particles in the atmosphere in Hong Kong. Aerosol Sci. Technol. 44, 639–650.
  • Young, L.-H., Lee, S.-H., Kanawade, V. P., Hsiao, T.-C., Lee, Y. L. and co-authors. 2013. New particle growth and shrinkage observed in subtropical environments. Atmos. Chem. Phys. 13, 547–564.
  • Zheng, J., Jiang, P., Qiao, W., Zhu, Y. and Kennedy, E. 2016. Analysis of air pollution reduction and climate change mitigation in the industry sector of Yangtze River Delta in China. J. Clean. Prod. 114, 314–322.
  • Zhu, J. and Chertow, M. R. 2016. Greening industrial production through waste recovery: “Comprehensive utilization of resources” in China. Environ. Sci. Technol. 50, 2175–2182.