Articles | Volume 14, issue 15
https://doi.org/10.5194/acp-14-7847-2014
https://doi.org/10.5194/acp-14-7847-2014
Research article
 | 
07 Aug 2014
Research article |  | 07 Aug 2014

Observed characteristics of dust storm events over the western United States using meteorological, satellite, and air quality measurements

H. Lei and J. X. L. Wang

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Revised manuscript not accepted
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Cited articles

Baddock, M. C., Bullard, J. E., and Bryant, R. G.: Dust source identi?cation using MODIS: a comparison of techniques applied to the Lake Eyre Basin, Australia, Remote Sens. Environ., 113, 1511–1528, 2009.
Bell, M. L., Dominici, F., Ebisu, K., Zeger, S. L., and Samet, J. M.: Spatial and temporal variation in PM2.5 chemical composition in the United States for health effects studies, Environ. Health Persp., 115, 989–995, 2007.
Brazel, A. J. and Nickling, W. G.: The relationship of weather types to dust storm generation in Arizona (1965–1980), J. Climatol., 6, 255–275., 1986.
Chin, M., Diehl, T., Dubovik, O., Eck, T. F., Holben, B. N., Sinyuk, A., and Streets, D. G.: Light absorption by pollution, dust, and biomass burning aerosols: a global model study and evaluation with AERONET measurements, Ann. Geophys., 27, 3439–3464, https://doi.org/10.5194/angeo-27-3439-2009, 2009.
Ginoux, P., Prospero, J. M., Gill, T. E., Hsu, N. C., and Zhao, M.: Global-scale attribution of anthropogenic and natural dust sources and their emission rates based on MODIS deep blue aerosol products, Rev. Geophys., 50, RG3005, https://doi.org/10.1029/2012RG000388, 2012.
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