Articles | Volume 6, issue 2
https://doi.org/10.5194/amt-6-471-2013
https://doi.org/10.5194/amt-6-471-2013
Research article
 | 
26 Feb 2013
Research article |  | 26 Feb 2013

Aerosol optical depth (AOD) retrieval using simultaneous GOES-East and GOES-West reflected radiances over the western United States

H. Zhang, R. M. Hoff, S. Kondragunta, I. Laszlo, and A. Lyapustin

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Cited articles

Al-Saadi, J., Szykman, J., Pierce, R. B., Kittaka, C., Neil, D., Chu, D. A., Remer, L., Gumley, L., Prins, E., Weinstock, L., MacDonald, C., Wayland, R., Dimmick, F., and Fishman, J.: Improving National Air Quality Forecasts with Satellite Aerosol Observations, B. Am. Meteorol. Soc., 86, 1249–1261, https://doi.org/10.1175/BAMS-86-9-1249, 2005.
Anderson, T. L., Charlson, R. J., Winker, D. M., Ogren, J. A., and Holmen, K.: Mesoscale variations of tropospheric aerosols, J. Atmos. Sci., 60, 119–136, 2003.
ASPB and CIMSS Calibration Projects and Research: CIMSS GOES Activities, available at: http://cimss.ssec.wisc.edu/goes/calibration/, (last access: 1 December 2011), 2011.
Charlson, R. J., Schwartz, S. E., Hales, J. M., Cess, R. D., Coakley, J. A., Hansen, J. E., and Hoffman, D. J.: Climate forcing by anthropogenesis aerosols, Science, 255, 423–430, 1992.
Chow, J. C., Watson, J. G., Mauderly, J. L., Costa, D. L., Wyzga, R. E., Vedal, S., Hidy, G. M., Altshuler, S. L., Marrack, D., Heuss, J. M., Wolff, G. T., Pope III, C. A., and Dockery, D. W.: Health Effects of Fine Particulate Air Pollution: Lines that Connect, Critical Review disscussion, J. Air Waste Manage. As., 56, 1368–1380, 2006.
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