Articles | Volume 20, issue 14
https://doi.org/10.5194/acp-20-8351-2020
https://doi.org/10.5194/acp-20-8351-2020
Research article
 | 
17 Jul 2020
Research article |  | 17 Jul 2020

Global distribution and 14-year changes in erythemal irradiance, UV atmospheric transmission, and total column ozone for2005–2018 estimated from OMI and EPIC observations

Jay Herman, Alexander Cede, Liang Huang, Jerald Ziemke, Omar Torres, Nickolay Krotkov, Matthew Kowalewski, and Karin Blank

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Cited articles

Aapo, T., Lindfors. A., Määttä, A., Krotkov, N., Herman, J., Kaurola, J., Koskela, T., Lakkala, K., Fioletov, V., Bernhard, B., McKenzie, R., Kondo, Y., Michael O'Neill, M., Slaper, H., den Outer, P., Bais, A. F., and Tamminen, J.: Validation of daily erythemal doses from Ozone Monitoring Instrument with ground-based UV measurement data, J. Geophys. Res., 112, 1–15, https://doi.org/10.1029/2007JD008830, 2007. 
Abraham, A. G., Cox, C., and West, S.: The Differential Effect of Ultraviolet Light Exposure on Cataract Rate across Regions of the Lens, Invest. Ophth. Visual, 51, 3919–3923, https://doi.org/10.1167/iovs.09-4557, 2010. 
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Akima, H.: A new method of interpolation and smooth curve fitting based on local procedures, J. ACM, 17, 589–602, 1970. 
Ambach, W. and Blumthaler, M.: Biological effectiveness of solar UV radiation in humans, Experientia, 49, 747, https://doi.org/10.1007/BF01923543, 1993. 
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Short summary
The amount of erythemal irradiance reaching the Earth's surface has been calculated from ozone, aerosol, and reflectivity data obtained from OMI and DSCOVR/EPIC satellite instruments showing areas with high levels of solar UV radiation. Changes in erythemal irradiance, cloud transmission, aerosol transmission, and ozone absorption have been estimated for 14 years 2005–2018 in units of percent per year for 191 locations, mostly large cities, and from EPIC for the entire illuminated Earth.
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