Ghude, S. D., Van der A, R. J., Beig, G., Fadnavis, S. (2009). Trends in NO2 over the major global hotspot.
https://aura.gsfc.nasa.gov/omi.htm.
Lamsal, L. N., Duncan, B. N., Yoshida, Y., Krotkov, N. A., Pickering, k. E., Streets, D. G., Lu, Z. (2015). US NO2 trends (2005-2013): EPA Air Quality System (AQS) data versus improved observations from the Ozone Monitoring Instrument (OMI). Atmospheric Environment, 110, 130-143.
Pagiatakis, S. D. (1999). Stochastic significance of peaks in the least- squares spectrum. Journal of Geodesy, 73(2), 67-78.
Samet JM and et al. The National Morbidity, Mortality and Air Pollution Study. Health Effects Institute.
Schneider, P., Lahoz, W. A., van der A, R (2015). Recent satellite-based trends of tropospheric nitrogen dioxide over large urban agglomerations worldwide. Atmospheric Chemistry and Physics, 15(3), 1205-1220.
Shepard, Ch.(2004). Sea surface temperature 1871-2099 in 14 cells around the United Kingdom. Marine Pollution Bulletin.
Van Der A, R. J., Peters, D. H. M. U., Eskes, H., Boersma, K. F., Van Roozendael, M., De Smedt, I., kelder, H. M (2006). Detection of the trend and seasonal variation in tropospheric NO2 over China. Journal of Geophysical Research: Atmospheres, 111(D12).
Vanicek, P. (1971). Further development and properties of the spectral analysis by leastsquares. Astrophysics and Space Science, 12(1), 10-33.
www.irimo.ir.
Zhang, R., Tie, X., and Bond, D. W. (2003). Impacts of anthropogenic and natural NOx sources over the U.S. on tropospheric chemistry, Proceedings of the National Academy of Sciences of the United States of America (PNAS), 100, 1505-1509.Pagiatakis, S. D. (1999). Stochastic significance of peaks in the least- squares spectrum. Journal of Geodesy, 73(2), 67-78.
Zhou, Y., Brunner, D., Hueglin, C., Henne, S. and Staehelin, J.(2012). Changes in OMI tropospheric NO2 columns over Europe from 2004 to 2009 and the influence of meteorological variability, Atmospheric Environment, 46, 482-495.