1- ارجمند، راشکی، سرگزی؛ مریم، علیرضا، حسین. (1397). پایش زمانی و مکانی پدیده گرد و غبار با استفاده از داده های ماهوارهای در جنوب شرق ایران، با تأکید بر منطقه جازموریان. فصلنامه علمی- پژوهشی اطلاعات جغرافیایی « سپهر»، 27(106)، 153-168. doi: 10.22131/sepehr.2018.32339
2- جهانی چهره برق، آخوندزاده هنزائی؛ فاطمه، مهدی. (1396). تخمین ضخامت نوری هواویزها بر روی منطقهای از ایران با استفاده از تلفیق تصاویر سنجندههای MODIS سکوهای ماهوارهای TERRA و AQUA. فصلنامه علمی- پژوهشی اطلاعات جغرافیایی « سپهر»، 26(103)، 71-81. doi: 10.22131/sepehr.2017.28894
3- Achour, L., Bouharkat, M., Assas, O., & Behar, O. (2017). Hybrid model for estimating monthly global solar radiation for the Southern of Algeria:(Case study: Tamanrasset, Algeria). Energy, 135, 526-539.
4- Benhadji Serradj, D. E., Sebitosi, A. B., & Fadlallah, S. O. (2022). Design and performance analysis of a parabolic trough power plant under the climatological conditions of Tamanrasset, Algeria. International Journal of Environmental Science and Technology, 19(4), 3359-3376.
5- Bilal, M., Nichol, J. E., Bleiweiss, M. P., & Dubois, D. (2013). A Simplified high resolution MODIS Aerosol Retrieval Algorithm (SARA) for use over mixed surfaces. Remote sensing of environment, 136, 135-145.
6- Bouallala, M. H., Neffar, S., & Chenchouni, H. (2020). Vegetation traits are accurate indicators of how do plants beat the heat in drylands: Diversity and functional traits of vegetation associated with water towers in the Sahara Desert. Ecological Indicators, 114, 106364.
7- Chen, X., Ding, J., Wang, J., Ge, X., Raxidin, M., Liang, J., ... & Ding, Y. (2020). Retrieval of fine-resolution aerosol optical depth (AOD) in semiarid urban areas using Landsat data: A case study in Urumqi, NW China. Remote Sensing, 12(3), 467.
8- Chudnovsky, A. A. (2021). Monitoring Air Pollution in the Urban Environment by Remote Sensing. Urban Remote Sensing: Monitoring, Synthesis, and Modeling in the Urban Environment, 391-422.
9- Farahat, A., & Abuelgasim, A. (2022). Effect of cloud seeding on aerosol properties and particulate matter variability in the United Arab Emirates. International Journal of Environmental Science and Technology, 19(2), 951-968.
10- Fekih, A., Abdelouahab, M., & Marif, Y. (2022). Evaluation of wind resource and mapping during 2009–2018 based on ERA5 reanalysis data: a case study over Algeria. International Journal of Energy and Environmental Engineering, 1-20.
11- Hagolle, O., Huc, M., Villa Pascual, D., & Dedieu, G. (2015). A multi-temporal and multi-spectral method to estimate aerosol optical thickness over land, for the atmospheric correction of FormoSat-2, LandSat, VENµS and Sentinel-2 images. Remote Sensing, 7(3), 2668-2691.
12- Irons, J. R., Dwyer, J. L., & Barsi, J. A. (2012). The next Landsat satellite: The Landsat data continuity mission. Remote Sensing of Environment, 122, 11-21.
13- Jin, Y., Hao, Z., Chen, J., He, D., Tian, Q., Mao, Z., & Pan, D. (2021). Retrieval of Urban Aerosol Optical Depth from Landsat 8 OLI in Nanjing, China. Remote Sensing, 13(3), 415.
14- Kaufman, Y. J., & Remer, L. A. (1994). Detection of forests using mid-IR reflectance: an application for aerosol studies. IEEE transactions on geoscience and remote sensing, 32(3), 672-683.
15- Kaufman, Y. J., Tanré, D., Remer, L. A., Vermote, E. F., Chu, A., & Holben, B. N. (1997). Operational remote sensing of tropospheric aerosol over land from EOS moderate resolution imaging spectroradiometer. Journal of Geophysical Research: Atmospheres, 102(D14), 17051-17067.
16- Levy, R. C., Mattoo, S., Munchak, L. A., Remer, L. A., Sayer, A. M., Patadia, F., & Hsu, N. C. (2013). The Collection 6 MODIS aerosol products over land and ocean. Atmospheric Measurement Techniques, 6(11), 2989-3034.
17- Levy, R. C., Remer, L. A., & Dubovik, O. (2007). Global aerosol optical properties and application to Moderate Resolution Imaging Spectroradiometer aerosol retrieval over land. Journal of Geophysical Research: Atmospheres, 112(D13).
18- Lin, H., Li, S., Xing, J., He, T., Yang, J., & Wang, Q. (2021). High resolution aerosol optical depth retrieval over urban areas from Landsat-8 OLI images. Atmospheric Environment, 261, 118591.
19- Mostefaoui, M., Ziane, A., Bouraiou, A., & Khelifi, S. (2019). Effect of sand dust accumulation on photovoltaic performance in the Saharan environment: southern Algeria (Adrar). Environmental Science and Pollution Research, 26(1), 259-268.
20- Omari, K., Abuelgasim, A., & Alhebsi, K. (2019). Aerosol optical depth retrieval over the city of Abu Dhabi, United Arab Emirates (UAE) using Landsat-8 OLI images. Atmospheric Pollution Research, 10(4), 1075-1083.
21- Pahlevan, N., & Schott, J. R. (2013). Leveraging EO-1 to evaluate capability of new generation of Landsat sensors for coastal/inland water studies. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 6(2), 360-374.
22- Pope Iii, C. A., Burnett, R. T., Thun, M. J., Calle, E. E., Krewski, D., Ito, K., & Thurston, G. D. (2002). Lung cancer, cardiopulmonary mortality, and long-term exposure to fine particulate air pollution. Jama, 287(9), 1132-1141.
23- Riffler, M., Popp, C., Hauser, A., Fontana, F., & Wunderle, S. (2010). Validation of a modified AVHRR aerosol optical depth retrieval algorithm over Central Europe. Atmospheric Measurement Techniques, 3(5), 1255-1270.
24- Sayer, A. M., Smirnov, A., Hsu, N. C., Munchak, L. A., & Holben, B. N. (2012). Estimating marine aerosol particle volume and number from Maritime Aerosol Network data. Atmospheric Chemistry and Physics, 12(18), 8889-8909.
25- She, L., Zhang, H. K., Bu, Z., Shi, Y., Yang, L., & Zhao, J. (2022). A Deep-Neural-Network-Based Aerosol Optical Depth (AOD) Retrieval from Landsat-8 Top of Atmosphere Data. Remote Sensing, 14(6), 1411.
26- Sun, L., Wei, J., Bilal, M., Tian, X., Jia, C., Guo, Y., & Mi, X. (2016). Aerosol optical depth retrieval over bright areas using Landsat 8 OLI images. Remote Sensing, 8(1), 23.
27- Takilalte, A., Harrouni, S., & Mora, J. (2022). Forecasting global solar irradiance for various resolutions using time series models-case study: Algeria. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 44(1), 1-20.
28- Tang, Y., Deng, R., Li, J., Liang, Y., Xiong, L., Liu, Y., ... & Hua, Z. (2021). Estimation of Ultrahigh Resolution PM2. 5 Mass Concentrations Based on Mie Scattering Theory by Using Landsat8 OLI Images over Pearl River Delta. Remote Sensing, 13(13), 2463.
29- Tian, X., Liu, S., Sun, L., & Liu, Q. (2018). Retrieval of aerosol optical depth in the arid or semiarid region of northern Xinjiang, China. Remote Sensing, 10(2), 197.
30- Wei, J., & Sun, L. (2016). Comparison and evaluation of different MODIS aerosol optical depth products over the Beijing-Tianjin-Hebei region in China. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 10(3), 835-844.
31- Wei, J., Huang, B., Sun, L., Zhang, Z., Wang, L., & Bilal, M. (2017). A simple and universal aerosol retrieval algorithm for Landsat series images over complex surfaces. Journal of Geophysical Research: Atmospheres, 122(24), 13-338.
32- Wei, J., Sun, L., Peng, Y., Wang, L., Zhang, Z., Bilal, M., & Ma, Y. (2018). An improved high‐spatial‐resolution aerosol retrieval algorithm for MODIS images over land. Journal of Geophysical Research: Atmospheres, 123(21), 12-291.
33- Zhao, J., Kong, X., He, K., Xu, H., & Mu, J. (2020). Assessment of the radiation effect of aerosols on maize production in China. Science of The Total Environment, 720, 137567.