Abbasi, M.T., Alesheikh, A.A., Jafari, A., Lotfata, A., 2024. Spatial and Temporal patterns of urban air pollution in Tehran with a focus on PM2. 5 and associated pollutants. Scientific Reports 14(1), 25150.
Barrese, E., Valentini, M., Scarpelli, M., Samele, P., Malacaria, L., D’Amico, F., Lo Feudo, T., 2024. Assessment of formaldehyde’s impact on indoor environments and human health via the integration of satellite tropospheric total columns and outdoor ground sensors. Sustainability 16(22), 9669.
Bhat, T.A., Dolislager, F.G., Stewart, D.J., Manning, K.L., Noto, K.A., Galloway, L.D., Armstrong, A.Q., 2023. An Overview of the Risk Assessment Information System.
Chan, K.L., Wiegner, M., van Geffen, J., De Smedt, I., Alberti, C., Cheng, Z., ... & Wenig, M. (2020). MAX-DOAS measurements of tropospheric NO 2 and HCHO in Munich and the comparison to OMI and TROPOMI satellite observations. Atmospheric Measurement Techniques 13(8), 4499-4520.
Copernicus Climate Change Service (C3S), 2025. ERA5 hourly data on single levels from 1940 to present. ECMWF Climate Data Store.
De Smedt, I., Pinardi, G., Vigouroux, C., Compernolle, S., Bais, A., Benavent, N., ... Van Roozendael, M., 2021. Comparative assessment of TROPOMI and OMI formaldehyde observations against MAX-DOAS network column measurements. Atmospheric Chemistry and Physics Discussions 2021, 1-51.
Dehghani, M.H., Salari, M., Naddafi, K., Nazmara, S., Ahmadi, E., Kumar, P., 2017. Evaluation of formaldehyde concentration in the ambient air of a most populated Iranian city, Tehran. Air Quality, Atmosphere & Health 10(6), 763-772.
Eslami, F., Salari, M., Dehghani, M.H., Dargahi, A., Nazmara, S., Yazdani, M., Beheshti, A., 2019. Relationship of formaldehyde concentration in ambient air with CO, NO2, O3, temperature and humidity: modeling by response surface model.
Getis, A., Ord, J.K., 1992. The analysis of spatial association by use of distance statistics. Geographical Analysis 24(3), 189-206.
Ghoshua, A., Akdis, C.A., Nadeau, K.C., 2022. World Health Organization global air quality guideline recommendations: Executive summary. Allergy 77(7), 1955-1960.
Hersbach, H., Bell, B., Berrisford, P., et al., 2020. The ERA5 global reanalysis. Quarterly Journal of the Royal Meteorological Society 146(730), 1999-2049.
Kuttippurath, J., Abbhishek, K., Gopikrishnan, G.S., Pathak, M., 2022. Investigation of long-term trends and major sources of atmospheric HCHO over India. Environmental Challenges 7, 100477.
Li, L., Ma, X., Chen, D., 2025. Spatiotemporal evolution characteristics and drivers of TROPOMI-based tropospheric HCHO column concentration in North China. Sustainability 17(10), 4386.
Maurya, N.K., Pandey, P.C., Sarkar, S., Kumar, R., Srivastava, P.K., 2022. Spatio-temporal monitoring of atmospheric pollutants using Earth observation Sentinel-5P TROPOMI data: impact of stubble burning—a case study. ISPRS International Journal of Geo-Information 11(5), 301.
Mo, D., Zhang, H., Wang, Y., Tuo, F., Chen, M., Cao, Z., ... Bu, Z., 2025. Formaldehyde Exposure and Associated Health Burdens Apportioned to Residential and Public Places Based on Personal and Environmental Measurements. Atmosphere 16(10), 1165.
Moradi, A., Zeuss, D., 2024. Investigation of the spatiotemporal patterns of air quality over the metropolitan area of Tehran, using TROPOMI and OMI data. Air Quality, Atmosphere & Health 17(2), 371-387.
Paustenbach, D.J., 2000. The practice of exposure assessment: a state-of-the-art review. Journal of Toxicology and Environmental Health Part B: Critical Reviews 3(3), 179-291.
Rana, A.D., Parvez, S., Ul-Haq, Z., Batool, S.A., Chaudhary, M.N., Mahmood, K., Tariq, S., 2019. Anthropogenic, biogenic and pyrogenic emission sources and atmospheric formaldehyde (HCHO) and nitrogen dioxide (NO2) columns over different land use/land covers of South Asia. Applied Ecology & Environmental Research 17(5).
Salari, M., Nazmara, S., Naddafi, K., Dehghani, M.H., 2016. Investigation of daily and seasonal variations of formaldehyde concentration in ambient air of Enghelab Square, Tehran, during 2014–2015. Journal of Research in Environmental Health. (In Persian)
Taguchi, S., Hagiwara, M., Shibata, A., Fujinari, H., Matsumoto, S., Kuwata, M., ... Kuramitz, H., 2021. Investigation and modeling of diurnal variation in suburban ambient formaldehyde concentration. Environmental Science and Pollution Research 28(11), 13425-13438.
Tanvir, A., Javed, Z., Wang, S., Zhou, B., Zhang, S., Bai, X., 2024. Vertical characteristics of HCHO and NO2 in suburban Shanghai: understanding of ozone formation sensitivity via secondary HCHO. Environmental Research Letters.
Vigouroux, C., Langerock, B., Bauer Aquino, C.A., Blumenstock, T., Cheng, Z., De Mazière, M., ... Winkler, H., 2020. TROPOMI–Sentinel-5 Precursor formaldehyde validation using an extensive network of ground-based Fourier-transform infrared stations. Atmospheric Measurement Techniques 13(7), 3751-3767.
Wang, C., Huang, X.F., Han, Y., Zhu, B., He, L.Y., 2017. Sources and potential photochemical roles of formaldehyde in an urban atmosphere in South China. Journal of Geophysical Research: Atmospheres 122(21), 11-934.
Zhao, T., Mao, J., Ayazpour, Z., González Abad, G., Nowlan, C.R., Zheng, Y., 2024. Interannual variability of summertime formaldehyde (HCHO) vertical column density and its main drivers at northern high latitudes. Atmospheric Chemistry and Physics 24(10), 6105-6121.