Air quality and its impact on climate change in major urban areas across Cairo and Moscow cities
Subject Areas : EnvironmentMohammad Ali Ghoveh Nodoushan 1 , Seyedeh Mahtab Pormazar 2
1 - Department of Occupational Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran
2 - Environmental Science and Technology Research Center, Department of Environmental Health Engineering, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran
Keywords:
Abstract :
Abou-Ali, H., & Thomas, A. (2012). Regulating traffic to reduce air pollution in Greater Cairo, Egypt. Economic Incentives and Environmental Regulation, 95-119. https://doi.org/10.4337/9781035305780.00013
Acosta Navarro, J. C., Ekman, A. M., Pausata, F. S., Lewinschal, A., Varma, V., Seland, Ø., ... & Hansson, H. C. (2017). Future response of temperature and precipitation to reduced aerosol emissions as compared with increased greenhouse gas concentrations. Journal of Climate, 30(3), 939-954. https://doi.org/10.1175/JCLI-D-16-0466.1
Athanassiadou, M., Baker, J., Carruthers, D., Collins, W., Girnary, S., Hassell, D., ... & Witham, C. (2010). An assessment of the impact of climate change on air quality at two UK sites. Atmospheric Environment, 44(15), 1877-1886. https://doi.org/10.1016/j.atmosenv.2010.02.024
Demirov, E., & Pinardi, N. (2002). Simulation of the Mediterranean Sea circulation from 1979 to 1993: Part I. The interannual variability. Journal of Marine Systems, 33, 23-50. https://doi.org/10.1016/S0924-7963(02)00051-9
Fuentes, M., Millard, K., & Laurin, E. (2020). Big geospatial data analysis for Canada’s Air Pollutant Emissions Inventory (APEI): using google earth engine to estimate particulate matter from exposed mine disturbance areas. GIScience & Remote Sensing, 57(2), 245-257. https://doi.org/10.1080/15481603.2019.1695407
Ghane Ezabadi, N., Azhdar, S., & Jamali, A. A. (2021). Analysis of dust changes using satellite images in Giovanni NASA and Sentinel in Google Earth Engine in western Iran. Journal of Nature and Spatial Sciences (JONASS), 1(1), 17-26. https://doi.org/10.30495/jonass.2021.680327
Ghannadi, M. A., Shahri, M., Alebooyeh, S., & Moradi, A. (2021). Evaluation of sulfur dioxide emissions in thermal power plant and its effect on air quality in the neighboring city using Sentinel-5 images (Case Study: Iran, Arak). Earth Observation and Geomatics Engineering, 5(1), 36-45.
Gubanova, D. P., Vinogradova, A. A., Iordanskii, M. A., & Skorokhod, A. I. (2022). Variability of near-surface aerosol composition in Moscow in 2020–2021: Episodes of extreme air pollution of different genesis. Atmosphere, 13(4), 574. https://doi.org/10.3390/atmos13040574
He, S., Wang, D., Li, Y., Zhao, P., Lan, H., Chen, W., ... & Chen, X. (2021). Social-ecological system resilience of debris flow alluvial fans in the Awang basin, China. Journal of Environmental Management, 286, 112230. https://doi.org/10.1016/j.jenvman.2021.112230
He, S., Wang, D., Zhao, P., Li, Y., Lan, H., Chen, W., & Jamali, A. A. (2020). A review and prospects of debris flow waste-shoal land use in typical debris flow areas, China. Land Use Policy, 99, 105064. https://doi.org/10.1016/j.landusepol.2020.105064
Hereher, M. E. (2017). Effects of land use/cover change on regional land surface temperatures: severe warming from drying Toshka lakes, the Western Desert of Egypt. Natural Hazards, 88(3), 1789-1803. https://doi.org/10.1007/s11069-017-2946-8
Hulne, M., Jenkins, G. J., La, X., Turnpenny, J. R., Mitchell, T. D., Jones, R. G., ... & Hill, S. (2002). The UKCIPO2 Scientific Report. Tyndall Centre for Climate Change Research, School of Environmental Sciences, University of East Anglia, Norwich, UK.
Jacob, D. J., & Winner, D. A. (2009). Effect of climate change on air quality. Atmospheric environment, 43(1), 51-63. https://doi.org/10.1016/j.atmosenv.2008.09.051
Jamali, A. A., Kalkhajeh, R. G., Randhir, T. O., & He, S. (2022). Modeling relationship between land surface temperature anomaly and environmental factors using GEE and Giovanni. Journal of Environmental Management, 302, 113970. https://doi.org/10.1016/j.jenvman.2021.113970
Kanakidou, M., Mihalopoulos, N., Kindap, T., Im, U., Vrekoussis, M., Gerasopoulos, E., ... & Moubasher, H. (2011). Megacities as hot spots of air pollution in the East Mediterranean. Atmospheric Environment, 45(6), 1223-1235. https://doi.org/10.1016/j.atmosenv.2010.11.048
Kinney, P. L. (2008). Climate change, air quality, and human health. American journal of preventive medicine, 35(5), 459-467.https://doi.org/10.1016/j.amepre.2008.08.025
Kul’bachevskii, A. O. (2019). Report on the State of the Environment in Moscow in 2018. Department of Nature Management and Environmental Protection of Moscow Government: Moscow, Russia.
Masoumi, H., Jamali, A. A., & Khabazi, M. (2014). Investigation of role of slope, aspect and geological formations of landslide occurrence using statistical methods and GIS in some watersheds in Chahar Mahal and Bakhtiari Province. J. Appl. Environ. Biol. Sci, 4(9), 121-129.
Mazur, D. M., Detenchuk, E. A., Sosnova, A. A., Artaev, V. B., & Lebedev, A. T. (2021). GC-HRMS with complementary ionization techniques for target and non-target screening for chemical exposure: Expanding the insights of the air pollution markers in Moscow snow. Science of the Total Environment, 761, 144506. https://doi.org/10.1016/j.scitotenv.2020.144506
McCarthy, M. P., Best, M. J., & Betts, R. A. (2010). Climate change in cities due to global warming and urban effects. Geophysical research letters, 37(9). https://doi.org/10.1029/2010GL042845
Michelson, N. (2022). The Impact of Climate Change on Black Girls’ and Women’s Health: Using Theory to Mitigate and Organize. Undergraduate Journal of Public Health, 6. https://doi.org/10.3998/ujph.2314
Najafi, M. R., Zwiers, F. W., & Gillett, N. P. (2015). Attribution of Arctic temperature change to greenhouse-gas and aerosol influences. Nature Climate Change, 5(3), 246-249. https://doi.org/10.1038/nclimate2524
Okeke, F. O., Eziyi, I. O., Udeh, C. A., & Ezema, E. C. (2020). City as Habitat: Assembling the fragile city. Civil engineering journal, 6(6), 1143-1154. https://doi.org/10.28991/cej-2020-03091536
Parida, B. R., Bar, S., Roberts, G., Mandal, S. P., Pandey, A. C., Kumar, M., & Dash, J. (2021). Improvement in air quality and its impact on land surface temperature in major urban areas across India during the first lockdown of the pandemic. Environmental research, 199, 111280. https://doi.org/10.1016/j.envres.2021.111280
Parsasyrat, L., & Jamali, A. A. (2015). The effects of impermeable surfaces on the flooding possibility in Zarrin-Shahr, Isfahan Municipal Watershed. J Appl Environ Biol Sci, 5(1), 28-38.
Qanbari, V., & Jamali, A. A. (2015). The relationship between elevation, soil properties and vegetation cover in the Shorb-Ol-Ain watershed of Yazd. J Biodivers Environ Sci (JBES), l.
Ravindra, K., Rattan, P., Mor, S., & Aggarwal, A. N. (2019). Generalized additive models: Building evidence of air pollution, climate change and human health. Environment international, 132, 104987. https://doi.org/10.1016/j.envint.2019.104987
Rogelj, J., Schaeffer, M., Meinshausen, M., Shindell, D. T., Hare, W., Klimont, Z., ... & Schellnhuber, H. J. (2014). Disentangling the effects of CO2 and short-lived climate forcer mitigation. Proceedings of the National Academy of Sciences, 111(46), 16325-16330. https://doi.org/10.1073/pnas.1415631111
Rovella, N., Aly, N., Comite, V., Randazzo, L., Fermo, P., Barca, D., ... & La Russa, M. F. (2021). The environmental impact of air pollution on the built heritage of historic Cairo (Egypt). Science of the Total Environment, 764, 142905. https://doi.org/10.1016/j.scitotenv.2020.142905
Smith, S. M., Lowe, J. A., Bowerman, N. H., Gohar, L. K., Huntingford, C., & Allen, M. R. (2012). Equivalence of greenhouse-gas emissions for peak temperature limits. Nature Climate Change, 2(7), 535-538. https://doi.org/10.1038/nclimate1496
Tack, F., Merlaud, A., Iordache, M. D., Pinardi, G., Dimitropoulou, E., Eskes, H., ... & Van Roozendael, M. (2021). Assessment of the TROPOMI tropospheric NO 2 product based on airborne APEX observations. Atmospheric Measurement Techniques, 14(1), 615-646. https://doi.org/10.5194/amt-14-615-2021
Vautard, R., & Hauglustaine, D. (2007). Impact of global climate change on regional air quality: Introduction to the thematic issue. Comptes Rendus Geoscience, 339(11-12), 703-708.https://doi.org/10.1016/j.crte.2007.08.012
Vlasov, D., Kosheleva, N., & Kasimov, N. (2021). Spatial distribution and sources of potentially toxic elements in road dust and its PM10 fraction of Moscow megacity. Science of the Total Environment, 761, 143267. https://doi.org/10.1016/j.scitotenv.2020.14326
Watts, N., Amann, M., Arnell, N., Ayeb-Karlsson, S., Beagley, J., Belesova, K., ... & Costello, A. (2021). The 2020 report of the Lancet Countdown on health and climate change: responding to converging crises. The lancet, 397(10269) 129-170. https://doi.org/10.1016/S0140-6736(20)32290-X