67137b1c06789.docx
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1. Shi, X., Wu, W., & Tang, X. (2019). Impact of the COVID-19 lockdown on the air quality of London: A case study of nitrogen dioxide reduction. Environmental Research, 189, 109889.
2. Giani, P., Castruccio, S., Anav, A., Howard, D., Hu, W., & Crippa, P. (2020). Short-term and long-term impacts of COVID-19 on air pollution and health in London. Environmental Pollution, 269, 116642.
3. Sicard, P., De Marco, A., Agathokleous, E., Feng, Z., Xu, X., Paoletti, E., ... & Brauer, M. (2020). Amplified ozone pollution in cities during the COVID-19 lockdown. Science of The Total Environment, 735, 139542.
4. Zhu, Y., Xie, J., Huang, F., & Cao, L. (2022). Spatial and temporal variations of air pollution in megacities: A case study of nitrogen oxides in Beijing. Atmospheric Environment, 244, 117955.
5. Stafoggia, M., Cesaroni, G., Peters, A., Forastiere, F., & Agius, R. (2017). Air pollution and mortality: the case of nitrogen dioxide in European cities. Journal of Epidemiology and Community Health, 71(4), 357-364.
6. Cohen, A. J., Brauer, M., Burnett, R., Anderson, H. R., Frostad, J., Estep, K., ... & Feigin, V. (2017). Estimates and 25-year trends of the global burden of disease attributable to ambient air pollution: An analysis of data from the Global Burden of Disease Study 2015. The Lancet, 389(10082), 1907-1918.