Lessons learned and questions raised during and post-COVID-19 anthropopause period in relation to the environment and climate
-
Published:2020-11-19
Issue:7
Volume:23
Page:10623-10645
-
ISSN:1387-585X
-
Container-title:Environment, Development and Sustainability
-
language:en
-
Short-container-title:Environ Dev Sustain
Author:
Zerefos Christos S.ORCID, Solomos Stavros, Kapsomenakis John, Poupkou Anastasia, Dimitriadou Lida, Polychroni Iliana D., Kalabokas Pavlos, Philandras Constandinos M., Thanos Dimitris
Abstract
AbstractIn the first part, this work reports that during the global “anthropopause” period, that was imposed in March and April 2020 for limiting the spread of COVID-19, the concentrations of basic air pollutants over Europe were reduced by up to 70%. During May and June, the gradual lift of the stringent measures resulted in the recovery of these reductions with pollution concentrations approaching the levels before the lockdown by the end of June 2020. In the second part, this work examines the alleged correlations between the reported cases of COVID-19 and temperature, humidity and particulate matter for March and April 2020 in Europe. It was found that decreasing temperatures and relative humidity with increasing concentrations of particulate matter are correlated with an increase in the number of reported cases during these 2 months. However, when these calculations were repeated for May and June, we found a remarkable drop in the significance of the correlations which leads us to question the generally accepted inverse relation between pandemics and air temperature at least during the warmer months. Such a relationship could not be supported in our study for SARS-CoV-2 virus and the question remains open. In the third and last part of this work, we examine the question referring to the origin of pandemics. In this context we have examined the hypothesis that the observed climate warming in Siberia and the Arctic and the thawing of permafrost could result to the release of trapped in the permafrost pathogens in the atmosphere. We find that although such relations cannot be directly justified, they present a possible horrifying mechanism for the origin of viruses in the future during the developing global warming of our planet in the decades to come. Overall the findings of our study indicate that: (1) the reduction of anthropogenic emissions in Europe during the “anthropopause” period of March and April 2020 was significant, but when the lockdown measures were raised the concentrations of atmospheric pollutants quickly recovered to pre-pandemic levels and therefore any possible climatic feedbacks were negligible; (2) no robust relationship between atmospheric parameters and the spread of COVID-19 cases can be justified in the warmer part of the year and (3) more research needs to be done regarding the possible links between climate change and the release of new pathogens from thawing of permafrost areas.
Funder
Mariolopoulos- Kanaginis Foundation for the Environmental Sciences CAMS-84
Publisher
Springer Science and Business Media LLC
Subject
Management, Monitoring, Policy and Law,Economics and Econometrics,Geography, Planning and Development
Reference76 articles.
1. Ahmadi, M., Sharifi, A., Dorosti, S., Jafarzadeh Ghoushchi, S., & Ghanbari, N. (2020). Investigation of effective climatology parameters on COVID-19 outbreak in Iran. Science of The Total Environment, 729, 138705. https://doi.org/10.1016/j.scitotenv.2020.138705 2. Auler, A. C., Cássaro, F. A. M., da Silva, V. O., & Pires, L. F. (2020). Evidence that high temperatures and intermediate relative humidity might favor the spread of COVID-19 in tropical climate: A case study for the most affected Brazilian cities. Science of The Total Environment, 729, 139090. https://doi.org/10.1016/j.scitotenv.2020.139090 3. Benedetti, F., Pachetti, M., Marini, B., Ippodrino, R., Gallo, R. C., Ciccozzi, M., & Zella, D. (2020). Inverse correlation between average monthly high temperatures and COVID-19-related death rates in different geographical areas. Journal of Translational Medicine, 18(1), 251. https://doi.org/10.1186/s12967-020-02418-5 4. Bherwani, H., Nair, M., Musugu, K., Gautam, S., Gupta, A., Kapley, A., & Kumar, R. (2020). Valuation of air pollution externalities: comparative assessment of economic damage and emission reduction under COVID-19 lockdown. Air Quality, Atmosphere and Health, 13(6), 683–694. https://doi.org/10.1007/s11869-020-00845-3 5. Biagini, P., Thèves, C., Balaresque, P., Géraut, A., Cannet, C., Keyser, C., et al. (2012). Variola virus in a 300-year-old siberian mummy. New England Journal of Medicine, 367(21), 2057–2059. https://doi.org/10.1056/NEJMc1208124
Cited by
10 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|