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Unanswered questions on the airborne transmission of COVID-19

Environmental Chemistry Letters 2023 15 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Zhaolin Gu, Jie Han, Liyuan Zhang, Hongliang Wang, Xilian Luo, Xiangzhao Meng, Yue Zhang, Xinyi Niu, Lan Yang, Shaowei Wu, Junji Cao, Éric Lichtfouse

Summary

Researchers reviewed how atmospheric particulate properties — including particle size, chemical composition, electrostatic charge, and moisture content — influence the airborne survival and transmission of SARS-CoV-2, proposing that particulate matter may act as a vehicle amplifying COVID-19 spread and helping explain observed correlations between air pollution and pandemic mortality.

UNLABELLED: Policies and measures to control pandemics are often failing. While biological factors controlling transmission are usually well explored, little is known about the environmental drivers of transmission and infection. For instance, respiratory droplets and aerosol particles are crucial vectors for the airborne transmission of the severe acute respiratory syndrome coronavirus 2, the causation agent of the coronavirus 2019 pandemic (COVID-19). Once expectorated, respiratory droplets interact with atmospheric particulates that influence the viability and transmission of the novel coronavirus, yet there is little knowledge on this process or its consequences on virus transmission and infection. Here we review the effects of atmospheric particulate properties, vortex zones, and air pollution on virus survivability and transmission. We found that particle size, chemical constituents, electrostatic charges, and the moisture content of airborne particles can have notable effects on virus transmission, with higher survival generally associated with larger particles, yet some viruses are better preserved on small particles. Some chemical constituents and surface-adsorbed chemical species may damage peptide bonds in viral proteins and impair virus stability. Electrostatic charges and water content of atmospheric particulates may affect the adherence of virion particles and possibly their viability. In addition, vortex zones and human thermal plumes are major environmental factors altering the aerodynamics of buoyant particles in air, which can strongly influence the transport of airborne particles and the transmission of associated viruses. Insights into these factors may provide explanations for the widely observed positive correlations between COVID-19 infection and mortality with air pollution, of which particulate matter is a common constituent that may have a central role in the airborne transmission of the novel coronavirus. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s10311-022-01557-z.

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