The worldwide COVID-19 lockdown impacts on global secondary inorganic aerosols and radiative budget.

Sekiya, Takashi; Miyazaki, Kazuyuki; Eskes, Henk; Bowman, Kevin; Sudo, Kengo; Kanaya, Yugo; Takigawa, Masayuki · Sci Adv · 2023

basic_science · Level V

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Abstract

Global lockdown measures to prevent the spread of the coronavirus disease 2019 (COVID-19) led to air pollutant emission reductions. While the COVID-19 lockdown impacts on both trace gas and total particulate pollutants have been widely investigated, secondary aerosol formation from trace gases remains unclear. To that end, we quantify the COVID-19 lockdown impacts on NO<sub>x</sub> and SO<sub>2</sub> emissions and sulfate-nitrate-ammonium aerosols using multiconstituent satellite data assimilation and model simulations. We find that anthropogenic emissions over major polluted regions were reduced by 19 to 25% for NO<sub>x</sub> and 14 to 20% for SO<sub>2</sub> during April 2020. These emission reductions led to 8 to 21% decreases in sulfate and nitrate aerosols over highly polluted areas, corresponding to >34% of the observed aerosol optical depth declines and a global aerosol radiative forcing of +0.14 watts per square meter relative to business-as-usual scenario. These results point to the critical importance of secondary aerosol pollutants in quantifying climate impacts of future mitigation measures.

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