Spatiotemporal Investigations of Multi-Sensor Air Pollution Data over Bangladesh during COVID-19 Lockdown

Author:

Qiu ZhongfengORCID,Ali Md. ArfanORCID,Nichol Janet E.ORCID,Bilal MuhammadORCID,Tiwari PravashORCID,Habtemicheal Birhanu Asmerom,Almazroui MansourORCID,Mondal Sanjit Kumar,Mazhar UsmanORCID,Wang Yu,Sarker SajibORCID,Mustafa FarhanORCID,Rahman Muhammad Ashfaqur

Abstract

This study investigates spatiotemporal changes in air pollution (particulate as well as gases) during the COVID-19 lockdown period over major cities of Bangladesh. The study investigated the aerosol optical depth (AOD) from the Moderate Resolution Imaging Spectroradiometer (MODIS) onboard Terra and Aqua satellites, PM2.5 and PM10 from Copernicus Atmosphere Monitoring Service (CAMS), and NO2 and O3 from TROPOMI-5P, from March to June 2019–2020. Additionally, aerosol subtypes from the Cloud-Aerosol Lidar and Infrared Pathfinder (CALIPSO) were used to explore the aerosol types. The strict lockdown (26 March–30 May 2020) led to a significant reduction in AOD (up to 47%) in all major cities, while the partial lockdown (June 2020) led to increased and decreased AOD over the study area. Significant reductions in PM2.5 (37–77%) and PM10 (33–70%) were also observed throughout the country during the strict lockdown and partial lockdown. The NO2 levels decreased by 3–25% in March 2020 in the cities of Rajshahi, Chattogram, Sylhet, Khulna, Barisal, and Mymensingh, in April by 3–43% in Dhaka, Chattogram, Khulna, Barisal, Bhola, and Mymensingh, and May by 12–42% in Rajshahi, Sylhet, Mymensingh, and Rangpur. During the partial lockdown in June, NO2 decreased (9–35%) in Dhaka, Chattogram, Sylhet, Khulna, Barisal, and Rangpur compared to 2019. On the other hand, increases were observed in ozone (O3) levels, with an average increase of 3–12% throughout the country during the strict lockdown and only a slight reduction of 1–3% in O3 during the partial lockdown. In terms of aerosol types, CALIPSO observed high levels of polluted dust followed by dust, smoke, polluted continental, and clean marine-type aerosols over the country in 2019, but all types were decreased during the lockdown. The study concludes that the strict lockdown measures were able to significantly improve air quality conditions over Bangladesh due to the shutdown of industries, vehicles, and movement of people.

Funder

National Key Research and Development Program of China

the Special Project of Jiangsu Distinguished Professor

the National Natural Science Foundation of China

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference53 articles.

1. Clinical characteristics and intrauterine vertical transmission potential of COVID-19 infection in nine pregnant women: a retrospective review of medical records

2. WHO Announces COVID-19 Outbreak a Pandemichttp://www.euro.who.int/en/health-topics/health-emergencies/coronavirus-covid-%0A19/news/news/2020/3/who-announces-covid-19-outbreak-a-pandemic

3. Worldometerhttps://www.worldometers.info/coronavirus/?fbclid=IwAR2aGJAnE-24hnddFP2oTJh8ypDVRPEYtKWSmq5OZGpY_n8GseuuhGBUINg

4. 2020 Global Economic Prospects: June 2020. In the Financial Crisis and the Global South (Issue June)https://www.jstor.org/stable/j.ctt183pb3w?turn_away=true

5. COVID-19 and Bangladesh: Challenges and How to Address Them

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