4.8 Article

Variation in chemical composition and sources of PM2.5 during the COVID-19 lockdown in Delhi

Journal

ENVIRONMENT INTERNATIONAL
Volume 153, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.envint.2021.106541

Keywords

COVID-19 lockdown; Source apportionment; PM2; 5; Delhi; Air pollution; Elemental and organic fractions

Funding

  1. IRD Grand Challenge Project grant, IIT Delhi, Ministery of Human Resource Development (MHRD), Government of India [IITD/IRD/MI01810G]
  2. Central Pollution Control Board (CPCB), Government of India

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The Government of India implemented a nationwide lockdown to combat COVID-19, resulting in reduced anthropogenic activities and improved air quality in Delhi. The study found that vehicular emissions, domestic coal combustion, and semivolatile oxygenated organic aerosol were severely impacted by the lockdown, while ozone levels and low-volatility oxygenated organic aerosols increased significantly. Other sources were influenced by meteorological conditions rather than the lockdown.
The Government of India (GOI) announced a nationwide lockdown starting 25th March 2020 to contain the spread of COVID-19, leading to an unprecedented decline in anthropogenic activities and, in turn, improvements in ambient air quality. This is the first study to focus on highly time-resolved chemical speciation and source apportionment of PM2.5 to assess the impact of the lockdown and subsequent relaxations on the sources of ambient PM2.5 in Delhi, India. The elemental, organic, and black carbon fractions of PM2.5 were measured at the IIT Delhi campus from February 2020 to May 2020. We report source apportionment results using positive matrix factorization (PMF) of organic and elemental fractions of PM2.5 during the different phases of the lockdown. The resolved sources such as vehicular emissions, domestic coal combustion, and semi-volatile oxygenated organic aerosol (SVOOA) were found to decrease by 96%, 95%, and 86%, respectively, during lockdown phase-1 as compared to pre-lockdown. An unforeseen rise in O3 concentrations with declining NOx levels was observed, similar to other parts of the globe, leading to the low-volatility oxygenated organic aerosols (LVOOA) increasing to almost double the pre-lockdown concentrations during the last phase of the lockdown. The effect of the lockdown was found to be less pronounced on other resolved sources like secondary chloride, power plants, dustrelated, hydrocarbon-like organic aerosols (HOA), and biomass burning related emissions, which were also swayed by the changing meteorological conditions during the four lockdown phases. The results presented in this study provide a basis for future emission control strategies, quantifying the extent to which constraining certain anthropogenic activities can ameliorate the ambient air. These results have direct relevance to not only Delhi but the entire Indo-Gangetic plain (IGP), citing similar geographical and meteorological conditions common to the region along with overlapping regional emission sources. Summary of mo findings: We identify sources like vehicular emissions, domestic coal combustion, and semivolatile oxygenated organic aerosol (SVOOA) to be severely impacted by the lockdown, whereas ozone levels and, in turn, low-volatility oxygenated organic aerosols (LVOOA) rise by more than 95% compared to the prelockdown concentrations during the last phase of the lockdown. However, other sources resolved in this study, like secondary chloride, power plants, dust-related, hydrocarbon-like organic aerosols (HOA), and biomass burning related emissions, were mainly driven by the changes in the meteorological conditions rather than the lockdown.

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