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Response of ambient BC concentration across the Indian region to the nation-wide lockdown: results from the ARFINET measurements of ISRO-GBP

  • Mukunda M. Gogoi
  • , S. Suresh Babu
  • , B. S. Arun
  • , K. Krishna Moorthy
  • , A. Ajay
  • , P. Ajay
  • , Arun Suryavanshi
  • , Arup Borgohain
  • , Anirban Guha
  • , Atiba Shaikh
  • , Binita Pathak
  • , Biswadip Gharai
  • , Boopathy Ramasamy
  • , G. Balakrishnaiah
  • , Harilal B. Menon
  • , Jagdish Chandra Kuniyal
  • , Jayabala Krishnan
  • , K. Rama Gopal
  • , M. Maheswari
  • , Manish Naja
  • Parminder Kaur, Pradip K. Bhuyan, Pratima Gupta, Prayagraj Singh, Priyanka Srivastava, R. S. Singh, Ranjit Kumar, Shantanu Rastogi, Shyam Sundar Kundu, Sobhan Kumar Kompalli, Subhasmita Panda, Tandule Chakradhar Rao, Trupti Das, Yogesh Kant
  • Indian Space Research Organization (ISRO)
  • University of Kerala
  • Indian Institute of Science Bangalore
  • Hindustan Institute of Technology and Science
  • Dibrugarh University
  • North-Eastern Space Application Centre
  • Tripura University
  • Goa University
  • Indian Institute of Mineral and Materials Technology
  • Sri Krishnadevaraya University India
  • Ministry of Environment, Forest and Climate Change
  • Tamil Nadu Agricultural University
  • Aryabhatta Research Institute of Observational Sciences
  • Dayalbagh Educational Institute India
  • Deen Dayal Upadhyay Gorakhpur University India
  • Indian Institute of Technology Banaras Hindu University

Research output: Contribution to journalArticlepeer-review

40 Scopus citations

Abstract

In this study, we assess the response of ambient aero-sol black carbon (BC) mass concentrations and spec-tral absorption properties across Indian mainland during the nation-wide lockdown (LD) in connection with the Coronavirus Disease 19 (COVID-19) pan-demic. The LD had brought near to total cut-off of emissions from industrial, traffic (road, railways, ma-rine and air) and energy sectors, though the domestic emissions remained fairly unaltered. This provided a unique opportunity to delineate the impact of fossil fuel combustion sources on atmospheric BC characte-ristics. In this context, the primary data of BC meas-ured at the national network of aerosol observatories (ARFINET) under ISRO-GBP are examined to assess the response to the seizure of emissions over distinct geographic parts of the country. Results indicate that average BC concentrations over the Indian mainland are curbed down significantly (10–40%) from pre-lockdown observations during the first and most in-tense phase of lockdown. This decline is significant with respect to the long-term (2015–2019) averaged (climatological mean) values. The drop in BC is most pronounced over the Indo-Gangetic Plain (>60%) and north-eastern India (>30%) during the second phase of lockdown, while significant reduction is seen during LD1 (16–60%) over central and peninsular Indian as well as Himalayan and sub-Himalayan regions. De-spite such a large reduction, the absolute magnitude of BC remained higher over the IGP and north-eastern sites compared to other parts of India. Notably, the spectral absorption index of aerosols changed very little over most of the locations, indicating the still persisting contribution of fossil-fuel emissions over most of the locations.

Original languageEnglish
Pages (from-to)341-351
Number of pages11
JournalCurrent Science
Volume120
Issue number2
DOIs
StatePublished - Jan 2021
Externally publishedYes

Keywords

  • ARFINET
  • COVID-19
  • black carbon

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