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Impacts of COVID-19 lockdown on ambient air quality: Statistical analyses of available data on urban West Bengal (India)

  • Received : 2020.11.24
  • Accepted : 2021.01.06
  • Published : 2021.06.25

Abstract

COVID-19 pandemic and consequent unavoidable lockdown left an unprecedented shock on social and economic life. Present study aimed to evaluate the impacts of COVID-19 lockdown on the ambient air quality of urban areas of eastern Indian state West Bengal. During lockdown period, Air Quality Index (AQI) was mostly found in 'Good' or 'Satisfactory' and sometimes, in 'Moderate' categories, and rarely, in 'poor' category. AQI was in 'Good' category for most of the lockdown span at Siliguri (67%) followed by Kolkata (44%), Howrah (38%) and Asansol (25%). Based on average AQI ranges: lockdown period (48.68- 62.12) < same period before 1 year (75.09-89.81) < Period 3 months before lockdown (175-206), it can be stated that AQI category was better during lockdown compared to the other two at all study areas. In Kolkata overall air pollutant levels except ozone (p>0.05) decreased significantly during lockdown. Similarly, PM2.5, PM10 and NO2 level reduced in Howrah. Beside, no significant changes observed for NH3 and SO2 concentration in Howrah compared to one year before. Apart from PM2.5, NO2, NH3 and SO2 level of previous year, mean concentration of PM10, CO, O3 showed significant drop at Siliguri during lockdown. Ambient air quality parameters except SO2 showed remarkable decline in Asansol also during lockdown. It can be concluded that COVID-19 lockdown exerted positive effects from environmental health perspective. It improved overall ambient air quality parameters of urban areas of West Bengal. Proper planning and policy making should be given utmost priority to control air pollution in the present 'new normal' COVID-19 scenario.

Keywords

Acknowledgement

Kind acknowledgement is made to the Central Pollution Control Board, Ministry of Environment, Forests and Climate Change, Government of India for their daily uploading the Air Quality Index (AQI) and air pollutant data in their official website.

References

  1. Bedi, J.P, Dhaka, P., Vijay, D., Aulakh, R.S., Gill, J.P.S. (2020), "Assessment of air quality changes in the four metropolitan cities of India during COVID-19 pandemic lockdown", Aerosol Air Quality Res., 20(10), 2062-2070. https://doi.org/10.4209/aaqr.2020.05.0209.
  2. Bera, B., Bhattacharjee, S., Shit, P.K., Sengupta, N., Saha, S. (2020), "Significant impacts of COVID-19 lockdown on urban air pollution in Kolkata (India) and amelioration of environmental health" Environ. Dev Sustain, 23(5), 6913-6940. https://doi.org/10.1007/s10668-020-00898-5.
  3. Biswal, A., Singh, T., Singh, V., Ravindra, K., Mor, S. (2020), "COVID-19 lockdown and its impact on tropospheric NO2 concentrations over India using satellite-based data", Heliyon, 6(9), e04764. https://doi.org/10.1016/j.heliyon.2020.e04764.
  4. Biswas, K., Chatterjee, A., Chakraborty, J. (2020), "Comparison of air pollutants between Kolkata and siliguri, India, and its relationship to temperature change", J. Geovisual. Spatial Anal., 4(2), 1-15. https://doi.org/10.1007/s41651-020-00065-4.
  5. Census of India (2011), District data handbook Kolkata; Directorate of Census operations, West Bengal, India. https://censusindia.gov.in
  6. Chowdhuri, I., Pal, S.C., Saha, A., Chakrabortty, R., Ghosh, M., Roy, P. (2020), "Significant decrease of lightning activities during COVID-19 lockdown period over Kolkata megacity in India", Sci. Total. Environ., 747(141321), 1-9. https://doi.org/10.1016/j.scitotenv.2020.141321.
  7. CPCB (2020), Daily AQI Bulletin (PDF); Central Pollution Control Board, Ministry of Envronment, Forest and climate Change, Covernment of India, New Delhi, India. https://cpcb.nic.in/AQI_Bulletin.php
  8. Das, R., Khezri, B., Srivastava, B., Datta, S., Sikdar, P.K., Webster, R.D., Wang, X. (2015), "Trace element composition of PM2.5 and PM10 from Kolkata - a heavily polluted Indian metropolis", Atmos Pollut. Res., 6(5), 742-750. https://doi.org/10.5094/APR.2015.083.
  9. Garg, A., Kumar, A., Gupta, N.C. (2020), "Impact of lockdown on ambient air quality in COVID-19 affected hotspot cities of india: Need to readdress air pollution mitigation policies" Environ Claims J., 33(1), 65-76. https://doi.org/10.1080/10406026.2020.1822615.
  10. Ghosh, P., Ghosh, R., Chakraborty, B. (2020), "COVID-19 in India: Statewise analysis and prediction", JMIR Public Health Surveill., 6(3), e20341. https://doi.org/10.2196/20341.
  11. Gomez, K.A. and Gomez, A.A. (1984), Statistical Procedures for Agricultural Research, John Wiley and Sons, New York, USA.
  12. Government of India (2011), Road Transport Year Book (2007-2009), Transport Research Wing, Ministry of Road Transport and Highways, Government of India, New Delhi, India.
  13. Government of India (2019), Road Transport Year Book (2016-2017), Transport Research Wing, Ministry of Road Transport and Highways, Government of India, New Delhi, India.
  14. India State-Level Disease Burden Initiative Air Pollution Collaborators (2020) "Health and economic impact of air pollution in the states of India: The global burden of disease study 2019", Lancet Planetary Health, 5(1), e25-e38. https://doi.org/10.1016/S2542-5196(20)30298-9.
  15. IQAir (2019), IQAir World Air Quality Report (Region & City PM2.5 Ranking, 2019; IQAir Group, Goldach, Switzerland. www.iqair.com
  16. Kim, D., Chen, Z., Zhou, L., Huang, A. (2018), "Air pollutants and early origins of respiratory diseases" Chronic Diseases Translational Med., 4(2), 75-94. https://doi.org/10.1016/j.cdtm.2018.03.003.
  17. Kulshrestha, U.C. (2020) "'New Normal' of COVID-19: Need of new environmental standards", Curr World Environ., 15(2), 151-153. http://doi.org/10.12944/CWE.15.2.01.
  18. Kumar, P., Hama, S., Omidvarborna, H., Sharma, A., Sahani, J., Abhijith, K.V., Debele, S.E., Zavala-Reyes, J.C., Barwise, Y., Tiwari, A. (2020), "Temporary reduction in fine particulate matter due to 'anthropogenic emissions switch-off' during COVID-19 lockdown in Indian cities", Sustain Cities Soc, 62, 102382. https://doi.org/10.1016/j.scs.2020.102382.
  19. Lokhandwala, S., Gautam, P. (2020), "Indirect impact of COVID-19 on environment: A brief study in Indian context" Environ Res, 188,109807. https://doi.org/10.1016%2Fj.envres.2020.109807. https://doi.org/10.1016%2Fj.envres.2020.109807
  20. Marlier, M.E., Jina, A.S., Kinney, P.L., Defries, R.S. (2016), "Extreme air pollution in global megacities", Curr. Climate Change Rep., 2(1), 15-27. https://doi.org/10.1007/s40641-016-0032-z.
  21. Mouli, P.C., Kumar, M.P., Reddy, S.J., Mohan, S.V. (2004), "Monitoring of air pollution in Indian metropolitan cities: modelling and quality indexing", Int. J. Environ. Pollut., 21(4), 365-382. https://doi.org/10.1504/IJEP.2004.005114.
  22. Mukherjee, M., Basua, J., Datta, S. (2012), "Air quality analysis and indexing of Kolkata city with respect to vertical floor heights and seasonal variation", Toxicol. Environ. Chem., 94(10), 1864-1885. https://doi.org/10.1080/02772248.2012.712125.
  23. NAAQS (2009), Revised National Ambient Air Quality Standard, Notification; Central Pollution Control Board, India. https://cpcb.nic.in.
  24. NAQI-CPCB (2020), Live Air Quality - Data of Monitoring Stations, Central Pollutions Control Board, Ministry of Environment, Forest and Climat Change, Government of India. https://app.cpcbccr.com/AQI_India/
  25. PIB (2020), Ministry of Health and Family Welfare, Update on Novel Coronavirus: One Positive Case Reported in Kerala; Press Information Bureau, New Delhi, India. https://pib.gov.in.
  26. Roychowdhury, A. (2011), "Air Pollution, Health and Congestion in South Asian Cities: Seeking solutions", Workshop on Air Quality and Environmentally Sustainable Transport, Colombo, April. https://cdn.cseindia.org/userfiles/delhi_colombo_cialogue.pdf
  27. Sinha, D., Ray, M.R. (2015), Health Effects of Indoor Air Pollution Due to Cooking with Biomass Fuel, in Studies on Experimental Toxicology and Pharmacology, Humana Press, New Jersey, U.S.A.
  28. Roberts, S.M., Kehrer, J.P. and Klotz, L.O. (2015), Studies on experimental toxicology and pharmacology, Springer International Publishing, New York, U.S.A.
  29. West Bengal Pollution Control Board (2005), "Final Report Volume 5: Air Quality Management", Research Report No. 3423-IND; WBPCB in Collaboration with Asian Development Bank, Intercontinental Consultant and Technocrats Pvt. Ltd., New Delhi, India.
  30. WHO (2014), 7 million premature deaths annually linked to air pollution; World Health Organisation, Geneva, Switzerland. https://www.who.int/mediacentre/news/releases/2014/air-pollution/en/.
  31. WHO (2018), Ambient (outdoor) air pollution; World Health Organisation, Geneva, Switzerland. https://www.who.int/news-room/fact-sheets/detail/ambient-(outdoor)-air-quality-and-health.
  32. WHO (2020), The top 10 causes of death; World Health Organisation, Geneva, Switzerland. https://www.who.int/news-room/fact-sheets/detail/the-top-10-causes-of-death.
  33. WHO (2020), WHO Director-General's opening remarks at the media briefing on COVID-19-11-March 2020; World Health Organisation, Geneva, Switzerland. https://www.who.int/director-general/speeches/detail/who-director-general-s-opening-remarks-at-the-media-briefing-on-covid-19-11-arch-2020.
  34. Wright, R.T. (2007), Environmental Science: Toward a Sustainable Future, Jones & Bartlett Publishers, New Jersey, U.S.A.
  35. Wu, X., Nethery, R.C., Sabath, B.M., Braun, D., Dominici, F. (2020), "Exposure to air pollution and COVID-19 mortality in the United States: Strengths and limitations of an ecological regression analysis", Sci. Adv., 6(45), eabd4049. http://doi.org/10.1126/sciadv.abd4049.
  36. Yadav, R., Korhale, N., Anand, V., Rathod, A., Bano, S., Shinde, R., Latha, R., Sahu, S.K., Murthy, B.S., Beig, G. (2020), "COVID-19 lockdown and air quality of SAFAR-India metro cities", Urban Climate, 34, 100729. https://doi.org/10.1016/j.uclim.2020.100729.
  37. Yuki, K., Fujiogi, M., Koutsogiannaki, S. (2020), "COVID-19 pathophysiology: A review", Clin. Immunol., 215, 108427. https://doi.org/10.1016%2Fj.clim.2020.108427. https://doi.org/10.1016%2Fj.clim.2020.108427