COVID-19 lockdown: Effects on selected volatile organic compound (VOC) emissions over the major Indian metro cities

被引:26
作者
Pakkattil, Anoop [1 ]
Muhsin, M. [1 ]
Varma, M. K. Ravi [1 ]
机构
[1] Natl Inst Technol Calicut, Dept Phys, Calicut 673601, Kerala, India
关键词
COVID-19; Volatile organic compound (VOC); BTEX; HCHO; TROPOMI; OZONE FORMATION; AIR-QUALITY; ATMOSPHERE; BTEX; FORMALDEHYDE; POLLUTANTS; CHEMISTRY;
D O I
10.1016/j.uclim.2021.100838
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Due to the COVID-19 pandemic, many countries across the world, including India, have imposed nationwide lockdowns to contain the spread of the virus. Many studies reported that the air quality had improved much due to the lockdown. This study examines the variation of Volatile Organic Compounds (VOCs) over the Indian metropolitan cities during the lockdown period by using ground-based and satellite observations. Ground-based BTEX (Benzene, Toluene, Ethylbenzene, and Xylenes) measurements from various metropolitan cities have shown a drastic drop of about 82% in the first phase of lockdown when compared with the pre-lockdown period. Whereas the spatial distribution of formaldehyde (HCHO), obtained from the TROPOspheric Monitoring Instrument (TROPOMI) onboard Sentinal-5P satellite, did not show any significant variation due to COVID-19 lockdown, indicating the major source of HCHO is biogenic or pyrogenic. The BTEX ratios were evaluated for a better understanding of the source and photochemical age of the air samples. The ozone forming potential of BTEX in all locations was found reduced; however, the corresponding decrease in ozone concentrations was not observed. The increase in ozone concentrations during the same period indicates alternative sources contributing to ozone formation.
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页数:8
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共 44 条
  • [1] Seasonal and diurnal variations of BTEX and their potential for ozone formation in the urban background atmosphere of the coastal city Jeddah, Saudi Arabia
    Alghamdi, M. A.
    Khoder, M.
    Abdelmaksoud, A. S.
    Harrison, R. M.
    Hussein, T.
    Lihavainen, H.
    Al-Jeelani, H.
    Goknil, M. H.
    Shabbaj, I. I.
    Almehmadi, F. M.
    Hyvarinen, A. -P.
    Hameri, K.
    [J]. AIR QUALITY ATMOSPHERE AND HEALTH, 2014, 7 (04) : 467 - 480
  • [2] Atmospheric chemistry of VOCs and NOx
    Atkinson, R
    [J]. ATMOSPHERIC ENVIRONMENT, 2000, 34 (12-14) : 2063 - 2101
  • [3] Atmospheric degradation of volatile organic compounds
    Atkinson, R
    Arey, J
    [J]. CHEMICAL REVIEWS, 2003, 103 (12) : 4605 - 4638
  • [4] GAS-PHASE TROPOSPHERIC CHEMISTRY OF ORGANIC-COMPOUNDS - A REVIEW
    ATKINSON, R
    [J]. ATMOSPHERIC ENVIRONMENT PART A-GENERAL TOPICS, 1990, 24 (01): : 1 - 41
  • [5] Assessment of Air Quality Changes in the Four Metropolitan Cities of India during COVID-19 Pandemic Lockdown
    Bedi, Jasbir Singh
    Dhaka, Pankaj
    Vijay, Deepthi
    Aulakh, Rabinder Singh
    Gill, Jatinder Paul Singh
    [J]. AEROSOL AND AIR QUALITY RESEARCH, 2020, 20 (10) : 2062 - 2070
  • [6] Development of the SAPRC-07 chemical mechanism
    Carter, William P. L.
    [J]. ATMOSPHERIC ENVIRONMENT, 2010, 44 (40) : 5324 - 5335
  • [7] CARTER WPL, 1994, J AIR WASTE MANAGE, V44, P881
  • [8] What the COVID-19 lockdown revealed about photochemistry and ozone production in Quito, Ecuador
    Cazorla, Maria
    Herrera, Edgar
    Palomeque, Emilia
    Saud, Nicolas
    [J]. ATMOSPHERIC POLLUTION RESEARCH, 2021, 12 (01) : 124 - 133
  • [9] Decline in PM2.5 concentrations over major cities around the world associated with COVID-19
    Chauhan, Akshansha
    Singh, Ramesh P.
    [J]. ENVIRONMENTAL RESEARCH, 2020, 187
  • [10] Space-based formaldehyde measurements as constraints on volatile organic compound emissions in east and south Asia and implications for ozone
    Fu, Tzung-May
    Jacob, Daniel J.
    Palmer, Paul I.
    Chance, Kelly
    Wang, Yuxuan X.
    Barletta, Barbara
    Blake, Donald R.
    Stanton, Jenny C.
    Pilling, Michael J.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2007, 112 (D6)