4.5 Article

Study of temporal variation in ambient air quality during Diwali festival in India

期刊

ENVIRONMENTAL MONITORING AND ASSESSMENT
卷 169, 期 1-4, 页码 1-13

出版社

SPRINGER
DOI: 10.1007/s10661-009-1145-9

关键词

Diwali; Fireworks; Air pollutants; Meteorological parameters; Mixing height; Foggy day

资金

  1. GGS Indraprastha University
  2. NPL
  3. Council of Scientific & Industrial Research, New Delhi

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The variation in air quality was assessed from the ambient concentrations of various air pollutants [total suspended particle (TSP), particulate matter a parts per thousand currency sign10 mu m (PM10), SO2, and NO2] for pre-Diwali, Diwali festival, post-Diwali, and foggy day (October, November, and December), Delhi (India), from 2002 to 2007. The extensive use of fireworks was found to be related to short-term variation in air quality. During the festival, TSP is almost of the same order as compared to the concentration at an industrial site in Delhi in all the years. However, the concentrations of PM10, SO2, and NO2 increased two to six times during the Diwali period when compared to the data reported for an industrial site. Similar trend was observed when the concentrations of pollutants were compared with values obtained for a typical foggy day each year in December. The levels of these pollutants observed during Diwali were found to be higher due to adverse meteorological conditions, i.e., decrease in 24 h average mixing height, temperature, and wind speed. The trend analysis shows that TSP, PM10, NO2, and SO2 concentration increased just before Diwali and reached to a maximum concentration on the day of the festival. The values gradually decreased after the festival. On Diwali day, 24-h values for TSP and PM10 in all the years from 2002 to 2007 and for NO2 in 2004 and 2007 were found to be higher than prescribed limits of National Ambient Air Quality Standards and exceptionally high (3.6 times) for PM10 in 2007. These results indicate that fireworks during the Diwali festival affected the ambient air quality adversely due to emission and accumulation of TSP, PM10, SO2, and NO2..

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