Literature DB >> 17286178

Assessing spatial occurrence of ground level ozone around coal mining areas of Chandrapur District, Maharashtra, India.

Pradeep R Salve1, Deepty Ranjan Satapathy, Yashwant B Katpatal, Satish R Wate.   

Abstract

Stratospheric input and photochemical ozone formation in the troposphere are the two main sources determining the ozone levels in the surface layer of the atmosphere. Because of the importance of ozone in controlling the atmospheric chemistry and its decisive role in the heat balance of atmosphere, leading to climate change, the examination of its formation and destruction are of great interest. This study characterized the distribution of Ground level Ozone (GLO) in Chandrapur district is lying between 19 degrees 25'N to 20 degrees 45'N and 78 degrees 50'E to 80 degrees 10'E. Continuous ozone analyzer was used to quantify GLO at thirteen locations fixed by Global Positioning System (GPS) during the winter of 2005-2006. The daily GLO at all the locations ranged between 6.4 and 24.8 ppbv with an average and standard deviation of 14.9 +/- 6.5 ppbv. The maximum and minimum concentration occurs during 1300-1600 h and 0300-0500 h may be due to high solar radiation facilitating photochemical production of O(3) and downward mixing from the overlying air mass and in situ destruction of ozone by deposition and/or the reaction between O(3) and NO. GIS based spatial distribution of GLO in Chandrapur district is indicates that the central core of the district and southern sites experienced elevated levels of GLO relative to the northern and western areas. The sites near by Chandrapur city are particularly affected by elevated GLO. The average variation of GLO with temperature shows a significant correlation of r = 0.55 indicating a direct relationship between GLO and temperature. Similarly an attempt has been made to compare the GLO monitored data in Chandrapur district with the reported values for other locations in Indian cities. This generated database helps regulatory agencies to identify locations where the natural resources and human health could be at risk.

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Year:  2007        PMID: 17286178     DOI: 10.1007/s10661-006-9562-5

Source DB:  PubMed          Journal:  Environ Monit Assess        ISSN: 0167-6369            Impact factor:   2.513


  2 in total

1.  Assessment of ozone variations and meteorological effects in an urban area in the Mediterranean Coast.

Authors:  C Dueñas; M C Fernández; S Cañete; J Carretero; E Liger
Journal:  Sci Total Environ       Date:  2002-11-01       Impact factor: 7.963

2.  Photochemical oxidants: state of the science.

Authors:  D Kley; M Kleinmann; H Sanderman; S Krupa
Journal:  Environ Pollut       Date:  1999       Impact factor: 8.071

  2 in total

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