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Estimation of NOx emissions from Delhi using Car MAX-DOAS observations and comparison with OMI satellite data.

Authors :
Shaiganfar, R.
Beirle, S.
Sharma, M.
Chauhan, A.
Singh, R. P.
Wagner, T.
Source :
Atmospheric Chemistry & Physics; 2011, Vol. 11 Issue 21, p10871-10887, 17p
Publication Year :
2011

Abstract

We present the first Multi-Axis-(MAX-) DOAS observations in India performed during April 2010 and January 2011 in Delhi and nearby regions. The MAX-DOAS instrument was mounted on a car roof, which allowed us to perform measurements along individual driving routes. From car MAX-DOAS observations along closed circles around Delhi, together with information on wind speed and direction, the NO<subscript>x</subscript> emissions from the greater Delhi area were determined: our estimate of 4.4 x 10<superscript>25</superscript> molecules s<superscript>-1</superscript> is found to be slightly lower than the corresponding emission estimates using the EDGAR emission inventory and substantially smaller compared to a recent study by Gurjar et al. (2004). We also determined NO<subscript>x</subscript> emissions from Delhi using OMI satellite observations on the same days. These emissions are slightly smaller than those from the car MAXDOAS measurements. Finally the car MAX-DOAS observations were also used for the validation of simultaneous OMI satellite measurements of the tropospheric NO<subscript>2</subscript> VCD and found a good agreement of the spatial patterns. Concerning the absolute values, OMI data are, on average, higher than the car MAX-DOAS observations close to strong emission sources, and vice versa over less polluted regions. Our results indicate that OMI NO<subscript>2</subscript> VCDs are biased low over strongly polluted regions, probably caused by inadequate apriori profiles used in the OMI satellite retrieval. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16807316
Volume :
11
Issue :
21
Database :
Complementary Index
Journal :
Atmospheric Chemistry & Physics
Publication Type :
Academic Journal
Accession number :
70316899
Full Text :
https://doi.org/10.5194/acp-11-10871-2011