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      Trends in peroxyacetyl nitrate (PAN) in the upper troposphere and lower stratosphere over southern Asia during the summer monsoon season: regional impacts

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          Abstract

          <p><strong>Abstract.</strong> We analyze temporal trends of peroxyacetyl nitrate (PAN) retrievals from the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS) during 2002–2011 in the altitude range 8–23 km over the Asian summer monsoon (ASM) region. The greatest enhancements of PAN mixing ratios in the upper troposphere and lower stratosphere (UTLS) are seen during the summer monsoon season from June to September. During the monsoon season, the mole fractions of PAN show statistically significant (at 2σ) positive trends from 0.2 ± 0.05 to 4.6 ± 3.1 ppt yr<sup>−1</sup> (except between 12 and 14 km) which is higher than the annual mean trends of 0.1 ± 0.05 to 2.7 ± 0.8 ppt yr<sup>−1</sup>. These rising concentrations point to increasing NO<sub>x</sub> (= NO + NO2) and volatile organic compound (VOC) emissions from developing nations in Asia, notably India and China. <br><br> We analyze the influence of monsoon convection on the distribution of PAN in UTLS with simulations using the global chemistry–climate model ECHAM5-HAMMOZ. During the monsoon, transport into the UTLS over the Asian region primarily occurs from two convective zones, one the South China Sea and the other over the southern flank of the Himalayas. <br><br> India and China host NO<sub>x</sub>-limited regimes for ozone photochemical production, and thus we use the model to evaluate the contributions from enhanced NO<sub>x</sub> emissions to the changes in PAN, HNO<sub>3</sub> and O<sub>3</sub> concentrations in the UTLS. From a set of sensitivity experiments with emission changes in particular regions, it can be concluded that Chinese emissions have a greater impact on the concentrations of these species than Indian emissions. According to SCanning Imaging Absorption SpectroMeter for Atmospheric CHartographY (SCIAMACHY) NO<sub>2</sub> retrievals NO<sub>x</sub> emissions increases over India have been about half of those over China between 2002 and 2011.</p>

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          The aerosol-climate model ECHAM5-HAM

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            An Asian emission inventory of anthropogenic emission sources for the period 1980–2020

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              A global simulation of tropospheric ozone and related tracers: Description and evaluation of MOZART, version 2

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                Author and article information

                Journal
                Atmospheric Chemistry and Physics
                Atmos. Chem. Phys.
                Copernicus GmbH
                1680-7324
                2014
                December 04 2014
                : 14
                : 23
                : 12725-12743
                Article
                10.5194/acp-14-12725-2014
                0858cac6-6003-49c6-92c8-e68a4aeb2f53
                © 2014

                https://creativecommons.org/licenses/by/3.0/

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