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Multi-model evaluation of short-lived pollutant distributions over east Asia during summer 2008

Authors :
Quennehen, B.
Raut, J.-C.
Law, K. S.
Daskalakis, N.
Ancellet, G.
Clerbaux, C.
Kim, S.-W.
Lund, M. T.
Myhre, G.
Olivié, D. J. L.
Safieddine, S.
Skeie, R. B.
Thomas, J. L.
Tsyro, S.
Bazureau, A.
Bellouin, N.
Hu, M.
Kanakidou, M.
Klimont, Z.
Kupiainen, K.
Myriokefalitakis, S.
Quaas, J.
Rumbold, S. T.
Schulz, M.
Cherian, R.
Shimizu, A.
Wang, J.
Yoon, S.-C.
Zhu, T.
Quennehen, B.
Raut, J.-C.
Law, K. S.
Daskalakis, N.
Ancellet, G.
Clerbaux, C.
Kim, S.-W.
Lund, M. T.
Myhre, G.
Olivié, D. J. L.
Safieddine, S.
Skeie, R. B.
Thomas, J. L.
Tsyro, S.
Bazureau, A.
Bellouin, N.
Hu, M.
Kanakidou, M.
Klimont, Z.
Kupiainen, K.
Myriokefalitakis, S.
Quaas, J.
Rumbold, S. T.
Schulz, M.
Cherian, R.
Shimizu, A.
Wang, J.
Yoon, S.-C.
Zhu, T.
Publication Year :
2016

Abstract

The ability of seven state-of-the-art chemistry–aerosol models to reproduce distributions of tropospheric ozone and its precursors, as well as aerosols over eastern Asia in summer 2008, is evaluated. The study focuses on the performance of models used to assess impacts of pollutants on climate and air quality as part of the EU ECLIPSE project. Models, run using the same ECLIPSE emissions, are compared over different spatial scales to in situ surface, vertical profiles and satellite data. Several rather clear biases are found between model results and observations, including overestimation of ozone at rural locations downwind of the main emission regions in China, as well as downwind over the Pacific. Several models produce too much ozone over polluted regions, which is then transported downwind. Analysis points to different factors related to the ability of models to simulate VOC-limited regimes over polluted regions and NOx limited regimes downwind. This may also be linked to biases compared to satellite NO2, indicating overestimation of NO2 over and to the north of the northern China Plain emission region. On the other hand, model NO2 is too low to the south and west of this region and over South Korea/Japan. Overestimation of ozone is linked to systematic underestimation of CO particularly at rural sites and downwind of the main Chinese emission regions. This is likely to be due to enhanced destruction of CO by OH. Overestimation of Asian ozone and its transport downwind implies that radiative forcing from this source may be overestimated. Model-observation discrepancies over Beijing do not appear to be due to emission controls linked to the Olympic Games in summer 2008. With regard to aerosols, most models reproduce the satellite-derived AOD patterns over eastern China. Our study nevertheless reveals an overestimation of ECLIPSE model mean surface BC and sulphate aerosols in urban China in summer 2008. The effect of the short-term emission mitigation in Beijing

Details

Database :
OAIster
Notes :
text, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1028052522
Document Type :
Electronic Resource