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Funded Projects › FP7

CITYZEN · megaCITY - Zoom for the ENvironment

FP7Status: CLOSED1 September 200831 August 2011EU funding €2,915,000

We will determine the air pollution distribution and change in and around hotspots over the last decade from extensive satellite and in-situ observations and we will employ a series of different scale models in order to analyze the impacts of air pollution hot spots on regional and global air quality including potential future changes for various climate scenarios. Focus is on ozone and particulate matter with chemical and physical characterization, and their precursors. The Eastern Mediterranean (Istanbul, Athens, Cairo), the Po Valley, the BeNeLux region, the Pearl River Delta in China (with megacities Guangzhou and Hong Kong) and the hot and polluted European summer 2003 are chosen for intensive case studies. The consortium includes groups from China, Turkey, Greece and Italy, in addition to France, Germany, UK and Norway, with experts on the observations, emission data and models. A set of chemical transport models which connect all the most important spatial and temporal scales will be developed and used to quantify how the observed air pollution arises. The models and emission inventories will be evaluated, errors identified and improved on the urban, regional and global spatial scales. Climate change may cause changes in air pollution in and around hotspots, and hotspot pollution can change precipitation and temperature/albedo. These feedbacks will be studied in scale-bridging model systems based on global climate model scenarios, and in a coupled high resolution chemistry-climate model. The model systems evaluated in the project will be applied to analyse mitigation options in and around hotpots, also taking into account climate change. Best available technologies and sectoral changes will be studied. Several partners have key roles in the technical underpinning of policy. They will ensure that the improved emission inventories, scale-bridging model systems and the systematic observational evidence will have a significant, broad and lasting impact.

Consortium · 16 organisations

coordinator

METEOROLOGISK INSTITUTT

NO · €400,000

participant

FORSCHUNGSZENTRUM JULICH GMBH

DE · €300,000

participant

INSTITUT NATIONAL DE L ENVIRONNEMENT INDUSTRIEL ET DES RISQUES - INERIS

FR · €250,000

participant

STIFTELSEN NILU

NO · €100,000

participant

PANEPISTIMIO KRITIS

EL · €200,000

participant

UNIVERSITAET BREMEN

DE · €350,000

participant

CAIRO UNIVERSITY

EG · €25,000

participant

CONSIGLIO NAZIONALE DELLE RICERCHE

IT · €225,000

participant

INTERNATIONALES INSTITUT FUER ANGEWANDTE SYSTEMANALYSE

AT · €100,000

participant

UNIVERSITETET I OSLO

NO · €150,000

participant

RHEINISCHES INSTITUT FUER UMWELT-FORSCHUNG AN DER UNIVERSITAET ZU KOELN E.V.

DE · €150,000

participant

ETHNIKO ASTEROSKOPEIO ATHINON

EL · €75,000

participant

UNIVERSITY OF LEICESTER

UK · €175,000

participant

CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS

FR · €175,000

participant

MIDDLE EAST TECHNICAL UNIVERSITY

TR · €120,000

participant

PEKING UNIVERSITY

CN · €120,000

Research fields

View the official record on CORDIS →

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