The sensitivity of the CHIMERE model to emissions reduction scenarios on air quality in Northern Italy

被引:43
作者
de Meij, A. [1 ]
Thunis, P. [1 ]
Bessagnet, B. [2 ]
Cuvelier, C. [1 ]
机构
[1] DG Joint Res Ctr, Inst Environm & Sustainabil, I-21020 Ispra, Italy
[2] Inst Natl Environm Ind & Risques, INERIS, F-60550 Verneuil En Halatte, France
关键词
Emission scenarios; Particulate matter; Ozone; SECONDARY ORGANIC AEROSOL; CHEMISTRY-TRANSPORT MODELS; EUROPEAN CITIES; AREA; CITYDELTA; POLLUTION;
D O I
10.1016/j.atmosenv.2008.12.036
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The sensitivity of the CHIMERE model to emission reduction scenarios an particulate matter PM2.5 and ozone (O-3) in Northern Italy is studied. The emissions of NOx, PM2.5 SO2, VOC or NH3 were reduced by 50% for different source sectors for the Lombardy region, together with 5 additional scenarios to estimate the effect of local measures on improving the air quality for the Po valley area. Firstly. we evaluate the model performance by comparing calculated surface aerosol concentrations for the standard case (no emission reductions) with observations for January and June 2005. Calculated monthly mean PM10 concentrations are in general underestimated. For June, modelled PM10 concentrations slightly overestimate the measurements. Calculated monthly mean SO4, NO3, NH4 concentrations are in good agreement with the observations for January and June. Secondly, the model sensitivity of emission reduction scenarios on PM2.5 and O-3 calculated concentrations for the Po valley area is evaluated. The most effective scenarios to abate PM2.5 concentration are based on the SNAP2 (non-industrial combustion plants) and SNAP7 (road traffic) sectors, for which the NOx and PM2.5 emissions are reduced by 50%. The number of days that the 2015 PM2.5 limit value of 25 mu g m (3) in Milan is exceeded by reducing primary PM2.5 and NOx emissions for SNAP2 and 7 by 50%, does not change in January when compared to the standard case for the Milan area. It appears that 40% of the PM2.5 concentration in the greater Milan area is caused by the emissions surrounding the Lombardy region and from the model boundary conditions. This study also showed that a more effective pollutant reduction (emissions) per ton of pollutant reduced (concentrations) for the greater Milan area is obtained by reducing the primary PM2.5 emissions for SNAP7 by 50%. The most effective scenario on PM2.5 decrease for which precursor emissions are reduced is achieved by reducing SO2 emissions by 50% for SNAP7. Our study showed that during summer time, the largest reductions in 03 concentrations are achieved for SNAP7 emission reductions, when volatile organic compounds (VOCs) are reduced by 50%, (C) 2008 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1897 / 1907
页数:11
相关论文
共 49 条
[1]  
*AG PROT AMB SERV, 2006, RAPP TECN APPL MOD B
[2]  
AMANN M, 2005, 7 CAFE SCEN
[3]  
AMBIENTE G, 2002, INVENTARIO EMISSIONI
[4]  
[Anonymous], THESIS U UTRECHT
[5]  
[Anonymous], 1994, DESCRIPTION 5 GENERA, DOI DOI 10.5065/D60Z716B
[6]  
ARDEN P, 2006, J AIR WASTE MANAGE, V56, P709
[7]  
AYRES JG, 2006, CARDIOVASCULER DIS A
[8]  
BESSAGNET B, 2004, ATMOS ENV, V38
[9]   THE PIECEWISE PARABOLIC METHOD (PPM) FOR GAS-DYNAMICAL SIMULATIONS [J].
COLELLA, P ;
WOODWARD, PR .
JOURNAL OF COMPUTATIONAL PHYSICS, 1984, 54 (01) :174-201
[10]   CityDelta: A model intercomparison study to explore the impact of emission reductions in European cities in 2010 [J].
Cuvelier, C. ;
Thunis, P. ;
Vautard, R. ;
Amann, M. ;
Bessagnet, B. ;
Bedogni, M. ;
Berkowicz, R. ;
Brandt, J. ;
Brocheton, F. ;
Builtjes, P. ;
Carnavale, C. ;
Coppalle, A. ;
Denby, B. ;
Douros, J. ;
Graf, A. ;
Hellmuth, O. ;
Hodzic, A. ;
Honore, C. ;
Jonson, J. ;
Kerschbaumer, A. ;
de Leeuw, F. ;
Minguzzi, E. ;
Moussiopoulos, N. ;
Pertot, C. ;
Peuch, V. H. ;
Pirovano, G. ;
Rouil, L. ;
Sauter, F. ;
Schaap, M. ;
Stern, R. ;
Tarrason, L. ;
Vignati, E. ;
Volta, M. ;
White, L. ;
Wind, P. ;
Zuber, A. .
ATMOSPHERIC ENVIRONMENT, 2007, 41 (01) :189-207