Photochemical model evaluation of 2013 California wild fire air quality impacts using surface, aircraft, and satellite data

被引:37
作者
Baker, K. R. [1 ]
Woody, M. C. [1 ]
Valin, L. [1 ]
Szykman, J. [2 ]
Yates, E. L. [3 ]
Iraci, L. T. [3 ]
Choi, H. D. [4 ]
Soja, A. J. [4 ]
Koplitz, S. N. [1 ]
Zhou, L. [1 ]
Campuzano-Jost, Pedro [5 ]
Jimenez, Jose L. [5 ]
Hair, J. W. [6 ]
机构
[1] US EPA, Res Triangle Pk, NC 27711 USA
[2] US EPA, Hampton, VA USA
[3] NASA, Ames Res Ctr, Moffett Field, CA 94035 USA
[4] NASA, Natl Inst Aerosp, Langley Res Ctr, Hampton, VA USA
[5] Univ Colorado, CIRES, Dept Chem & Biochem, Boulder, CO 80309 USA
[6] NASA, Langley Res Ctr, Hampton, VA 23665 USA
关键词
Wildfire; CMAQ; Ozone; PM2.5; Lidar; AOD; SEAC4RS; AIRBORNE MEASUREMENTS; REACTIVE NITROGEN; SMOKE EMISSIONS; ORGANIC AEROSOL; US; EVOLUTION; OZONE; RESOLUTION; IMPLEMENTATION; SEAC(4)RS;
D O I
10.1016/j.scitotenv.2018.05.048
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The Rim Fire was one of the largest wildfires in California history, burning over 250,000 acres during August and September 2013 affecting air quality locally and regionally in the western U.S. Routine surface monitors, remotely sensed data, and aircraft based measurements were used to assess how well the Community Multiscale Air Quality (CMAQ) photochemical grid model applied at 4 and 12 km resolution represented regional plume transport and chemical evolution during this extreme wildland fire episode. Impacts were generally similar at both grid resolutions although notable differences were seen in some secondary pollutants (e.g., formaldehyde and peroxyacyl nitrate) near the Rim fire. The modeling system does well at capturing near-fire to regional scale smoke plume transport compared to remotely sensed aerosol optical depth (AOD) and aircraft transect measurements. Plume rise for the Rim fire was well characterized as the modeled plume top was consistent with remotely sensed data and the altitude of aircraft measurements, which were typically made at the top edge of the plume. Aircraft-based lidar suggests O-3 downwind in the Rim fire plume was vertically stratified and tended to be higher at the plume top, while CMAQ estimated a more uniformly mixed column of O-3. Predicted wildfire ozone (O-3) was overestimated both at the plume top and at nearby rural and urban surface monitors. Photolysis rates were well characterized by the model compared with aircraft measurements meaning aerosol attenuation was reasonably estimated and unlikely contributing to O-3 overestimates at the top of the plume. Organic carbon was underestimated close to the Rim fire compared to aircraft data, but was consistent with nearby surface measurements. Periods of elevated surface PM2.5 at rural monitors near the Rim fire were not usually coincident with elevated O-3. Published by Elsevier B.V.
引用
收藏
页码:1137 / 1149
页数:13
相关论文
共 69 条
[11]   Examining photolysis rates with a prototype Online photolysis module in CMAQ [J].
Binkowski, Francis S. ;
Arunachalam, Saravanan ;
Adelman, Zachariah ;
Pinto, Joseph P. .
JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY, 2007, 46 (08) :1252-1256
[12]   Fifteen-Year Global Time Series of Satellite-Derived Fine Particulate Matter [J].
Boys, B. L. ;
Martin, R. V. ;
van Donkelaar, A. ;
MacDonell, R. J. ;
Hsu, N. C. ;
Cooper, M. J. ;
Yantosca, R. M. ;
Lu, Z. ;
Streets, D. G. ;
Zhang, Q. ;
Wang, S. W. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2014, 48 (19) :11109-11118
[13]   Simulating reactive nitrogen, carbon monoxide, and ozone in California during ARCTAS-CARB 2008 with high wildfire activity [J].
Cai, Chenxia ;
Kulkarni, Sarika ;
Zhao, Zhan ;
Kaduwela, Ajith P. ;
Avise, Jeremy C. ;
DaMassa, John A. ;
Singh, Hanwant B. ;
Weinheimer, Andrew J. ;
Cohen, Ronald C. ;
Diskin, Glenn S. ;
Wennberg, Paul ;
Dibb, Jack E. ;
Huey, Greg ;
Wisthaler, Armin ;
Jimenez, Jose L. ;
Cubison, Michael J. .
ATMOSPHERIC ENVIRONMENT, 2016, 128 :28-44
[14]  
CAL FIRE, 2013, AM FIR INC INF
[15]   Model Representation of Secondary Organic Aerosol in CMAQv4.7 [J].
Carlton, Annmarie G. ;
Bhave, Prakash V. ;
Napelenok, Sergey L. ;
Edney, Edward D. ;
Sarwar, Golam ;
Pinder, Robert W. ;
Pouliot, George A. ;
Houyoux, Marc .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2010, 44 (22) :8553-8560
[16]   Effects of aging on organic aerosol from open biomass burning smoke in aircraft and laboratory studies [J].
Cubison, M. J. ;
Ortega, A. M. ;
Hayes, P. L. ;
Farmer, D. K. ;
Day, D. ;
Lechner, M. J. ;
Brune, W. H. ;
Apel, E. ;
Diskin, G. S. ;
Fisher, J. A. ;
Fuelberg, H. E. ;
Hecobian, A. ;
Knapp, D. J. ;
Mikoviny, T. ;
Riemer, D. ;
Sachse, G. W. ;
Sessions, W. ;
Weber, R. J. ;
Weinheimer, A. J. ;
Wisthaler, A. ;
Jimenez, J. L. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2011, 11 (23) :12049-12064
[17]   Field-deployable, high-resolution, time-of-flight aerosol mass spectrometer [J].
DeCarlo, Peter F. ;
Kimmel, Joel R. ;
Trimborn, Achim ;
Northway, Megan J. ;
Jayne, John T. ;
Aiken, Allison C. ;
Gonin, Marc ;
Fuhrer, Katrin ;
Horvath, Thomas ;
Docherty, Kenneth S. ;
Worsnop, Doug R. ;
Jimenez, Jose L. .
ANALYTICAL CHEMISTRY, 2006, 78 (24) :8281-8289
[18]   Evolution of Asian aerosols during transpacific transport in INTEX-B [J].
Dunlea, E. J. ;
DeCarlo, P. F. ;
Aiken, A. C. ;
Kimmel, J. R. ;
Peltier, R. E. ;
Weber, R. J. ;
Tomlinson, J. ;
Collins, D. R. ;
Shinozuka, Y. ;
McNaughton, C. S. ;
Howell, S. G. ;
Clarke, A. D. ;
Emmons, L. K. ;
Apel, E. C. ;
Pfister, G. G. ;
van Donkelaar, A. ;
Martin, R. V. ;
Millet, D. B. ;
Heald, C. L. ;
Jimenez, J. L. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2009, 9 (19) :7257-7287
[19]  
Emery C., 2015, Improvements to CAMx Snow Cover Treatments and Carbon Bond Chemical Mechanism for Winter Ozone
[20]   A framework for expanding aqueous chemistry in the Community Multiscale Air Quality (CMAQ) model version 5.1 [J].
Fahey, Kathleen M. ;
Carlton, Annmarie G. ;
Pye, Havala O. T. ;
Baek, Jaemeen ;
Hutzell, William T. ;
Stanier, Charles O. ;
Baker, Kirk R. ;
Appel, K. Wyat ;
Jaoui, Mohammed ;
Offenberg, John H. .
GEOSCIENTIFIC MODEL DEVELOPMENT, 2017, 10 (04) :1587-1605