Links Between Carbon Monoxide and Climate Indices for the Southern Hemisphere and Tropical Fire Regions

被引:15
作者
Buchholz, R. R. [1 ]
Hammerling, D. [2 ]
Worden, H. M. [1 ]
Deeter, M. N. [1 ]
Emmons, L. K. [1 ]
Edwards, D. P. [1 ]
Monks, S. A. [3 ]
机构
[1] Natl Ctr Atmospher Res, Atmospher Chem Observat & Modeling Lab, POB 3000, Boulder, CO 80307 USA
[2] Natl Ctr Atmospher Res, Computat & Informat Syst Lab, POB 3000, Boulder, CO 80307 USA
[3] NOAA, Earth Syst Res Lab, Boulder, CO USA
基金
美国国家航空航天局; 加拿大自然科学与工程研究理事会; 美国国家科学基金会;
关键词
carbon monoxide; chemistry climate; statistical models; INTERANNUAL VARIABILITY; ATMOSPHERIC CHEMISTRY; ISOPRENE EMISSIONS; DIPOLE MODE; AIR-QUALITY; LAND-USE; EL-NINO; MOPITT; TROPOSPHERE; INSTRUMENT;
D O I
10.1029/2018JD028438
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
In the Southern Hemisphere and tropics, the main contribution to carbon monoxide (CO) variability is from fire emissions, which are connected to climate through the availability, type, and dryness of fuel. Here we assess the data-driven relationships between CO and climate, aiming to predict atmospheric loading during fire seasons. Observations of total column CO from the Measurements Of Pollution In The Troposphere satellite instrument are used to build a record of monthly anomalies between 2001 and 2016, focusing on seven biomass burning regions of the Southern Hemisphere and tropics. With the exception of 2015, the range of absolute variability in CO is similar between regions. We model CO anomalies in each of the regions using climate indices for the climate modes: El Nino-Southern Oscillation, Indian Ocean Dipole, Tropical South Atlantic, and Antarctic Oscillation. Stepwise forward and backward variable selection is used to choose from statistical regression models that use combinations of climate indices, at lag times between 1 and 8months relative to CO anomalies. The Bayesian information criterion selects models with the best predictive power. We find that all climate mode indices are required to model CO in each region, generally explaining over 50% of the variability and over 70% for tropical regions. First-order interaction terms of the climate modes are necessary, producing greatly improved explanation of CO variability over single terms. Predictive capability is assessed for the Maritime Southeast Asia and the predicted peak CO anomaly in 2015 is within 20% of the measurements.
引用
收藏
页码:9786 / 9800
页数:15
相关论文
共 74 条
[11]   Remote-sensing constraints on South America fire traits by Bayesian fusion of atmospheric and surface data [J].
Bloom, A. Anthony ;
Worden, John ;
Jiang, Zhe ;
Worden, Helen ;
Kurosu, Thomas ;
Frankenberg, Christian ;
Schimel, David .
GEOPHYSICAL RESEARCH LETTERS, 2015, 42 (04) :1268-1274
[12]   The human dimension of fire regimes on Earth [J].
Bowman, David M. J. S. ;
Balch, Jennifer ;
Artaxo, Paulo ;
Bond, William J. ;
Cochrane, Mark A. ;
D'Antonio, Carla M. ;
DeFries, Ruth ;
Johnston, Fay H. ;
Keeley, Jon E. ;
Krawchuk, Meg A. ;
Kull, Christian A. ;
Mack, Michelle ;
Moritz, Max A. ;
Pyne, Stephen ;
Roos, Christopher I. ;
Scott, Andrew C. ;
Sodhi, Navjot S. ;
Swetnam, Thomas W. .
JOURNAL OF BIOGEOGRAPHY, 2011, 38 (12) :2223-2236
[13]   Transport of carbon monoxide from the tropics to the extratropics [J].
Bowman, KP .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2006, 111 (D2)
[14]   Land-use and sustainability under intersecting global change and domestic policy scenarios: Trajectories for Australia to 2050 [J].
Bryan, Brett A. ;
Nolan, Martin ;
McKellar, Lisa ;
Connor, Jeffery D. ;
Newth, David ;
Harwood, Tom ;
King, Darran ;
Navarro, Javier ;
Cai, Yiyong ;
Gao, Lei ;
Grundy, Mike ;
Graham, Paul ;
Ernst, Andreas ;
Dunstall, Simon ;
Stock, Florian ;
Brinsmead, Thomas ;
Harman, Ian ;
Grigg, Nicola J. ;
Battaglia, Michael ;
Keating, Brian ;
Wonhas, Alex ;
Hatfield-Dodds, Steve .
GLOBAL ENVIRONMENTAL CHANGE-HUMAN AND POLICY DIMENSIONS, 2016, 38 :130-152
[15]   Source and meteorological influences on air quality (CO, CH4 & CO2) at a Southern Hemisphere urban site [J].
Buchholz, R. R. ;
Paton-Walsh, C. ;
Griffith, D. W. T. ;
Kubistin, D. ;
Caldow, C. ;
Fisher, J. A. ;
Deutscher, N. M. ;
Kettlewell, G. ;
Riggenbach, M. ;
Macatangay, R. ;
Krummel, P. B. ;
Langenfelds, R. L. .
ATMOSPHERIC ENVIRONMENT, 2016, 126 :274-289
[16]   Validation of MOPITT carbon monoxide using ground-based Fourier transform infrared spectrometer data from NDACC [J].
Buchholz, Rebecca R. ;
Deeter, Merritt N. ;
Worden, Helen M. ;
Gille, John ;
Edwards, David P. ;
Hannigan, James W. ;
Jones, Nicholas B. ;
Paton-Walsh, Clare ;
Griffith, David W. T. ;
Smale, Dan ;
Robinson, John ;
Strong, Kimberly ;
Conway, Stephanie ;
Sussmann, Ralf ;
Hase, Frank ;
Blumenstock, Thomas ;
Mahieu, Emmanuel ;
Langerock, Bavo .
ATMOSPHERIC MEASUREMENT TECHNIQUES, 2017, 10 (05) :1927-1956
[17]  
Chen Y, 2013, CARBON MANAG, V4, P617, DOI [10.4155/cmt.13.61, 10.4155/CMT.13.61]
[18]   A new method for measuring the rotational accuracy of rolling element bearings [J].
Chen, Ye ;
Zhao, Xiangsong ;
Gao, Weiguo ;
Hu, Gaofeng ;
Zhang, Shizhen ;
Zhang, Dawei .
REVIEW OF SCIENTIFIC INSTRUMENTS, 2016, 87 (12)
[19]   The importance of interacting climate modes on Australia's contribution to global carbon cycle extremes [J].
Cleverly, James ;
Eamus, Derek ;
Luo, Qunying ;
Coupe, Natalia Restrepo ;
Kljun, Natascha ;
Ma, Xuanlong ;
Ewenz, Cacilia ;
Li, Longhui ;
Yu, Qiang ;
Huete, Alfredo .
SCIENTIFIC REPORTS, 2016, 6
[20]  
Costafreda-Aumedes S, 2017, INT J WILDLAND FIRE, V26, P983, DOI [10.1071/WF17026, 10.1071/wf17026]