Strong carbon cycle feedbacks in a climate model with interactive CO2 and sulphate aerosols -: art. no. 1479

被引:79
作者
Jones, CD [1 ]
Cox, PM [1 ]
Essery, RLH [1 ]
Roberts, DL [1 ]
Woodage, MJ [1 ]
机构
[1] Meteorol Off, Hadley Ctr, Bracknell RG12 2SY, Berks, England
关键词
D O I
10.1029/2003GL016867
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
[1] Carbon cycle feedbacks are a significant source of uncertainty in climate change projections, with the potential for strong positive feedbacks to accelerate the rate of anthropogenic global warming during the 21st century. A climate change experiment is presented which uses a General Circulation Model (GCM) in which both interactive carbon and sulphur cycles have been included for the first time, along with the natural climate forcings due to solar changes and volcanic aerosol. These extra climate forcing factors have a significant impact on both 20th century climate change and the contemporary land and ocean carbon sinks. The additional forcings act to delay by more than a decade the conversion of the land carbon sink to a source, but ultimately result in a more abrupt rate of CO2 increase with the land carbon source ( which reaches 7 GtC yr(-1) by 2100) exceeding the ocean carbon sink ( which saturates at 5 GtC yr(-1) by 2100) beyond about 2080.
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页数:4
相关论文
共 28 条
[1]  
Cox, 2001, 24 HADL CTR MET OFF
[2]   Acceleration of global warming due to carbon-cycle feedbacks in a coupled climate model [J].
Cox, PM ;
Betts, RA ;
Jones, CD ;
Spall, SA ;
Totterdell, IJ .
NATURE, 2000, 408 (6809) :184-187
[3]   A canopy conductance and photosynthesis model for use in a GCM land surface scheme [J].
Cox, PM ;
Huntingford, C ;
Harding, RJ .
JOURNAL OF HYDROLOGY, 1998, 212 (1-4) :79-94
[4]  
COX PM, 2001, METEOROLOGY MILLENNI
[5]   Global response of terrestrial ecosystem structure and function to CO2 and climate change:: results from six dynamic global vegetation models [J].
Cramer, W ;
Bondeau, A ;
Woodward, FI ;
Prentice, IC ;
Betts, RA ;
Brovkin, V ;
Cox, PM ;
Fisher, V ;
Foley, JA ;
Friend, AD ;
Kucharik, C ;
Lomas, MR ;
Ramankutty, N ;
Sitch, S ;
Smith, B ;
White, A ;
Young-Molling, C .
GLOBAL CHANGE BIOLOGY, 2001, 7 (04) :357-373
[6]   Global warming and tropical land-use change: Greenhouse gas emissions from biomass burning, decomposition and soils in forest conversion, shifting cultivation and secondary vegetation [J].
Fearnside, PM .
CLIMATIC CHANGE, 2000, 46 (1-2) :115-158
[7]   Positive feedback between future climate change and the carbon cycle [J].
Friedlingstein, P ;
Bopp, L ;
Ciais, P ;
Dufresne, JL ;
Fairhead, L ;
LeTreut, H ;
Monfray, P ;
Orr, J .
GEOPHYSICAL RESEARCH LETTERS, 2001, 28 (08) :1543-1546
[8]   The simulation of SST, sea ice extents and ocean heat transports in a version of the Hadley Centre coupled model without flux adjustments [J].
Gordon, C ;
Cooper, C ;
Senior, CA ;
Banks, H ;
Gregory, JM ;
Johns, TC ;
Mitchell, JFB ;
Wood, RA .
CLIMATE DYNAMICS, 2000, 16 (2-3) :147-168
[9]   Towards robust regional estimates of CO2 sources and sinks using atmospheric transport models [J].
Gurney, KR ;
Law, RM ;
Denning, AS ;
Rayner, PJ ;
Baker, D ;
Bousquet, P ;
Bruhwiler, L ;
Chen, YH ;
Ciais, P ;
Fan, S ;
Fung, IY ;
Gloor, M ;
Heimann, M ;
Higuchi, K ;
John, J ;
Maki, T ;
Maksyutov, S ;
Masarie, K ;
Peylin, P ;
Prather, M ;
Pak, BC ;
Randerson, J ;
Sarmiento, J ;
Taguchi, S ;
Takahashi, T ;
Yuen, CW .
NATURE, 2002, 415 (6872) :626-630
[10]   Anthropogenic climate change for 1860 to 2100 simulated with the HadCM3 model under updated emissions scenarios [J].
Johns, TC ;
Gregory, JM ;
Ingram, WJ ;
Johnson, CE ;
Jones, A ;
Lowe, JA ;
Mitchell, JFB ;
Roberts, DL ;
Sexton, DMH ;
Stevenson, DS ;
Tett, SFB ;
Woodage, MJ .
CLIMATE DYNAMICS, 2003, 20 (06) :583-612