On the magnitude of positive feedback between future climate change and the carbon cycle

被引:156
作者
Dufresne, JL
Friedlingstein, P
Berthelot, M
Bopp, L
Ciais, P
Fairhead, L
Le Treut, H
Monfray, P
机构
[1] Univ Paris 06, LMD, IPSL, F-75252 Paris 05, France
[2] IPSL, LSCE, F-91191 Gif Sur Yvette, France
关键词
D O I
10.1029/2001GL013777
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
[1] We use an ocean-atmosphere general circulation model coupled to land and ocean carbon models to simulate the evolution of climate and atmospheric CO2 from 1860 to 2100. Our model reproduces the observed global mean temperature changes and the growth rate of atmospheric CO2 for the period 1860-2000. For the future, we simulate that the climate change due to CO2 increase will reduce the land carbon uptake, leaving a larger fraction of anthropogenic CO2 in the atmosphere. By 2100, we estimate that atmospheric CO2 will be 18% higher due to the climate change impact on the carbon cycle. Such a positive feedback has also been found by Cox et al. [2000]. However, the amplitude of our feedback is three times smaller than the one they simulated. We show that the partitioning between carbon stored in the living biomass or in the soil, and their respective sensitivity to increased CO2 and climate change largely explain this discrepancy.
引用
收藏
页码:43 / 1
页数:4
相关论文
共 19 条
[1]   A 1 degrees x1 degrees distribution of carbon dioxide emissions from fossil fuel consumption and cement manufacture, 1950-1990 [J].
Andres, RJ ;
Marland, G ;
Fung, I ;
Matthews, E .
GLOBAL BIOGEOCHEMICAL CYCLES, 1996, 10 (03) :419-429
[2]   Nutrient trapping in the equatorial Pacific: The ocean circulation solution [J].
Aumont, O ;
Orr, JC ;
Monfray, P ;
Madec, G ;
Maier-Reimer, E .
GLOBAL BIOGEOCHEMICAL CYCLES, 1999, 13 (02) :351-369
[3]   Global carbon sinks and their variability inferred from atmospheric O2 and δ13C [J].
Battle, M ;
Bender, ML ;
Tans, PP ;
White, JWC ;
Ellis, JT ;
Conway, T ;
Francey, RJ .
SCIENCE, 2000, 287 (5462) :2467-2470
[4]   Potential impact of climate change on marine export production [J].
Bopp, L ;
Monfray, P ;
Aumont, O ;
Dufresne, JL ;
Le Treut, H ;
Madec, G ;
Terray, L ;
Orr, JC .
GLOBAL BIOGEOCHEMICAL CYCLES, 2001, 15 (01) :81-99
[5]   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
[6]   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
[7]   Net primary production of a forest ecosystem with experimental CO2 enrichment [J].
DeLucia, EH ;
Hamilton, JG ;
Naidu, SL ;
Thomas, RB ;
Andrews, JA ;
Finzi, AC ;
Lavine, M ;
Matamala, R ;
Mohan, JE ;
Hendrey, GR ;
Schlesinger, WH .
SCIENCE, 1999, 284 (5417) :1177-1179
[8]   Natural and anthropogenic changes in atmospheric CO2 over the last 1000 years from air in Antarctic ice and firn [J].
Etheridge, DM ;
Steele, LP ;
Langenfelds, RL ;
Francey, RJ ;
Barnola, JM ;
Morgan, VI .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1996, 101 (D2) :4115-4128
[9]   ON THE CONTRIBUTION OF CO2 FERTILIZATION TO THE MISSING BIOSPHERIC SINK [J].
FRIEDLINGSTEIN, P ;
FUNG, I ;
HOLLAND, E ;
JOHN, J ;
BRASSEUR, G ;
ERICKSON, D ;
SCHIMEL, D .
GLOBAL BIOGEOCHEMICAL CYCLES, 1995, 9 (04) :541-556
[10]   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