共 50 条
Potential strong contribution of future anthropogenic land-use and land-cover change to the terrestrial carbon cycle
被引:48
|作者:
Quesada, Benjamin
[1
]
Arneth, Almut
[1
]
Robertson, Eddy
[2
]
de Noblet-Ducoudre, Nathalie
[3
]
机构:
[1] Karlsruhe Inst Technol, Inst Meteorol & Climate Res, Atmospher Environm Res, D-82467 Garmisch Partenkirchen, Germany
[2] Met Off Hadley Ctr, Exeter, Devon, England
[3] Univ Paris Saclay, Unite Mixte CEA CNRS UVSQ, IPSL, LSCE, F-91191 Gif Sur Yvette, France
来源:
ENVIRONMENTAL RESEARCH LETTERS
|
2018年
/
13卷
/
06期
关键词:
carbon cycle;
attribution;
land cover changes;
deforestation;
greening;
land carbon storage;
Earth system model;
ATMOSPHERIC CO2;
CLIMATE;
EARTH;
EMISSIONS;
MODELS;
SEQUESTRATION;
UNCERTAINTY;
PROJECTIONS;
ECOSYSTEMS;
RESPONSES;
D O I:
10.1088/1748-9326/aac4c3
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
Anthropogenic land-use and land cover changes (LULCC) affect global climate and global terrestrial carbon (C) cycle. However, relatively few studies have quantified the impacts of future LULCC on terrestrial carbon cycle. Here, using Earth system model simulations performed with and without future LULCC, under the RCP8.5 scenario, we find that in response to future LULCC, the carbon cycle is substantially weakened: browning, lower ecosystem C stocks, higher C loss by disturbances and higher C turnover rates are simulated. Projected global greening and land C storage are dampened, in all models, by 22% and 24% on average and projected C loss by disturbances enhanced by similar to 49% when LULCC are taken into account. By contrast, global net primary productivity is found to be only slightly affected by LULCC (robust + 4% relative enhancement compared to all forcings, on average). LULCC is projected to be a predominant driver of future C changes in regions like South America and the southern part of Africa. LULCC even cause some regional reversals of projected increased C sinks and greening, particularly at the edges of the Amazon and African rainforests. Finally, in most carbon cycle responses, direct removal of C dominates over the indirect CO2 fertilization due to LULCC. In consequence, projections of land C sequestration potential and Earth's greening could be substantially overestimated just because of not fully accounting for LULCC.
引用
收藏
页数:11
相关论文