Peatlands and the global Carbon cycle during the past millennium: a global assessment using observations and models
Peatlands and the global Carbon cycle during the past millennium: a global assessment using observations and models
批准号:
NE/I012915/1
负责人:
Dan Charman
金额:
$51.14万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2011
资助国家:
英国
项目状态:
已结题
起止时间:
2011 至 --
中文摘要
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英文摘要
Future climate change is one of the most challenging issues facing humankind and an enormous research effort is directed at attempting to construct realistic projections of 21st century climate based on underlying assumptions about greenhouse gas emissions. Climate models now include many of the components of the earth system that influence climate over a range of timescales. Understanding and quantifying earth system processes is vital to projections of future climate change because many processes provide 'feedbacks' to climate change, either reinforcing upward trends in greenhouse gas concentrations and temperature (positive feedbacks) or sometimes damping them (negative feedbacks). One key feedback loop is formed by the global carbon cycle, part of which is the terrestrial carbon cycle. As carbon dioxide concentrations and temperatures rise, carbon sequestration by plants increases but at the same time, increasing temperatures lead to increased decay of dead plant material in soils. Carbon cycle models suggest that the balance between these two effects will lead to a strong positive feedback, but there is a very large uncertainty associated with this finding and this process represents one of the biggest unknowns in future climate change projections. In order to reduce these uncertainties, models need to be validated against data such as records for the past millennium. Furthermore, it is extremely important to make sure that the models are providing a realistic representation of the global carbon cycle and include all its major component parts. Current models exclude any consideration of the reaction of peatlands to climate change, even though these ecosystems contain almost as much carbon as the global atmosphere and are potentially sensitive to climate variability. On the one hand, increased warmth may increase respiration and decay of peat and on the other hand, even quite small increases in productivity may compensate for this or even exceed it in high latitude peatlands. A further complication is that peatlands emit quite large quantities of methane, another powerful greenhouse gas. Our proposed project aims to assess the contribution of peatlands to the global carbon cycle over the past 1000 years by linking together climate data and climate model output with models that simulate the distribution and growth of peatlands on a global scale. The models will also estimate changes in methane emissions from peatlands. In particular, we will test the hypotheses that warmth leads to lower rates of carbon accumulation and that this means that globally, peatlands will sequester less carbon in future than they do now. We will also test whether future climate changes lead to a positive or negative feedback from peatland methane emissions. To determine how well our models can simulate the peatland-climate links, we will test the model output for the last millennium against fossil data of peat growth rates and hydrological changes (related to methane emissions). To do this, we will assemble a large database of published information but also new data acquired in collaboration with partners from other research organisations around the world who are involved in collecting information and samples that we can make use of once we undertake some additional dating and analyses. Once the model has been evaluated against the last millennium data, we will make projections of the future changes in the global carbon cycle that may occur as a result of future climate change. This will provide a strong basis for making a decision on the need to incorporate peatland dynamics into the next generation of climate models. Ultimately we expect this to reduce uncertainty in future climate change predictions.
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Climate-driven expansion of blanket bogs in Britain during the Holocene
全新世期间气候驱动的英国毯状沼泽扩张
DOI:
10.5194/cpd-11-4811-2015
发表时间:
2015
期刊:
影响因子:
--
作者:
[Gallego-Sala A]
通讯作者:
Gallego-Sala A
DOI:
10.5194/bg-12-3321-2015
发表时间:
2015-01
期刊:
Biogeosciences
影响因子:
4.9
作者:
[T. Bohn;J. Melton;A. Ito;T. Kleinen;R. Spahni;B. Stocker;Bowen Zhang;Xudong Zhu;R. Schroeder;M. Glagolev;S. Maksyutov;V. Brovkin;Guangsheng Chen;S. Denisov;A. Eliseev;A. Gallego-Sala;K. McDonald;M. Rawlins;W. Riley;Z. Subin;H. Tian;Q. Zhuang;J. Kaplan]
通讯作者:
T. Bohn;J. Melton;A. Ito;T. Kleinen;R. Spahni;B. Stocker;Bowen Zhang;Xudong Zhu;R. Schroeder;M. Glagolev;S. Maksyutov;V. Brovkin;Guangsheng Chen;S. Denisov;A. Eliseev;A. Gallego-Sala;K. McDonald;M. Rawlins;W. Riley;Z. Subin;H. Tian;Q. Zhuang;J. Kaplan
DOI:
10.1016/j.quascirev.2015.05.012
发表时间:
2015-08-01
期刊:
QUATERNARY SCIENCE REVIEWS
影响因子:
4
作者:
[Charman, Dan J., Amesbury, Matthew J., Mauquoy, Dmitri]
通讯作者:
Mauquoy, Dmitri
DOI:
10.5194/gmd-15-1633-2022
发表时间:
2022-02
期刊:
Geoscientific Model Development
影响因子:
5.1
作者:
[S. Chadburn]
通讯作者:
S. Chadburn
DOI:
10.5194/bg-10-929-2013
发表时间:
2013-01-01
期刊:
BIOGEOSCIENCES
影响因子:
4.9
作者:
[Charman, D. J., Beilman, D. W., Zhao, Y.]
通讯作者:
Zhao, Y.
共 9 条
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批准号:NE/H014896/1
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项目类别:Research Grant
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资助金额:$35.92万
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财政年份:2012
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负责人:Dan Charman
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依托单位:
Developing a novel proxy for Southern Hemisphere Holocene climate change: stable isotope analysis of restiad peat cellulose
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Holocene Land-Ocean-Atmosphere Interactions on the Eastern Seaboard of North America
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批准号:NE/G020272/1
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项目类别:Research Grant
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资助金额:$20.84万
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财政年份:2010
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负责人:Dan Charman
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依托单位:
国内基金
海外基金
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Identification and quantification of primary phytoplankton functional types in the global oceans from hyperspectral ocean color remote sensing
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批准号:--
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项目类别:--
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资助金额:160万元
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批准年份:2022
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中大尺度原子、分子团簇电子和几何结构的理论研究
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批准号:21073196
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项目类别:面上项目
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核子自旋结构与高能反应过程的自旋不对称
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批准号:10975092
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非线性抛物双曲耦合方程组及其吸引子
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批准号:10571024
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磁层亚暴触发过程的全球(global)MHD-Hall数值模拟
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批准号:40536030
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项目类别:重点项目
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资助金额:120.0万元
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依托单位: