globalchange  > 全球变化的国际研究计划
DOI: 10.5194/gmd-12-2961-2019
WOS记录号: WOS:000475466700002
论文题名:
Modelling northern peatland area and carbon dynamics since the Holocene with the ORCHIDEE-PEAT land surface model (SVN r5488)
作者: Qiu, Chunjing1; Zhu, Dan1; Ciais, Philippe1; Guenet, Bertrand1; Peng, Shushi2; Krinner, Gerhard3; Tootchi, Ardalan4; Ducharne, Agnes4; Hastie, Adam5
通讯作者: Qiu, Chunjing
刊名: GEOSCIENTIFIC MODEL DEVELOPMENT
ISSN: 1991-959X
EISSN: 1991-9603
出版年: 2019
卷: 12, 期:7, 页码:2961-2982
语种: 英语
WOS关键词: HUDSON-BAY LOWLANDS ; SPATIOTEMPORAL DYNAMICS ; ACCUMULATION RATES ; BOREAL PEATLAND ; GLOBAL WETLANDS ; ORGANIC-CARBON ; CLIMATE ; WATER ; VEGETATION ; METHANE
WOS学科分类: Geosciences, Multidisciplinary
WOS研究方向: Geology
英文摘要:

The importance of northern peatlands in the global carbon cycle has been recognized, especially for long-term changes. Yet, the complex interactions between climate and peatland hydrology, carbon storage, and area dynamics make it challenging to represent these systems in land surface models. This study describes how peatlands are included as an independent sub-grid hydrological soil unit (HSU) in the ORCHIDEE-MICT land surface model. The peatland soil column in this tile is characterized by multilayered vertical water and carbon transport and peat-specific hydrological properties. The cost-efficient version of TOPMODEL and the scheme of peatland initiation and development from the DYPTOP model are implemented and adjusted to simulate spatial and temporal dynamics of peatland. The model is tested across a range of northern peatland sites and for gridded simulations over the Northern Hemisphere (> 30 degrees N). Simulated northern peatland area (3.9 million km(2)), peat carbon stock (463 Pg C), and peat depth are generally consistent with observed estimates of peatland area (3.4-4.0 million km2), peat carbon (270-540 Pg C), and data compilations of peat core depths. Our results show that both net primary production (NPP) and heterotrophic respiration (HR) of northern peatlands increased over the past century in response to CO2 and climate change. NPP increased more rapidly than HR, and thus net ecosystem production (NEP) exhibited a positive trend, contributing a cumulative carbon storage of 11.13 PgC since 1901, most of it being realized after the 1950s.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/143352
Appears in Collections:全球变化的国际研究计划

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作者单位: 1.CNRS, Lab Sci Climat & Environm, CEA, UVSQ,UMR8212, F-91191 Gif Sur Yvette, France
2.Peking Univ, Sino French Inst Earth Syst Sci, Coll Urban & Environm Sci, Beijing 100871, Peoples R China
3.Univ Grenoble Alpes, CNRS, IGE, F-38000 Grenoble, France
4.Sorbonne Univ, CNRS, EPHE, Milieux Environm Transferts & Interact Hydrosyst, F-75005 Paris, France
5.Univ Libre Bruxelles, Dept Geosci Environm & Soc, B-1050 Brussels, Belgium

Recommended Citation:
Qiu, Chunjing,Zhu, Dan,Ciais, Philippe,et al. Modelling northern peatland area and carbon dynamics since the Holocene with the ORCHIDEE-PEAT land surface model (SVN r5488)[J]. GEOSCIENTIFIC MODEL DEVELOPMENT,2019-01-01,12(7):2961-2982
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