Arid
DOI10.1016/S0277-3791(97)00045-0
Estimating changes in terrestrial vegetation and carbon storage: Using palaeoecological data and models
Peng, CH; Guiot, J; Van Campo, E
通讯作者Peng, CH
来源期刊QUATERNARY SCIENCE REVIEWS
ISSN0277-3791
出版年1998
卷号17期号:8页码:719-735
英文摘要

Climatic changes that accompanied the transition from the last glacial to the present interglacial conditions over the past 18,000 C-14 years impacted both terrestrial ecosystem structure (vegetation distribution) and function (carbon dynamics), which in turn influenced the climate through biogeophysical mechanisms. Palaeoecological records provide not only past records of vegetation patterns at various spatial and temporal scales, but also a means of evaluating the associated change in past terrestrial carbon storage. After a brief review of the role of palaeoecological data and biosphere models in evaluating the potential impacts of past climate change on terrestrial ecosystems, we synthesize the methods for reconstructing the vegetation patterns from palaeoecological data and the way to integrate it with biosphere models to reconstruct the long-term terrestrial carbon dynamics since the Last Glacial Maximum (LGM). The main results obtained at both the global and regional scales suggest that colder, more arid and low atmospheric CO2 climatic conditions at the LGM may have favored the extensions of steppe and grassland dominated by C4 plants, to the detriment of forested ecosystems. However, the warmer and wetter climatic conditions during the Holocene favored extensions of temperate deciduous forests in mid-latitudes and reduced the tundra and taiga forests at high latitudes. Carbon storage in terrestrial vegetation was relatively low during the full-glacial time and increased considerably to a maximum during the mid-Holocene. Most of the recent estimates converge to an increase of about 30% global carbon storage from the LGM to the present. There still is a significant gap in our understanding of ice-age terrestrial carbon budget. The difference between the marine and terrestrial estimations is about 150-430 Pg C (1 Pg = 10(15) g). It results from the uncertainties in reconstruction of terrestrial vegetation and carbon storage as well as the uncertainties in the interpretation of marine Delta partial derivative(13)C changes. Further progress in understanding the dynamic processes of global vegetation and carbon cycle will require both the development of global palaeoecological database and the development of biosphere models. (C) 1998 Elsevier Science Ltd. All rights reserved.


类型Review
语种英语
国家Canada ; France
收录类别SCI-E
WOS记录号WOS:000075966000004
WOS关键词LAST GLACIAL MAXIMUM ; EASTERN NORTH-AMERICA ; NET PRIMARY PRODUCTIVITY ; ATMOSPHERIC CO2 ; POLLEN DATA ; LATE-QUATERNARY ; CLIMATE-CHANGE ; BIOSPHERE-MODEL ; PALAEOVEGETATION MAPS ; CONTEMPORARY POLLEN
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS研究方向Physical Geography ; Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/136592
作者单位(1)Minist Nat Resources, Ontario Forest Res Inst, Sault Ste Marie, ON P6A 2E5, Canada;(2)Fac Sci & Tech St Jerome, CNRS, UA 1152, IMEP, F-13397 Marseille 20, France;(3)UPS, CNRS, UMR 5552, Lab Ecol Terr, F-31405 Toulouse 04, France
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GB/T 7714
Peng, CH,Guiot, J,Van Campo, E. Estimating changes in terrestrial vegetation and carbon storage: Using palaeoecological data and models[J],1998,17(8):719-735.
APA Peng, CH,Guiot, J,&Van Campo, E.(1998).Estimating changes in terrestrial vegetation and carbon storage: Using palaeoecological data and models.QUATERNARY SCIENCE REVIEWS,17(8),719-735.
MLA Peng, CH,et al."Estimating changes in terrestrial vegetation and carbon storage: Using palaeoecological data and models".QUATERNARY SCIENCE REVIEWS 17.8(1998):719-735.
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