Phase and amplitude of ecosystem carbon release and uptake potentials as derived from FLUXNET measurements

被引:137
作者
Falge, E
Tenhunen, J
Baldocchi, D
Aubinet, M
Bakwin, P
Berbigier, P
Bernhofer, C
Bonnefond, JM
Burba, G
Clement, R
Davis, KJ
Elbers, JA
Falk, M
Goldstein, AH
Grelle, A
Granier, A
Grünwald, T
Gudmundsson, J
Hollinger, D
Janssens, IA
Keronen, P
Kowalski, AS
Katul, G
Law, BE
Malhi, Y
Meyers, T
Monson, RK
Moors, E
Munger, JW
Oechel, W
U, KTP
Pilegaard, K
Rannik, Ü
Rebmann, C
Suyker, A
Thorgeirsson, H
Tirone, G
Turnipseed, A
Wilson, K
Wofsy, S
机构
[1] Univ Bayreuth, D-95440 Bayreuth, Germany
[2] Univ Tuscia, Dept Forest Environm & Resources, I-01100 Viterbo, Italy
[3] Agr Res Inst, Dept Environm Res, IS-112 Reykjavik, Iceland
[4] Max Planck Inst Biogeochem, D-07701 Jena, Germany
[5] Univ Helsinki, Dept Phys, FIN-00014 Helsinki, Finland
[6] Riso Natl Lab, Plant Biol & Biogeochem Dept, DK-4000 Roskilde, Denmark
[7] San Diego State Univ, Dept Biol, San Diego, CA 92182 USA
[8] Harvard Univ, Dept Earth & Planetary Sci, Cambridge, MA 02138 USA
[9] Alterra, NL-6700 AA Wageningen, Netherlands
[10] Univ Colorado, Dept Environm Populat & Organism Biol, Boulder, CO 80309 USA
[11] NOAA, ATDD, Oak Ridge, TN 37831 USA
[12] INRA, Bordeaux, France
[13] Oregon State Univ, Corvallis, OR 97331 USA
[14] Duke Univ, Sch Environm, Durham, NC 27708 USA
[15] Univ Instelling Antwerp, Dept Biol, Res Grp Plant & Vegetat Ecol, B-2610 Wilrijk, Belgium
[16] US Forest Serv, USDA, Durham, NH 03824 USA
[17] Tech Univ Dresden, IHM Meteorol, D-01737 Tharandt, Germany
[18] INRA, Unite Ecophysiol Forestiere, F-54280 Champenoux, France
[19] Swedish Univ Agr Sci, Dept Ecol & Environm Res, S-75007 Uppsala, Sweden
[20] Univ Calif Davis, Atmospher Sci Grp, LAWR, Davis, CA 95616 USA
[21] Penn State Univ, Dept Meteorol, University Pk, PA 16802 USA
[22] Univ Edinburgh, Inst Ecol & Resource Management, Edinburgh EH9 3JU, Midlothian, Scotland
[23] Univ Nebraska, Sch Nat Resource Sci, Lincoln, NE 68583 USA
[24] NOAA, OAR, Climate Monitoring & Diagnost Lab, Boulder, CO 80303 USA
[25] Fac Sci Agron Etat Gembloux, Unite Phys, B-5030 Gembloux, Belgium
[26] Univ Calif Berkeley, ESPM, Berkeley, CA 94720 USA
基金
美国国家航空航天局;
关键词
growing season length; net ecosystem CO2 exchange; FLUXNET; EUROFLUX; AmeriFlux; eddy covariance;
D O I
10.1016/S0168-1923(02)00103-X
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
As length and timing of the growing season are major factors explaining differences in carbon exchange of ecosystems. we analyzed seasonal patterns of net ecosystem carbon exchange (F-NEE) using eddy covariance data of the FLUXNET data base (http://www-eosdis.ornl.gov/FLUXNET). The study included boreal and temperate. deciduous and coniferous forests, Mediterranean evergreen systems, rainforest, native and managed temperate grasslands, tundra, and C-3 and C-4 crops. Generalization of seasonal patterns are useful for identifying functional vegetation types for global dynamic vegetation models, as well as for global inversion studies, and can help improve phenological modules in SVAT or biogeochemical models. The results of this study have important validation potential for global carbon cycle modeling. The phasing of respiratory and assimilatory capacity differed within forest types: for temperate coniferous forests seasonal uptake and release capacities are in phase, for temperate deciduous and boreal coniferous forests, release was delayed compared to uptake. According to seasonal pattern of maximum nighttime release (evaluated over 15-day periods. F-max) the study sites can be grouped in four classes: (1) boreal and high altitude conifers and grasslands: (2) temperate deciduous and temperate conifers; (3) tundra and crops; (4) evergreen Mediterranean and tropical forest,,, Similar results are found for maximum daytime uptake (F-min) and the integral net carbon flux, but temperate deciduous forests fall into class 1. For forests, seasonal amplitudes of F-max and F-min increased in the order tropical < Mediterranean and temperate coniferous < temperate deciduous and boreal forests, and the pattern seems relatively stable for these groups. The seasonal amplitudes of F-max and F-min are largest for managed grasslands and crops. Largest observed values of F-min varied between -48 and -2 mumol m(-2) s(-1), decreasing in the order C-4-crops > C-3-crops > temperate deciduous forests > temperate conifers > boreal conifers > tundra ecosystems. Due to data restrictions, our analysis centered mainly on Northern Hemisphere temperate and boreal forest ecosystems. Grasslands, crops, Mediterranean ecosystems, and rainforests are under-represented. as are savanna systems, wooded grassland, shrubland, or year-round measurements in tundra systems. For regional or global estimates of carbon sequestration potentials, future investigations of eddy covariance should expand in these systems. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:75 / 95
页数:21
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