HR: 12:05h
AN: B32B-08 [Abstracts]
TI: Carbon Balance Assessment of a Natural Steppe of Southern Siberia by Multiple Constraint Approach
AU: Belelli, L
EM: belelli@unitus.it
AF: Department of Forest Resources and Environment, University of Tuscia, Via San Camillo
de Lellis, Viterbo, 01100, Italy
AU: * Papale, D
EM: darpap@unitus.it
AF: Department of Forest Resources and Environment, University of Tuscia, Via San Camillo
de Lellis, Viterbo, 01100, Italy
AU: Reichstein, M
EM: markus.reichstein@bgc-jena.mpg.de
AF: Max Planck Institute for Biogeochemistry, Hans Knoll Str. 10, Jena, 07745, Germany
AU: Vuichard, N
EM: vuichard@unitus.it
AF: Department of Forest Resources and Environment, University of Tuscia, Via San Camillo
de Lellis, Viterbo, 01100, Italy
AU: Tchebakova, N
EM: ncheby@forest.akadem.ru
AF: Sukachev Insitute of Forest, SB-RAS, Akademgorodok, Krasnoyarsk, 66036, Russian
Federation
AU: Valentini, R
EM: rik@unitus.it
AF: Department of Forest Resources and Environment, University of Tuscia, Via San Camillo
de Lellis, Viterbo, 01100, Italy
AB:
Steppe ecosystems represent an interesting case in which the assessment of carbon balance may be performed
through a cross validation of the eddy covariance measurements against ecological inventory estimates of
carbon exchanges (Ehman et al., 2002; Curtis et al., 2002).
Indeed, the widespread presence of ideal conditions for the applicability of the eddy covariance technique, as vast
and homogeneous grass vegetation cover over flat terrains (Baldocchi, 2003), make steppes a suitable ground
to ensure a constrain to flux estimates with independent methodological approaches.
We report about the analysis of the carbon cycle of a true steppe ecosystem in southern Siberia during the
growing season of 2004 in the framework of the TCOS-Siberia project activities performed by continuous
monitoring of CO2 fluxes at ecosystem scale by the eddy covariance method, fortnightly samplings of
phytomass, and ingrowth cores extractions for NPP assessment, and weekly measurements of heterotrophic
component of soil CO2 effluxes obtained by an experiment of root exclusion.
The carbon balance of the monitored natural steppe was, according to micrometeorological measurements, a
sink of carbon of 151.7±36.9 gC m-2, cumulated during the growing season from May to September.
This result was in agreement with the independent estimate through ecological inventory which yielded a sink of
150.1 gC m-2 although this method was characterized by a large uncertainty \(±130%\) considering the
95% confidence interval of the estimate.
Uncertainties in belowground process estimates account for a large part of the error. Thus, in particular efforts to
better quantify the dynamics of root biomass (growth and turnover) have to be undertaken in order to reduce the
uncertainties in the assessment of NPP. This assessment should be preferably based on the application of
multiple methods, each one characterized by its own merits and flaws.
DE: 0428 Carbon cycling (4806)
DE: 0439 Ecosystems, structure and dynamics (4815)
SC: Biogeosciences [B]
MN: 2007 Fall Meeting