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CO{sub 2} and CH{sub 4} fluxes and carbon balance in the atmospheric interaction of boreal peatlands

Abstract

Release of CO{sub 2} from peat was studied using IR analyzer in a range of boreal peatlands under varying nutrient status and moisture conditions. Root associated CO{sub 2} efflux was separated from the total release by experiments both in the field and in a greenhouse. Emissions of CO{sub 2} and CH{sub 4} (the latter by gas chromatography) were measured during the snow-covered period and their contribution to the annual fluxes of these gases was inspected. Ecosystem exchange of CO{sub 2} under varying irradiation, temperature and moisture conditions was measured at different microsites at two peatland sites with different nutrient ecology. One site represented minerotrophic conditions during a wet growing season and the other site ombrotrophic conditions during an exceptionally dry growing season. Annual carbon balances were compiled for the two sites, and the role of the microsites in the annual carbon balance and CH{sub 4} release was studied. The Holocene history of CO{sub 2} sequestration and CH{sub 4} emission dynamics in a raised mire were simulated using lateral and vertical growth rates derived from radiocarbon ages of peat samples from mire bottom and vertical cores. The model was formulated for a geographic information system (GIS). Artificial or natural lowering of  More>>
Authors:
Publication Date:
Dec 31, 1997
Product Type:
Thesis/Dissertation
Report Number:
JOY-LT-44
Reference Number:
SCA: 010900; 540220; 540120; PA: FI-98:003409; EDB-98:077599; SN: 98001976690
Resource Relation:
Other Information: TH: Thesis (Ph.D.); PBD: 1997
Subject:
01 COAL, LIGNITE, AND PEAT; 54 ENVIRONMENTAL SCIENCES; WETLANDS; PEAT; BOREAL REGIONS; FINLAND; METHANE; CARBON DIOXIDE; EMISSION; TERRESTRIAL ECOSYSTEMS; MOISTURE; WATER TABLES; TEMPERATURE DEPENDENCE; ECOLOGICAL CONCENTRATION; AIR-BIOSPHERE INTERACTIONS
OSTI ID:
628816
Research Organizations:
Joensuu Univ. (Finland)
Country of Origin:
Finland
Language:
English
Other Identifying Numbers:
Other: ON: DE98764050; ISBN 951-708-585-0; TRN: FI9803409
Availability:
INIS; OSTI as DE98764050
Submitting Site:
FI
Size:
124 p.
Announcement Date:
Aug 12, 1998

Citation Formats

Alm, J. CO{sub 2} and CH{sub 4} fluxes and carbon balance in the atmospheric interaction of boreal peatlands. Finland: N. p., 1997. Web.
Alm, J. CO{sub 2} and CH{sub 4} fluxes and carbon balance in the atmospheric interaction of boreal peatlands. Finland.
Alm, J. 1997. "CO{sub 2} and CH{sub 4} fluxes and carbon balance in the atmospheric interaction of boreal peatlands." Finland.
@misc{etde_628816,
title = {CO{sub 2} and CH{sub 4} fluxes and carbon balance in the atmospheric interaction of boreal peatlands}
author = {Alm, J}
abstractNote = {Release of CO{sub 2} from peat was studied using IR analyzer in a range of boreal peatlands under varying nutrient status and moisture conditions. Root associated CO{sub 2} efflux was separated from the total release by experiments both in the field and in a greenhouse. Emissions of CO{sub 2} and CH{sub 4} (the latter by gas chromatography) were measured during the snow-covered period and their contribution to the annual fluxes of these gases was inspected. Ecosystem exchange of CO{sub 2} under varying irradiation, temperature and moisture conditions was measured at different microsites at two peatland sites with different nutrient ecology. One site represented minerotrophic conditions during a wet growing season and the other site ombrotrophic conditions during an exceptionally dry growing season. Annual carbon balances were compiled for the two sites, and the role of the microsites in the annual carbon balance and CH{sub 4} release was studied. The Holocene history of CO{sub 2} sequestration and CH{sub 4} emission dynamics in a raised mire were simulated using lateral and vertical growth rates derived from radiocarbon ages of peat samples from mire bottom and vertical cores. The model was formulated for a geographic information system (GIS). Artificial or natural lowering of water table increased CO{sub 2} release from peat. A drought lasting from late May to July caused a 90 g C m{sup 2} net loss in the annual C balance of a natural ombrotrophic bog. In drained forested sites the increase in peat CO{sub 2} release could be even 100 %, but the development of the tree layer at least partially compensated for these losses. Wet conditions induced a net accumulation of 67 g C m{sup -2}a{sup -1} in the minerotrophic fen site, while the long term average accumulation rate is estimated to be only 15 g C m{sup -2}a{sup -1} for Finnish fens. Carbon balance in boreal peatlands is thus extremely sensitive to year-to-year climatic variations. Root activity of vascular plants contributed to the total peat CO{sub 2} efflux by 10-40 % as root respiration and root associated heterotrophic CO{sub 2} release. Much of the spatial variability in the gas fluxes was attributed to the microsite properties in natural peatlands. Winter CO{sub 2} and CH{sub 4} emissions were important components in the C balance, comprising 10Ae30 % of the annual gas release from peat. According to the simulation results, the CH{sub 4} release from expanding peatlands could have contributed to the early interglacial atmospheric warming during several millennia, at least prior to the ombrotrophication and increased peat accumulation from about 3500 years BP onwards. The atmospheric cooling effect by peat accumulation is less clear. (orig.)}
place = {Finland}
year = {1997}
month = {Dec}
}