Northern Peatlands: Role in the Carbon Cycle and Probable Responses to Climatic Warming

Северные торфяники: роль в углеродном цикле и вероятные ответы на климатическое потепление
Eville Gorham
1991-05-01

CH4 emissions (~0.046 Pg/yr)CO2 emissions from drainage (~0.0085 Pg/yr)Hudson/James Bay LowlandWest Siberian Plaincarbon accumulation rate (0.096 Pg/yr)carbon pool (455 Pg)current carbon accumulation (0.076 Pg/yr, Clymo 1984)fire in peatland carbon cyclenorthern peatlandspeat combustion emissions (~0.026 Pg/yr)permafrost melting and thermokarstsatellite monitoring of open waterthaw lakes developmentuncertainties in peatland stocks and fluxeswater table influence on CO2 and CH4 fluxes
Boreal and subarctic peatlands comprise a carbon pool of 455 Pg that has accumulated during the postglacial period at an average net rate of 0.096 Pg/yr (1 Pg = 10 1 5 g). Using Clymo's (1984) model, the current rate is estimated at 0.076 Pg/yr. Longterm drainage of these peatlands is estimated to be causing the oxidation to CO 2 of a little more than 0.0085 Pg/yr, with conbustion of fuel peat adding °0.026 Pg/yr. Emissions of CH 4 are estimated to release ° 0.046 Pg of carbon annually. Uncertainties beset estimates of both stocks and fluxes, particularly with regard to Soviet peatlands. The influence of water table alterations upon fluxes of both CO 2 and CH 4 is in great need of investigation over a wide range of peatland environments, especially in regions where permafrost melting, thermokarst erosion, and the development of thaw lakes are likely results of climatic warming. The role of fire in the carbon cycle of peatlands also deserves increased attention. Finally, satellite—monitoring of the abundance of open water in the peatlands of the West Siberian Plain and the Hudson/James Bay Lowland is suggested as a likely method of detecting early effects of climatic warming upon boreal and subarctic peatlands.
1
Average historical net accumulation rate of these peatlands is 0.096 Pg/yr, with current rate estimated at 0.076 Pg/yr using Clymo's (1984) model.
2
Boreal and subarctic peatlands contain a carbon pool of 455 Pg accumulated since the postglacial period.
3
Estimates of peatland carbon stocks and fluxes have significant uncertainties, especially concerning Soviet (West Siberian) peatlands.
4
Long-term drainage is estimated to oxidize slightly more than 0.0085 Pg C/yr to CO2, while combustion of fuel peat adds ~0.026 Pg C/yr.
5
Methane (CH4) emissions from these peatlands are estimated at about 0.046 Pg C annually.
6
Satellite monitoring of open water extent in West Siberian Plain and Hudson/James Bay Lowland is proposed to detect early climatic warming impacts on peatlands.
7
The role of fire in peatland carbon cycling requires increased study.
8
Water-table changes (e.g., from permafrost melt, thermokarst, thaw-lake development) likely strongly affect CO2 and CH4 fluxes and need broad investigation.

Boreal and subarctic peatlands (northern peatlands)

Their role in the carbon cycle including carbon stocks and fluxes (CO2 and CH4 emissions, peat oxidation and combustion) and probable responses to climatic warming (effects of water-table changes, permafrost thaw, thermokarst, thaw-lake development, and fire)

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1991-05-01
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Eville Gorham
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