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The biophysical climate mitigation potential of boreal peatlands during the growing season

Authors :
Helbig, Manuel
Waddington, James M
Alekseychik, Pavel
Amiro, Brian
Aurela, Mika
Barr, Alan G
Black, T Andrew
Carey, Sean K
Chen, Jiquan
Chi, Jinshu
Desai, Ankur R
Dunn, Allison
Euskirchen, Eugenie S
Flanagan, Lawrence B
Friborg, Thomas
Garneau, Michelle
Grelle, Achim
Harder, Silvie
Heliasz, Michal
Humphreys, Elyn R
Ikawa, Hiroki
Isabelle, Pierre-Erik
Iwata, Hiroki
Jassal, Rachhpal
Korkiakoski, Mika
Kurbatova, Juliya
Kutzbach, Lars
Lapshina, Elena
Lindroth, Anders
Löfvenius, Mikaell Ottosson
Lohila, Annalea
Mammarella, Ivan
Marsh, Philip
Moore, Paul A
Maximov, Trofim
Nadeau, Daniel F
Nicholls, Erin M
Nilsson, Mats B
Ohta, Takeshi
Peichl, Matthias
Petrone, Richard M
Prokushkin, Anatoly
Quinton, William L
Roulet, Nigel
Runkle, Benjamin R K
Sonnentag, Oliver
Strachan, Ian B
Taillardat, Pierre
Tuittila, Eeva-Stiina
Tuovinen, Juha-Pekka
Turner, Jessica
Ueyama, Masahito
Varlagin, Andrej
Vesala, Timo
Wilmking, Martin
Zyrianov, Vyacheslav
Schulze, Christopher
Helbig, Manuel
Waddington, James M
Alekseychik, Pavel
Amiro, Brian
Aurela, Mika
Barr, Alan G
Black, T Andrew
Carey, Sean K
Chen, Jiquan
Chi, Jinshu
Desai, Ankur R
Dunn, Allison
Euskirchen, Eugenie S
Flanagan, Lawrence B
Friborg, Thomas
Garneau, Michelle
Grelle, Achim
Harder, Silvie
Heliasz, Michal
Humphreys, Elyn R
Ikawa, Hiroki
Isabelle, Pierre-Erik
Iwata, Hiroki
Jassal, Rachhpal
Korkiakoski, Mika
Kurbatova, Juliya
Kutzbach, Lars
Lapshina, Elena
Lindroth, Anders
Löfvenius, Mikaell Ottosson
Lohila, Annalea
Mammarella, Ivan
Marsh, Philip
Moore, Paul A
Maximov, Trofim
Nadeau, Daniel F
Nicholls, Erin M
Nilsson, Mats B
Ohta, Takeshi
Peichl, Matthias
Petrone, Richard M
Prokushkin, Anatoly
Quinton, William L
Roulet, Nigel
Runkle, Benjamin R K
Sonnentag, Oliver
Strachan, Ian B
Taillardat, Pierre
Tuittila, Eeva-Stiina
Tuovinen, Juha-Pekka
Turner, Jessica
Ueyama, Masahito
Varlagin, Andrej
Vesala, Timo
Wilmking, Martin
Zyrianov, Vyacheslav
Schulze, Christopher
Publication Year :
2020

Abstract

Peatlands and forests cover large areas of the boreal biome and are critical for global climate regulation. They also regulate regional climate through heat and water vapour exchange with the atmosphere. Understanding how land-atmosphere interactions in peatlands differ from forests may therefore be crucial for modelling boreal climate system dynamics and for assessing climate benefits of peatland conservation and restoration. To assess the biophysical impacts of peatlands and forests on peak growing season air temperature and humidity, we analysed surface energy fluxes and albedo from 35 peatlands and 37 evergreen needleleaf forests—the dominant boreal forest type—and simulated air temperature and vapour pressure deficit (VPD) over hypothetical homogeneous peatland and forest landscapes. We ran an evapotranspiration model using land surface parameters derived from energy flux observations and coupled an analytical solution for the surface energy balance to an atmospheric boundary layer (ABL) model. We found that peatlands, compared to forests, are characterized by higher growing season albedo, lower aerodynamic conductance, and higher surface conductance for an equivalent VPD. This combination of peatland surface properties results in a ∼20% decrease in afternoon ABL height, a cooling (from 1.7 to 2.5 °C) in afternoon air temperatures, and a decrease in afternoon VPD (from 0.4 to 0.7 kPa) for peatland landscapes compared to forest landscapes. These biophysical climate impacts of peatlands are most pronounced at lower latitudes (∼45°N) and decrease toward the northern limit of the boreal biome (∼70°N). Thus, boreal peatlands have the potential to mitigate the effect of regional climate warming during the growing season. The biophysical climate mitigation potential of peatlands needs to be accounted for when projecting the future climate of the boreal biome, when assessing the climate benefits of conserving pristine boreal peatlands, and when restoring peatlands that

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1363074918
Document Type :
Electronic Resource