TY - JOUR
T1 - The distribution of carbon stocks between tree woody biomass and soil differs between Scots pine and broadleaved species (beech, oak) in European forests
AU - Osei, Richard
AU - del Rio, Miren
AU - Ruiz-Peinado, Ricardo
AU - Titeux, Hugues
AU - Bielak, Kamil
AU - Bravo, Felipe
AU - Collet, Catherine
AU - Cools, Corentin
AU - Cornelis, Jean-Thomas
AU - Drossler, Lars
AU - Heym, Michael
AU - Korboulewsky, Nathalie
AU - Lof, Magnus
AU - Muys, Bart
AU - Najib, Yasmina
AU - Nothdurft, Arne
AU - Pretzsch, Hans
AU - Skrzyszewski, Jerzy
AU - Ponette, Quentin
PY - 2022
Y1 - 2022
N2 - While the impacts of forest management options on carbon (C) storage are well documented, the way they affect C distribution among ecosystem components remains poorly investigated. Yet, partitioning of total forest C stocks, particularly between aboveground woody biomass and the soil, greatly impacts the stability of C stocks against disturbances in forest ecosystems. This study assessed the impact of species composition and stand density on C storage in aboveground woody biomass (stem + branches), coarse roots, and soil, and their partitioning in pure and mixed forests in Europe. We used 21 triplets (5 beech-oak, 8 pine-beech, 8 pine-oak mixed stands, and their respective monocultures at the same sites) in seven European countries. We computed biomass C stocks from total stand inventories and species-specific allometric equations, and soil organic C data down to 40 cm depth. On average, the broadleaved species stored more C in aboveground woody biomass than soil, while C storage in pine was equally distributed between both components. Stand density had a strong effect on C storage in tree woody biomass but not in the soil. After controlling for stand basal area, the mixed stands had, on average, similar total C stocks (in aboveground woody biomass + coarse roots + soil) to the most performing monocultures. Although species composition and stand density affect total C stocks and its partitioning between aboveground woody biomass and soil, a large part of variability in soil C storage was unrelated to stand characteristics.
AB - While the impacts of forest management options on carbon (C) storage are well documented, the way they affect C distribution among ecosystem components remains poorly investigated. Yet, partitioning of total forest C stocks, particularly between aboveground woody biomass and the soil, greatly impacts the stability of C stocks against disturbances in forest ecosystems. This study assessed the impact of species composition and stand density on C storage in aboveground woody biomass (stem + branches), coarse roots, and soil, and their partitioning in pure and mixed forests in Europe. We used 21 triplets (5 beech-oak, 8 pine-beech, 8 pine-oak mixed stands, and their respective monocultures at the same sites) in seven European countries. We computed biomass C stocks from total stand inventories and species-specific allometric equations, and soil organic C data down to 40 cm depth. On average, the broadleaved species stored more C in aboveground woody biomass than soil, while C storage in pine was equally distributed between both components. Stand density had a strong effect on C storage in tree woody biomass but not in the soil. After controlling for stand basal area, the mixed stands had, on average, similar total C stocks (in aboveground woody biomass + coarse roots + soil) to the most performing monocultures. Although species composition and stand density affect total C stocks and its partitioning between aboveground woody biomass and soil, a large part of variability in soil C storage was unrelated to stand characteristics.
KW - Ecosystem carbon storage
KW - Aboveground carbon storage
KW - Soil organic carbon
KW - Carbon distribution
KW - Tree species identity
KW - Triplet-transects
KW - Ecosystem carbon storage
KW - Aboveground carbon storage
KW - Soil organic carbon
KW - Carbon distribution
KW - Tree species identity
KW - Triplet-transects
UR - https://res.slu.se/id/publ/116909
U2 - 10.1007/s10342-022-01453-9
DO - 10.1007/s10342-022-01453-9
M3 - Journal article
SN - 1612-4669
VL - 141
SP - 467
EP - 480
JO - European Journal of Forest Research
JF - European Journal of Forest Research
IS - 3
ER -