Carbon Thaw Rate Doubles When Accounting for Subsidence in a Permafrost Warming Experiment
Heidi Rodenhizer
1
,
Justin Ledman
1, 2
,
Marguerite Mauritz
1, 3
,
Susan M. Natali
4
,
Elaine Pegoraro
1
,
E F Pegoraro
1
,
César Plaza
5
,
Emily Romano
1
,
Christina Schädel
1, 6
,
M A Taylor
1, 7
,
Edward Schuur
1
,
Edward A.G Schuur
1
2
4
Woods Hole Research Center Falmouth MA USA
|
6
Тип публикации: Journal Article
Дата публикации: 2020-05-11
scimago Q1
wos Q2
БС1
SJR: 1.432
CiteScore: 6.8
Impact factor: 3.5
ISSN: 21698953, 21698961
Water Science and Technology
Aquatic Science
Paleontology
Atmospheric Science
Soil Science
Ecology
Forestry
Краткое описание
Permafrost thaw is typically measured with active layer thickness, or the maximum seasonal thaw measured from the ground surface. However, previous work has shown that this measurement alone fails to account for ground subsidence and therefore underestimates permafrost thaw. To determine the impact of subsidence on observed permafrost thaw and thawed soil carbon stocks, we quantified subsidence using high-accuracy GPS and identified its environmental drivers in a permafrost warming experiment near the southern limit of permafrost in Alaska. With permafrost temperatures near 0°C, 10.8 cm of subsidence was observed in control plots over 9 years. Experimental air and soil warming increased subsidence by five times and created inundated microsites. Across treatments, ice and soil loss drove 85–91% and 9–15% of subsidence, respectively. Accounting for subsidence, permafrost thawed between 19% (control) and 49% (warming) deeper than active layer thickness indicated, and the amount of newly thawed carbon within the active layer was between 37% (control) and 113% (warming) greater. As additional carbon thaws as the active layer deepens, carbon fluxes to the atmosphere and lateral transport of carbon in groundwater could increase. The magnitude of this impact is uncertain at the landscape scale, though, due to limited subsidence measurements. Therefore, to determine the full extent of permafrost thaw across the circumpolar region and its feedback on the carbon cycle, it is necessary to quantify subsidence more broadly across the circumpolar region.
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ГОСТ
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Rodenhizer H. et al. Carbon Thaw Rate Doubles When Accounting for Subsidence in a Permafrost Warming Experiment // Journal of Geophysical Research Biogeosciences. 2020. Vol. 125. No. 6.
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Rodenhizer H., Ledman J., Mauritz M., Natali S. M., Pegoraro E., Pegoraro E. F., Plaza C., Romano E., Schädel C., Taylor M. A., Schuur E., Schuur E. A. Carbon Thaw Rate Doubles When Accounting for Subsidence in a Permafrost Warming Experiment // Journal of Geophysical Research Biogeosciences. 2020. Vol. 125. No. 6.
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RIS
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TY - JOUR
DO - 10.1029/2019jg005528
UR - https://doi.org/10.1029/2019jg005528
TI - Carbon Thaw Rate Doubles When Accounting for Subsidence in a Permafrost Warming Experiment
T2 - Journal of Geophysical Research Biogeosciences
AU - Rodenhizer, Heidi
AU - Ledman, Justin
AU - Mauritz, Marguerite
AU - Natali, Susan M.
AU - Pegoraro, Elaine
AU - Pegoraro, E F
AU - Plaza, César
AU - Romano, Emily
AU - Schädel, Christina
AU - Taylor, M A
AU - Schuur, Edward
AU - Schuur, Edward A.G
PY - 2020
DA - 2020/05/11
PB - American Geophysical Union
IS - 6
VL - 125
SN - 2169-8953
SN - 2169-8961
ER -
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BibTex (до 50 авторов)
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@article{2020_Rodenhizer,
author = {Heidi Rodenhizer and Justin Ledman and Marguerite Mauritz and Susan M. Natali and Elaine Pegoraro and E F Pegoraro and César Plaza and Emily Romano and Christina Schädel and M A Taylor and Edward Schuur and Edward A.G Schuur},
title = {Carbon Thaw Rate Doubles When Accounting for Subsidence in a Permafrost Warming Experiment},
journal = {Journal of Geophysical Research Biogeosciences},
year = {2020},
volume = {125},
publisher = {American Geophysical Union},
month = {may},
url = {https://doi.org/10.1029/2019jg005528},
number = {6},
doi = {10.1029/2019jg005528}
}