[HTML][HTML] Permafrost carbon and CO2 pathways differ at contrasting coastal erosion sites in the Canadian Arctic

G Tanski, L Bröder, D Wagner, C Knoblauch… - Frontiers in Earth …, 2021 - frontiersin.org
Warming air and sea temperatures, longer open-water seasons and sea-level rise promote
the erosion of permafrost coasts in the Arctic, which profoundly impacts organic matter …

[HTML][HTML] Permafrost Carbon and CO2 Pathways Differ at Contrasting Coastal Erosion Sites in the Canadian Arctic

G Tanski, L Bröder, D Wagner, C Knoblauch… - Frontiers in Earth …, 2021 - frontiersin.org
Warming air and sea temperatures, longer open-water seasons and sea-level rise
collectively promote the erosion of permafrost coasts in the Arctic, which profoundly impacts …

Permafrost Carbon and CO2 Pathways Differ at Contrasting Coastal Erosion Sites in the Canadian Arctic

G Tanski, L Bröder, D Wagner… - Frontiers in Earth …, 2021 - research-collection.ethz.ch
Warming air and sea temperatures, longer open-water seasons and sea-level rise
collectively promote the erosion of permafrost coasts in the Arctic, which profoundly impacts …

Permafrost Carbon and CO2 Pathways Differ at Contrasting Coastal Erosion Sites in the Canadian Arctic

G Tanski, L Bröder, D Wagner, C Knoblauch… - Frontiers in Earth …, 2021 - research.vu.nl
Warming air and sea temperatures, longer open-water seasons and sea-level rise
collectively promote the erosion of permafrost coasts in the Arctic, which profoundly impacts …

[PDF][PDF] Permafrost Carbon and CO 2 Pathways Differ at Contrasting Coastal Erosion Sites in the Canadian Arctic

G Tanski, L Bröder, D Wagner, C Knoblauch, H Lantuit… - researchgate.net
Tanski et al. CO2 Production Along Permafrost Coasts cycling onshore as transfer times are
short. Once eroded sediments are deposited in the nearshore, highest OC losses can be …

Permafrost Carbon and CO2 Pathways Differ at Contrasting Coastal Erosion Sites in the Canadian Arctic

G Tanski, L Bröder, D Wagner… - Frontiers in Earth …, 2021 - gfzpublic.gfz-potsdam.de
Warming air and sea temperatures, longer open-water seasons and sea-level rise
collectively promote the erosion of permafrost coasts in the Arctic, which profoundly impacts …

Permafrost carbon and CO2 pathways differ at contrasting coastal erosion sites in the Canadian Arctic

G Tanski, L Bröder, D Wagner, C Knoblauch… - Frontiers in Earth …, 2021 - epic.awi.de
Warming air and sea temperatures, longer open-water seasons and sea-level rise promote
the erosion of permafrost coasts in the Arctic, which profoundly impacts organic matter …

Permafrost carbon and CO2 pathways differ at contrasting coastal erosion sites in the Canadian Arctic

G Tanski, L Bröder, D Wagner… - Frontiers in Earth …, 2021 - ui.adsabs.harvard.edu
Warming air and sea temperatures, longer open-water seasons and sea-level rise promote
the erosion of permafrost coasts in the Arctic, which profoundly impacts organic matter …

[PDF][PDF] Permafrost Carbon and CO 2 Pathways Differ at Contrasting Coastal Erosion Sites in the Canadian Arctic

G Tanski, L Bröder, D Wagner, C Knoblauch, H Lantuit… - gfzpublic.gfz-potsdam.de
Tanski et al. CO2 Production Along Permafrost Coasts cycling onshore as transfer times are
short. Once eroded sediments are deposited in the nearshore, highest OC losses can be …

Permafrost Carbon and CO2 Pathways Differ at Contrasting Coastal Erosion Sites in the Canadian Arctic

G Tanski, L Bröder, D Wagner… - Observations …, 2022 - research-collection.ethz.ch
Warming air and sea temperatures, longer open-water seasons and sea-level rise
collectively promote the erosion of permafrost coasts in the Arctic, which profoundly impacts …