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Burial and origin of permafrost derived carbon in the nearshore zone of the southern Canadian Beaufort Sea

Detailed organic geochemical and carbon isotopic (d13C and D14C) analyses are performed on permafrost deposits affected by coastal erosion (Herschel Island, Canadian Beaufort Sea), and adjacent marine sediments (Herschel Basin) to understand the fate of organic carbon in Arctic nearshore environments. We use an end-member model based on the carbon isotopic composition of bulk organic matter to identify sources of organic carbon. Monte Carlo simulations are applied to quantify the contribution of coastal permafrost erosion to the sedimentary carbon budget. The models suggest that 36 % of all carbon released by local coastal permafrost erosion is efficiently trapped and sequestered in the nearshore zone. This highlights the importance of sedimentary traps in environments such as basins, lagoons, troughs and canyons for the carbon sequestration in previously poorly investigated, nearshore areas.

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Cite this as

Grotheer, Hendrik, Meyer, Vera D, Riedel, Torsten, Pfalz, Gregor, Mathieu, Laura, Hefter, Jens, Gentz, Torben, Lantuit, Hugues, Mollenhauer, Gesine, Fritz, Michael (2019). Dataset: Burial and origin of permafrost derived carbon in the nearshore zone of the southern Canadian Beaufort Sea. https://doi.org/10.1594/PANGAEA.910013

DOI retrieved: 2019

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-4.0
Source https://doi.org/10.1594/PANGAEA.910013
Author Grotheer, Hendrik
Given Name Hendrik
Family Name Grotheer
More Authors
Meyer, Vera D
Riedel, Torsten
Pfalz, Gregor
Mathieu, Laura
Hefter, Jens
Gentz, Torben
Lantuit, Hugues
Mollenhauer, Gesine
Fritz, Michael
Source Creation 2019
Publication Year 2019
Resource Type application/zip - filename: GrotheerH-etal_2019
Subject Areas
Name: Lithosphere

Related Identifiers
Title: Burial and Origin of Permafrost‐Derived Carbon in the Nearshore Zone of the Southern Canadian Beaufort Sea
Identifier: https://doi.org/10.1029/2019GL085897
Type: DOI
Relation: References
Year: 2020
Source: Geophysical Research Letters
Authors: Grotheer Hendrik , Meyer Vera D , Riedel Thorsten , Pfalz Gregor , Mathieu Laura , Hefter Jens , Gentz Torben , Lantuit Hugues , Mollenhauer Gesine , Fritz Michael .