Sedimentological and biogeochemical composition of fractionated permafrost- and sediment organic carbon of the nearshore zone of Herschel Island (Yukon, Canada)

This study aims to give insight into the processes affecting permafrost organic carbon (OC) during transport from its source to its sink, through a study on three sediment fractions along a land-to-ocean transect. Material was followed from thawing permafrost, through a dynamic 'disturbed zone' and the nearshore zone, to an enclosed basin offshore Herschel Island - Qikiqtaruk, to assess sorting and degradation processes on specific fractions of sediment OC. Sediment, soil and permafrost samples were taken along a transect from the source (undisturbed active layer and permafrost), via two transitional zones (a terrestrial disturbed zone, i.e. the 'scar zone' of the RTS, and the marine nearshore zone up to a water depth of 5 m), to sink (basin sediment, water depth >20 m) at the coast of Herschel Island – Qikiqtaruk and the (semi-enclosed) Herschel Basin in Yukon, Canada, just west of the Mackenzie River delta. Samples were taken in May 2016 and July 2017. Sample material was fractionated with an aqueous (MilliQ) solution of sodium polytungstate (SPT; Na6[H2W12O40]), with a density of 1.8 g cm³, followed by wet-sieving over a 63 µm mesh, thus separating loose OC from mineral-associated OC. Each fraction was analysed for element content (TOC, TN), carbon isotopes (δ¹³C, Δ¹⁴C), molecular biomarkers (n-alkanes, n-alkanoic acids, lignin phenols, cutin acids), and mineral surface area. The relative abundance of specific biomarkers can also be used as indicator for degradation of organic carbon. Furthermore, the OC 'loading' (concentration of OC normalised to mineral surface area; in mgOC/m²) and terrestrial biomarker loading (µgOC/m²) can be used to assess loss of (permafrost) OC from mineral particles. The combination of these methods allows us to disentangle sorting processes from degradation of OC along the land-to-ocean continuum, and provides a detailed insight into the fate of thawed and eroded permafrost OC.

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Cite this as

Jong, Dirk, Bröder, Lisa, Tesi, Tommaso, Tanski, George, Oudenhuijsen, Mickolai, Fritz, Michael, Lantuit, Hugues, Haghipour, Negar, Eglinton, Timothy Ian, Vonk, Jorien E (2024). Dataset: Sedimentological and biogeochemical composition of fractionated permafrost- and sediment organic carbon of the nearshore zone of Herschel Island (Yukon, Canada). https://doi.org/10.1594/PANGAEA.960026

DOI retrieved: 2024

Additional Info

Field Value
Imported on December 1, 2024
Last update December 1, 2024
License CC-BY-4.0
Source https://doi.org/10.1594/PANGAEA.960026
Author Jong, Dirk
Given Name Dirk
Family Name Jong
More Authors
Bröder, Lisa
Tesi, Tommaso
Tanski, George
Oudenhuijsen, Mickolai
Fritz, Michael
Lantuit, Hugues
Haghipour, Negar
Eglinton, Timothy Ian
Vonk, Jorien E
Source Creation 2024
Publication Year 2024
Resource Type application/zip - filename: Jong-etal_2023
Subject Areas
Name: Chemistry

Related Identifiers
Title: Selective Sorting and Degradation of Permafrost Organic Matter in the Nearshore Zone of Herschel Island (Yukon, Canada)
Identifier: https://doi.org/10.1029/2023JG007479
Type: DOI
Relation: References
Year: 2024
Source: Journal of Geophysical Research: Biogeosciences
Authors: Jong Dirk , Bröder Lisa , Tesi Tommaso , Tanski George , Oudenhuijsen Mickolai , Fritz Michael , Lantuit Hugues , Haghipour Negar , Eglinton Timothy Ian , Vonk Jorien E , Jong Dirk , Bröder Lisa , Tanski George , Fritz Michael , Lantuit Hugues , Tesi Tommaso , Haghipour Negar , Eglinton Timothy Ian , Vonk Jorien E , Jong Dirk , Bröder Lisa , Tanski George , Fritz Michael , Lantuit Hugues , Tesi Tommaso , Haghipour Negar , Eglinton Timothy Ian , Vonk Jorien E .

Title: Biogeochemistry of suspended particulate matter and sediment from the nearshore zone of Herschel Island, Canada
Identifier: https://doi.org/10.1594/PANGAEA.913721
Type: DOI
Relation: References
Year: 2020
Authors: Jong Dirk , Bröder Lisa , Tesi Tommaso , Tanski George , Oudenhuijsen Mickolai , Fritz Michael , Lantuit Hugues , Haghipour Negar , Eglinton Timothy Ian , Vonk Jorien E , Jong Dirk , Bröder Lisa , Tanski George , Fritz Michael , Lantuit Hugues , Tesi Tommaso , Haghipour Negar , Eglinton Timothy Ian , Vonk Jorien E , Jong Dirk , Bröder Lisa , Tanski George , Fritz Michael , Lantuit Hugues , Tesi Tommaso , Haghipour Negar , Eglinton Timothy Ian , Vonk Jorien E .

Title: Nearshore zone dynamics determine pathway of organic carbon from eroding permafrost coasts
Identifier: https://doi.org/10.1029/2020GL088561
Type: DOI
Relation: References
Year: 2020
Source: Geophysical Research Letters
Authors: Jong Dirk , Bröder Lisa , Tesi Tommaso , Tanski George , Oudenhuijsen Mickolai , Fritz Michael , Lantuit Hugues , Haghipour Negar , Eglinton Timothy Ian , Vonk Jorien E , Jong Dirk , Bröder Lisa , Tanski George , Fritz Michael , Lantuit Hugues , Tesi Tommaso , Haghipour Negar , Eglinton Timothy Ian , Vonk Jorien E , Jong Dirk , Bröder Lisa , Tanski George , Fritz Michael , Lantuit Hugues , Tesi Tommaso , Haghipour Negar , Eglinton Timothy Ian , Vonk Jorien E .