Characterization of organic matter in marine sediments to estimate age offset of bulk radiocarbon dating

Radiocarbon dating of Arctic marine sediment is often challenging due to the low availability of calcareous fossils. Consequently, bulk organic matter dating has at times been used to establish sediment core chronologies. Yet, radiocarbon dates based on bulk organic matter often appear to deviate va...

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Published in:Quaternary Geochronology
Main Authors: Hansen, Katrine Elnegaard, Giraudeau, Jacques, Limoges, Audrey, Massé, Guillaume, Rudra, Arka, Wacker, Lukas, Sanei, Hamed, Pearce, Christof, Seidenkrantz, Marit Solveig
Format: Article in Journal/Newspaper
Language:English
Published: 2022
Subjects:
Online Access:https://pure.au.dk/portal/en/publications/197371c6-2431-44df-814d-bad8524e0ba8
https://doi.org/10.1016/j.quageo.2021.101242
https://pure.au.dk/ws/files/335757386/1_s2.0_S1871101421000923_main.pdf
http://www.scopus.com/inward/record.url?scp=85117695978&partnerID=8YFLogxK
id ftuniaarhuspubl:oai:pure.atira.dk:publications/197371c6-2431-44df-814d-bad8524e0ba8
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spelling ftuniaarhuspubl:oai:pure.atira.dk:publications/197371c6-2431-44df-814d-bad8524e0ba8 2024-01-28T10:02:37+01:00 Characterization of organic matter in marine sediments to estimate age offset of bulk radiocarbon dating Hansen, Katrine Elnegaard Giraudeau, Jacques Limoges, Audrey Massé, Guillaume Rudra, Arka Wacker, Lukas Sanei, Hamed Pearce, Christof Seidenkrantz, Marit Solveig 2022-02 application/pdf https://pure.au.dk/portal/en/publications/197371c6-2431-44df-814d-bad8524e0ba8 https://doi.org/10.1016/j.quageo.2021.101242 https://pure.au.dk/ws/files/335757386/1_s2.0_S1871101421000923_main.pdf http://www.scopus.com/inward/record.url?scp=85117695978&partnerID=8YFLogxK eng eng https://pure.au.dk/portal/en/publications/197371c6-2431-44df-814d-bad8524e0ba8 info:eu-repo/semantics/openAccess Hansen , K E , Giraudeau , J , Limoges , A , Massé , G , Rudra , A , Wacker , L , Sanei , H , Pearce , C & Seidenkrantz , M S 2022 , ' Characterization of organic matter in marine sediments to estimate age offset of bulk radiocarbon dating ' , Quaternary Geochronology , vol. 67 , 101242 . https://doi.org/10.1016/j.quageo.2021.101242 Age offset Bulk organic matter Holocene Marine sediments Organic pyrolysis Radiocarbon dating article 2022 ftuniaarhuspubl https://doi.org/10.1016/j.quageo.2021.101242 2024-01-04T00:00:25Z Radiocarbon dating of Arctic marine sediment is often challenging due to the low availability of calcareous fossils. Consequently, bulk organic matter dating has at times been used to establish sediment core chronologies. Yet, radiocarbon dates based on bulk organic matter often appear to deviate vastly from dates based on fossils, mainly caused by input of allochthounous carbon, including terrigenous organic matter. In this study, we aim to examine the link between the composition of the bulk organic matter and the age offsets between the bulk radiocarbon dates and those obtained from calcareous foraminiferal tests. All samples are taken from the marine sediment core AMD14-204C from offshore Upernavik (eastern Baffin Bay). The radiocarbon dates for bulk organic matter are on average ∼3000 years older than the radiocarbon dates based on foraminifera, but with changing age offsets throughout the record. To investigate the cause of this age offset and its variations over time, we applied core scanning, X-ray Fluorescence analysis, stable isotopes, organic pyrolysis and microscopic organic petrology to examine the distribution and characterization of the organic matter. The results show that the older organic matter includes clastic input of reworked sedimentary rocks potentially originating from West Greenland and/or the Canadian Arctic Archipelago. Changes in the input of contemporary marine algal produced organic matter versus both terrigenous input and reworked ancient organic matter appear to control the age offsets between the bulk and foraminifera dates. A low Hydrogen Index and low δ 13 C org values together with a high Oxygen Index, indicative of high influence of terrigenous organic matter, seem to correspond to samples with the largest age offsets; 1000–2000 years greater than in other samples. To examine the cause of the variations in the age offsets, a new quantification of the autochthonous organic matter as a fraction of the TOC was calculated. This shows that samples with the largest age offsets ... Article in Journal/Newspaper Arctic Archipelago Arctic Baffin Bay Baffin Bay Baffin Canadian Arctic Archipelago Foraminifera* Greenland Upernavik Aarhus University: Research Arctic Baffin Bay Canadian Arctic Archipelago Greenland Quaternary Geochronology 67 101242
institution Open Polar
collection Aarhus University: Research
op_collection_id ftuniaarhuspubl
language English
topic Age offset
Bulk organic matter
Holocene
Marine sediments
Organic pyrolysis
Radiocarbon dating
spellingShingle Age offset
Bulk organic matter
Holocene
Marine sediments
Organic pyrolysis
Radiocarbon dating
Hansen, Katrine Elnegaard
Giraudeau, Jacques
Limoges, Audrey
Massé, Guillaume
Rudra, Arka
Wacker, Lukas
Sanei, Hamed
Pearce, Christof
Seidenkrantz, Marit Solveig
Characterization of organic matter in marine sediments to estimate age offset of bulk radiocarbon dating
topic_facet Age offset
Bulk organic matter
Holocene
Marine sediments
Organic pyrolysis
Radiocarbon dating
description Radiocarbon dating of Arctic marine sediment is often challenging due to the low availability of calcareous fossils. Consequently, bulk organic matter dating has at times been used to establish sediment core chronologies. Yet, radiocarbon dates based on bulk organic matter often appear to deviate vastly from dates based on fossils, mainly caused by input of allochthounous carbon, including terrigenous organic matter. In this study, we aim to examine the link between the composition of the bulk organic matter and the age offsets between the bulk radiocarbon dates and those obtained from calcareous foraminiferal tests. All samples are taken from the marine sediment core AMD14-204C from offshore Upernavik (eastern Baffin Bay). The radiocarbon dates for bulk organic matter are on average ∼3000 years older than the radiocarbon dates based on foraminifera, but with changing age offsets throughout the record. To investigate the cause of this age offset and its variations over time, we applied core scanning, X-ray Fluorescence analysis, stable isotopes, organic pyrolysis and microscopic organic petrology to examine the distribution and characterization of the organic matter. The results show that the older organic matter includes clastic input of reworked sedimentary rocks potentially originating from West Greenland and/or the Canadian Arctic Archipelago. Changes in the input of contemporary marine algal produced organic matter versus both terrigenous input and reworked ancient organic matter appear to control the age offsets between the bulk and foraminifera dates. A low Hydrogen Index and low δ 13 C org values together with a high Oxygen Index, indicative of high influence of terrigenous organic matter, seem to correspond to samples with the largest age offsets; 1000–2000 years greater than in other samples. To examine the cause of the variations in the age offsets, a new quantification of the autochthonous organic matter as a fraction of the TOC was calculated. This shows that samples with the largest age offsets ...
format Article in Journal/Newspaper
author Hansen, Katrine Elnegaard
Giraudeau, Jacques
Limoges, Audrey
Massé, Guillaume
Rudra, Arka
Wacker, Lukas
Sanei, Hamed
Pearce, Christof
Seidenkrantz, Marit Solveig
author_facet Hansen, Katrine Elnegaard
Giraudeau, Jacques
Limoges, Audrey
Massé, Guillaume
Rudra, Arka
Wacker, Lukas
Sanei, Hamed
Pearce, Christof
Seidenkrantz, Marit Solveig
author_sort Hansen, Katrine Elnegaard
title Characterization of organic matter in marine sediments to estimate age offset of bulk radiocarbon dating
title_short Characterization of organic matter in marine sediments to estimate age offset of bulk radiocarbon dating
title_full Characterization of organic matter in marine sediments to estimate age offset of bulk radiocarbon dating
title_fullStr Characterization of organic matter in marine sediments to estimate age offset of bulk radiocarbon dating
title_full_unstemmed Characterization of organic matter in marine sediments to estimate age offset of bulk radiocarbon dating
title_sort characterization of organic matter in marine sediments to estimate age offset of bulk radiocarbon dating
publishDate 2022
url https://pure.au.dk/portal/en/publications/197371c6-2431-44df-814d-bad8524e0ba8
https://doi.org/10.1016/j.quageo.2021.101242
https://pure.au.dk/ws/files/335757386/1_s2.0_S1871101421000923_main.pdf
http://www.scopus.com/inward/record.url?scp=85117695978&partnerID=8YFLogxK
geographic Arctic
Baffin Bay
Canadian Arctic Archipelago
Greenland
geographic_facet Arctic
Baffin Bay
Canadian Arctic Archipelago
Greenland
genre Arctic Archipelago
Arctic
Baffin Bay
Baffin Bay
Baffin
Canadian Arctic Archipelago
Foraminifera*
Greenland
Upernavik
genre_facet Arctic Archipelago
Arctic
Baffin Bay
Baffin Bay
Baffin
Canadian Arctic Archipelago
Foraminifera*
Greenland
Upernavik
op_source Hansen , K E , Giraudeau , J , Limoges , A , Massé , G , Rudra , A , Wacker , L , Sanei , H , Pearce , C & Seidenkrantz , M S 2022 , ' Characterization of organic matter in marine sediments to estimate age offset of bulk radiocarbon dating ' , Quaternary Geochronology , vol. 67 , 101242 . https://doi.org/10.1016/j.quageo.2021.101242
op_relation https://pure.au.dk/portal/en/publications/197371c6-2431-44df-814d-bad8524e0ba8
op_rights info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.1016/j.quageo.2021.101242
container_title Quaternary Geochronology
container_volume 67
container_start_page 101242
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