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Complex distribution of ancient carbon between tributaries of the Upper Lena seen in radiocarbon dates of modern fish

Bibliographic Data

ID19312741
AuthorsCorrie Hyland (0000-0003-3531-1880, University of Oxford, corresponding author), Karolina Cameron-Werens (Vrije Universiteit Brussel), Christophe Snoeck (0000-0003-3770-4055, Vrije Universiteit Brussel), Aleksander Shchetnikov (Institute of the Earth’s Crust), Pavel Tarasov (0000-0003-0408-2210, Freie Universität Berlin), Andrzej Weber (0000-0001-9336-9672, University of Alberta), R J Schulting (0000-0002-4444-766X, University of Oxford)
Year2026
Volume68
Issue3
Pages490-520
Publication date2026-06-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueRadiocarbon (JOURNAL)
Journal identifiersISSN: 0033-8222 • E-ISSN: 1945-5755
PublisherCambridge University Press (CUP) (PUBLISHER)
DOI10.1017/rdc.2026.10219
OpenAlexW7162787361
LanguageEN
References cited96

The results of radiocarbon dating of modern fish bone collagen from the Upper Lena River have identified a large and highly variable freshwater reservoir effect, with a maximum offset age of 2389 ± 19 14 C yr BP. Variable contributions from both dissolved bedrock carbonate and permafrost soil melt were identified as the drivers for these reservoir offsets using a combination of bulk and amino acid specific stable carbon and nitrogen isotopes, as well as the novel application of strontium isotope ratios ( 87 Sr/ 86 Sr) to the study of reservoir effects. Strontium isotope ratios were used as a means of identifying the contributions of dissolved limestone and dolostone carbonate to the fish tissues in comparison to their associated radiocarbon ( 14 C) offset ages. An updated model for δ 13 C and 14 C age offsets in fish bone collagen was produced to interpret the potential combined contributions of old carbon from both permafrost soil melt and carbonates from bedrock erosion. The wide range of 14 C offset ages identified in this study poses challenges to producing robust corrections for both modern and archaeological reservoir effects in human populations. Specifically, there is a need to address the potentially wide range of 14 C ages which fish could represent, rather than using reservoir effect correction models which function best with uniform endmember contributions of old carbon

Aragonite · Bedrock · Carbonate · Fish bone · Isotopes of carbon · Permafrost · Radiocarbon dating · Silt · Tributary · Archaeology and ancient environmental studies · Geology and Paleoclimatology Research · Pleistocene-Era Hominins and Archaeology

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Citation velocityhistorical
Highly citedNo
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