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Sabino, Mathia; Gustafsson, Örjan; Wild, Birgit; Semiletov, Igor P; Dudarev, Oleg V; Ingrosso, Gianmarco (2024): Radiocarbon content and age of terrestrial material deposited at the paleo-delta of the Lena River at the transition to the Preboreal [dataset]. PANGAEA, https://doi.pangaea.de/10.1594/PANGAEA.972412 (DOI registration in progress)

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Abstract:
The dataset was used to reconstruct the release of permafrost organic carbon from the watershed of the Lena River (Russia) between 11.1 and 11.7 calibrated thousand years Before Present (cal. kyr BP, Present = 1950 AD) and to model potential methane emissions from this carbon source. Data were obtained analyzing plant debris isolated from the low density fraction (<1.8 g/cm3) of muddy sediments from the Piston Core 23 (PC23). The sediment core was retrieved in July 2014 in the mid/outer-shelf of the Laptev Sea shelf (76° 10' 15.6''N; 129° 20' 13.2''E, water depth of 56 m) during Leg 1 of the SWERUS-C3 expedition (Swedish-Russian-U.S. Arctic Ocean – Investigation of Climate-Cryosphere-Carbon interactions). Radiocarbon (¹⁴C) content measurements were performed on 4 to 7 mg of sample on May 2022 using the Continuous Flow Accelerator Mass Spectrometry (CFAMS) system at the National Ocean Sciences Accelerator Mass Spectrometry (NOSAMS) facility (Woods Hole Oceanographic Institution, Woods Hole, MA, USA). The ¹⁴C content was used to calculate ¹⁴C isotope ratios (D¹⁴C) and to reconstruct non-calibrated and calibrated ¹⁴C ages of plant debris isolated from the sediment fraction with a density lower than 1.8 g/cm3. Additionally, D¹⁴C values were used to calculate the ¹⁴C content of plant debris at time of sediment deposition (D¹⁴Ci) and the latter to obtain pre-depositional ¹⁴C ages. The dataset allowed to reconstruct the age of the terrestrial plant material when deposited at the coring site and identify its provenance from within the permafrost OC pool (sub-surface soil within 1 m depth vs deep soil) after remobilization. The average pre-depositional ¹⁴C age of plant debris was ultimately used to model methane emissions from relatively young permafrost organic carbon during the late deglaciation (ca. 10 to 15 cal. kyr BP).
Keyword(s):
Arctic; Deglaciation; Methane; Permafrost
Supplement to:
Sabino, Mathia; Gustafsson, Örjan; Wild, Birgit; Semiletov, Igor P; Dudarev, Oleg V; Ingrosso, Gianmarco; Tesi, Tommaso (in review): Feedbacks from Young Permafrost Carbon Remobilization to the Deglacial Methane Rise. Global Biogeochemical Cycles
Coverage:
Latitude: 76.171000 * Longitude: 129.337000
Date/Time Start: 2014-07-22T21:06:40 * Date/Time End: 2014-07-22T21:06:40
Minimum DEPTH, sediment/rock: 0.005 m * Maximum DEPTH, sediment/rock: 2.345 m
Event(s):
SWERUS-C3_PC23 * Latitude: 76.171000 * Longitude: 129.337000 * Date/Time: 2014-07-22T21:06:40 * Elevation: -56.0 m * Recovery: 421.7 cm * Location: Lena River, Lena Delta, Siberia, Russia * Campaign: SWERUS-C3 (77DN20140705) * Basis: Oden * Method/Device: Piston corer (PC) * Comment: Section I: 134.2 cm; Section II: 137 cm; Section III: 150.5 cm
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Event labelEvent
2Latitude of eventLatitude
3Longitude of eventLongitude
4Elevation of eventElevationm
5Date/Time of eventDate/Time
6Sample code/labelSample labelSabino, Mathia
7Depth, top/minDepth topmSabino, Mathia
8Depth, sediment/rock, bottom/maximumDepth sed botmSabino, Mathia
9DEPTH, sediment/rockDepth sedmSabino, MathiaGeocode
10Fraction modern carbonF14CSabino, MathiaContinuous Flow Accelerator Mass Spectrometry (CFAMS)
11Fraction modern carbon, errorF14C e±Sabino, MathiaContinuous Flow Accelerator Mass Spectrometry (CFAMS)
12AGEAgeka BPSabino, MathiaAge, 14CGeocode – 14Cage=-8033*ln(Fm)
13Age, errorAge e±Sabino, MathiaAge, 14C
14Calendar ageCal ageka BPSabino, MathiaAge, 14C
15Calendar age, standard errorCal age std e±Sabino, MathiaAge, 14C
16Δ14CΔ14CSabino, MathiaCalculatedD14C=[Fm*e^(l*(1950-Yc))-1]*1000
17Δ14C, errorΔ14C error±Sabino, MathiaCalculated
18Δ14C, initialΔ14CiSabino, MathiaCalculatedat time of deposition; D14Ci=[(D14C/1000+1)*e^(l*t)-1]*1000
19Δ14C, initial, errorΔ14Ci error±Sabino, MathiaCalculatedat time of deposition
20Age, pre-depositionalAge pre-deposka BPSabino, MathiaCalculatedpre-depositional14Cage=-8033*[(1+D14Ci/1000)/(1+D14Catm/1000)]
21Age, pre-depositional, errorAge pre-depos error±Sabino, MathiaCalculated
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
140 data points

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