Marine20 - the marine radiocarbon age calibration curve (0 - 55,000 cal BP), simulated data for IntCal20 ...

The concentration of radiocarbon (14C) differs between ocean and atmosphere. Radiocarbon determinations from samples which obtained their 14C in the marine environment therefore need a marine-specific calibration curve and cannot be calibrated directly against the atmospheric-based IntCal20 curve. T...

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Main Authors: Heaton, Timothy J, Köhler, Peter, Butzin, Martin, Bard, Edouard, Reimer, Ron W, Austin, William EN, Ramsey, Christopher Bronk, Grootes, Pieter Meiert, Hughen, Konrad A, Kromer, Bernd, Reimer, Paula J, Adkins, Jess F, Burke, Andreas, Cook, Mea S, Olsen, Jesper, Skinner, Luke C
Format: Dataset
Language:English
Published: PANGAEA 2020
Subjects:
Online Access:https://dx.doi.org/10.1594/pangaea.914500
https://doi.pangaea.de/10.1594/PANGAEA.914500
id ftdatacite:10.1594/pangaea.914500
record_format openpolar
spelling ftdatacite:10.1594/pangaea.914500 2024-09-15T18:12:04+00:00 Marine20 - the marine radiocarbon age calibration curve (0 - 55,000 cal BP), simulated data for IntCal20 ... Heaton, Timothy J Köhler, Peter Butzin, Martin Bard, Edouard Reimer, Ron W Austin, William EN Ramsey, Christopher Bronk Grootes, Pieter Meiert Hughen, Konrad A Kromer, Bernd Reimer, Paula J Adkins, Jess F Burke, Andreas Cook, Mea S Olsen, Jesper Skinner, Luke C 2020 text/tab-separated-values https://dx.doi.org/10.1594/pangaea.914500 https://doi.pangaea.de/10.1594/PANGAEA.914500 en eng PANGAEA https://dx.doi.org/10.1017/rdc.2020.68 Creative Commons Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/legalcode cc-by-4.0 marine reservoir age modelling radiocarbon File name File format File size Uniform resource locator/link to file Dataset dataset 2020 ftdatacite https://doi.org/10.1594/pangaea.91450010.1017/rdc.2020.68 2024-07-03T13:04:56Z The concentration of radiocarbon (14C) differs between ocean and atmosphere. Radiocarbon determinations from samples which obtained their 14C in the marine environment therefore need a marine-specific calibration curve and cannot be calibrated directly against the atmospheric-based IntCal20 curve. This paper presents Marine20, an update to the internationally-agreed marine radiocarbon age calibration curve that provides a non-polar global-average marine record of radiocarbon from 0 – 55 cal kBP and serves as a baseline for regional oceanic variation. Marine20 is based upon 500 simulations with an ocean/atmosphere/biosphere box-model of the global carbon cycle that has been forced by posterior realisations of our Northern Hemispheric atmospheric IntCal20 14C curve and reconstructed changes in CO2 obtained from ice core data. These forcings enable us to incorporate carbon cycle dynamics and temporal changes in the atmospheric 14C level. The box-model simulations of the global-average marine radiocarbon ... : The netCDF file included here contains results of marine reservoir age (MRA) simulations applying the LSG ocean general circulation model forced with various climatic background conditions and with atmospheric radiocarbon changes according to the IntCal20 reconstruction for the years 55,000-0 cal BP (one data point every 50 years), oceanic depth range, from which the MRA has been calculated, is 0-50 m. Land values are flagged with -100. The different results denote upper (MRA_MAX) and lower (MRA_MIN) bounds as well as the average (MRA_AVG) and the median (MRA_MED) of the ensemble of nine simulations ((3 versions of atmosheric Delta14C from IntCal20) x (3 climate forcing scenarios)). The range of results decreases for 10,700-0 cal BP, since this period covers only 3 ensemble members based on one climate forcing. This dataset complements PANGAEA dataset doi:10.1594/PANGAEA.902301, which was used in the construction of IntCal20 and employed preliminary atmospheric radiocarbon forcing based on the Hulu Cave ... Dataset ice core DataCite
institution Open Polar
collection DataCite
op_collection_id ftdatacite
language English
topic marine reservoir age
modelling
radiocarbon
File name
File format
File size
Uniform resource locator/link to file
spellingShingle marine reservoir age
modelling
radiocarbon
File name
File format
File size
Uniform resource locator/link to file
Heaton, Timothy J
Köhler, Peter
Butzin, Martin
Bard, Edouard
Reimer, Ron W
Austin, William EN
Ramsey, Christopher Bronk
Grootes, Pieter Meiert
Hughen, Konrad A
Kromer, Bernd
Reimer, Paula J
Adkins, Jess F
Burke, Andreas
Cook, Mea S
Olsen, Jesper
Skinner, Luke C
Marine20 - the marine radiocarbon age calibration curve (0 - 55,000 cal BP), simulated data for IntCal20 ...
topic_facet marine reservoir age
modelling
radiocarbon
File name
File format
File size
Uniform resource locator/link to file
description The concentration of radiocarbon (14C) differs between ocean and atmosphere. Radiocarbon determinations from samples which obtained their 14C in the marine environment therefore need a marine-specific calibration curve and cannot be calibrated directly against the atmospheric-based IntCal20 curve. This paper presents Marine20, an update to the internationally-agreed marine radiocarbon age calibration curve that provides a non-polar global-average marine record of radiocarbon from 0 – 55 cal kBP and serves as a baseline for regional oceanic variation. Marine20 is based upon 500 simulations with an ocean/atmosphere/biosphere box-model of the global carbon cycle that has been forced by posterior realisations of our Northern Hemispheric atmospheric IntCal20 14C curve and reconstructed changes in CO2 obtained from ice core data. These forcings enable us to incorporate carbon cycle dynamics and temporal changes in the atmospheric 14C level. The box-model simulations of the global-average marine radiocarbon ... : The netCDF file included here contains results of marine reservoir age (MRA) simulations applying the LSG ocean general circulation model forced with various climatic background conditions and with atmospheric radiocarbon changes according to the IntCal20 reconstruction for the years 55,000-0 cal BP (one data point every 50 years), oceanic depth range, from which the MRA has been calculated, is 0-50 m. Land values are flagged with -100. The different results denote upper (MRA_MAX) and lower (MRA_MIN) bounds as well as the average (MRA_AVG) and the median (MRA_MED) of the ensemble of nine simulations ((3 versions of atmosheric Delta14C from IntCal20) x (3 climate forcing scenarios)). The range of results decreases for 10,700-0 cal BP, since this period covers only 3 ensemble members based on one climate forcing. This dataset complements PANGAEA dataset doi:10.1594/PANGAEA.902301, which was used in the construction of IntCal20 and employed preliminary atmospheric radiocarbon forcing based on the Hulu Cave ...
format Dataset
author Heaton, Timothy J
Köhler, Peter
Butzin, Martin
Bard, Edouard
Reimer, Ron W
Austin, William EN
Ramsey, Christopher Bronk
Grootes, Pieter Meiert
Hughen, Konrad A
Kromer, Bernd
Reimer, Paula J
Adkins, Jess F
Burke, Andreas
Cook, Mea S
Olsen, Jesper
Skinner, Luke C
author_facet Heaton, Timothy J
Köhler, Peter
Butzin, Martin
Bard, Edouard
Reimer, Ron W
Austin, William EN
Ramsey, Christopher Bronk
Grootes, Pieter Meiert
Hughen, Konrad A
Kromer, Bernd
Reimer, Paula J
Adkins, Jess F
Burke, Andreas
Cook, Mea S
Olsen, Jesper
Skinner, Luke C
author_sort Heaton, Timothy J
title Marine20 - the marine radiocarbon age calibration curve (0 - 55,000 cal BP), simulated data for IntCal20 ...
title_short Marine20 - the marine radiocarbon age calibration curve (0 - 55,000 cal BP), simulated data for IntCal20 ...
title_full Marine20 - the marine radiocarbon age calibration curve (0 - 55,000 cal BP), simulated data for IntCal20 ...
title_fullStr Marine20 - the marine radiocarbon age calibration curve (0 - 55,000 cal BP), simulated data for IntCal20 ...
title_full_unstemmed Marine20 - the marine radiocarbon age calibration curve (0 - 55,000 cal BP), simulated data for IntCal20 ...
title_sort marine20 - the marine radiocarbon age calibration curve (0 - 55,000 cal bp), simulated data for intcal20 ...
publisher PANGAEA
publishDate 2020
url https://dx.doi.org/10.1594/pangaea.914500
https://doi.pangaea.de/10.1594/PANGAEA.914500
genre ice core
genre_facet ice core
op_relation https://dx.doi.org/10.1017/rdc.2020.68
op_rights Creative Commons Attribution 4.0 International
https://creativecommons.org/licenses/by/4.0/legalcode
cc-by-4.0
op_doi https://doi.org/10.1594/pangaea.91450010.1017/rdc.2020.68
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