Barium stable isotopes in the global ocean: Tracer of Ba inputs and utilization

Barium has been used as a biogeochemical tracer for alkalinity, productivity, and riverine inputs in the ocean, but its oceanic cycle remains poorly constrained. Barium stable isotope measurements may improve the use of Ba as a tracer and better constrain the cycling of Ba, but data are only availab...

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Published in:Earth and Planetary Science Letters
Main Authors: Hsieh, Y, Henderson, G
Format: Article in Journal/Newspaper
Language:unknown
Published: Elsevier 2017
Subjects:
Online Access:https://doi.org/10.1016/j.epsl.2017.06.024
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spelling ftuloxford:oai:ora.ox.ac.uk:uuid:254296fa-5652-4222-8413-9f52c15aa139 2023-05-15T17:36:23+02:00 Barium stable isotopes in the global ocean: Tracer of Ba inputs and utilization Hsieh, Y Henderson, G 2017-06-22 https://doi.org/10.1016/j.epsl.2017.06.024 https://ora.ox.ac.uk/objects/uuid:254296fa-5652-4222-8413-9f52c15aa139 unknown Elsevier doi:10.1016/j.epsl.2017.06.024 https://ora.ox.ac.uk/objects/uuid:254296fa-5652-4222-8413-9f52c15aa139 https://doi.org/10.1016/j.epsl.2017.06.024 info:eu-repo/semantics/openAccess CC Attribution-NonCommercial-NoDerivatives (CC BY-NC-ND) CC-BY-NC-ND Journal article 2017 ftuloxford https://doi.org/10.1016/j.epsl.2017.06.024 2022-06-28T20:08:02Z Barium has been used as a biogeochemical tracer for alkalinity, productivity, and riverine inputs in the ocean, but its oceanic cycle remains poorly constrained. Barium stable isotope measurements may improve the use of Ba as a tracer and better constrain the cycling of Ba, but data are only available in limited regions of the oceans. In this study, we present dissolved seawater Ba isotopic compositions in a sample collection spanning the North Atlantic, South Atlantic, North Pacific and Southern Oceans. Compiled global upper-ocean [Ba] data show a relatively constant [Ba] (35 ~ 45 nM) in the near-surface waters throughout the global ocean, with the exception of areas near river inputs or strong upwelling. The relatively uniform distribution of [Ba] in the upper ocean seawater indicates that Ba removal is slow relative to supply and mixing, and implies that near-surface Ba isotope values are controlled by basin-scale balances rather than by regional or short-term processes. Seawater Ba isotopic compositions show a large variation of d138/134Ba values ranging from 0.24 to 0.65‰, and a tight relationship with [Ba]. This global relationship can be simply modeled assuming a primary deep Southern Ocean source for Ba to yield a maximum isotope fractionation of a = 1.00058 ± 0.00010 (a = 138/134Baseawater/138/134Baparticle). This suggested isotope fractionation during Ba removal from seawater is larger than implied by laboratory measurement during barite formation, suggesting additional fractionating phases or a two-stage fractionation process. Riverine input from the Rio de la Plata to the South Atlantic has a signature of d138/134Ba = -0.06 ~ 0.11 ‰, which is too light to explain the heavy values (> 0.58 ‰) observed in the surface open ocean. Globally, the Ba isotope composition of the upper ocean waters is correlated with the fraction of Ba utilization at the basin scale (which varies from 15-70% at sites studied here). In the deep Atlantic Ocean, distinct d138/134Ba signals in the northern-sourced (≈0.45 ‰) 50 ... Article in Journal/Newspaper North Atlantic Southern Ocean ORA - Oxford University Research Archive Pacific Southern Ocean Earth and Planetary Science Letters 473 269 278
institution Open Polar
collection ORA - Oxford University Research Archive
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language unknown
description Barium has been used as a biogeochemical tracer for alkalinity, productivity, and riverine inputs in the ocean, but its oceanic cycle remains poorly constrained. Barium stable isotope measurements may improve the use of Ba as a tracer and better constrain the cycling of Ba, but data are only available in limited regions of the oceans. In this study, we present dissolved seawater Ba isotopic compositions in a sample collection spanning the North Atlantic, South Atlantic, North Pacific and Southern Oceans. Compiled global upper-ocean [Ba] data show a relatively constant [Ba] (35 ~ 45 nM) in the near-surface waters throughout the global ocean, with the exception of areas near river inputs or strong upwelling. The relatively uniform distribution of [Ba] in the upper ocean seawater indicates that Ba removal is slow relative to supply and mixing, and implies that near-surface Ba isotope values are controlled by basin-scale balances rather than by regional or short-term processes. Seawater Ba isotopic compositions show a large variation of d138/134Ba values ranging from 0.24 to 0.65‰, and a tight relationship with [Ba]. This global relationship can be simply modeled assuming a primary deep Southern Ocean source for Ba to yield a maximum isotope fractionation of a = 1.00058 ± 0.00010 (a = 138/134Baseawater/138/134Baparticle). This suggested isotope fractionation during Ba removal from seawater is larger than implied by laboratory measurement during barite formation, suggesting additional fractionating phases or a two-stage fractionation process. Riverine input from the Rio de la Plata to the South Atlantic has a signature of d138/134Ba = -0.06 ~ 0.11 ‰, which is too light to explain the heavy values (> 0.58 ‰) observed in the surface open ocean. Globally, the Ba isotope composition of the upper ocean waters is correlated with the fraction of Ba utilization at the basin scale (which varies from 15-70% at sites studied here). In the deep Atlantic Ocean, distinct d138/134Ba signals in the northern-sourced (≈0.45 ‰) 50 ...
format Article in Journal/Newspaper
author Hsieh, Y
Henderson, G
spellingShingle Hsieh, Y
Henderson, G
Barium stable isotopes in the global ocean: Tracer of Ba inputs and utilization
author_facet Hsieh, Y
Henderson, G
author_sort Hsieh, Y
title Barium stable isotopes in the global ocean: Tracer of Ba inputs and utilization
title_short Barium stable isotopes in the global ocean: Tracer of Ba inputs and utilization
title_full Barium stable isotopes in the global ocean: Tracer of Ba inputs and utilization
title_fullStr Barium stable isotopes in the global ocean: Tracer of Ba inputs and utilization
title_full_unstemmed Barium stable isotopes in the global ocean: Tracer of Ba inputs and utilization
title_sort barium stable isotopes in the global ocean: tracer of ba inputs and utilization
publisher Elsevier
publishDate 2017
url https://doi.org/10.1016/j.epsl.2017.06.024
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geographic Pacific
Southern Ocean
geographic_facet Pacific
Southern Ocean
genre North Atlantic
Southern Ocean
genre_facet North Atlantic
Southern Ocean
op_relation doi:10.1016/j.epsl.2017.06.024
https://ora.ox.ac.uk/objects/uuid:254296fa-5652-4222-8413-9f52c15aa139
https://doi.org/10.1016/j.epsl.2017.06.024
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container_title Earth and Planetary Science Letters
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