Decoupled carbonate chemistry controls on the incorporation of boron into Orbulina universa

In order to fully constrain paleo-carbonate systems, proxies for two out of seven parameters, plus temperature and salinity, are required. The boron isotopic composition (δ11B) of planktonic foraminifera shells is a powerful tool for reconstructing changes in past surface ocean pH. As B(OH)-4 is sub...

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Main Authors: Howes, Ella L., Kaczmarek, Karina, Raitzsch, Markus, Mewes, Antje, Bijma, Nienke, Horn, Ingo, Misra, Sambuddha, Gattuso, Jean-Pierre, Bijma, Jelle
Format: Article in Journal/Newspaper
Language:English
Published: Göttingen : Copernicus GmbH 2017
Subjects:
Online Access:http://www.repo.uni-hannover.de/handle/123456789/1249
https://doi.org/10.15488/1224
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author Howes, Ella L.
Kaczmarek, Karina
Raitzsch, Markus
Mewes, Antje
Bijma, Nienke
Horn, Ingo
Misra, Sambuddha
Gattuso, Jean-Pierre
Bijma, Jelle
author_facet Howes, Ella L.
Kaczmarek, Karina
Raitzsch, Markus
Mewes, Antje
Bijma, Nienke
Horn, Ingo
Misra, Sambuddha
Gattuso, Jean-Pierre
Bijma, Jelle
author_sort Howes, Ella L.
collection Institutional Repository of Leibniz Universität Hannover
description In order to fully constrain paleo-carbonate systems, proxies for two out of seven parameters, plus temperature and salinity, are required. The boron isotopic composition (δ11B) of planktonic foraminifera shells is a powerful tool for reconstructing changes in past surface ocean pH. As B(OH)-4 is substituted into the biogenic calcite lattice in place of CO2- 3 , and both borate and carbonate ions are more abundant at higher pH, it was suggested early on that B = Ca ratios in biogenic calcite may serve as a proxy for [CO2- 3 ]. Although several recent studies have shown that a direct connection of B = Ca to carbonate system parameters may be masked by other environmental factors in the field, there is ample evidence for a mechanistic relationship between B= Ca and carbonate system parameters. Here, we focus on investigating the primary relationship to develop a mechanistic understanding of boron uptake. Differentiating between the effects of pH and [CO2- 3 ] is problematic, as they co-vary closely in natural systems, so the major control on boron incorporation remains unclear. To deconvolve the effects of pH and [CO2- 3 ] and to investigate their impact on the B= Ca ratio and δ11B, we conducted culture experiments with the planktonic foraminifer Orbulina universa in manipulated culture media: Constant pH (8.05), but changing [CO2- 3 ] (238, 286 and 534 μmol kg-1 CO2- 3 ) and at constant [CO2- 3 ] (276±19.5 μmol kg-1) and varying pH (7.7, 7.9 and 8.05). Measurements of the isotopic composition of boron and the B = Ca ratio were performed simultaneously using a femtosecond laser ablation system coupled to a MC-ICP-MS (multiple-collector inductively coupled plasma mass spectrometer). Our results show that, as expected, δ11B is controlled by pH but it is also modulated by [CO2- 3 ]. On the other hand, the B= Ca ratio is driven by [HCO-3 ], independently of pH. This suggests that B= Ca ratios in foraminiferal calcite can possibly be used as a second, independent, proxy for complete paleo-carbonate system ...
format Article in Journal/Newspaper
genre Planktonic foraminifera
genre_facet Planktonic foraminifera
id ftunivhannover:oai:www.repo.uni-hannover.de:123456789/1249
institution Open Polar
language English
op_collection_id ftunivhannover
op_doi https://doi.org/10.15488/122410.5194/bg-14-415-2017
op_relation DOI:https://doi.org/10.5194/bg-14-415-2017
ISSN:1726-4170
http://dx.doi.org/10.15488/1224
op_rights CC BY 3.0 Unported
https://creativecommons.org/licenses/by/3.0/
frei zugänglich
op_source Biogeosciences 14 (2017), Nr. 2
publishDate 2017
publisher Göttingen : Copernicus GmbH
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spelling ftunivhannover:oai:www.repo.uni-hannover.de:123456789/1249 2025-01-17T00:21:59+00:00 Decoupled carbonate chemistry controls on the incorporation of boron into Orbulina universa Howes, Ella L. Kaczmarek, Karina Raitzsch, Markus Mewes, Antje Bijma, Nienke Horn, Ingo Misra, Sambuddha Gattuso, Jean-Pierre Bijma, Jelle 2017 http://www.repo.uni-hannover.de/handle/123456789/1249 https://doi.org/10.15488/1224 eng eng Göttingen : Copernicus GmbH DOI:https://doi.org/10.5194/bg-14-415-2017 ISSN:1726-4170 http://dx.doi.org/10.15488/1224 CC BY 3.0 Unported https://creativecommons.org/licenses/by/3.0/ frei zugänglich Biogeosciences 14 (2017), Nr. 2 Foraminifera Orbulina universa ddc:550 status-type:publishedVersion doc-type:Article doc-type:Text 2017 ftunivhannover https://doi.org/10.15488/122410.5194/bg-14-415-2017 2024-11-04T15:16:23Z In order to fully constrain paleo-carbonate systems, proxies for two out of seven parameters, plus temperature and salinity, are required. The boron isotopic composition (δ11B) of planktonic foraminifera shells is a powerful tool for reconstructing changes in past surface ocean pH. As B(OH)-4 is substituted into the biogenic calcite lattice in place of CO2- 3 , and both borate and carbonate ions are more abundant at higher pH, it was suggested early on that B = Ca ratios in biogenic calcite may serve as a proxy for [CO2- 3 ]. Although several recent studies have shown that a direct connection of B = Ca to carbonate system parameters may be masked by other environmental factors in the field, there is ample evidence for a mechanistic relationship between B= Ca and carbonate system parameters. Here, we focus on investigating the primary relationship to develop a mechanistic understanding of boron uptake. Differentiating between the effects of pH and [CO2- 3 ] is problematic, as they co-vary closely in natural systems, so the major control on boron incorporation remains unclear. To deconvolve the effects of pH and [CO2- 3 ] and to investigate their impact on the B= Ca ratio and δ11B, we conducted culture experiments with the planktonic foraminifer Orbulina universa in manipulated culture media: Constant pH (8.05), but changing [CO2- 3 ] (238, 286 and 534 μmol kg-1 CO2- 3 ) and at constant [CO2- 3 ] (276±19.5 μmol kg-1) and varying pH (7.7, 7.9 and 8.05). Measurements of the isotopic composition of boron and the B = Ca ratio were performed simultaneously using a femtosecond laser ablation system coupled to a MC-ICP-MS (multiple-collector inductively coupled plasma mass spectrometer). Our results show that, as expected, δ11B is controlled by pH but it is also modulated by [CO2- 3 ]. On the other hand, the B= Ca ratio is driven by [HCO-3 ], independently of pH. This suggests that B= Ca ratios in foraminiferal calcite can possibly be used as a second, independent, proxy for complete paleo-carbonate system ... Article in Journal/Newspaper Planktonic foraminifera Institutional Repository of Leibniz Universität Hannover
spellingShingle Foraminifera
Orbulina universa
ddc:550
Howes, Ella L.
Kaczmarek, Karina
Raitzsch, Markus
Mewes, Antje
Bijma, Nienke
Horn, Ingo
Misra, Sambuddha
Gattuso, Jean-Pierre
Bijma, Jelle
Decoupled carbonate chemistry controls on the incorporation of boron into Orbulina universa
title Decoupled carbonate chemistry controls on the incorporation of boron into Orbulina universa
title_full Decoupled carbonate chemistry controls on the incorporation of boron into Orbulina universa
title_fullStr Decoupled carbonate chemistry controls on the incorporation of boron into Orbulina universa
title_full_unstemmed Decoupled carbonate chemistry controls on the incorporation of boron into Orbulina universa
title_short Decoupled carbonate chemistry controls on the incorporation of boron into Orbulina universa
title_sort decoupled carbonate chemistry controls on the incorporation of boron into orbulina universa
topic Foraminifera
Orbulina universa
ddc:550
topic_facet Foraminifera
Orbulina universa
ddc:550
url http://www.repo.uni-hannover.de/handle/123456789/1249
https://doi.org/10.15488/1224