Evaluating controls on planktonic foraminiferal geochemistry in the Eastern Tropical North Pacific
© 2016 Elsevier B.V. To explore relationships between water column hydrography and foraminiferal geochemistry in the Eastern Tropical North Pacific, we present δO18 and Mg/Ca records from three species of planktonic foraminifera, Globigerinoides ruber, Globigerina bulloides, and Globorotalia menardi...
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Language: | English |
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ftcdlib:qt69r3r0pv 2023-05-15T18:01:12+02:00 Evaluating controls on planktonic foraminiferal geochemistry in the Eastern Tropical North Pacific Gibson, KA Thunell, RC Machain-Castillo, ML Fehrenbacher, J Spero, HJ Wejnert, K Nava-Fernández, X Tappa, EJ 90 - 103 2016-10-15 application/pdf http://www.escholarship.org/uc/item/69r3r0pv english eng eScholarship, University of California qt69r3r0pv http://www.escholarship.org/uc/item/69r3r0pv public Gibson, KA; Thunell, RC; Machain-Castillo, ML; Fehrenbacher, J; Spero, HJ; Wejnert, K; et al.(2016). Evaluating controls on planktonic foraminiferal geochemistry in the Eastern Tropical North Pacific. Earth and Planetary Science Letters, 452, 90 - 103. doi:10.1016/j.epsl.2016.07.039. UC Davis: Retrieved from: http://www.escholarship.org/uc/item/69r3r0pv foraminiferal geochemistry Mg/Ca Eastern Tropical North Pacific water column hydrography secondary calcite pH/[CO32-] article 2016 ftcdlib https://doi.org/10.1016/j.epsl.2016.07.039 2018-06-29T22:51:52Z © 2016 Elsevier B.V. To explore relationships between water column hydrography and foraminiferal geochemistry in the Eastern Tropical North Pacific, we present δO18 and Mg/Ca records from three species of planktonic foraminifera, Globigerinoides ruber, Globigerina bulloides, and Globorotalia menardii, collected from a sediment trap mooring maintained in the Gulf of Tehuantepec from 2006–2012. Differences in δO18 between mixed-layer species G. ruber and G. bulloides and thermocline-dweller G. menardii track seasonal changes in upwelling. The records suggest an increase in upwelling during the peak positive phase of El Niño, and an overall reduction in stratification over the six-year period. For all three species, Mg/Ca ratios are higher than what has been reported in previous studies, and show poor correlations to calcification temperature. We suggest that low pH (7.6–8.0) and [CO32−] values (∼70–120 μmol/kg) in the mixed layer contribute to an overall trend of higher Mg/Ca ratios in this region. Laser Ablation Inductively Coupled Mass Spectrometry analyses of G. bulloides with high Mg/Ca ratios (>9 mmol/mol) reveal the presence of a secondary coating of inorganic calcite that has Mg/Ca and Mn/Ca ratios up to an order of magnitude higher than these elemental ratios in the primary calcite, along with elevated Sr/Ca and Ba/Ca ratios. Some of the samples with abnormally high Mg/Ca are found during periods of high primary productivity, suggesting the alteration may be related to changes in carbonate saturation resulting from remineralization of organic matter in oxygen-poor waters in the water column. Although similar shell layering has been observed on fossil foraminifera, this is the first time such alteration has been studied in shells collected from the water column. Our results suggest a role for seawater carbonate chemistry in influencing foraminiferal calcite trace element:calcium ratios prior to deposition on the seafloor, particularly in high-productivity, low-oxygen environments. Article in Journal/Newspaper Planktonic foraminifera University of California: eScholarship Pacific Earth and Planetary Science Letters 452 90 103 |
institution |
Open Polar |
collection |
University of California: eScholarship |
op_collection_id |
ftcdlib |
language |
English |
topic |
foraminiferal geochemistry Mg/Ca Eastern Tropical North Pacific water column hydrography secondary calcite pH/[CO32-] |
spellingShingle |
foraminiferal geochemistry Mg/Ca Eastern Tropical North Pacific water column hydrography secondary calcite pH/[CO32-] Gibson, KA Thunell, RC Machain-Castillo, ML Fehrenbacher, J Spero, HJ Wejnert, K Nava-Fernández, X Tappa, EJ Evaluating controls on planktonic foraminiferal geochemistry in the Eastern Tropical North Pacific |
topic_facet |
foraminiferal geochemistry Mg/Ca Eastern Tropical North Pacific water column hydrography secondary calcite pH/[CO32-] |
description |
© 2016 Elsevier B.V. To explore relationships between water column hydrography and foraminiferal geochemistry in the Eastern Tropical North Pacific, we present δO18 and Mg/Ca records from three species of planktonic foraminifera, Globigerinoides ruber, Globigerina bulloides, and Globorotalia menardii, collected from a sediment trap mooring maintained in the Gulf of Tehuantepec from 2006–2012. Differences in δO18 between mixed-layer species G. ruber and G. bulloides and thermocline-dweller G. menardii track seasonal changes in upwelling. The records suggest an increase in upwelling during the peak positive phase of El Niño, and an overall reduction in stratification over the six-year period. For all three species, Mg/Ca ratios are higher than what has been reported in previous studies, and show poor correlations to calcification temperature. We suggest that low pH (7.6–8.0) and [CO32−] values (∼70–120 μmol/kg) in the mixed layer contribute to an overall trend of higher Mg/Ca ratios in this region. Laser Ablation Inductively Coupled Mass Spectrometry analyses of G. bulloides with high Mg/Ca ratios (>9 mmol/mol) reveal the presence of a secondary coating of inorganic calcite that has Mg/Ca and Mn/Ca ratios up to an order of magnitude higher than these elemental ratios in the primary calcite, along with elevated Sr/Ca and Ba/Ca ratios. Some of the samples with abnormally high Mg/Ca are found during periods of high primary productivity, suggesting the alteration may be related to changes in carbonate saturation resulting from remineralization of organic matter in oxygen-poor waters in the water column. Although similar shell layering has been observed on fossil foraminifera, this is the first time such alteration has been studied in shells collected from the water column. Our results suggest a role for seawater carbonate chemistry in influencing foraminiferal calcite trace element:calcium ratios prior to deposition on the seafloor, particularly in high-productivity, low-oxygen environments. |
format |
Article in Journal/Newspaper |
author |
Gibson, KA Thunell, RC Machain-Castillo, ML Fehrenbacher, J Spero, HJ Wejnert, K Nava-Fernández, X Tappa, EJ |
author_facet |
Gibson, KA Thunell, RC Machain-Castillo, ML Fehrenbacher, J Spero, HJ Wejnert, K Nava-Fernández, X Tappa, EJ |
author_sort |
Gibson, KA |
title |
Evaluating controls on planktonic foraminiferal geochemistry in the Eastern Tropical North Pacific |
title_short |
Evaluating controls on planktonic foraminiferal geochemistry in the Eastern Tropical North Pacific |
title_full |
Evaluating controls on planktonic foraminiferal geochemistry in the Eastern Tropical North Pacific |
title_fullStr |
Evaluating controls on planktonic foraminiferal geochemistry in the Eastern Tropical North Pacific |
title_full_unstemmed |
Evaluating controls on planktonic foraminiferal geochemistry in the Eastern Tropical North Pacific |
title_sort |
evaluating controls on planktonic foraminiferal geochemistry in the eastern tropical north pacific |
publisher |
eScholarship, University of California |
publishDate |
2016 |
url |
http://www.escholarship.org/uc/item/69r3r0pv |
op_coverage |
90 - 103 |
geographic |
Pacific |
geographic_facet |
Pacific |
genre |
Planktonic foraminifera |
genre_facet |
Planktonic foraminifera |
op_source |
Gibson, KA; Thunell, RC; Machain-Castillo, ML; Fehrenbacher, J; Spero, HJ; Wejnert, K; et al.(2016). Evaluating controls on planktonic foraminiferal geochemistry in the Eastern Tropical North Pacific. Earth and Planetary Science Letters, 452, 90 - 103. doi:10.1016/j.epsl.2016.07.039. UC Davis: Retrieved from: http://www.escholarship.org/uc/item/69r3r0pv |
op_relation |
qt69r3r0pv http://www.escholarship.org/uc/item/69r3r0pv |
op_rights |
public |
op_doi |
https://doi.org/10.1016/j.epsl.2016.07.039 |
container_title |
Earth and Planetary Science Letters |
container_volume |
452 |
container_start_page |
90 |
op_container_end_page |
103 |
_version_ |
1766170580909817856 |