(Table S1) Globigerinoides sacculifer Boron isotope ratios of ODP Hole 165-999A

Fuente: PANGAEA
Saved in:
Bibliographic Details
Main Authors: Bartoli, Gretta, Hönisch, Bärbel, Zeebe, Richard E
Format: Dataset Open Access
Language:en
Published: PANGAEA 2011
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1867170042468106240
author Bartoli, Gretta
Hönisch, Bärbel
Zeebe, Richard E
author_facet Bartoli, Gretta
Hönisch, Bärbel
Zeebe, Richard E
collection Datos científicos de ciencias marinas y ambientales
contents everal hypotheses have been put forward to explain the onset of intensive glaciations on Greenland, Scandinavia, and North America during the Pliocene epoch between 3.6 and 2.7 million years ago (Ma). A decrease in atmospheric CO2 may have played a role during the onset of glaciations, but other tectonic and oceanic events occurring at the same time may have played a part as well. Here we present detailed atmospheric CO2 estimates from boron isotopes in planktic foraminifer shells spanning 4.6-2.0 Ma. Maximal Pliocene atmospheric CO2 estimates gradually declined from values around 410 µatm to early Pleistocene values of 300 matm at 2.0 Ma. After the onset of large-scale ice sheets in the Northern Hemisphere, maximal pCO2 estimates were still at 2.5 Ma +90 µatm higher than values characteristic of the early Pleistocene interglacials. By contrast, Pliocene minimal atmospheric CO2 gradually decreased from 310 to 245 µatm at 3.2 Ma, coinciding with the start of transient glaciations on Greenland. Values characteristic of early Pleistocene glacial atmospheric CO2 of 200 matm were abruptly reached after 2.7 Ma during the late Pliocene transition. This trend is consistent with the suggestion that ocean stratification and iron fertilization increased after 2.7 Ma in the North Pacific and Southern Ocean and may have led to increased glacial CO2 storage in the oceanic abyss after 2.7 Ma onward.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_829486
institution PANGAEA
language en
publishDate 2011
publisher PANGAEA
record_format pangaea
spellingShingle (Table S1) Globigerinoides sacculifer Boron isotope ratios of ODP Hole 165-999A
Bartoli, Gretta
Hönisch, Bärbel
Zeebe, Richard E
165-999A; AGE; Caribbean Sea; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Globigerinoides sacculifer, weight; Globigerinoides sacculifer, δ11B; Globigerinoides sacculifer, δ11B, standard error; Isotopic event; Joides Resolution; Leg165; Method comment; Ocean Drilling Program; ODP; Sample code/label; Size fraction
everal hypotheses have been put forward to explain the onset of intensive glaciations on Greenland, Scandinavia, and North America during the Pliocene epoch between 3.6 and 2.7 million years ago (Ma). A decrease in atmospheric CO2 may have played a role during the onset of glaciations, but other tectonic and oceanic events occurring at the same time may have played a part as well. Here we present detailed atmospheric CO2 estimates from boron isotopes in planktic foraminifer shells spanning 4.6-2.0 Ma. Maximal Pliocene atmospheric CO2 estimates gradually declined from values around 410 µatm to early Pleistocene values of 300 matm at 2.0 Ma. After the onset of large-scale ice sheets in the Northern Hemisphere, maximal pCO2 estimates were still at 2.5 Ma +90 µatm higher than values characteristic of the early Pleistocene interglacials. By contrast, Pliocene minimal atmospheric CO2 gradually decreased from 310 to 245 µatm at 3.2 Ma, coinciding with the start of transient glaciations on Greenland. Values characteristic of early Pleistocene glacial atmospheric CO2 of 200 matm were abruptly reached after 2.7 Ma during the late Pliocene transition. This trend is consistent with the suggestion that ocean stratification and iron fertilization increased after 2.7 Ma in the North Pacific and Southern Ocean and may have led to increased glacial CO2 storage in the oceanic abyss after 2.7 Ma onward.
title (Table S1) Globigerinoides sacculifer Boron isotope ratios of ODP Hole 165-999A
topic 165-999A; AGE; Caribbean Sea; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Globigerinoides sacculifer, weight; Globigerinoides sacculifer, δ11B; Globigerinoides sacculifer, δ11B, standard error; Isotopic event; Joides Resolution; Leg165; Method comment; Ocean Drilling Program; ODP; Sample code/label; Size fraction
url https://doi.org/10.1594/PANGAEA.829486