{"id":{"repo_id":"south-carolina","oai_identifier":"oai:scholarcommons.sc.edu:etd-2341"},"canonical_url":"https://search.dev.ndltd.org/etd/south-carolina/oai:scholarcommons.sc.edu:etd-2341","repository":{"repo_id":"south-carolina","name":"University of South Carolina","base_url":"https://scholarcommons.sc.edu/do/oai/"},"display":{"title":"Paleoceanographic and Paleoclimatic Changes Associated With the Eocene-Oligocene Transition","abstract":"<p>The Eocene-Oligocene transition (EOT) is one of the largest global paleoclimatic events of the past 50 myr. Surface and deep water temperature histories and variations in global ice volume were reconstructed using paired measurements of &delta;<super>18</super>O and Mg/Ca on benthic and planktonic foraminifera across the EOT using Ocean Drilling Program (ODP) Sites 1090 and 1265. I identified A 2°C cooling of bottom waters coincident with the first shift in benthic foraminiferal &delta;<super>18</super>O (termed EOT-1), that suggests little, if any, change in global ice volume. A ~1.5°C cooling of bottom waters and simultaneous 0.75 &delta;<sub>seawater</sub> increase associated the second benthic &delta;<super>18</super>O shift (termed Oi-1 for \"Oligocene isotope event 1\") is equivalent to a ~70 m eustatic drop and the growth of an ice sheet that is 85-95% of the modern Antarctic ice sheet. A 3°C sea-surface temperature warming at Site 1265 is found to be associated with Oi-1 that likely reflects restricted South Atlantic gyral circulation and/or a response to an increase in atmospheric pCO<sub>2</sub>. My data from Site 1265 and previous work at Site 1263 [Peck et al., 2010] show a significant &Delta;&delta;<super>18</super>O surface-to-bottom water gradient that represents the development a well-stratified water-mass during Oi-1. Fossil fish teeth &epsilon;<sub>Nd</sub> data paired with benthic &delta;<super>18</super>O and &delta;<super>13</super>C records from ODP Sites 1090 and 1265 were used to reconstruct past episodes of glacial weathering and deep water circulation patterns associated with the EOT. A pulse of nonradiogenic &epsilon;<sub>Nd</sub> at Site 1090 occurs in conjunction with the benthic &delta;<super>18</super>O increase across Oi-1. A similar relationship at ODP Site 738 from Prydz Bay [Scher et al., 2011] argues for a pulse of eroded sediments from the Antarctic continent during ice-sheet growth. The rapid timing and coeval nature of the &epsilon;<sub>Nd</sub> shift at Sites 738 and 1090 suggests the dissolved material was quickly spread throughout the Southern Ocean and diluted by mixing with other water masses. There is also evidence for a pulse of Northern Component Water occurring immediately prior to the EOT based on an &epsilon;<sub>Nd</sub> decrease at Sites 1090 and 1265 that is coincident with an inter-basinal benthic &delta;<super>13</super>C gradient.</p>","abstract_html":"&lt;p&gt;The Eocene-Oligocene transition (EOT) is one of the largest global paleoclimatic events of the past 50 myr. Surface and deep water temperature histories and variations in global ice volume were reconstructed using paired measurements of &amp;delta;&lt;super&gt;18&lt;/super&gt;O and Mg/Ca on benthic and planktonic foraminifera across the EOT using Ocean Drilling Program (ODP) Sites 1090 and 1265. I identified A 2°C cooling of bottom waters coincident with the first shift in benthic foraminiferal &amp;delta;&lt;super&gt;18&lt;/super&gt;O (termed EOT-1), that suggests little, if any, change in global ice volume. A ~1.5°C cooling of bottom waters and simultaneous 0.75 &amp;delta;&lt;sub&gt;seawater&lt;/sub&gt; increase associated the second benthic &amp;delta;&lt;super&gt;18&lt;/super&gt;O shift (termed Oi-1 for &quot;Oligocene isotope event 1&quot;) is equivalent to a ~70 m eustatic drop and the growth of an ice sheet that is 85-95% of the modern Antarctic ice sheet. A 3°C sea-surface temperature warming at Site 1265 is found to be associated with Oi-1 that likely reflects restricted South Atlantic gyral circulation and/or a response to an increase in atmospheric pCO&lt;sub&gt;2&lt;/sub&gt;. My data from Site 1265 and previous work at Site 1263 [Peck et al., 2010] show a significant &amp;Delta;&amp;delta;&lt;super&gt;18&lt;/super&gt;O surface-to-bottom water gradient that represents the development a well-stratified water-mass during Oi-1. Fossil fish teeth &amp;epsilon;&lt;sub&gt;Nd&lt;/sub&gt; data paired with benthic &amp;delta;&lt;super&gt;18&lt;/super&gt;O and &amp;delta;&lt;super&gt;13&lt;/super&gt;C records from ODP Sites 1090 and 1265 were used to reconstruct past episodes of glacial weathering and deep water circulation patterns associated with the EOT. A pulse of nonradiogenic &amp;epsilon;&lt;sub&gt;Nd&lt;/sub&gt; at Site 1090 occurs in conjunction with the benthic &amp;delta;&lt;super&gt;18&lt;/super&gt;O increase across Oi-1. A similar relationship at ODP Site 738 from Prydz Bay [Scher et al., 2011] argues for a pulse of eroded sediments from the Antarctic continent during ice-sheet growth. The rapid timing and coeval nature of the &amp;epsilon;&lt;sub&gt;Nd&lt;/sub&gt; shift at Sites 738 and 1090 suggests the dissolved material was quickly spread throughout the Southern Ocean and diluted by mixing with other water masses. There is also evidence for a pulse of Northern Component Water occurring immediately prior to the EOT based on an &amp;epsilon;&lt;sub&gt;Nd&lt;/sub&gt; decrease at Sites 1090 and 1265 that is coincident with an inter-basinal benthic &amp;delta;&lt;super&gt;13&lt;/super&gt;C gradient.&lt;/p&gt;","abstract_has_math":false,"creators":["Pusz, Aimee Elizabeth"],"institution":null,"degree_name":"Ph.D.","degree_level":"Campus Access Dissertation","degree_discipline":"Earth and Ocean Sciences","degree_department":null,"school":null,"contributors":["Robert C Thunell"],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2011,"date_issued":"2011-01-01T08:00:00Z","date_published":"2011-01-01T08:00:00Z","updated_at":"2026-07-24T04:37:49Z","subjects":["Earth Sciences","Geology","Physical Sciences and Mathematics","Eocene-Oligocene transition","foraminifera","radiogenic isotopes","stable isotopes","trace metals"],"languages":[],"rights":["© 2011, Aimee Elizabeth Pusz"],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://scholarcommons.sc.edu/etd/1340","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Robert C Thunell"]},{"key":"dc:creator","label":"Author","values":["Pusz, Aimee Elizabeth"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"thesis:degree_discipline","label":"Discipline","values":["Earth and Ocean Sciences"]},{"key":"thesis:degree_level","label":"Degree Level","values":["Campus Access Dissertation"]},{"key":"thesis:degree_name","label":"Degree Name","values":["Ph.D."]}]},{"id":"subjects_keywords","label":"Subjects and Keywords","entries":[{"key":"dc:subject","label":"Dc Subject","values":["Earth Sciences","Geology","Physical Sciences and Mathematics","Eocene-Oligocene transition","foraminifera","radiogenic isotopes","stable isotopes","trace metals"]}]},{"id":"language_rights","label":"Language and Rights","entries":[{"key":"dc:rights","label":"Dc Rights","values":["© 2011, Aimee Elizabeth Pusz"]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier","label":"Identifier","values":["https://scholarcommons.sc.edu/etd/1340"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["<p>The Eocene-Oligocene transition (EOT) is one of the largest global paleoclimatic events of the past 50 myr. Surface and deep water temperature histories and variations in global ice volume were reconstructed using paired measurements of &delta;<super>18</super>O and Mg/Ca on benthic and planktonic foraminifera across the EOT using Ocean Drilling Program (ODP) Sites 1090 and 1265. I identified A 2°C cooling of bottom waters coincident with the first shift in benthic foraminiferal &delta;<super>18</super>O (termed EOT-1), that suggests little, if any, change in global ice volume. A ~1.5°C cooling of bottom waters and simultaneous 0.75 &delta;<sub>seawater</sub> increase associated the second benthic &delta;<super>18</super>O shift (termed Oi-1 for \"Oligocene isotope event 1\") is equivalent to a ~70 m eustatic drop and the growth of an ice sheet that is 85-95% of the modern Antarctic ice sheet. A 3°C sea-surface temperature warming at Site 1265 is found to be associated with Oi-1 that likely reflects restricted South Atlantic gyral circulation and/or a response to an increase in atmospheric pCO<sub>2</sub>. My data from Site 1265 and previous work at Site 1263 [Peck et al., 2010] show a significant &Delta;&delta;<super>18</super>O surface-to-bottom water gradient that represents the development a well-stratified water-mass during Oi-1. Fossil fish teeth &epsilon;<sub>Nd</sub> data paired with benthic &delta;<super>18</super>O and &delta;<super>13</super>C records from ODP Sites 1090 and 1265 were used to reconstruct past episodes of glacial weathering and deep water circulation patterns associated with the EOT. A pulse of nonradiogenic &epsilon;<sub>Nd</sub> at Site 1090 occurs in conjunction with the benthic &delta;<super>18</super>O increase across Oi-1. A similar relationship at ODP Site 738 from Prydz Bay [Scher et al., 2011] argues for a pulse of eroded sediments from the Antarctic continent during ice-sheet growth. The rapid timing and coeval nature of the &epsilon;<sub>Nd</sub> shift at Sites 738 and 1090 suggests the dissolved material was quickly spread throughout the Southern Ocean and diluted by mixing with other water masses. There is also evidence for a pulse of Northern Component Water occurring immediately prior to the EOT based on an &epsilon;<sub>Nd</sub> decrease at Sites 1090 and 1265 that is coincident with an inter-basinal benthic &delta;<super>13</super>C gradient.</p>"]},{"key":"dc:title","label":"Title","values":["Paleoceanographic and Paleoclimatic Changes Associated With the Eocene-Oligocene Transition"]}]}],"canonical_facts":{"dc:contributor":["Robert C Thunell"],"dc:creator":["Pusz, Aimee Elizabeth"],"dc:description.abstract":["<p>The Eocene-Oligocene transition (EOT) is one of the largest global paleoclimatic events of the past 50 myr. Surface and deep water temperature histories and variations in global ice volume were reconstructed using paired measurements of &delta;<super>18</super>O and Mg/Ca on benthic and planktonic foraminifera across the EOT using Ocean Drilling Program (ODP) Sites 1090 and 1265. I identified A 2°C cooling of bottom waters coincident with the first shift in benthic foraminiferal &delta;<super>18</super>O (termed EOT-1), that suggests little, if any, change in global ice volume. A ~1.5°C cooling of bottom waters and simultaneous 0.75 &delta;<sub>seawater</sub> increase associated the second benthic &delta;<super>18</super>O shift (termed Oi-1 for \"Oligocene isotope event 1\") is equivalent to a ~70 m eustatic drop and the growth of an ice sheet that is 85-95% of the modern Antarctic ice sheet. A 3°C sea-surface temperature warming at Site 1265 is found to be associated with Oi-1 that likely reflects restricted South Atlantic gyral circulation and/or a response to an increase in atmospheric pCO<sub>2</sub>. My data from Site 1265 and previous work at Site 1263 [Peck et al., 2010] show a significant &Delta;&delta;<super>18</super>O surface-to-bottom water gradient that represents the development a well-stratified water-mass during Oi-1. Fossil fish teeth &epsilon;<sub>Nd</sub> data paired with benthic &delta;<super>18</super>O and &delta;<super>13</super>C records from ODP Sites 1090 and 1265 were used to reconstruct past episodes of glacial weathering and deep water circulation patterns associated with the EOT. A pulse of nonradiogenic &epsilon;<sub>Nd</sub> at Site 1090 occurs in conjunction with the benthic &delta;<super>18</super>O increase across Oi-1. A similar relationship at ODP Site 738 from Prydz Bay [Scher et al., 2011] argues for a pulse of eroded sediments from the Antarctic continent during ice-sheet growth. The rapid timing and coeval nature of the &epsilon;<sub>Nd</sub> shift at Sites 738 and 1090 suggests the dissolved material was quickly spread throughout the Southern Ocean and diluted by mixing with other water masses. There is also evidence for a pulse of Northern Component Water occurring immediately prior to the EOT based on an &epsilon;<sub>Nd</sub> decrease at Sites 1090 and 1265 that is coincident with an inter-basinal benthic &delta;<super>13</super>C gradient.</p>"],"dc:identifier":["https://scholarcommons.sc.edu/etd/1340"],"dc:rights":["© 2011, Aimee Elizabeth Pusz"],"dc:subject":["Earth Sciences","Geology","Physical Sciences and Mathematics","Eocene-Oligocene transition","foraminifera","radiogenic isotopes","stable isotopes","trace metals"],"dc:title":["Paleoceanographic and Paleoclimatic Changes Associated With the Eocene-Oligocene Transition"],"thesis:degree_discipline":["Earth and Ocean Sciences"],"thesis:degree_level":["Campus Access Dissertation"],"thesis:degree_name":["Ph.D."]},"updated_at":"2026-07-24T04:37:49Z"}