Palaeomagnetic, astrochronological, and environmental magnetic perspective on Oligocene-Miocene climate, using drift sediments from the northwest Atlantic Ocean

The Antarctic ice sheet oscillated between nearly deglaciated and near-­‐modern proportions, sometimes within ~110 kyr, during transient glacial phases of the Oligocene-­‐Miocene icehouse world (5.33-­‐33.9 Ma). Ice sheet hysteresis is closely coupled with carbon-­‐cycle feedback mechanisms that are...

Full description

Bibliographic Details
Main Author: Van Peer, Tim
Format: Thesis
Language:English
Published: Universty of Southampton 2017
Subjects:
Online Access:https://eprints.soton.ac.uk/416832/
https://eprints.soton.ac.uk/416832/1/Van_Peer_Tim_PhD_Thesis_Nov_17_.pdf
id ftsouthampton:oai:eprints.soton.ac.uk:416832
record_format openpolar
spelling ftsouthampton:oai:eprints.soton.ac.uk:416832 2023-07-30T03:57:52+02:00 Palaeomagnetic, astrochronological, and environmental magnetic perspective on Oligocene-Miocene climate, using drift sediments from the northwest Atlantic Ocean Van Peer, Tim 2017-11-20 text https://eprints.soton.ac.uk/416832/ https://eprints.soton.ac.uk/416832/1/Van_Peer_Tim_PhD_Thesis_Nov_17_.pdf en English eng Universty of Southampton https://eprints.soton.ac.uk/416832/1/Van_Peer_Tim_PhD_Thesis_Nov_17_.pdf Van Peer, Tim (2017) Palaeomagnetic, astrochronological, and environmental magnetic perspective on Oligocene-Miocene climate, using drift sediments from the northwest Atlantic Ocean. University of Southampton, Doctoral Thesis, 217pp. uos_thesis Thesis NonPeerReviewed 2017 ftsouthampton 2023-07-09T22:19:46Z The Antarctic ice sheet oscillated between nearly deglaciated and near-­‐modern proportions, sometimes within ~110 kyr, during transient glacial phases of the Oligocene-­‐Miocene icehouse world (5.33-­‐33.9 Ma). Ice sheet hysteresis is closely coupled with carbon-­‐cycle feedback mechanisms that are strongly affected by ocean circulation. However, the absence of high-­‐resolution records representing the North Atlantic end member, a key region driving modern climate variability and ocean circulation, hamper full understanding of Oligocene-­‐Miocene ocean circulation and climate. In this thesis, I integrate palaeomagnetic, X-­‐ray fluorescence (XRF), and environmental magnetic records to date and reconstruct current variability from contourite drift sediments, recovered at Integrated Ocean Drilling Program (IODP) Site U1406 (northwest Atlantic). The revised splice ensures stratigraphic continuity for the studied section. The presented novel palaeomagnetic data processing protocol, which is applicable to all weakly magnetised sediments, ensures the use of only high quality directional data for the construction of a reliable magnetostratigraphy between Chrons C6Ar – C9n (21-­‐27 Ma). Astronomical tuning using XRF-­‐based ln(Ca/K), a proxy for CaCO3 content, provides independent dates for the identified geomagnetic reversals. I determine the best age estimates of reversals using a set of criteria to reconcile the Oligocene-­‐Miocene geomagnetic polarity time scale. Congruent obliquity-­‐paced CaCO3 cycles at Ocean Drilling Program Site 926 (equatorial Atlantic) and IODP Site U1406 suggest that one corrosive bottom water mass influences the CaCO3 content of the boreal Atlantic. The location and occurrence of contourite drift sediments at IODP Site U1406 advocates that the Deep Western Boundary Current (DWBC) is the candidate for such corrosive bottom waters. DWBC variability around the Oligocene-­‐Miocene Transition (~23 Ma) is traced using the detrital magnetic fraction, containing titanohaematite, recognised ... Thesis Antarc* Antarctic Ice Sheet North Atlantic Northwest Atlantic University of Southampton: e-Prints Soton Antarctic The Antarctic
institution Open Polar
collection University of Southampton: e-Prints Soton
op_collection_id ftsouthampton
language English
description The Antarctic ice sheet oscillated between nearly deglaciated and near-­‐modern proportions, sometimes within ~110 kyr, during transient glacial phases of the Oligocene-­‐Miocene icehouse world (5.33-­‐33.9 Ma). Ice sheet hysteresis is closely coupled with carbon-­‐cycle feedback mechanisms that are strongly affected by ocean circulation. However, the absence of high-­‐resolution records representing the North Atlantic end member, a key region driving modern climate variability and ocean circulation, hamper full understanding of Oligocene-­‐Miocene ocean circulation and climate. In this thesis, I integrate palaeomagnetic, X-­‐ray fluorescence (XRF), and environmental magnetic records to date and reconstruct current variability from contourite drift sediments, recovered at Integrated Ocean Drilling Program (IODP) Site U1406 (northwest Atlantic). The revised splice ensures stratigraphic continuity for the studied section. The presented novel palaeomagnetic data processing protocol, which is applicable to all weakly magnetised sediments, ensures the use of only high quality directional data for the construction of a reliable magnetostratigraphy between Chrons C6Ar – C9n (21-­‐27 Ma). Astronomical tuning using XRF-­‐based ln(Ca/K), a proxy for CaCO3 content, provides independent dates for the identified geomagnetic reversals. I determine the best age estimates of reversals using a set of criteria to reconcile the Oligocene-­‐Miocene geomagnetic polarity time scale. Congruent obliquity-­‐paced CaCO3 cycles at Ocean Drilling Program Site 926 (equatorial Atlantic) and IODP Site U1406 suggest that one corrosive bottom water mass influences the CaCO3 content of the boreal Atlantic. The location and occurrence of contourite drift sediments at IODP Site U1406 advocates that the Deep Western Boundary Current (DWBC) is the candidate for such corrosive bottom waters. DWBC variability around the Oligocene-­‐Miocene Transition (~23 Ma) is traced using the detrital magnetic fraction, containing titanohaematite, recognised ...
format Thesis
author Van Peer, Tim
spellingShingle Van Peer, Tim
Palaeomagnetic, astrochronological, and environmental magnetic perspective on Oligocene-Miocene climate, using drift sediments from the northwest Atlantic Ocean
author_facet Van Peer, Tim
author_sort Van Peer, Tim
title Palaeomagnetic, astrochronological, and environmental magnetic perspective on Oligocene-Miocene climate, using drift sediments from the northwest Atlantic Ocean
title_short Palaeomagnetic, astrochronological, and environmental magnetic perspective on Oligocene-Miocene climate, using drift sediments from the northwest Atlantic Ocean
title_full Palaeomagnetic, astrochronological, and environmental magnetic perspective on Oligocene-Miocene climate, using drift sediments from the northwest Atlantic Ocean
title_fullStr Palaeomagnetic, astrochronological, and environmental magnetic perspective on Oligocene-Miocene climate, using drift sediments from the northwest Atlantic Ocean
title_full_unstemmed Palaeomagnetic, astrochronological, and environmental magnetic perspective on Oligocene-Miocene climate, using drift sediments from the northwest Atlantic Ocean
title_sort palaeomagnetic, astrochronological, and environmental magnetic perspective on oligocene-miocene climate, using drift sediments from the northwest atlantic ocean
publisher Universty of Southampton
publishDate 2017
url https://eprints.soton.ac.uk/416832/
https://eprints.soton.ac.uk/416832/1/Van_Peer_Tim_PhD_Thesis_Nov_17_.pdf
geographic Antarctic
The Antarctic
geographic_facet Antarctic
The Antarctic
genre Antarc*
Antarctic
Ice Sheet
North Atlantic
Northwest Atlantic
genre_facet Antarc*
Antarctic
Ice Sheet
North Atlantic
Northwest Atlantic
op_relation https://eprints.soton.ac.uk/416832/1/Van_Peer_Tim_PhD_Thesis_Nov_17_.pdf
Van Peer, Tim (2017) Palaeomagnetic, astrochronological, and environmental magnetic perspective on Oligocene-Miocene climate, using drift sediments from the northwest Atlantic Ocean. University of Southampton, Doctoral Thesis, 217pp.
op_rights uos_thesis
_version_ 1772819863774953472