University of Southampton
Orbital and Suborbital Climate Variability during the Pliocene Intensification of Northern Hemisphere Glaciation
Abstract
dc:description.abstractThe late Pliocene is marked by the end of an interval of warm, relatively stable global climate and a<br/>secular shift into a bipolar glaciated world. The intensification of northern hemisphere glaciation<br/>(iNHG) central to this climatic transition was accompanied by a decrease in atmospheric<br/>carbon dioxide concentrations and commenced around 3.5 million years ago. The climate<br/>forcing and response mechanisms involved in the iNHG are subjects of ongoing debate in the<br/>palaeoclimate literature. In this thesis, I reconstruct palaeoproductivity and suborbital climate<br/>fluctuations during this important interval, with particular focus on the first three consecutive,<br/>large, obliquity-paced glacial-interglacial cycles (marine isotope stages, MIS, 101-95), using proxy<br/>methods applied to deep-sea sediments in the equatorial oceans and the North Atlantic. In this<br/>way, I evaluate the forcing mechanisms, biogeochemical cycles and climate implications during<br/>the late Pliocene.<br/>In Chapter 2, palaeoproductivity is reconstructed in the western and eastern equatorial Pacific<br/>Ocean. Data reveal that productivity fluctuations are in phase between east and west and are<br/>obliquity-paced. This implicates high-latitude rather than local forcing of export productivity and<br/>no apparent role for east-west thermocline tilting on these timescales, as previously proposed.<br/>In Chapter 3, multi-proxy palaeoproductivity reconstructions in the eastern equatorial Pacific<br/>and Atlantic Ocean upwelling zones are considered in terms of proxy applicability and export<br/>productivity. Results suggest that alkenone accumulation may be a useful indicator of export<br/>productivity and that the late Pliocene biological pump was stronger during glacials than<br/>interglacials.<br/>In Chapter 4, an inferred secular productivity shift is investigated using calcareous nannofossil<br/>assemblages. Assemblage shifts at an equatorial Pacific and a North Atlantic Ocean site support<br/>the interpretation of an increase and a decrease in export productivity, respectively. Implications<br/>of a strengthened tropical biological pump at this time are considered.<br/>In Chapter 5, high-resolution climate records are used to investigate suborbital variability at<br/>North Atlantic Integrated Ocean Drilling Program Site U1313. Data indicate that only smallamplitude<br/>suborbital variability occurs during the late Pliocene, with no amplification within the<br/>boundary conditions and inferred ice-volume variations of MIS 103 to 95.
Degree
thesis:*- Name dc:type.qualificationname
- Ph.D.
- Level dc:type.qualificationlevel
- doctoral
- Grantor dc:publisher.institution
- University of Southampton
- Year dc:date.issued
- 2010
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Bolton, Clara Thérèse