Please use this identifier to cite or link to this item: http://hdl.handle.net/1893/31761
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dc.contributor.advisorTisdall, Eileen-
dc.contributor.advisorBradwell, Tom-
dc.contributor.advisorMcCulloch, Robert-
dc.contributor.authorCochrane, Allan Alexander-
dc.date.accessioned2020-09-30T13:31:58Z-
dc.date.issued2020-05-12-
dc.identifier.urihttp://hdl.handle.net/1893/31761-
dc.description.abstractReconstructing high-resolution records of atmospheric temperature change is necessary to better understand the oceanic-atmospheric-terrestrial systems of the North Atlantic region. Using chironomid assemblages to reconstruct mean July summer temperatures is a robust method allowing for records of climate change to be made on sub-centennial scales. No records are available for the north coast and Northern Isles of Scotland presently. Sediments from three Scottish sites (Shetland, Orkney and Caithness) spanning the Last Glacial – Interglacial transition (c.15-10k cal a BP) were analysed for chironomid assemblages, micro-XRF geochemical markers, long-chain alkenones and lithology to enhance our understand of palaeoclimate and environmental changes during this time. These sites are located close to the North Atlantic Ocean, are highly sensitive to fluctuations in the thermohaline circulation and are prime localities to study the complex interaction between the ocean-atmosphere-terrestrial systems. Mean July summer temperature records have been inferred from chironomid assemblages found in lacustrine sediments from Orkney and Shetland (Northern Isles) and Caithness (the north coast of Scotland), complemented by the first long chain alkenone (LCA) spring lake temperature record for Scotland (Caithness). The chironomid and LCA records have provided a better understanding of seasonality in the climate records: showing that spring lake temperatures warmed earlier than summer temperatures and shows temporal, and magnitudinal, leads and lags between sites across N.W Europe. Chironomid and alkenone inferred temperatures captured the abrupt cooling phases GI-d (6-7 ̊C), GI-1b (6-7 ̊C) and GS-1(5-6 ̊C) found in the Greenland ice core records. The warming phases GI-1e (10-11 ̊C), GI-1c (8-9.5 ̊C), GI-1a (10-11.5 ̊C) and the Holocene onset (12 ̊C) have also been recorded. Orkney and Caithness record the subtle three-phased event GI-1c, highlighting the warmer GI-1c (1), cooler GI-1c (2) and the warmer GI-1c (3) stage. Summer trends in Shetland are not as abrupt as those in Caithness and Orkney and trends in Shetland are more similar to those in Greenland than in other Scottish sites.en_GB
dc.language.isoenen_GB
dc.publisherUniversity of Stirlingen_GB
dc.subjectPalaeoclimateen_GB
dc.subjectChironomidsen_GB
dc.subjectScotlanden_GB
dc.subjectAlkenonesen_GB
dc.subjectLast glacial - interglacial transitionen_GB
dc.subjectHoloceneen_GB
dc.subjectTephrochronologyen_GB
dc.subjectRadiocarbon datingen_GB
dc.subjectPalaeo-limnologyen_GB
dc.subjectNorth Atlanticen_GB
dc.subjectPalaeo-ecologyen_GB
dc.subjectNorth Polar Fronten_GB
dc.subject.lcshPaleoclimatology Scotlanden_GB
dc.subject.lcshClimatic changes Scotlanden_GB
dc.subject.lcshTephrochronology Scotlanden_GB
dc.subject.lcshRadiocarbon dating Scotlanden_GB
dc.subject.lcshShetland (Scotland)en_GB
dc.subject.lcshOrkney (Scotland)en_GB
dc.subject.lcshCaithness (Scotland)en_GB
dc.titlePalaeoclimate reconstruction of the Northern Isles of Scotland, and Caithness, during the Last Glacial – Interglacial Transitionen_GB
dc.typeThesis or Dissertationen_GB
dc.type.qualificationlevelDoctoralen_GB
dc.type.qualificationnameDoctor of Philosophyen_GB
dc.rights.embargodate2021-10-01-
dc.rights.embargoreasonWriting publications and articlesen_GB
dc.contributor.funderNatural Environmental Research Council (NERC), Scottish Association of Geoscience, Environment & Society (SAGES)en_GB
dc.author.emailallan.alexander.cochrane@gmail.comen_GB
dc.rights.embargoterms2021-11-01en_GB
dc.rights.embargoliftdate2021-11-01-
Appears in Collections:Biological and Environmental Sciences eTheses

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