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Pronounced warmth during early Middle Pleistocene interglacials Investigating the Mid-Brunhes Event in the British terrestrial sequence

期刊

EARTH-SCIENCE REVIEWS
卷 103, 期 3-4, 页码 183-196

出版社

ELSEVIER
DOI: 10.1016/j.earscirev.2010.09.007

关键词

Mid Brunhes Event; Early Middle Pleistocene; Interglacial climates; Thermophiles; Terrestrial sequences

资金

  1. Leverhulme Trust
  2. NERC [bgs05001] Funding Source: UKRI
  3. Natural Environment Research Council [bgs05001] Funding Source: researchfish

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The Mid-Brunhes Event (MBE) is a climatic transition occurring between MIS 13 and 11 that separates two climatic modes (1) early Middle Pleistocene interglacials (780-450 ka) that are characterised by only moderate warmth and (2) Middle and Late Pleistocene interglacials (occurring after 450 ka) that are characterised by greater warmth consistent with or warmer than the Holocene This event is observable within a variety of long climate records such as SPECMAP and EPICA but its effect on terrestrial systems is poorly understood The impact of this event is examined in the British terrestrial sequence by comparing the occurrence of a range of thermophilous plant and animal species and climate reconstructions derived from assemblages containing them from interglacials of the early Middle Pleistocene with those from the late Middle and Late Pleistocene This comparison reveals that interglacial climates during the early Middle Pleistocene in Britain were as warm as and in some cases warmer than those that occurred during the late Middle and Late Pleistocene This interpretation is supported by sea surface temperature records in the North Atlantic which show that temperatures during early Middle Pleistocene interglacials were at least as warm as those experienced during the Holocene There is therefore no evidence in climate records of Britain and the North Atlantic for a Mid-Brunhes Event. This suggests that the MBE is not a global climatic transition but is restricted to specific regions in particular the higher latitudes of the southern Hemisphere Further work is needed to understand the regional variability and cause of the MBE. (c) 2010 Elsevier B V All rights reserved

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