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An extended last glacial maximum in the Southern Hemisphere: A contribution to the SHeMax project

  • Lynda M. Petherick
  • , Jasper Knight
  • , James Shulmeister
  • , Helen Bostock
  • , Andrew Lorrey
  • , Jennifer Fitchett
  • , Shaun Eaves
  • , Marcus J. Vandergoes
  • , Timothy T. Barrows
  • , David J.A. Barrell
  • , Peter N. Eze
  • , Paul Hesse
  • , Ignacio A. Jara
  • , Stephanie Mills
  • , Rewi Newnham
  • , Joel Pedro
  • , Matt Ryan
  • , Krystyna M. Saunders
  • , Duanne White
  • , Maisa Rojas
  • Chris Turney
  • Victoria University of Wellington
  • University of the Witwatersrand
  • University of Canterbury
  • National Institute of Water and Atmosphere
  • University of Queensland
  • GNS Science
  • University of Wollongong
  • University of Portsmouth
  • Botswana International University of Science and Technology
  • Macquarie University
  • Australian Antarctic Division
  • Pattle Delamore Partners Ltd.
  • Australian Nuclear Science and Technology Organisation
  • University of Tasmania
  • Australian National University
  • Universidad de Chile
  • University of New South Wales

Producción científica: Contribución a una revistaArtículo de revisiónrevisión exhaustiva

21 Citas (Scopus)

Resumen

Proxy records from across the Southern Hemisphere show significant local to regional scale variability in climatic and environmental conditions during late Marine Isotope Stage 3 and early Marine Isotope Stage 2, prior to the global last glacial maximum (LGM; 26.5–19.0 kyr). Although not necessarily synchronous across the hemisphere, the regional signature of these pre-26.5 kyr ‘events’ suggests greater complexity of events preceding the global LGM in the Southern Hemisphere than in the North. Here we explore climatic and environmental variability across the Southern Hemisphere during two time-slices: 32 ± 1 kyr (representing the period of Southern Hemisphere summer insolation minimum) and 21 ± 1 kyr (representing the period of maximum global ice volume), based on previously published palaeoclimate proxy data. Temperatures were already approaching glacial levels across the Southern Hemisphere at 32 ± 1 kyr and minimum temperatures were attained in many records at ~21 ± 1 kyr. Furthermore, the descent into minimum temperatures occurred later in Antarctica than elsewhere in the Southern Hemisphere. Effective precipitation was more variable, with evidence for both increased and decreased moisture availability across the hemisphere during each time slice. The pattern of effective precipitation indicates that local factors likely played a more significant role in driving moisture availability compared to temperature. Our findings indicate that the onset of full-glacial conditions across the Southern Hemisphere occurred prior to the attainment of global maximum ice volume.

Idioma originalInglés
Número de artículo104090
PublicaciónEarth-Science Reviews
Volumen231
DOI
EstadoPublicada - ago 2022

ODS de las Naciones Unidas

Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

  1. ODS 14: Vida submarina
    ODS 14: Vida submarina

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