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Palaeontological signatures of the Anthropocene are distinct from those of previous epochs

  • Mark Williams
  • , Jan Zalasiewicz
  • , Anthony D. Barnosky
  • , Reinhold Leinfelder
  • , Martin J. Head
  • , Colin N. Waters
  • , Francine M.G. McCarthy
  • , Alejandro Cearreta
  • , David C. Aldridge
  • , Mary McGann
  • , Paul B. Hamilton
  • , Colin P. Summerhayes
  • , Jaia Syvitski
  • , Jens Zinke
  • , Andrew B. Cundy
  • , Barbara Fiałkiewicz-Kozieł
  • , J. R. McNeill
  • , Michinobu Kuwae
  • , Neil L. Rose
  • , Simon D. Turner
  • Yoshiki Saito, Michael Wagreich, M. Allison Stegner, Moriaki Yasuhara, Yongming Han, Amy Wrisdale, Rachael Holmes, Juan Carlos Berrio

Veröffentlichungen: Beitrag in FachzeitschriftArtikelPeer Reviewed

Abstract

The “Great Acceleration” beginning in the mid-20th century provides the causal mechanism of the Anthropocene, which has been proposed as a new epoch of geological time beginning in 1952 CE. Here we identify key parameters and their diagnostic palaeontological signals of the Anthropocene, including the rapid breakdown of discrete biogeographical ranges for marine and terrestrial species, rapid changes to ecologies resulting from climate change and ecological degradation, the spread of exotic foodstuffs beyond their ecological range, and the accumulation of reconfigured forest materials such as medium density fibreboard (MDF) all being symptoms of the Great Acceleration. We show: 1) how Anthropocene successions in North America, South America, Africa, Oceania, Europe, and Asia can be correlated using palaeontological signatures of highly invasive species and changes to ecologies that demonstrate the growing interconnectivity of human systems; 2) how the unique depositional settings of landfills may concentrate the remains of organisms far beyond their geographical range of environmental tolerance; and 3) how a range of settings may preserve a long-lived, unique palaeontological record within post-mid-20th century deposits. Collectively these changes provide a global palaeontological signature that is distinct from all past records of deep-time biotic change, including those of the Holocene.

OriginalspracheEnglisch
Aufsatznummer104844
FachzeitschriftEarth-Science Reviews
Jahrgang255
DOIs
PublikationsstatusVeröffentlicht - Aug. 2024

Fördermittel

Moriaki Yasuhara thanks the Research Grants Council of the Hong Kong Special Administrative Region, China (project HKU 17306023). Mary McGann's work is part of the Transport of Invasive Microorganisms task of the Sediment Transport in Coastal Environments project of the USGS Pacific Coastal and Marine Science Center.

UN SDGs

Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

  1. SDG 13 – Maßnahmen zum Klimaschutz
    SDG 13 – Maßnahmen zum Klimaschutz
  2. SDG 14 – Leben unter Wasser
    SDG 14 – Leben unter Wasser
  3. SDG 15 – Leben an Land
    SDG 15 – Leben an Land

ÖFOS 2012

  • 106003 Biodiversitätsforschung
  • 105904 Umweltforschung
  • 105118 Paläontologie
  • 106026 Ökosystemforschung

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