High-precision ultra-distal Holocene tephrochronology in North America

Far-travelled volcanic ashes (tephras) from Holocene eruptions in Alaska and the Pacific northwest have been traced to the easternmost extent of North America, providing the basis for a new high-precision geochronological framework throughout the continent through tephrochronology (the dating and co...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Quaternary science reviews 2012-10, Vol.52, p.6-11
Hauptverfasser: Pyne-O'Donnell, Sean D.F., Hughes, Paul D.M., Froese, Duane G., Jensen, Britta J.L., Kuehn, Stephen C., Mallon, Gunnar, Amesbury, Matthew J., Charman, Dan J., Daley, Tim J., Loader, Neil J., Mauquoy, Dmitri, Street-Perrott, F. Alayne, Woodman-Ralph, Jonathan
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:Far-travelled volcanic ashes (tephras) from Holocene eruptions in Alaska and the Pacific northwest have been traced to the easternmost extent of North America, providing the basis for a new high-precision geochronological framework throughout the continent through tephrochronology (the dating and correlation of tephra isochrons in sedimentary records). The reported isochrons are geochemically distinct, with seven correlated to documented sources in Alaska and the Cascades, including the Mazama ash from Oregon (∼7600 years old) and the eastern lobe of the White River Ash from Alaska (∼1150 years old). These findings mark the beginning of a tephrochronological framework of enhanced precision across North America, with applications in palaeoclimate, surface process and archaeological studies. The particle travel distances involved (up to ∼7000 km) also demonstrate the potential for continent-wide or trans-Atlantic socio-economic disruption from similar future eruptions. ► Far-travelled volcanic ashes (cryptotephras) are reported from Newfoundland. ► They are from eruptions in Alaska and Cascades (e.g. Mazama, White River Ash). ► They form high-precision isochrons spanning the majority of the Holocene. ► They provide a new high-precision chronological framework throughout the continent. ► Future potential for continent-wide and trans-Atlantic socio-economic disruption.
ISSN:0277-3791
1873-457X
DOI:10.1016/j.quascirev.2012.07.024