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Refinement of the tephrostratigraphy straddling the northern Patagonian Andes (40–41°S): new tephra markers, reconciling different archives and ascertaining the timing of piedmont deglaciation

  • Brent V. Alloway
  • , Nicholas J.G. Pearce
  • , Patricio I. Moreno
  • , Gustavo Villarosa
  • , Ignacio A. Jara
  • , Carla A. Henríquez
  • , Esteban A. Sagredo
  • , Matthew T. Ryan
  • , Valeria Outes
  • The University of Auckland
  • Universidad de Chile
  • Pontificia Universidad Católica de Chile
  • Aberystwyth University
  • University of Bologna
  • Universidad Nacional del Comahue
  • Centro de Estudios Avanzados en Zonas Áridas
  • ENGEO Ltd.

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

We describe the stratigraphy, age, geochemistry and correlation of tephra from west to east across the northern Patagonian Andes (c. 40–41°S) with a view to further refining the eruptive history of this region back to the onset of the Last Glacial Termination (~18 cal. ka). Eastwards across the Andes, rhyodacite to rhyolitic tephra markers of dominantly Puyehue-Cordón Caulle source are persistently recognised and provide a stratigraphic context for more numerously erupted intervening tephra of basalt to basaltic–andesite composition. Tephra from distal eruptive centres are also recognised. West of the Andean Cordillera, organic-rich cores from a small closed lake basin (Lago Pichilafquén) reveal an exceptional high-resolution record of lowland vegetation–climate change and eruptive activity spanning the last 15 400 years. Three new rhyodacite tephra (BT6-T1, -T2 and -T4) identified near the base of the Pichilafquén record, spanning 13.2 to 13.9 cal. ka bp, can be geochemically matched with correlatives in basal andic soil sequences closely overlying regolith and/or basement rock. The repetitiveness of this tephrostratigraphy across this Andean transect suggests near-synchronous tephra accretion and onset of up-building soil formation under more stable (revegetating) ground-surface conditions following rapid piedmont deglaciation on both sides of the Cordillera by at least ~14 cal. ka bp.

Original languageEnglish
Pages (from-to)441-477
Number of pages37
JournalJournal of Quaternary Science
Volume37
Issue number3
DOIs
StatePublished - Apr 2022
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

Keywords

  • Andes
  • Last Glacial Termination
  • Volcán Puyehue
  • northwest Patagonia
  • tephra

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