High-resolution stalagmite stratigraphy supports the Late Holocene tephrochronology of southernmost Patagonia

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作者
Björn Klaes
Gerhard Wörner
Katrina Kremer
Klaus Simon
Andreas Kronz
Denis Scholz
Carsten W. Mueller
Carmen Höschen
Julian Struck
Helge Wolfgang Arz
Sören Thiele-Bruhn
Daniel Schimpf
Rolf Kilian
机构
[1] Trier University,Geology Department
[2] Campus II (Geozentrum),Soil Science Department
[3] Trier University,Division of Geochemistry and Isotope Geology
[4] Campus II (Geozentrum),Swiss Seismological Service
[5] GZG,Department of Mineralogy
[6] Georg-August-University Göttingen,Department for Geosciences and Environmental Management
[7] ETH Zürich,Soil Science, Research Department Life Science Systems
[8] GZG,Department of Physical Geography
[9] Georg-August-University Göttingen,Marine Geology Department
[10] Institute for Geosciences,undefined
[11] Johannes Gutenberg University Mainz,undefined
[12] University of Copenhagen,undefined
[13] TUM School of Life Sciences,undefined
[14] Technical University of Munich,undefined
[15] Institute of Geography,undefined
[16] Friedrich-Schiller-University Jena,undefined
[17] Leibniz Institute for Baltic Sea Research Warnemünde (IOW),undefined
[18] University of Magallanes,undefined
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摘要
Volcanic ash layers are important markers for the chronostratigraphy of paleoclimate and paleoenvironmental archives at the southern tip of South America. However, this requires that tephras are well-dated. We report geochemical data from stalagmite MA1 formed in a non-karst cave near Mt. Burney volcano in southernmost Patagonia (~53°S). High-resolution LA-ICP-MS analyses, SEM imagery, EPMA data, and NanoSIMS enable to identify volcanogenic signals during the last 4.5 kyrs from sub-annual trace element variations and tephra particles in distinct laminae. Our new 230Th/U-chronology of MA1 provides precise dating of tephra from Mt. Burney (MB) and, probably, Aguilera (A) at 4,216 +93/−193 yrs BP (MB2), 2,291 ± 33 yrs BP (MB3), 853 +41/−60 yrs BP (MB4) and 2,978 +91/−104 yrs BP (A1). This unique high-resolution record holds potential to date further eruptions from Southern Andean volcanoes for the tephrochronology in this critical region, and potentially also large-volume explosive volcanism off South America.
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