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author Vinnepand, Mathias
Fischer, Peter
Jöris, Olaf
Hambach, Ulrich
Zeeden, Christian
Schulte, Philipp
Fitzsimmons, Kathryn E
Prud'homme, Charlotte
Perić, Zoran
Schirmer, Wolfgang
Lehmkuhl, Frank
Fiedler, Sabine
Vött, Andreas
author_facet Vinnepand, Mathias
Fischer, Peter
Jöris, Olaf
Hambach, Ulrich
Zeeden, Christian
Schulte, Philipp
Fitzsimmons, Kathryn E
Prud'homme, Charlotte
Perić, Zoran
Schirmer, Wolfgang
Lehmkuhl, Frank
Fiedler, Sabine
Vött, Andreas
collection Datos científicos de ciencias marinas y ambientales
contents In this study, we present a granulometric- and geochemical dataset for the Schwalbenberg Loess-Palaeosol-Sequence (LPS) in the Middle Rhine Valley (Germany) that covers the Upper Pleistocene in a resolution so far unprecedented for continental records in western Central Europe. Complexities in formation of loess deposits cause interfering geochemical signatures (e.g., provenance- vs. weathering- signals) limiting a straight-forward interpretation. In this context we used multivariate statistics that integrate information on grainsize (Laser Diffraction Particle Sizer) and geochemistry (XRF, ICP-OES) indicative for provenance shifts, mineral sorting during transport and reworking and weathering into Principal Component Analyses and Linear Discriminant Analyses. Our approach provides a key for tracing ecological changes throughout climate oscillations across continents.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_940558
institution PANGAEA
language en
publishDate 2022
publisher PANGAEA
record_format pangaea
spellingShingle Decoding geochemical signals of the Schwalbenberg Loess-Palaeosol-Sequences –Bulk Geochemical and Granulometric data
Vinnepand, Mathias
Fischer, Peter
Jöris, Olaf
Hambach, Ulrich
Zeeden, Christian
Schulte, Philipp
Fitzsimmons, Kathryn E
Prud'homme, Charlotte
Perić, Zoran
Schirmer, Wolfgang
Lehmkuhl, Frank
Fiedler, Sabine
Vött, Andreas
Aluminium; Aluminium, dithionite extractable; Calcium; CDRILL; Climate changes; Core drilling; DEPTH, sediment/rock; Dust composition; Geochemistry; Loess; Magnesium; Multivariate statistical analysis; Potassium; Rubidium; Schwalbenberg; Silicon; Size fraction < 0.002 mm, clay; Size fraction < 0.026 mm; Size fraction < 0.063 mm, mud, silt+clay; Size fraction 0.0526-0.0260 mm; Sodium; Stratigraphic Unit; Strontium; Subordinate Stratigraphic Unit; Upper Pleistocene; Vanadium; Weathering; Zirconium
In this study, we present a granulometric- and geochemical dataset for the Schwalbenberg Loess-Palaeosol-Sequence (LPS) in the Middle Rhine Valley (Germany) that covers the Upper Pleistocene in a resolution so far unprecedented for continental records in western Central Europe. Complexities in formation of loess deposits cause interfering geochemical signatures (e.g., provenance- vs. weathering- signals) limiting a straight-forward interpretation. In this context we used multivariate statistics that integrate information on grainsize (Laser Diffraction Particle Sizer) and geochemistry (XRF, ICP-OES) indicative for provenance shifts, mineral sorting during transport and reworking and weathering into Principal Component Analyses and Linear Discriminant Analyses. Our approach provides a key for tracing ecological changes throughout climate oscillations across continents.
title Decoding geochemical signals of the Schwalbenberg Loess-Palaeosol-Sequences –Bulk Geochemical and Granulometric data
topic Aluminium; Aluminium, dithionite extractable; Calcium; CDRILL; Climate changes; Core drilling; DEPTH, sediment/rock; Dust composition; Geochemistry; Loess; Magnesium; Multivariate statistical analysis; Potassium; Rubidium; Schwalbenberg; Silicon; Size fraction < 0.002 mm, clay; Size fraction < 0.026 mm; Size fraction < 0.063 mm, mud, silt+clay; Size fraction 0.0526-0.0260 mm; Sodium; Stratigraphic Unit; Strontium; Subordinate Stratigraphic Unit; Upper Pleistocene; Vanadium; Weathering; Zirconium
url https://doi.org/10.1594/PANGAEA.940558