Luminescence chronostratigraphy for the loess deposits in Złota, Poland

Author:

Moska Piotr1,Adamiec Grzegorz1,Jary Zdzisław2,Bluszcz Andrzej1,Poręba Grzegorz1,Piotrowska Natalia1,Krawczyk Marcin2,Skurzyński Jacek2

Affiliation:

1. Silesian University of Technology , Institute of Physics – Center for Science and Education , Konarskiego 22B, 44-100 , Gliwice , Poland

2. Institute of Geography and Regional Development , University of Wroclaw , 50-137 , Wroclaw , Poland

Abstract

Abstract Loess formations in Poland display a close relationship with cooling and warming trends of the Northern Hemisphere during the Pleistocene. Loess sequences sensitively record regional palaeoclimatic and palaeoecological changes. The Złota loess profile (21°39’E, 50°39’N) provides a unique opportunity to reconstruct climate conditions in the past in this part of Poland. This continuous sequence of loess and palaeosol deposits allows to distinguish between warmer and more humid climate which is favourable for soil development and much colder and dry periods which are conducive to loess accumulation. The silty and sandy aeolian material originates mainly from weathered rock surfaces affected by frost shattering or from glaciofluvial/fluvial deposits of river flood plains. In Poland, loess and loess-like formations occur in the southern part of the country, mostly in the south polish uplands, i.e. in the Lublin, Sandomierz, and Cracow Uplands. We used different techniques to establish a chronological framework for this site. 21 samples for luminescence dating were collected from the investigated loess profile in Złota. Infrared post-IR IRSL dating method was applied to the polymineral fine grains (4–11µm). The dating results are accompanied by detailed analyses of the geochemical composition, organic carbon and carbonate. Also, analysis of magnetic susceptibility and grain-size distribution were investigated. Based on such a large stratigraphic dataset an age-depth model using OxCal has also been constructed for this site.

Publisher

Walter de Gruyter GmbH

Subject

Earth and Planetary Sciences (miscellaneous)

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