The relationship between the loess stratigraphy in the Vojvodina region of northern Serbia and the Saalian and Rissian Stage glaciations – a review
作者:Slobodan B. Marković, Philip D. Hughes, Randall J. Schaetzl, Philip L. Gibbard, Qingzhen Hao, Milica G. Radaković, Jef Vandenberghe, Igor Obreht, György Sípos, Christian Laag, Milivoj B. Gavrilov, Aleksandar Antić, Rastko S. Marković, Petar Krsmanović, Kaja Fenn, Tin Lukić, Zoran M. Perić · 发表于:Boreas · 年份:2024 · DOI:10.1111/bor.12646 · 被引用次数:8 · 研究领域:Geology and Paleoclimatology Research、Marine and environmental studies、Pleistocene-Era Hominins and Archaeology
The regional loess stratigraphy in the Vojvodina region, in the southeastern Carpathian Basin, has often been successfully correlated to the global palaeoclimate. This is a quasi‐continuous sedimentary record that provides detailed environmental reconstruction during the last four glacial/interglacial cycles. In this study, we present a standardized loess stratigraphy and illustrate how it correlates with the marine oxygen isotope and Chinese loess stratigraphical records. We argue that the loess stratigraphy in Vojvodina region is an important link in the integration of European terrestrial stratigraphical schemes and the deep‐sea stratigraphical model. We highlight how the loess record can better illustrate terrestrial environmental change through multiple glacial cycles than other records, such as glacial records. The investigated loess record enables direct links to be made between the loess sediments and their glacial sources. This reveals evidence of glaciations during every glacial cycle of the Saalian Stage complex, equivalent to Marine Isotope Stage (MIS) 10, 8 and 6. Therefore, Serbian loess has the potential to provide a direct link between terrestrial glaciations and wider records of global climate change, which is an enigma for many other continental records. These loess records display a strong relationship with the intensity of European glaciations during different glacial cycles. Loess sedimentation rates are highest in the most intensive European glaciation o...