Title of article
Centennial- to decadal scale environmental shifts in and around Lake Pannon (Vienna Basin) related to a major Late Miocene lake level rise
Author/Authors
Harzhauser، نويسنده , , Mathias and Kern، نويسنده , , Andrea and Soliman، نويسنده , , Ali and Minati، نويسنده , , Klaus and Piller، نويسنده , , Werner E. and Danielopol، نويسنده , , Dan L. and Zuschin، نويسنده , , Martin، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
14
From page
102
To page
115
Abstract
A detailed ultra-high-resolution analysis of a 37-cm-long core of Upper Miocene lake sediments of the long-lived Lake Pannon has been performed. Despite a general stable climate at c. 11–9 Ma, several high-frequency oscillations of the paleoenvironments and depositional environments are revealed by the analysis over a short time span of less than 1000 years. Shifts of the lake level, associated with one major 3rd order flooding are reflected by all organisms by a cascade of environmental changes on a decadal scale. Within a few decades, the pollen record documents shifting vegetation zones due to the landward migration of the coast; the dinoflagellate assemblages switch towards “offshore-type” due to the increasing distance to the shore; the benthos is affected by low oxygen conditions due to the deepening. This general trend is interrupted by smaller scale cycles, which lack this tight interconnection. Especially, the pollen data document a clear cyclicity that is expressed by iterative low pollen concentration events. These “negative” cycles are partly reflected by dinoflagellate blooms suggesting a common trigger-mechanism and a connection between terrestrial environments and surface waters of Lake Pannon. The benthic fauna of the core, however, does not reflect these surface water cycles. This forcing mechanism is not understood yet but periodic climatic fluctuations are favoured as hypothesis instead of further lake level changes. Short phases of low precipitation, reducing pollen production and suppressing effective transport by local streams, might be a plausible mechanism. This study is the first hint towards solar activity related high-frequency climate changes during the Vallesian (Late Miocene) around Lake Pannon and should encourage further ultra-high-resolution analyses in the area.
Keywords
climate , Palynology , dinoflagellates , Pannonian , Impagidinium , Loxoconcha
Journal title
Palaeogeography, Palaeoclimatology, Palaeoecology
Serial Year
2008
Journal title
Palaeogeography, Palaeoclimatology, Palaeoecology
Record number
2293313
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