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all geography including DSDP/ODP Sites and Legs
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Europe
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Germany
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Europe
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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Sprendlinger Horst
Simplified geological situation of the Sprendlinger Horst (modified after H... Available to Purchase
Geological map of the Sprendlinger Horst (SW Germany) showing the location ... Available to Purchase
Simplified geological map of Sprendlinger Horst based on Harms (1999) , M... Available to Purchase
Geological and tectonic map of the Sprendlinger Horst in the South of Frank... Available to Purchase
The onset and origin of differentiated Rhine Graben volcanism based on U-Pb ages and oxygen isotopic composition of zircon Available to Purchase
(a) Schematic map of the central European Cenozoic volcanic provinces, thei... Available to Purchase
Concordia ( 206 Pb/ 238 U vs. 207 Pb/ 235 U) diagram with results for indi... Available to Purchase
DISTRIBUTION AND PALEOECOLOGIC SIGNIFICANCE OF THE FRESHWATER DINOFLAGELLATE CYST MESSELODINIUM THIELEPFEIFFERAE GEN. ET SP. NOV FROM THE MIDDLE EOCENE OF LAKE MESSEL, GERMANY Available to Purchase
Controls on sedimentation and vegetation in an Eocene pull-apart basin (Prinz von Hessen, Germany): evidence from palynology Available to Purchase
A 600 k.y. record of El Niño–Southern Oscillation (ENSO): Evidence for persisting teleconnections during the Middle Eocene greenhouse climate of Central Europe Available to Purchase
Changes in Eocene plant diversity and composition of vegetation: the lacustrine archive of Messel (Germany) Available to Purchase
ENSO- and solar-driven sub-Milankovitch cyclicity in the Palaeogene greenhouse world; high-resolution pollen records from Eocene Lake Messel, Germany Available to Purchase
New methods applied to the microstructure analysis of Messel oil shale: confocal laser scanning microscopy (CLSM) and environmental scanning electron microscopy (ESEM) Available to Purchase
Permian Available to Purchase
Abstract The Permian (299-251 Ma; Wardlaw et al. 2004 ) succession of Central Europe records the change from a Pangaea configuration and compressive tectonic regime inherited from the Variscan Orogeny, to the development of the broad thermal subsidence-controlled Southern Permian Basin and its inundation by the Zechstein Sea. During latest Carboniferous-Early Permian times, the final phase of Variscan orogenic extension produced a series of small strike-slip and extensional continental basins across central and western Europe. Within these basins Stephanian and Lower Rotliegend continental successions were deposited. Subsequent thermal subsidence led to the gradual coalescence of these isolated basins to form the large Southern Permian Basin which extended across much of central and western Europe (Fig. 10.1 ). Early Permian sedimentation was predominantly fluvial and lacustrine, changing later to aeolian. This change was due either to a significant climate change, or the result of a decline in relief of the surrounding uplands. By the end of the Early Permian extensive dunefields occupied the basin margins with saline lakes (playas) in the basin depocentres ( Verdier 1996 ). A regional, possibly glacio-eustatic, rise in sea level later in Permian (Zechstein) times resulted in the rapid flooding (from the north) of the Southern Permian Basin. The Zechstein succession comprises a series of evaporitic cycles, and associated carbonates and muds, reflecting progressively greater evaporation and the shallowing either of the whole basin or the margins of the basin. There has been a considerable amount of interest in the Permian in recent years, with a number