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NARROW
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
-
Arctic Ocean
-
Chukchi Sea (1)
-
-
Asia
-
Central Asia
-
Pamirs (1)
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Far East
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Japan
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Okinawa (1)
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Himalayas (1)
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Middle East
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Iran
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Elburz (1)
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Uzbekistan (1)
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Atlantic Ocean
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Cayman Trough (1)
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Venezuelan Basin (1)
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Yucatan Basin (1)
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Gulf of Mexico
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Mississippi Fan (1)
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North Sea
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Australasia
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Papua New Guinea (1)
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Black Sea region (1)
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Canada
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Western Canada
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Canadian Cordillera (1)
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Cuba (1)
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Colombian Basin (1)
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Commonwealth of Independent States
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Caucasus
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Greater Caucasus (2)
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Lesser Caucasus (2)
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Dnieper-Donets Basin (1)
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Georgian Republic
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Rioni Basin (1)
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Russian Federation
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Volga-Don region (1)
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Transcaucasia (1)
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Ukraine
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Crimea Ukraine (3)
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Uzbekistan (1)
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Europe
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Alfold (6)
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Alps
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Eastern Alps
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Dinaric Alps (4)
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French Alps (1)
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Western Alps (3)
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Balkan Peninsula (2)
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Carpathian Foredeep (4)
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Carpathians
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Bukk Mountains (5)
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Eastern Carpathians (2)
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Matra Mountains (3)
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Slovakian Carpathians
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Low Tatra Mountains (1)
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Caucasus
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Greater Caucasus (2)
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Lesser Caucasus (2)
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Hungary
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Matra Mountains (3)
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Molasse Basin
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North Austrian Molasse (1)
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Poland (12)
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Slovakia
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Slovakian Carpathians
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Low Tatra Mountains (1)
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Vienna Basin (6)
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Danube River (1)
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Danube Valley (1)
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Georgian Republic
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Rioni Basin (1)
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Moldavia
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Gutii Mountains (2)
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Pannonian Basin (20)
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Somes Basin (1)
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Southern Europe
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Albania
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Banat
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Bulgaria (2)
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chemical ratios (1)
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hydrogen
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D/H (2)
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isotope ratios (9)
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isotopes
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Pb-206/Pb-204 (2)
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Pb-207/Pb-204 (2)
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Pb-208/Pb-204 (2)
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stable isotopes
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C-13/C-12 (2)
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D/H (2)
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Hf-177/Hf-176 (1)
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Nd-144/Nd-143 (4)
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O-18/O-16 (4)
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Pb-206/Pb-204 (2)
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Pb-207/Pb-204 (2)
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Pb-208/Pb-204 (2)
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S-34/S-32 (1)
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Sr-87/Sr-86 (4)
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metals
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strontium
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precious metals (1)
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silver (1)
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oxygen
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tellurium (1)
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fossils
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geologic age
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Tertiary
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upper Tertiary (1)
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Mesozoic
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Paleozoic
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upper Precambrian
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orthosilicates
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sheet silicates
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illite (4)
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sulfates
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Primary terms
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absolute age (12)
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Arctic Ocean
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Asia
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Central Asia
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Pamirs (1)
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Far East
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Japan
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Ryukyu Islands
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Okinawa (1)
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-
-
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Himalayas (1)
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Middle East
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Iran
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Zagros (1)
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Uzbekistan (1)
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Atlantic Ocean
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Cayman Trough (1)
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Yucatan Basin (1)
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Gulf of Mexico
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Mississippi Fan (1)
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North Sea
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Viking Graben (1)
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Australasia
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Papua New Guinea (1)
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barite deposits (1)
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Canada
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Western Canada
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Canadian Cordillera (1)
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-
-
carbon
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C-14 (2)
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organic carbon (2)
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Caribbean region
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West Indies
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Antilles
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Cuba (1)
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-
-
-
-
Cenozoic
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Chalcolithic (1)
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Quaternary
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Holocene (4)
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-
Tertiary
-
Maikop Series (1)
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Neogene
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Miocene
-
lower Miocene (2)
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middle Miocene
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Badenian (1)
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-
Sarmatian (1)
-
upper Miocene
-
Pannonian (1)
-
-
-
Pliocene
-
Dacian (1)
-
-
-
Paleogene
-
Eocene
-
upper Eocene (1)
-
-
Oligocene
-
Krosno Beds (1)
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lower Oligocene (1)
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-
Paleocene (1)
-
-
upper Tertiary (1)
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-
-
ceramic materials (1)
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Chordata
-
Vertebrata
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Tetrapoda
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Reptilia
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Diapsida
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Archosauria
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clay mineralogy (5)
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Europe
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Alfold (6)
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Alps
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Central Alps
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Pennine Alps (1)
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-
Eastern Alps
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Dinaric Alps (4)
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French Alps (1)
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Prealps (1)
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Western Alps (3)
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Balkan Peninsula (2)
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Carpathian Foredeep (4)
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Carpathian Foreland (3)
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Carpathians
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Bukk Mountains (5)
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Eastern Carpathians (2)
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Slovakian Carpathians
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Caucasus
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Bohemian Massif (1)
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Czech Republic (2)
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Hungary
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Bukk Mountains (5)
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Szolnok Hungary (1)
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Molasse Basin
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North Austrian Molasse (1)
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Poland (12)
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Slovakia
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Vienna Basin (6)
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Georgian Republic
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Moldavia
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Pannonian Basin (20)
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Somes Basin (1)
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Southern Europe
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Albania
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Albanides (1)
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Balkan Mountains (1)
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Zircon Petrochronology of Au-Rich Porphyry and Epithermal Deposits in the Golden Quadrilateral (Apuseni Mountains, Romania)
Spatiotemporal distribution of magmatism and crustal inheritance within an extensional–rotational environment: an updated geochronology of the Miocene and Quaternary magmatism of the South Apuseni Mountains
The Pannonian Super Basin: A brief overview
Abstract In this chapter, we analyse the influence of the Carpathian Mountains on the variability of stable isotopes in precipitation by employing a combination of observed and model data. Overall, the mean value of the stable isotopes in precipitation over the Carpathian Mountains, based on observational data, was −9.8‰ for δ 18 O and −68.6‰ for δ 2 H. The local meteoric line, using all samples from the study sites, was δ 2 H = 7.65 × δ 18 O + 5.82. The simulated δ 18 O, based on the ECHAM5-wiso isotopes enable model, showed good agreement with the observed isotopic data. By comparing all the monthly values of the observed isotopic data from all analysed stations and the corresponding model data, a correlation coefficient of 0.76 ( n = 455, p < 0.001) was obtained. The spatial distribution of the simulated δ 18 O values in precipitation had the lowest values over the Romanian Carpathian Mountains and the highest values over the extra-Carpathian area, with the maximum in southeastern Romania. This pattern was strongly influenced by the Carpathian Mountains orography. Using the simulated δ 18 O data, we show that the spatial distribution of the δ 18 O values increases with temperature and decreases with altitude and latitude (−0.5‰ for δ 18 O per degree of latitude). The continental gradient is characterized by a polynomial trend of the second degree in the form of a large-open ‘U’ shape, and the general pattern of the δ 18 O values follows the spatial distribution of the Carpathian Mountains.
Paleogeographic implications of a multi-parameter Paleogene provenance dataset (Transylvanian Basin, Romania)
Holocene vegetation history and environmental change in the Lăpuş Mountains, north-west Romania
An archaeometric study of early Copper Age pottery from a cave in Romania
Composition, technology and provenance of Roman pottery from Napoca (Cluj-Napoca, Romania)
The black calcite and its mineral assemblage in Herja ore deposit, Romania
Thermal evolution in the exhumed basement of a stratovolcano: case study of the Miocene Mátra Volcano, Pannonian Basin
Overview of geologic evolution and hydrocarbon generation of the Pannonian Basin
Oligocene and Lower Miocene source rocks in the Paratethys: palaeogeographical and stratigraphic controls
Abstract Oligocene and Lower Miocene deposits in the Paratethys are important source rocks, but reveal major stratigraphic and regional differences. As a consequence of the first Paratethys isolation, source rocks with very good oil potential accumulated during Early Oligocene time in the Central Paratethys. Coeval source rocks in the Eastern Paratethys are characterized by a lower source potential. With the exception of the Carpathian Basin and the eastern Kura Basin, the source potential of Upper Oligocene and Lower Miocene units is low. In general, this is also valid for rocks formed during the second (Kozakhurian) isolation of the Eastern Paratethys. However, upwelling along a shelf-break canyon caused deposition of prolific diatomaceous source rocks in the western Black Sea. Overall, Oligocene–Lower Miocene sediments in the Carpathian Basin (Menilite Formation) can generate up to 10 t HC m −2 . Its high petroleum potential is a consequence of the interplay of very high productivity of siliceous organisms and excellent preservation in a deep silled basin. In contrast, the petroleum potential of Oligocene–Lower Miocene (Maikopian) sediments in the Eastern Paratethys is surprisingly low (often <2 t HC m −2 ). It is, therefore, questionable whether these sediments are the only source rocks in the Eastern Paratethys.