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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Europe
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Alps
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Central Alps (1)
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Central Europe (1)
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Southern Europe
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Italy
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Apennines
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Primary terms
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climate change (1)
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Europe
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Alps
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Central Europe (1)
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Italy
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Apennines
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Northern Apennines (3)
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Emilia-Romagna Italy (2)
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Trentino-Alto Adige Italy
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Bolzano Italy (1)
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geochronology (2)
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Invertebrata
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Protista
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Foraminifera (1)
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isotopes
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Al-26 (1)
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Be-10 (2)
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C-14 (2)
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stable isotopes
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C-13/C-12 (1)
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O-18/O-16 (1)
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Mesozoic
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Jurassic
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Lower Jurassic
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Pliensbachian (1)
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Sinemurian (1)
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Triassic
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Upper Triassic
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Carnian (1)
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metals
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alkaline earth metals
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beryllium
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Be-10 (2)
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Microseismic Portrait of the Montello Thrust (Southeastern Alps, Italy) from a Dense High‐Quality Seismic Network
Tethyan carbonate platform transformations during the Early Jurassic (Sinemurian–Pliensbachian, Southern Alps): Comparison with the Late Triassic Carnian Pluvial Episode
Postglacial evolution of a formerly glaciated valley: Reconstructing sediment supply, fan building, and confluence effects at the millennial time scale
Gypsum caves as indicators of climate-driven river incision and aggradation in a rapidly uplifting region
Quantifying sediment supply at the end of the last glaciation: Dynamic reconstruction of an alpine debris-flow fan
Unraveling tectonic and climatic controls on synorogenic growth strata (Northern Apennines, Italy)
Abstract Natural seeps in the Northern Apennines document a variability of fluids and reservoirs in terms of origin, age and evolution. Their spatial distribution appears controlled by the presence or absence of the tectonic overburden provided by the Ligurian nappe. The general trend of deepening of the Mesozoic basement toward the internal part of the thrust belt is reflected by the nature of the seeps, characterized by thermogenic methane and oil at the foothills, whereas the innermost seeps show occurrence of dry thermogenic gas suggesting overcooking of the residual oil. At the front of the Ligurian nappe, or in places never covered by it, the seepages are associated with biogenic methane related to bacterial degradation of the organic-rich intervals occurring in the Pliocene and Pleistocene marine succession. The coupling of geochemical and structural analysis allows reconstructing the tectono-thermal evolution of the belt, improving our knowledge on the processes acting within the reservoir and controlling important parameters of the petroleum system, such as the reservoir porosity and its modifications, and the migration patterns.