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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Africa
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North Africa
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Tunisia (1)
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West Africa
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Ghana
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Arctic Ocean
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Asia
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Mongolia (1)
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Canada
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Nunavut
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hydrogen
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stable isotopes
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C-13/C-12 (2)
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D/H (1)
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Nd-144/Nd-143 (1)
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O-18/O-16 (4)
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S-34/S-32 (3)
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Sr-87/Sr-86 (2)
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metals
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thorium
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Th-232 (1)
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uranium
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alkali metals
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potassium
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K-40 (1)
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alkaline earth metals
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aluminum (1)
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iron
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lead (2)
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nitrogen (1)
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oxygen
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O-18/O-16 (4)
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sulfur
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fossils
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Primates
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Rodentia
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Reptilia
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Archosauria
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Ornithischia
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Saurischia
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coprolites (1)
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Invertebrata
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Insecta
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Articulata
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Mollusca
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Cephalopoda
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Protista
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Foraminifera
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Rotaliina
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Orbitoidacea
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Vermes
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Spermatophyta
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Mesozoic
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igneous rocks
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volcanic rocks
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rutile (1)
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orthosilicates
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sulfides
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tungstates
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wehrlite (1)
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Primary terms
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absolute age (10)
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Africa
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North Africa
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Tunisia (1)
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West Africa
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Short-lived active margin magmatism preceding Variscan collision in the Western French Massif Central
Spatiotemporal Behavior of an Extremely Small Seismic Swarm in Pyrenean Foreland, France
New Cretaceous crickets of the subfamilies Nemobiinae and Podoscirtinae (Orthoptera, Grylloidea: Trigonidiidae, Oecanthidae) attest the antiquity of these clades
Oceanic resurge deposits at the Rochechouart impact structure (France) suggest a marine target environment
Combined paleohistological and isotopic inferences of thermometabolism in extinct Neosuchia, using Goniopholis and Dyrosaurus (Pseudosuchia: Crocodylomorpha) as case studies
Deformation and metasomatism recorded by single-grain apatite petrochronology
Evolution of the Alpine orogenic belts in the Western Mediterranean region as resolved by the kinematics of the Europe-Africa diffuse plate boundary
Full‐Waveform Inversion of High‐Frequency Teleseismic Body Waves Based on Multiple Plane‐Wave Incidence: Methods and Practical Applications
Preservation and distribution of detrital clay coats in a modern estuarine heterolithic point bar in the Gironde estuary (Bordeaux, France)
Basement-decoupled hyperextension rifting: The tectono-stratigraphic record of the salt-rich Pyrenean necking zone (Arzacq Basin, SW France)
Multistage development of a hydrothermal W deposit during the Variscan late-orogenic evolution: the Puy-les-Vignes breccia pipe (Massif Central, France)
Impact of Debris Flows on Filter Barriers: Analysis Based on Site Monitoring Data
FMHex20: An earthquake focal mechanism database for seismotectonic analyses in metropolitan France and bordering regions
Limousinite, BaCa[Be 4 P 4 O 16 ]·6H 2 O, a new beryllophosphate mineral with a phillipsite-type framework
Pressure-temperature conditions and significance of Upper Devonian eclogite and amphibolite facies metamorphisms in southern French Massif central
Experimental formation of clay-coated sand grains using diatom biofilm exopolymers
Conifers from the Cenomanian amber of Fouras (Charente-Maritime, western France)
The debated question of asymmetrical rhynchonellids (Brachiopoda, Rhynchonellida): examples from the Late Cretaceous of Western Europe
ABSTRACT This study provides a composite record of 87 Sr/ 86 Sr, δ 18 O, and δ 13 C for three sections in the Tethyan Lower Cretaceous Maiolica formation, a pelagic limestone from the Umbria-Marche Apennines of Italy, carefully tied to a magnetostratigraphically and biostratigraphically calibrated time scale. Although the 87 Sr/ 86 Sr record accurately follows the trend of the global marine 87 Sr/ 86 Sr reference curve, individual Sr isotope ratio values are relatively high for their inferred stratigraphic position, with all 87 Sr/ 86 Sr ratios yielding a fairly uniform +0.00007 to +0.0001 discrepancy. This offset likely results from incorporation of excess 87 Sr through isotopic reequilibration with interstitial pore waters during progressive lithification of the calcareous ooze. Although the process occurs principally through dissolution-reprecipitation, buffering the contemporaneous seawater Sr isotopic signature, diffusive communication with the overlying water column and porous sediments will compete with the dissolution-precipitation process, homogenizing pore-fluid concentrations and isotope ratios throughout the sediment column. Because the secular trend in 87 Sr/ 86 Sr throughout the Maiolica time frame is one of constant increase before rebounding to lower 87 Sr/ 86 Sr ratios in the Barremian, the ratios of the Maiolica carbonates are systematically displaced from that of the seawater in which they were deposited toward more radiogenic (higher 87 Sr/ 86 Sr) values. In addition, the carbon and oxygen isotope record of the Maiolica limestone allows identification of the mid-Valanginian Weissert event, characterized by a positive excursion in the δ 13 C and the δ 18 O records. Furthermore, the Weissert event correlates with a positive spike (+0.0001) in 87 Sr/ 86 Sr. Both the Sr and O isotopic peak signals predate the maximum peak in the δ 13 C excursion. This is likely a diagenetic artifact and may support the hypothesis of diffusive communication during lithification of the calcareous ooze.
Expansion breccias in Lower Cretaceous Apennine pelagic limestones: I. Geological observations
ABSTRACT Breccias affecting the pelagic Lower Cretaceous Maiolica limestone of the Umbria-Marche Apennines of central Italy contain 10-cm-diameter to submillimeter angular clasts of white pelagic limestone and black chert, separated by a filling of sparry calcite. The clasts can often be seen to have originally fitted together, indicating extension without shear, and this is the case in all three dimensions, arguing for roughly isotropic volumetric expansion. Breccia fragments are separated by sparry calcite bodies comparable in width to the fragments; this shows that the breccias were not formed by collapse, or by a single large explosion, after either of which the fragments would surely have fallen to the bottom of the cavity, but probably by multiple small expansion events, each followed by calcite deposition in the small voids that opened up. The breccia sometimes occurs in dramatic topographic walls, a few tens of meters in both width and height, although there is not a one-to-one correspondence between breccia and walls. The sparry-calcite fill indicates that water with dissolved CO 2 was involved in formation of the breccias, presumably providing the high fluid pressure that forced the fragments apart. The breccia is bounded stratigraphically above by the middle Cretaceous Marne a Fucoidi (Fucoid marls), which appears to represent an aquiclude that limited the volume of high fluid pressure ( P F ). Although the mechanism of formation of the expansion breccias is not yet clear, we list observations that need to be accounted for by such a mechanism and discuss how these observations might be explained.