Search results for "Basement"

showing 10 items of 152 documents

Timing and Evolution of Cretaceous Island Arc Magmatism in Central Cuba: Implications for the History of Arc Systems in the Northwestern Caribbean

2011

AbstractSHRIMP and conventional zircon dating place temporal constraints on the evolution of the Cretaceous Volcanic Arc system in central Cuba. The arc has a consistent stratigraphy across strike, with the oldest and deepest rocks in the south (in tectonic contact with the ∼5–10-km-wide Mabujina Amphibolite Complex [MAC]) and younger rocks in the north. The MAC is thought to represent the deepest exposed section of the Cretaceous Volcanic Arc and its oceanic basement in Cuba. We undertook a single zircon geochronological study of five gneisses and two amphibolites from the MAC and seven rocks from the Manicaragua Batholith, which intrudes both the MAC and the Cretaceous Volcanic Arc. A SHR…

geographyBasement (geology)geography.geographical_feature_categoryVolcanic arcBatholithMagmatismGeochemistryIsland arcGeologyGeologyCretaceousZirconGneissThe Journal of Geology
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Single zircon ages for felsic to intermediate rocks from the Pietersburg and Giyani greenstone belts and bordering granitoid orthogneisses, northern …

2000

Abstract Previous models for the temporal evolution of greenstone belts and surrounding granitoid gneisses in the northern Kaapvaal Craton can be revised on the basis of new single zircon ages, obtained by conventional UPb dating and PbPb evaporation. In the Pietersburg greenstone belt, zircons from a metaquartz porphyry of the Ysterberg Formation yielded an age of 2949.7±0.2 Ma, while a granite intruding the greenstones, and deformed together with them, has an age of 2853 + 19/−18 Ma. These data show felsic volcanism in this belt to have been coeval with felsic volcanism in the Murchison belt farther east, and the date of ∼2853 Ma provides an older age limit for deformation in the region…

geographyFelsicgeography.geographical_feature_categoryGeochemistryGeologyGreenstone beltCratonBasement (geology)Ultramafic rockMaficPetrologyGeologyEarth-Surface ProcessesGneissZirconJournal of African Earth Sciences
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Triassic rift-related meta-granites in the Internal Hellenides, Greece

2009

AbstractThe Serbo-Macedonian Massif is a basement complex in the Internal Hellenides of northern Greece, situated between the Vardar Zone to the west and the Rhodope Massif to the east. The Serbo-Macedonian Massif comprises several distinct basement units interpreted as terranes, the largest of which is the Gondwana-derived Vertiskos Terrane in the northwestern and central parts of the massif. A series of leucocratic meta-granites intrude the Silurian orthogneiss basement of the Vertiskos Terrane. No similar granites are found in any of the other units of the Internal Hellenides. The meta-granites have a pronounced crustal within-plate signature which is visible in lithology, major- and tra…

geographyRiftBasement (geology)geography.geographical_feature_categoryLithologyGeochronologyCYCLADESGeochemistryGeologyMassifMaficGeologyTerraneGeological Magazine
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Stratigraphy of the Neoproterozoic Damara Sequence in northwest Namibia: Slope to basin sub-marine mass-transport deposits and olistolith fields

2016

Abstract The Neoproterozoic Damara Sequence (>1000 m thick) is composed of siliciclastic and carbonate rocks that crop out in the Damara Belt, Namibia. In Damaraland (including the Vrede, Bethanis, Austerlitz and Toekoms farms), these rocks were deformed and metamorphosed under greenschist facies (biotite zone) conditions during the Damara Orogeny. The stratigraphy and paleoenvironments of the Damara Sequence rocks are debated by the scientific community. We use field data, including detailed 1:25,000 geological mapping, elaboration of stratigraphic profiles and observation of preserved primary structures, textures and composition, to identify lithofacies and lithofacies associations, and t…

geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesAlluvial fanGeology010502 geochemistry & geophysics01 natural sciencesUnconformityOnlapPaleontologySequence (geology)Basement (geology)Geochemistry and PetrologyCarbonate rockThrust faultSiliciclasticGeology0105 earth and related environmental sciencesPrecambrian Research
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Formation Ages and Environments of Early Precambrian Banded Iron Formation in the North China Craton

2016

The North China Craton (NCC) has had a long geological history back to ca. 3.8 Ga ago, but the most important tectonothermal event occurred at the end of the Neoarchean, the most important period of BIF formation. There are three ancient terranes (>2.6 Ga) in the NCC. Most BIFs are distributed along the western margin of the Eastern Ancient Terrane, accounting for about 89 % of the total identified BIF iron ore resources in the NCC. They are considered to have formed on a continental basement in terms of rock association of the BIF-bearing supracrustal sequences which were intruded by slightly younger crustally derived granites. Most BIFs in the NCC show positive Y anomalies, implying that …

geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesArchean010502 geochemistry & geophysics01 natural sciencesPaleontologyCratonPrecambrianBasement (geology)Continental marginPeriod (geology)Banded iron formationGeology0105 earth and related environmental sciencesTerrane
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Architecture and tectono-stratigraphic evolution of the intramontane Baza Basin (Bétics, SE-Spain): Constraints from seismic imaging

2017

The Baza basin is a large Neogene intramontane basin in the Bétic Cordillera of southern Spain that formed during the Tortonian (late Miocene). The Bétic Cordillera was produced by NW–SE oblique convergence between the Eurasian and African Plates. Three seismic reflection lines (each 18 km long; vibroseis method) were acquired across the Baza basin to reveal the architecture of the sedimentary infill and faulting during basin formation. We applied rather conventional CDP data processing followed by first arrival P-wave tomography to provide complementary structural information and establish velocity models for the post-stack migration. These images show a highly asymmetric structure for the…

geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesOutcropBaza BasinLate MioceneStructural basinFault (geology)010502 geochemistry & geophysicsNeogene01 natural sciencesBack-strippingBasin structurePaleontologyGeophysicsBasement (geology)Betic CordilleraReflection seismic imagingSedimentary rockNeogeneGeologySeismology0105 earth and related environmental sciencesEarth-Surface ProcessesFault system
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Cretaceous tectonic evolution of the Sava-Klepa Massif, Republic of North Macedonia – Results from calcite twin based automated paleostress analysis

2019

Abstract The Sava-Klepa Massif represents an approximately 5 × 2 km sized fault-bounded block of dominantly basaltic rocks located within the Sava-Zone, an important suture zone between the Eurasian (Europe) and Gondwana (Adria) continental plates in the Balkans. Its nature and tectonic evolution is controversial: It is either interpreted as a remnant of the youngest Tethyan oceanic realm left behind after the main closure in the Late Jurassic or as the delimiter of a diffuse tectonic boundary between Adria and Europe, which had already collided in the Late Jurassic and was dominantly controlled by transtensional tectonics during Cretaceous times. In order to strengthen one or the other mod…

geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesSubductionMetamorphic rockTranstensionMassif010502 geochemistry & geophysics01 natural sciencesCretaceousPlate tectonicsPaleontologyGeophysicsBasement (geology)Suture (geology)Geology0105 earth and related environmental sciencesEarth-Surface ProcessesTectonophysics
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Archean-Paleoproterozoic crustal evolution of the Ordos Block in the North China Craton: Constraints from zircon U–Pb geochronology and Hf isotopes f…

2015

Abstract The Ordos Block has been considered as an Archean micro-block in North China Craton. However, its formation and evolution are poorly understood for a long time due to lack of available basement rocks. Our LA-ICPMS and SIMS zircon U–Pb dating of gneissic granitoids from the Ordos Block basement identified two distinct periods of granitic magmatism at ∼2.5 Ma and 2.2–2.0 Ga, and two phases of metamorphisms at ∼1.95 Ga and ∼1.85 Ga, respectively. Of which most zircons of ∼2.5 Ga granitoids show positive ɛ Hf ( t ) values ranging from +0.1 to +4.1 with a peak T DM of ∼2.7 Ga. Minor zircons have negative ɛ Hf ( t ) values from −3.8 to −0.02 and T Hf C of 2.8–3.1 Ga. Moreover, the 3.40 G…

geographygeography.geographical_feature_categoryArcheanGeochemistryMetamorphismGeologyCratonBasement (geology)Continental marginGeochemistry and PetrologyGeochronologyMagmatismPetrologyGeologyZirconPrecambrian Research
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Archaean to Neoproterozoic magmatic events in the Kaoko belt of NW Namibia and their geodynamic significance

1998

Abstract Age relationships in the N–S trending Neoproterozoic (Pan-African) Kaoko belt of northwestern Namibia are still poorly constrained. U–Pb and Pb–Pb zircon age determinations by single grain evaporation, conventional multigrain fraction analyses and ion microprobe (SHRIMP) from a profile along the E–W Hoanib River reveal various episodes of zircon growth, ranging from late Archaean to late Neoproterozoic. From the eastern part of the profile we report crystallization ages of gneiss protoliths from 2645 to 2585 Ma, the oldest ages so far found in Namibia. Sm–Nd isotope data suggest the involvement of still older crustal material in the generation of these gneisses. A thermal event at …

geographygeography.geographical_feature_categoryArcheanGeochemistryMetamorphismGeologyCratonIgneous rockBasement (geology)Geochemistry and PetrologyProtolithGeologyZirconGneissPrecambrian Research
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Zircon REE patterns and geochemical characteristics of Paleoproterozoic anatectic granite in the northern Tarim Craton, NW China: Implications for th…

2012

Abstract Because Archean basement rocks are sparsely distributed around the Tarim Basin, little is known of the relationship between the Tarim Craton and the Paleo- to Mesoproterozoic Columbia supercontinent. Zircon U–Pb dating of a Paleoproterozoic gneissic granite in the northern Tarim Craton yielded a crystallization age of 1915 ± 13 Ma, consistent with global Paleoproterozoic collisional events (ca. 2.1–1.8 Ga) recorded in most cratons. Despite the fact that some zircons display discordant U–Pb ages with a distinct loss of radiogenetic Pb, all grains have similar 176Lu/177Hf and 176Hf/177Hf(t) values. Zircons from this granite have high Th/U ratios (0.15–0.95), but contrasting rare eart…

geographygeography.geographical_feature_categoryArcheanPlutonGeochemistryPartial meltingGeologyAnatexisSupercontinentCratonBasement (geology)Geochemistry and PetrologyPetrologyGeologyZirconPrecambrian Research
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