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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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Central Africa
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Congo Democratic Republic (1)
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West Africa
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Mali (2)
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Asia
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oxygen
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Invertebrata
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Vermes (1)
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Salt Lake Formation (1)
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Paleogene
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Oligocene (2)
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Wasatch Formation (1)
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Mesozoic
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Carboniferous
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Precambrian
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orthosilicates
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sheet silicates
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sulfides
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orpiment (1)
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pyrite (2)
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-
-
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Primary terms
-
absolute age (74)
-
Africa
-
Central Africa
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Congo Democratic Republic (1)
-
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West Africa
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Mali (2)
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Mauritania (1)
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West African Shield (1)
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Antarctica
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Antarctic ice sheet
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Antarctic Peninsula (4)
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East Antarctica (2)
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Ellsworth Land
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Ellsworth Mountains (2)
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Marie Byrd Land (1)
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Transantarctic Mountains
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Pensacola Mountains (1)
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West Antarctica (4)
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Wilkes Land (1)
-
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Arctic region
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Greenland
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East Greenland (2)
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-
-
Asia
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Arabian Peninsula
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Arabian Shield (1)
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Yemen (1)
-
-
Far East
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China
-
Inner Mongolia China (1)
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North China Platform (2)
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Sulu Terrane (1)
-
Xizang China (2)
-
-
-
Himalayas
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Kumaun Himalayas (1)
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Zanskar Range (1)
-
-
Indian Peninsula
-
Bhutan (1)
-
India (1)
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Nepal (1)
-
-
-
Atlantic Ocean
-
North Atlantic
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Faeroe-Shetland Basin (2)
-
Northeast Atlantic (2)
-
Rockall Plateau (1)
-
-
-
Australasia
-
Australia
-
Lachlan fold belt (1)
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New South Wales Australia (1)
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South Australia
-
Gawler Craton (1)
-
Kangaroo Island (1)
-
Olympic Dam Deposit (1)
-
-
Western Australia
-
Boddington Mine (1)
-
Yilgarn Craton (2)
-
-
-
New Zealand (1)
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Papua New Guinea
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Ok Tedi Mine (1)
-
-
-
Canada
-
Western Canada
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British Columbia
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Vancouver Island (1)
-
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Canadian Cordillera (1)
-
-
-
carbon
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C-13/C-12 (2)
-
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Caspian Sea (1)
-
Cenozoic
-
Glenns Ferry Formation (1)
-
Quaternary
-
Pleistocene
-
lower Pleistocene (1)
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Peoria Loess (2)
-
upper Pleistocene
-
Wisconsinan
-
upper Wisconsinan (2)
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-
-
-
upper Quaternary (2)
-
-
Tertiary
-
Neogene
-
Miocene
-
lower Miocene (1)
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upper Miocene (1)
-
-
Pliocene
-
lower Pliocene (1)
-
upper Pliocene (1)
-
-
Salt Lake Formation (1)
-
-
Paleogene
-
Eocene
-
lower Eocene (1)
-
-
Oligocene (2)
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Paleocene (4)
-
Wasatch Formation (1)
-
White River Group (2)
-
-
-
upper Cenozoic (2)
-
-
continental drift (2)
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crust (8)
-
crystal chemistry (2)
-
Deep Sea Drilling Project
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IPOD
-
Leg 81
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DSDP Site 555 (1)
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Leg 28 (1)
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deformation (11)
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Europe
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Azerbaijan
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Apsheron Peninsula (1)
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Caucasus
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Greater Caucasus (1)
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Pyrenees
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French Pyrenees (1)
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Scythian Platform (1)
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Southern Europe
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Iberian Peninsula
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Spain
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Andalusia Spain
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Alpujarride Complex (1)
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Betic Cordillera
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Spanish Sierra Nevada (1)
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Italy
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Variscides (2)
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Volga River (1)
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Armorican Massif (1)
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Central Massif
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faults (12)
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geochronology (2)
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geomorphology (1)
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glacial geology (3)
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igneous rocks
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granites
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A-type granites (1)
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granodiorites (3)
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quartz monzonite (2)
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volcanic rocks
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ABSTRACT Upper Cambrian through Middle Ordovician sedimentary strata of the Marathon/Solitario Basin (west Texas), which were folded and thrust-faulted during late Paleozoic Appalachian-Ouachita orogenesis, preserve evidence of the pre-Pangean history of the central southern Laurentian margin. New detrital zircon analyses reported here are from three Marathon Basin/Solitario formations: the upper Cambrian Dagger Flat Sandstone; the Lower Ordovician Marathon Formation, including the Rodrigues Tank Sandstone Member; and the Middle Ordovician Ft. Peña Formation. The far-southwestern outcrops of those Iapetus margin strata are within the Solitario dome (Presidio and Brewster Counties, Texas). Solitario zircon U/Pb geochronological results (laser ablation–inductively coupled plasma–mass spectrometry [LA-ICP-MS], sensitive high-resolution ion microprobe [SHRIMP]) expand the record of Cryogenian rifting as the Cuyania terrane separated from Laurentia. We evaluated these new data along with earlier geochronological and geochemical results from rift-related lava clasts in Lower–Middle Ordovician sedimentary subaqueous debris-flow deposits in the northwestern Marathon Basin. Deepening of the Iapetus seaway near the Laurentian margin (late Cambrian–Middle Ordovician) stimulated headward erosion of drainages, reflected in the systematic north-northwestward shift in zircon provenance from the west Texas Grenvillian and Southern Granite-Rhyolite Provinces to Yavapai-Mazatzal and Cheyenne Belt sources. The Cuyania rifted terrane underwent subduction at the western Gondwanan margin of the Iapetus Ocean in mid-Ordovician time (486 ± 7 Ma to 463 ± 4 Ma), and the resulting volcanism in the Famatina complex (Argentina) was most intense from ca. 472 to 468 Ma. Magmatic zircons from Ft. Peña bentonitic layers have identical U/Pb (488–468 Ma) and biostratigraphic (Darriwilian) ages to those from Famatinian bentonites at Talacasto (470 ± 5 Ma) in the Precordillera of Cuyania. Geologically constrained paleomagnetic reconstructions for 470 Ma depict the proximity of the Famatina arc, the rifted Cuyania terrane, and southern Laurentia at low southern latitudes (equator to ~30°S). These first U/Pb geochronological data from the Marathon/Solitario depocenter of western Iapetus appear to be compatible with such a configuration and can serve as test data for emerging tectonic interpretations.
Evolution of the Late Cretaceous Nanaimo Basin, British Columbia, Canada: Definitive provenance links to northern latitudes
Rapid Formation of Porphyry and Skarn Copper-Gold Mineralization in a Postsubduction Environment: Re-Os and U-Pb Geochronology of the Ok Tedi Mine, Papua New Guinea
Stable C, O, and S Isotope Record of Magmatic-Hydrothermal Interactions Between the Falémé Fe Skarn and the Loulo Au Systems in Western Mali
Abstract Paleoproterozoic (Rhyacian) gold deposits of the Loulo district in western Mali contain >17 million ounces (Moz) Au and form part of the second most highly endowed region within West Africa. The deposits are located within siliciclastic, marble, and evaporitic rocks of the ca. 2110 Ma greenschist facies Kofi series, which were folded and inverted between ca. 2100 and 2070 Ma, prior to gold mineralization. Deposits at Yalea and Gounkoto are located along discontinuous, low-displacement, albite- and carbonate-altered shear zones, whereas Gara is confined to a tourmaline-altered quartz sandstone unit. Lodes typically plunge gently to moderately, reflecting the attitude of folds in the adjacent rocks and bends in the host shear zones, both of which influenced their location. Gold mineralization in the Loulo district was broadly synchronous with emplacement of the Falémé batholith and associated Fe skarn mineralization, which intrude and overprint the western margin of the Kofi series, respectively. However, hydrothermal fluids generated during metamorphic devolatilization of the Kofi series rocks appear responsible for gold mineralization, albeit within a district-wide thermal gradient associated with emplacement of the Falémé batholith. The regional-scale Senegal-Mali shear zone, commonly cited as an important control on the location of gold deposits in western Mali, is absent in the Loulo district.
Abstract The Kibali district in the Democratic Republic of Congo hosts the large Karagba-Chaffeur-Durba (KCD) deposit and smaller satellite deposits that together contained 20 million ounces (Moz) of gold when mining recommenced in 2013. An additional 3 Moz of gold was probably mined from the district before 2013. Gold deposits in the Kibali district are located along the KZ trend, a series of folds, contractional shear zones, and altered lithostratigraphic units that coincide with the margin of an earlier 2630 to 2625 Ma intraorogenic basin within the Neoarchean Moto belt. Fluids first responsible for barren carbonate-quartz-sericite alteration, and later for siderite and/or ankerite (±quartz, magnetite, pyrite, and/or chlorite) alteration with associated auriferous pyrite ± rare arsenopyrite veinlets, infiltrated and replaced the siliciclastic, banded iron formation (BIF), and chert host rocks via fold axes, shear zones, and reactive BIF horizons. The complex shape and gentle northeast plunge of the lodes across the Kibali district reflect the shape and plunge of coincident folds that formed during early barren alteration. Many other folded BIF horizons across the wider Moto belt remain barren or only weakly mineralized, suggesting deep extensional structures that may have developed in the vicinity of the KZ trend during basin opening and prior to gold mineralization, were important fluid pathways during later contractional deformation and mineralization.
Abstract The giant (>20 Moz) Telfer Au-Cu deposit is located in the Paterson Province of Western Australia and is hosted by complexly deformed marine Neoproterozoic metasedimentary siltstones and quartz arenites. The Telfer district also contains magnetite- and ilmenite-series granitoids dated between ca. 645 and 600 Ma and a world-class W skarn deposit associated with the reduced, ~604 Ma O’Callaghans granite. Based on monazite and xenotime U-Pb geochronology, Telfer is estimated to be older than O’Callaghans, forming between 645 and 620 Ma. Au-Cu mineralization at Telfer is hosted in multistage, bedding-parallel quartz-dolomite-pyrite-chalcopyrite reefs and related discordant veins and stockworks of similar composition that were emplaced into two NW-striking doubly plunging anticlines or domes. Mineralization is late orogenic in timing, with hot (≤460°C), saline (<50 wt % NaCl equiv) ore fluids channeled into preexisting domes along a series of shallow, ENE-verging thrust faults and associated fault-propagated fold corridors. A combination of fault-propagated fold corridors acting as fluid conduits below the apex of the Telfer domes and the rheology and chemical contrast between interbedded siltstone and quartz arenite units within the dome are considered key parameters in the formation of the Telfer deposit. Based on the presence of the reduced Au-Cu-W-Bi-Te-Sn-Co-As assemblage, saline and carbonic, high-temperature hydrothermal fluids in Telfer ore, and widespread ilmenite-series granites locally associated with W skarn mineralization, Telfer is considered to be a distal, intrusion-related gold deposit, the high copper content of which may be explained by the predominance of highly saline, magmatic fluids in gangue assemblages cogenetic with ore.