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NARROW
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
-
Africa
-
Southern Africa
-
South Africa (1)
-
-
-
Alexander Terrane (3)
-
Arctic region
-
Greenland
-
West Greenland (1)
-
-
-
Asia
-
Far East
-
China
-
Altun Mountains (1)
-
Gansu China (2)
-
Inner Mongolia China (3)
-
Jilin China (1)
-
Kunlun Mountains (1)
-
Liaoning China
-
Liaodong Peninsula (1)
-
-
North China Platform (2)
-
Qilian Mountains (1)
-
Qinghai China (4)
-
Sanjiang (1)
-
Shandong China (1)
-
Sulu Terrane (2)
-
Tarim Platform (1)
-
Xinjiang China
-
Junggar (1)
-
-
Xizang China
-
Lhasa Block (1)
-
-
Yunnan China (2)
-
-
Indochina (1)
-
Thailand (1)
-
-
Indian Peninsula
-
India
-
Southern Granulite Terrain (1)
-
Tamil Nadu India (1)
-
-
-
Middle East
-
Turkey (1)
-
-
Qiangtang Terrane (2)
-
Siberia (1)
-
Tibetan Plateau (3)
-
Tien Shan (2)
-
-
Atlantic Ocean
-
North Atlantic
-
Northeast Atlantic (1)
-
Rockall Plateau (1)
-
-
-
Australasia
-
Australia
-
Eromanga Basin (1)
-
-
-
Avalon Zone (2)
-
Caledonides (1)
-
Canada
-
Eastern Canada
-
Maritime Provinces
-
New Brunswick (3)
-
Nova Scotia
-
Cape Breton Island (3)
-
Cobequid Highlands (1)
-
-
-
Newfoundland and Labrador
-
Newfoundland
-
Avalon Peninsula (1)
-
-
-
Ontario (1)
-
Quebec (2)
-
-
Stikinia Terrane (1)
-
Western Canada
-
British Columbia (2)
-
Canadian Cordillera (1)
-
-
-
Central Cordillera (1)
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Coast Mountains (2)
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Commonwealth of Independent States
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Urals (1)
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Craig Quadrangle (1)
-
Europe
-
Central Europe
-
Germany
-
Lower Saxony Germany
-
Gorleben (1)
-
-
-
-
Southern Europe
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Iberian Peninsula
-
Central Iberian Zone (1)
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Iberian Massif (1)
-
Spain
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Asturias Spain (1)
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Castilla y Leon Spain
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Salamanca Spain (1)
-
-
-
-
-
Western Europe
-
France
-
Loire Valley (1)
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Loiret France (1)
-
-
Scandinavia
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Finland
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Ostrobothnia Finland (1)
-
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Norway
-
Southern Norway (1)
-
Telemark Norway (1)
-
-
-
United Kingdom
-
Great Britain (1)
-
-
-
-
McGrath Quadrangle (1)
-
North America
-
Appalachians (2)
-
Canadian Shield
-
Grenville Province (2)
-
Superior Province
-
Abitibi Belt (1)
-
-
-
Keweenawan Rift (1)
-
North American Cordillera
-
Canadian Cordillera (1)
-
-
Rocky Mountains
-
Southern Rocky Mountains (1)
-
-
Saint Elias Mountains (1)
-
Yukon-Tanana Terrane (1)
-
-
Prince of Wales Island (1)
-
San Juan Islands (1)
-
South America
-
Amazonian Craton (2)
-
Andes
-
Northern Andes (1)
-
-
Colombia (1)
-
-
South Mountain Batholith (1)
-
United States
-
Alaska
-
Alexander Archipelago (1)
-
Dixon Entrance Quadrangle (1)
-
Talkeetna Quadrangle (1)
-
-
Colorado
-
Conejos County Colorado (1)
-
-
Idaho
-
Custer County Idaho (1)
-
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Idaho Batholith (1)
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Maine (2)
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Massachusetts (1)
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Midcontinent (1)
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New England (3)
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Rhode Island (1)
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Washington
-
San Juan County Washington (1)
-
-
-
-
commodities
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metal ores
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iron ores (1)
-
-
mineral deposits, genesis (1)
-
-
elements, isotopes
-
carbon
-
C-13/C-12 (1)
-
-
chemical ratios (3)
-
isotope ratios (41)
-
isotopes
-
radioactive isotopes
-
Pb-206/Pb-204 (1)
-
Pb-207/Pb-204 (1)
-
Pb-208/Pb-204 (1)
-
Rb-87/Sr-86 (1)
-
Sm-147/Nd-144 (6)
-
-
stable isotopes
-
C-13/C-12 (1)
-
Hf-177/Hf-176 (33)
-
Nd-144/Nd-143 (13)
-
O-18 (1)
-
O-18/O-16 (3)
-
Pb-206/Pb-204 (1)
-
Pb-207/Pb-204 (1)
-
Pb-208/Pb-204 (1)
-
Rb-87/Sr-86 (1)
-
Sm-147/Nd-144 (6)
-
Sr-87/Sr-86 (9)
-
-
-
Lu/Hf (3)
-
metals
-
actinides
-
thorium (2)
-
uranium (2)
-
-
alkali metals
-
potassium (3)
-
rubidium
-
Rb-87/Sr-86 (1)
-
-
sodium (1)
-
-
alkaline earth metals
-
strontium
-
Rb-87/Sr-86 (1)
-
Sr-87/Sr-86 (9)
-
-
-
aluminum (1)
-
chromium (1)
-
cobalt (1)
-
hafnium
-
Hf-177/Hf-176 (33)
-
-
iron (1)
-
lead
-
Pb-206/Pb-204 (1)
-
Pb-207/Pb-204 (1)
-
Pb-208/Pb-204 (1)
-
-
niobium (1)
-
rare earths
-
cerium (4)
-
europium (3)
-
gadolinium (2)
-
holmium (1)
-
lanthanum (9)
-
lutetium (65)
-
neodymium
-
Nd-144/Nd-143 (13)
-
Sm-147/Nd-144 (6)
-
-
samarium
-
Sm-147/Nd-144 (6)
-
-
scandium (1)
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terbium (4)
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ytterbium (6)
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yttrium (1)
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tantalum (2)
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titanium (2)
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zinc (1)
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oxygen
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O-18 (1)
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O-18/O-16 (3)
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silicon (1)
-
-
fossils
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Chordata
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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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dinosaurs (1)
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-
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ichnofossils (1)
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tracks (1)
-
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geochronology methods
-
Lu/Hf (3)
-
Nd/Nd (1)
-
Sm/Nd (1)
-
Th/U (2)
-
U/Pb (43)
-
U/Th/Pb (2)
-
-
geologic age
-
Cenozoic
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Tertiary
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Neogene
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Miocene (1)
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Paleogene
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Eocene
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lower Eocene (1)
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middle Eocene (1)
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-
Oligocene (1)
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Paleocene
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lower Paleocene (1)
-
-
-
-
-
Mesozoic
-
Cretaceous
-
Lower Cretaceous (5)
-
Middle Cretaceous
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Winton Formation (1)
-
-
Upper Cretaceous (2)
-
-
Jurassic
-
Lower Jurassic (1)
-
Upper Jurassic
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Morrison Formation (1)
-
-
-
lower Mesozoic (1)
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Triassic
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Middle Triassic (2)
-
Upper Triassic (1)
-
-
-
Paleozoic
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Cambrian
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Lower Cambrian (3)
-
-
Carboniferous
-
Lower Carboniferous
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Dinantian (1)
-
-
Mississippian (2)
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Pennsylvanian (1)
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Upper Carboniferous (1)
-
-
Devonian
-
Upper Devonian (1)
-
-
lower Paleozoic (2)
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Ordovician
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Meguma Group (1)
-
-
Permian
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Lower Permian (1)
-
-
Silurian (6)
-
upper Paleozoic (4)
-
-
Precambrian
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Archean
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Aravalli System (1)
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Neoarchean (1)
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Paleoarchean (1)
-
-
upper Precambrian
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Proterozoic
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Coldbrook Group (1)
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Dedham Granodiorite (1)
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Keweenawan (1)
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Mesoproterozoic (4)
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Neoproterozoic
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Cryogenian (1)
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Ediacaran (3)
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Hadrynian
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Fourchu Group (1)
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-
Tonian (2)
-
-
Oronto Group (1)
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Paleoproterozoic (4)
-
-
-
-
-
igneous rocks
-
igneous rocks
-
picrite (1)
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plutonic rocks
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appinite (1)
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diorites
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gabbros (4)
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granites
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adamellite (1)
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A-type granites (1)
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granite porphyry (1)
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I-type granites (1)
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leucogranite (1)
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monzogranite (2)
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-
granodiorites (6)
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monzonites (2)
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quartz monzonite (1)
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syenites (1)
-
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porphyry (1)
-
volcanic rocks
-
andesites (3)
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basalts
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tholeiite (1)
-
-
dacites (3)
-
pyroclastics
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andesite tuff (1)
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tuff (1)
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rhyolites (2)
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trachyandesites (1)
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-
-
ophiolite (2)
-
-
metamorphic rocks
-
metamorphic rocks
-
amphibolites (2)
-
gneisses
-
granite gneiss (1)
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granulites (2)
-
metaigneous rocks
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metabasite (2)
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metasedimentary rocks
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metasandstone (1)
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metasomatic rocks
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greisen (1)
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metavolcanic rocks (4)
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schists (1)
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ophiolite (2)
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turbidite (1)
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minerals
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halides
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fluorides (1)
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oxides
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hydroxides
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oxyhydroxides (1)
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phosphates
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apatite (1)
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xenotime (1)
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silicates
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aluminosilicates (2)
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chain silicates
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amphibole group
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alkalic amphibole (1)
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clinoamphibole
-
hornblende (1)
-
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-
pyroxene group
-
clinopyroxene (1)
-
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-
framework silicates
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feldspar group
-
plagioclase (1)
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silica minerals
-
quartz (1)
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-
-
orthosilicates
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nesosilicates
-
zircon group
-
zircon (45)
-
-
-
-
sheet silicates
-
clay minerals
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beidellite (1)
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hectorite (1)
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montmorillonite (1)
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smectite (3)
-
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mica group
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biotite (2)
-
-
-
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sulfates (1)
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vanadates (1)
-
-
Primary terms
-
absolute age (44)
-
Africa
-
Southern Africa
-
South Africa (1)
-
-
-
Arctic region
-
Greenland
-
West Greenland (1)
-
-
-
Asia
-
Far East
-
China
-
Altun Mountains (1)
-
Gansu China (2)
-
Inner Mongolia China (3)
-
Jilin China (1)
-
Kunlun Mountains (1)
-
Liaoning China
-
Liaodong Peninsula (1)
-
-
North China Platform (2)
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Qilian Mountains (1)
-
Qinghai China (4)
-
Sanjiang (1)
-
Shandong China (1)
-
Sulu Terrane (2)
-
Tarim Platform (1)
-
Xinjiang China
-
Junggar (1)
-
-
Xizang China
-
Lhasa Block (1)
-
-
Yunnan China (2)
-
-
Indochina (1)
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Thailand (1)
-
-
Indian Peninsula
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India
-
Southern Granulite Terrain (1)
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Tamil Nadu India (1)
-
-
-
Middle East
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Turkey (1)
-
-
Qiangtang Terrane (2)
-
Siberia (1)
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Tibetan Plateau (3)
-
Tien Shan (2)
-
-
Atlantic Ocean
-
North Atlantic
-
Northeast Atlantic (1)
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Rockall Plateau (1)
-
-
-
Australasia
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Australia
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Eromanga Basin (1)
-
-
-
Canada
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Eastern Canada
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Maritime Provinces
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New Brunswick (3)
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Nova Scotia
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Cape Breton Island (3)
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Cobequid Highlands (1)
-
-
-
Newfoundland and Labrador
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Newfoundland
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Avalon Peninsula (1)
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-
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Ontario (1)
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Quebec (2)
-
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Stikinia Terrane (1)
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Western Canada
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British Columbia (2)
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Canadian Cordillera (1)
-
-
-
carbon
-
C-13/C-12 (1)
-
-
Cenozoic
-
Tertiary
-
Neogene
-
Miocene (1)
-
-
Paleogene
-
Eocene
-
lower Eocene (1)
-
middle Eocene (1)
-
-
Oligocene (1)
-
Paleocene
-
lower Paleocene (1)
-
-
-
-
-
Chordata
-
Vertebrata
-
Tetrapoda
-
Reptilia
-
Diapsida
-
Archosauria
-
dinosaurs (1)
-
-
-
-
-
-
-
clay mineralogy (1)
-
crust (14)
-
crystal chemistry (2)
-
crystal growth (2)
-
crystal structure (2)
-
Deep Sea Drilling Project
-
IPOD
-
Leg 81
-
DSDP Site 555 (1)
-
-
-
-
Europe
-
Central Europe
-
Germany
-
Lower Saxony Germany
-
Gorleben (1)
-
-
-
-
Southern Europe
-
Iberian Peninsula
-
Central Iberian Zone (1)
-
Iberian Massif (1)
-
Spain
-
Asturias Spain (1)
-
Castilla y Leon Spain
-
Salamanca Spain (1)
-
-
-
-
-
Western Europe
-
France
-
Loire Valley (1)
-
Loiret France (1)
-
-
Scandinavia
-
Finland
-
Ostrobothnia Finland (1)
-
-
Norway
-
Southern Norway (1)
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Telemark Norway (1)
-
-
-
United Kingdom
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Great Britain (1)
-
-
-
-
faults (1)
-
geochemistry (16)
-
geochronology (1)
-
ground water (2)
-
hydrology (1)
-
ichnofossils (1)
-
igneous rocks
-
picrite (1)
-
plutonic rocks
-
appinite (1)
-
diorites
-
quartz diorites (1)
-
-
gabbros (4)
-
granites
-
adamellite (1)
-
A-type granites (1)
-
granite porphyry (1)
-
I-type granites (1)
-
leucogranite (1)
-
monzogranite (2)
-
-
granodiorites (6)
-
monzonites (2)
-
quartz monzonite (1)
-
syenites (1)
-
-
porphyry (1)
-
volcanic rocks
-
andesites (3)
-
basalts
-
tholeiite (1)
-
-
dacites (3)
-
pyroclastics
-
andesite tuff (1)
-
tuff (1)
-
-
rhyolites (2)
-
trachyandesites (1)
-
-
-
inclusions (3)
-
intrusions (14)
-
isotopes
-
radioactive isotopes
-
Pb-206/Pb-204 (1)
-
Pb-207/Pb-204 (1)
-
Pb-208/Pb-204 (1)
-
Rb-87/Sr-86 (1)
-
Sm-147/Nd-144 (6)
-
-
stable isotopes
-
C-13/C-12 (1)
-
Hf-177/Hf-176 (33)
-
Nd-144/Nd-143 (13)
-
O-18 (1)
-
O-18/O-16 (3)
-
Pb-206/Pb-204 (1)
-
Pb-207/Pb-204 (1)
-
Pb-208/Pb-204 (1)
-
Rb-87/Sr-86 (1)
-
Sm-147/Nd-144 (6)
-
Sr-87/Sr-86 (9)
-
-
-
magmas (10)
-
mantle (9)
-
Mesozoic
-
Cretaceous
-
Lower Cretaceous (5)
-
Middle Cretaceous
-
Winton Formation (1)
-
-
Upper Cretaceous (2)
-
-
Jurassic
-
Lower Jurassic (1)
-
Upper Jurassic
-
Morrison Formation (1)
-
-
-
lower Mesozoic (1)
-
Triassic
-
Middle Triassic (2)
-
Upper Triassic (1)
-
-
-
metal ores
-
iron ores (1)
-
-
metals
-
actinides
-
thorium (2)
-
uranium (2)
-
-
alkali metals
-
potassium (3)
-
rubidium
-
Rb-87/Sr-86 (1)
-
-
sodium (1)
-
-
alkaline earth metals
-
strontium
-
Rb-87/Sr-86 (1)
-
Sr-87/Sr-86 (9)
-
-
-
aluminum (1)
-
chromium (1)
-
cobalt (1)
-
hafnium
-
Hf-177/Hf-176 (33)
-
-
iron (1)
-
lead
-
Pb-206/Pb-204 (1)
-
Pb-207/Pb-204 (1)
-
Pb-208/Pb-204 (1)
-
-
niobium (1)
-
rare earths
-
cerium (4)
-
europium (3)
-
gadolinium (2)
-
holmium (1)
-
lanthanum (9)
-
lutetium (65)
-
neodymium
-
Nd-144/Nd-143 (13)
-
Sm-147/Nd-144 (6)
-
-
samarium
-
Sm-147/Nd-144 (6)
-
-
scandium (1)
-
terbium (4)
-
ytterbium (6)
-
yttrium (1)
-
-
tantalum (2)
-
titanium (2)
-
zinc (1)
-
-
metamorphic rocks
-
amphibolites (2)
-
gneisses
-
granite gneiss (1)
-
-
granulites (2)
-
metaigneous rocks
-
metabasite (2)
-
-
metasedimentary rocks
-
metasandstone (1)
-
-
metasomatic rocks
-
greisen (1)
-
-
metavolcanic rocks (4)
-
migmatites (2)
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mylonites (1)
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phyllites (1)
-
quartzites (2)
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schists (1)
-
-
metamorphism (9)
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metasomatism (5)
-
mineral deposits, genesis (1)
-
North America
-
Appalachians (2)
-
Canadian Shield
-
Grenville Province (2)
-
Superior Province
-
Abitibi Belt (1)
-
-
-
Keweenawan Rift (1)
-
North American Cordillera
-
Canadian Cordillera (1)
-
-
Rocky Mountains
-
Southern Rocky Mountains (1)
-
-
Saint Elias Mountains (1)
-
Yukon-Tanana Terrane (1)
-
-
orogeny (2)
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oxygen
-
O-18 (1)
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O-18/O-16 (3)
-
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paleoclimatology (1)
-
paleoecology (1)
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paleogeography (8)
-
Paleozoic
-
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lutetium
Continental Arc Accumulation Mafic Rocks in the Mid-Upper Crust: Constraints From the Early Eocene Hornblende Gabbro–Diorite in the Tengchong Block, Southeastern Extension of Tibet
Petrogenesis of the Early Paleozoic Dioritic–Granitic Magmatism in the Eastern North Qilian Orogen, NW China: Implications for Tethyan Tectonic Evolution
New Insights on the Early Proto-Tethys Subduction History: Evidence from Ages and Petrogenesis of Volcanic Rocks in the Bulunkuole Complex, West Kunlun Orogen
Petrogenesis and Tectonic Implications of the Qulihai Pluton in the Northern Margin of the Yili Block, NW China
Geochemical Composition Variations and Tectonic Implications of the Baoligaomiao Formation Volcanic Rocks from the Uliastai Continental Margin, Southeast Central Asian Orogenic Belt
The Sr, Nd, Pb and Hf isotopes and crystallization conditions of the middle Eocene Dağdibi Pluton in the eastern Sakarya Zone, Turkey
Petrogenesis of Early Cretaceous volcanic rocks from the Rena-Co area in the southern Qiangtang Terrane, central Tibet: evidence from zircon U-Pb geochronology, petrochemistry and Sr-Nd-Pb–Hf isotope characteristics
Petrogenesis and tectonic implications of the Early Carboniferous shoshonitic to calc-alkaline magmatic rocks of the southern Yili terrane, western Tianshan
Age and petrogenesis of mafic granulites from central Madurai block, south India: implications on regional tectonics
Early Paleozoic Continental Arc Mafic Magmatism in the North Qaidam Tectonic Belt: Implications for Subduction of the Proto-Tethyan Oceanic Lithosphere
ABSTRACT West Avalonia is a composite terrane that rifted from the supercontinent Gondwana in the Ordovician and accreted to Laurentia during the latest Silurian to Devonian Acadian orogeny. The nature and extent of West Avalonia are well constrained in Nova Scotia, New Brunswick, and Newfoundland, Canada, by U-Pb detrital zircon data and/or isotope geochemistry of (meta)sedimentary and igneous rocks. The southeastern New England Avalon terrane in eastern Massachusetts, Connecticut, and Rhode Island has generally been interpreted as an along-strike continuance of West Avalonia in Canada, but the ages and origins of metasedimentary units along the western boundary of the Avalon terrane in Massachusetts and Connecticut remain poorly constrained. In this study, new detrital zircon U-Pb and Lu-Hf laser-ablation–inductively coupled plasma–mass spectrometry (LA-ICP-MS) data from three samples of metasedimentary units along the western boundary of the southeastern New England Avalon terrane in Connecticut and Massachusetts were compared with existing data to test whether these metasedimentary units can be correlated along strike. The data were also compared with existing detrital zircon U-Pb and εHf data in New England and Canada in order to constrain the extent and provenance of West Avalonia. The maximum depositional age of two of the three detrital zircon samples analyzed in this study, based on the youngest single grain in each sample (600 ± 28 Ma, n = 1; 617 ± 28 Ma, n = 1) and consistency with existing analyses elsewhere in the southeastern New England Avalon terrane, is Ediacaran, while that of the third sample is Tonian (959 ± 40 Ma, n = 4). Detrital zircon analyses of all three samples from this study showed similar substantial Mesoproterozoic and lesser Paleoproterozoic and Archean populations. Other existing detrital zircon U-Pb data from quartzites in the southeastern New England Avalon terrane show similar Tonian populations with or without Ediacaran grains or populations. Most published detrital zircon U-Pb data from (meta)sedimentary rocks in West Avalonia in Canada yielded Ediacaran youngest detrital zircon age populations, except for a quartzite unit within the Gamble Brook Formation in the Cobequid Highlands of Nova Scotia, which showed a Tonian maximum depositional age, and otherwise a nearly identical detrital zircon signature with rocks from the southeastern New England Avalon terrane. All samples compiled from the southeastern New England Avalon terrane and West Avalonia in Canada show main age populations between ca. 2.0 Ga and ca. 1.0 Ga, with major peaks at ca. 1.95, ca. 1.50, ca. 1.20, and ca. 1.00 Ga, and minor ca. 3.1–3.0 Ga and ca. 2.8–2.6 Ga populations. The εHf ( t ) values from the three samples yielded similar results to those from West Avalonia in Canada, suggesting that both regions were derived from the same cratonic sources. The εHf ( t ) values of all West Avalonian samples overlap with both Amazonia and Baltica, suggesting that there is a mixed signature between cratonic sources, possibly as a result of previous collision and transfer of basement fragments between these cratons during the formation of supercontinent Rodinia, or during subsequent arc collisions.
ABSTRACT Southeastern New England is largely composed of Ediacaran granitoid and related volcanic rocks formed during the main phase of arc-related magmatism recorded in West Avalonian lithotectonic assemblages extending through Atlantic Canada to eastern Newfoundland. In situ Lu-Hf analyses presented here for zircons from the Dedham, Milford, and Esmond Granites and from the Lynn-Mattapan volcanic complex show a restricted range of εHf values (+2 to +5) and associated Hf- T DM model ages of 1.3–0.9 Ga, assuming felsic crustal sources. The most evolved granites within this suite lie in a belt north and west of the Boston Basin, whereas upfaulted granites on the south, as well as the slightly younger volcanic units, show more juvenile Hf isotopic compositions. Similar inferences have been drawn from previously published Sm-Nd isotopic signatures for several of the same plutons. Collectively, the isotopic compositions and high-precision U-Pb geochronological constraints now available for southeastern New England differ in important respects from patterns in the Mira terrane of Cape Breton Island or the Newfoundland Avalon zone, but they closely resemble those documented in the Cobequid and Antigonish Highlands of mainland Nova Scotia and New Brunswick’s Caledonia terrane. Particularly significant features are similarities between the younger than 912 Ma Westboro Formation in New England and the younger than 945 Ma Gamble Brook Formation in the Cobequid Highlands, both of which yield detrital zircon age spectra consistent with sources on the Timanide margin of Baltica. This relationship provides the starting point for a recent model in which episodic West Avalonian arc magmatism began along the Tonian margin of Baltica and terminated during diachronous late Ediacaran arc-arc collision with the Ganderian margin of Gondwana.
ABSTRACT Avalonia and Ganderia are composite microcontinental fragments in the northern Appalachian orogen likely derived from Gondwanan sources. Avalonia includes numerous Neoproterozoic magmatic arc sequences that represent protracted and episodic subduction-related magmatism before deposition of an Ediacaran–Ordovician cover sequence of mainly siliciclastic rocks. We characterized the nature of the basement on which these arcs were constructed using zircon grains from arc-related magmatic rocks in Atlantic Canada that were analyzed for their Lu-Hf isotope composition. The majority of zircon grains from Avalonia are characterized by initial 176 Hf/ 177 Hf values that are more radiogenic than chondritic uniform reservoir, and calculated crust formation Hf T DM (i.e., depleted mantle) model ages range from 1.2 to 0.8 Ga. These data contrast with those from Ganderia, which show typically positive initial εHf values and Hf T DM model ages that imply magmatism was derived by melting of crustal sources with diverse ages ranging from ca. 1.8 to 1.0 Ga. The positive distribution of initial εHf values along with the pattern of Hf T DM model ages provide a clear record of two distinct subduction systems. Cryogenian–Ediacaran magmatism is interpreted to have resulted from reworking of an evolved Mesoproterozoic crustal component in a long-lived, subduction-dominated accretionary margin along the margin of northern Amazonia. A change in Hf isotope trajectory during the Ediacaran implies a greater contribution of isotopically evolved material consistent with an arc-arc–style collision of Ganderia with Avalonia. The shallow-sloping Hf isotopic pattern for Paleozoic Ganderian magmatism remains continuous for ~200 m.y., consistent with tectonic models of subduction in the Iapetus and Rheic Oceans and episodic accretion of juvenile crustal terranes to Laurentia.