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NARROW
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
-
Africa
-
East Africa
-
Kenya (1)
-
Sudan (2)
-
Tanzania (1)
-
-
East African Rift (1)
-
Limpopo Belt (1)
-
North Africa
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Libya
-
Murzuk Basin (2)
-
-
Maghreb (1)
-
-
Southern Africa
-
Barberton greenstone belt (1)
-
Kaapvaal Craton (1)
-
South Africa
-
Cape fold belt (1)
-
Eastern Cape Province South Africa (1)
-
KwaZulu-Natal South Africa (1)
-
Transvaal region (2)
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Witwatersrand (1)
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Swaziland (1)
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Zimbabwe (1)
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Zimbabwe Craton (1)
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Antarctica
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Transantarctic Mountains
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Pensacola Mountains (1)
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Victoria Land (1)
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Arctic Ocean
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Barents Sea (1)
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Greenland
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Svalbard
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Asia
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Arabian Peninsula
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Far East
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China
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India (1)
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Middle East
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Jordan (1)
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Atlantic Ocean
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Australasia
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Canada
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Ontario
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Quebec
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Europe
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Western Europe
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Mexico
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Canadian Shield
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Great Lakes
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North Slope (1)
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Pacific Ocean
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West Pacific
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Brazil
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Powder River basin (1)
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Texas
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East Texas (1)
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Harrison County Texas (1)
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Nacogdoches County Texas (1)
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Panola County Texas (1)
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Pecos County Texas (1)
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Rusk County Texas (1)
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Shelby County Texas (1)
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Smith County Texas (1)
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Trans-Pecos (1)
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U. S. Rocky Mountains
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Utah (6)
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West Virginia
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Wisconsin
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Wyoming (2)
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commodities
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mineral deposits, genesis (1)
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tight sands (2)
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elements, isotopes
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isotope ratios (3)
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stable isotopes
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O-18/O-16 (3)
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Sr-87/Sr-86 (1)
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metals
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potassium (1)
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alkaline earth metals
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strontium
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Sr-87/Sr-86 (1)
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hafnium (2)
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rare earths
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neodymium
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Nd-144/Nd-143 (1)
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Sm-147/Nd-144 (1)
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samarium
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Sm-147/Nd-144 (1)
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oxygen
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O-18/O-16 (3)
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phosphorus (1)
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sulfur
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S-34/S-32 (1)
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fossils
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burrows (1)
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Chordata
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Vertebrata
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Pisces
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Placodermi (1)
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ichnofossils
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Chondrites ichnofossils (2)
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Cruziana (1)
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Planolites (1)
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Skolithos (3)
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Teichichnus (1)
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Thalassinoides (1)
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Invertebrata
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Archaeocyatha (1)
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Arthropoda
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Trilobitomorpha
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Trilobita (1)
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Brachiopoda (2)
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Bryozoa (1)
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Echinodermata
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Crinozoa
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Crinoidea (1)
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Mollusca
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Bivalvia
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Pterioida
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Pteriina
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Inocerami
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Inoceramidae (1)
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-
-
-
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Cephalopoda
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Ammonoidea (1)
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-
-
Protista
-
Foraminifera
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Fusulinina
-
Fusulinidae (1)
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-
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microfossils
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Conodonta (2)
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Fusulinina
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Fusulinidae (1)
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palynomorphs (3)
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Plantae
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algae
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Rhodophyta (1)
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thallophytes (1)
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-
geochronology methods
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Ar/Ar (1)
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fission-track dating (1)
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Pb/Pb (3)
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Sm/Nd (1)
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thermochronology (1)
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U/Pb (17)
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geologic age
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Cenozoic
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Quaternary
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Holocene (2)
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Pleistocene (1)
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Tertiary
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Neogene
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Miocene
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middle Miocene
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Langhian (1)
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Serravallian (1)
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Pliocene (2)
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-
Paleogene
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Eocene
-
Mirador Formation (1)
-
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Oligocene (5)
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Paleocene
-
upper Paleocene
-
Thanetian (1)
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-
-
-
-
-
Mesozoic
-
Cretaceous
-
Comanchean
-
Travis Peak Formation (1)
-
-
Lower Cretaceous
-
Albian
-
Pinda Formation (1)
-
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Aptian (1)
-
Mannville Group (2)
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Travis Peak Formation (1)
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Upper Cretaceous
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Campanian (1)
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Coniacian (1)
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Santonian (1)
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Senonian (1)
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Turonian (1)
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Viking Formation (1)
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Jurassic
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Lower Jurassic
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Toarcian (1)
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Middle Jurassic
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Aalenian (1)
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Bajocian
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Brent Group (3)
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-
Callovian (1)
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Upper Jurassic
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Morrison Formation (2)
-
-
-
Navajo Sandstone (1)
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Triassic
-
Lower Triassic (2)
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Middle Triassic
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Doig Formation (1)
-
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Montney Formation (1)
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Sherwood Sandstone (1)
-
Upper Triassic
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Norian (1)
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Rhaetian (1)
-
Yanchang Formation (1)
-
-
-
Vaca Muerta Formation (1)
-
-
Paleozoic
-
Berea Sandstone (1)
-
Cambrian
-
Lower Cambrian
-
Poleta Formation (1)
-
-
Upper Cambrian
-
Bonneterre Formation (1)
-
Galesville Sandstone (3)
-
Lamotte Sandstone (1)
-
Mount Simon Sandstone (1)
-
Potsdam Sandstone (2)
-
-
-
Carboniferous
-
Amsden Formation (1)
-
Benxi Formation (2)
-
Jackfork Group (1)
-
Middle Carboniferous (1)
-
Mississippian
-
Mission Canyon Limestone (1)
-
Upper Mississippian (1)
-
-
Pennsylvanian
-
Lower Pennsylvanian
-
Lee Formation (2)
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Morrowan (1)
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Pocahontas Formation (2)
-
-
Morrow Formation (1)
-
Upper Pennsylvanian (1)
-
-
Upper Carboniferous
-
Westphalian (1)
-
-
-
Devonian
-
Lower Devonian
-
Emsian (1)
-
Oriskany Sandstone (1)
-
-
Middle Devonian (1)
-
Old Red Sandstone (1)
-
Upper Devonian
-
Famennian (1)
-
Jefferson Group (1)
-
-
-
lower Paleozoic (4)
-
middle Paleozoic (1)
-
Minnelusa Formation (1)
-
Ordovician
-
Ely Springs Dolomite (1)
-
Eureka Quartzite (2)
-
Lower Ordovician (2)
-
Middle Ordovician
-
Saint Peter Sandstone (3)
-
-
Valmy Formation (1)
-
-
Permian
-
Lower Permian (3)
-
Middle Permian (1)
-
Shihezi Formation (1)
-
-
Silurian
-
Lower Silurian
-
Grimsby Sandstone (1)
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Wenlock (1)
-
Whirlpool Sandstone (1)
-
-
Middle Silurian
-
Keefer Sandstone (1)
-
-
Upper Silurian (2)
-
-
Taiyuan Formation (2)
-
upper Paleozoic
-
Dwyka Formation (1)
-
Shanxi Formation (2)
-
-
Weber Sandstone (1)
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Wells Formation (1)
-
-
Precambrian
-
Archean
-
Fig Tree Group (1)
-
Mesoarchean (1)
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Neoarchean (1)
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Paleoarchean (1)
-
-
Central Rand Group (1)
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Pongola Supergroup (1)
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Purcell System (1)
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Uinta Mountain Group (1)
-
upper Precambrian
-
Proterozoic
-
Algonkian
-
Baraboo Quartzite (3)
-
-
Huronian
-
Onaping Formation (1)
-
-
Mesoproterozoic
-
Belt Supergroup (3)
-
Helikian (1)
-
-
Miette Group (1)
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Neoproterozoic
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Torridonian (1)
-
-
Ortega Group (1)
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Paleoproterozoic
-
Aphebian
-
Hurwitz Group (1)
-
-
Whitewater Group (1)
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-
-
-
Witwatersrand Supergroup (2)
-
Wyman Formation (1)
-
-
-
igneous rocks
-
igneous rocks
-
plutonic rocks
-
granites (1)
-
-
volcanic rocks (1)
-
-
-
metamorphic rocks
-
K-bentonite (1)
-
metamorphic rocks
-
metasedimentary rocks (2)
-
quartzites (10)
-
-
turbidite (2)
-
-
minerals
-
carbonates
-
calcite (3)
-
dolomite (3)
-
siderite (1)
-
sphaerosiderite (1)
-
-
K-bentonite (1)
-
minerals (1)
-
oxides
-
chrome spinel (1)
-
hematite (1)
-
-
phosphates
-
apatite (1)
-
-
silicates
-
aluminosilicates (2)
-
framework silicates
-
feldspar group
-
alkali feldspar
-
K-feldspar (1)
-
-
-
silica minerals
-
quartz (12)
-
-
-
orthosilicates
-
nesosilicates
-
zircon group
-
zircon (19)
-
-
-
-
ring silicates (1)
-
sheet silicates
-
chlorite group
-
chlorite (1)
-
-
clay minerals
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kaolinite (6)
-
smectite (2)
-
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illite (2)
-
mica group
-
glauconite (4)
-
muscovite (1)
-
-
-
-
sulfates
-
anhydrite (2)
-
gypsum (1)
-
-
sulfides
-
copper sulfides (1)
-
galena (1)
-
sphalerite (1)
-
-
-
Primary terms
-
absolute age (19)
-
Africa
-
East Africa
-
Kenya (1)
-
Sudan (2)
-
Tanzania (1)
-
-
East African Rift (1)
-
Limpopo Belt (1)
-
North Africa
-
Libya
-
Murzuk Basin (2)
-
-
Maghreb (1)
-
-
Southern Africa
-
Barberton greenstone belt (1)
-
Kaapvaal Craton (1)
-
South Africa
-
Cape fold belt (1)
-
Eastern Cape Province South Africa (1)
-
KwaZulu-Natal South Africa (1)
-
Transvaal region (2)
-
Witwatersrand (1)
-
-
Swaziland (1)
-
Zimbabwe (1)
-
-
Zimbabwe Craton (1)
-
-
Antarctica
-
Transantarctic Mountains
-
Pensacola Mountains (1)
-
-
Victoria Land (1)
-
-
Arctic Ocean
-
Barents Sea (1)
-
-
Arctic region
-
Greenland
-
East Greenland (1)
-
-
Svalbard
-
Spitsbergen (1)
-
-
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Asia
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Arabian Peninsula
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Rub' al Khali (1)
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Saudi Arabia (1)
-
-
Far East
-
China
-
North China Platform (1)
-
Ordos Basin (2)
-
Xizang China (1)
-
-
-
Indian Peninsula
-
India (1)
-
-
Middle East
-
Jordan (1)
-
-
-
Atlantic Ocean
-
North Atlantic
-
Baltimore Canyon (2)
-
Jeanne d'Arc Basin (1)
-
North Sea (3)
-
Northwest Atlantic
-
Hibernia Field (1)
-
-
Scotian Shelf (1)
-
-
-
Australasia
-
Australia
-
Victoria Australia (1)
-
Western Australia (1)
-
-
-
bitumens (2)
-
Canada
-
Arctic Archipelago (4)
-
Eastern Canada
-
Newfoundland and Labrador
-
Newfoundland (1)
-
-
Ontario
-
Sudbury igneous complex (1)
-
Sudbury Structure (1)
-
-
Quebec
-
Kamouraska County Quebec (2)
-
L'Islet County Quebec (1)
-
-
-
Mackenzie Mountains (1)
-
Western Canada
-
Alberta
-
Athabasca River (1)
-
Peace River Arch (1)
-
-
British Columbia (1)
-
Northwest Territories (5)
-
Saskatchewan (1)
-
Yukon Territory
-
Wernecke Mountains (1)
-
-
-
-
carbon
-
C-13/C-12 (2)
-
organic carbon (1)
-
-
Caribbean region
-
West Indies
-
Antilles
-
Greater Antilles
-
Puerto Rico (1)
-
-
Lesser Antilles
-
Barbados (1)
-
Trinidad and Tobago
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Trinidad (1)
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quartz arenite
Quartz arenites as signatures of cratonisation: examples from the Archaean Stratigraphic Record, southern Africa
Climato-tectonic evolution of siliciclastic sandstones on Puerto Rico: from lithic arenites to quartz-arenitic sands in an oceanic island-arc setting
Late Paleoproterozoic to early Mesoproterozoic deposition of quartz arenites across southern Laurentia
ABSTRACT Supermature siliciclastic sequences were deposited between 1.64 Ga and 1.59 Ga over a broad swath of southern Laurentia in the Archean, Penokean, Yavapai, and Mazatzal Provinces. These siliciclastic sequences are notable for their extreme mineralogical and chemical maturity, being devoid of detrital feldspar and ferromagnesian minerals, containing the clay mineral kaolinite (or its metamorphic equivalent, pyrophyllite), and having a chemical index of alteration >95. Such maturity is the result of a perfect confluence of tectonic and climatic conditions, including a stable continental crust with low topographic relief (the Archean, Penokean, and Yavapai Provinces ca. 1.70 Ga), a warm humid climate, an elevated level of atmospheric CO 2 , and relatively acidic pore fluids in the critical zone. The weathered detritus was transported and deposited by southward-flowing streams across the Archean, Penokean, and Yavapai Provinces, ultimately to be deposited on 1.66 Ga volcanic and volcaniclastic rocks in the Mazatzal continental arc along the southern margin of Laurentia.
Comparing organic-hosted and intergranular pore networks: topography and topology in grains, gaps and bubbles
Abstract The relationship between pore structures was examined using a combination of normalized topographical and topological measurements in two qualitatively different pore systems: organic-hosted porosity, common in unconventional shale reservoirs; and intergranular porosity, common in conventional siliciclastic reservoirs. The organic-hosted pore network was found to be less well connected than the intergranular pore network, with volume-weighted coordination numbers of 1.16 and 8.14 for organic-hosted and intergranular pore systems, respectively. This disparity in coordination number was explained by differences in the pore shapes that are caused by variations in the geological processes associated with the generation of the pore network. Measurements of pore shape showed that the pores in the organic-hosted network were both significantly more spherical and had a more positive curvature distribution than the pores present within the intergranular network. The impact of such changes in pore shape on pore-network connectivity was examined by creating a suite of synthetic pore geometries using both erosion/dilation of the existing network and image-guided object-based methods. Coordination number, Euler characteristic and aggregate porosity analyses performed on these synthetic networks showed that organic-type pore networks become connected at much higher aggregate porosities (35–50%) than intergranular-type pore networks (5–10%).
Discovery of the Baldy toreva near urban areas along the southern Wasatch Range, Utah
Lower Cambrian facies architecture and sequence stratigraphy, NW France: framework for evaluation of basin-wide processes of sedimentation
Diagenetic characteristics and quantitative evolution of porosity in tight gas sandstone reservoirs: A case study from the middle and lower Permian in the northwestern Ordos Basin, China
Multimineral diagenetic forward modeling for reservoir quality prediction in complex siliciclastic reservoirs
Diagenetic sequences of continuously deposited tight sandstones in various environments: A case study from upper Paleozoic sandstones in the Linxing area, eastern Ordos basin, China
Sedimentology of a “nonactualistic” Middle Ordovician tidal-influenced reservoir in the Murzuq Basin (Libya)
Sheeting joints and polygonal patterns in the Navajo Sandstone, southern Utah: Controlled by rock fabric, tectonic joints, buckling, and gullying
Facies associations and chemostratigraphy of the Lower Cretaceous Kurnub Group and their boundaries, King Talal Dam section, northwestern Jordan
Deformation band development as a function of intrinsic host-rock properties in Triassic Sherwood Sandstone
Abstract: Deformation bands significantly alter the local petrophysical properties of sandstone reservoirs, although it is not known how the intrinsically variable characteristics of sandstones (e.g. grain size, sorting and mineralogy) influence the nature and distribution of deformation bands. To address this, cataclastic deformation bands within fine- and coarse-grained Triassic Sherwood Sandstone at Thurstaston, UK were analysed, for the first time, using a suite of petrographical techniques, outcrop studies, helium porosimetry and image analysis. Deformation bands are more abundant in the coarse-grained sandstone than in the underlying fine-grained sandstone. North- and south-dipping conjugate sets of cataclastic bands in the coarse-grained sandstone broadly increase in density (defined by number/m 2 ) when approaching faults. Microstructural analysis revealed that primary grain size controls deformation band density. Deformation bands in both coarse and fine sandstones led to significantly reduced porosity, and so can represent barriers or baffles to lateral fluid flow. Microstructural data show preferential cataclasis of K-feldspar grains within the host rock and deformation band. The study is of direct relevance to the prediction of reservoir quality in several petroleum-bearing Lower Triassic reservoirs in the near offshore, as deformation band development occurred prior to Carboniferous source-rock maturation and petroleum migration.