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NARROW
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
-
Africa
-
Adrar des Iforas (3)
-
Central Africa
-
Angola (6)
-
Burundi (1)
-
Central African Republic (1)
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Congo (3)
-
Congo Democratic Republic
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Kivu Congo Democratic Republic (1)
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Shaba Congo Democratic Republic (6)
-
-
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Congo Basin (1)
-
Congo Craton (5)
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East Africa
-
Ethiopia (5)
-
Kenya
-
Kenya Rift valley (2)
-
-
Lake Turkana (1)
-
Malawi (1)
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Mozambique (2)
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Sudan (6)
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Tanzania (4)
-
Zambia (6)
-
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East African Lakes
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Lake Baringo (1)
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Lake Turkana (1)
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East African Rift (2)
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Madagascar (5)
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Mozambique Belt (5)
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North Africa
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Algeria
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Ahaggar (9)
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Berkine Basin (1)
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Great Kabylia (1)
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Atlas Mountains
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Moroccan Atlas Mountains
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Anti-Atlas (15)
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High Atlas (1)
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Egypt
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Eastern Desert (9)
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Sinai Egypt (4)
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Zabargad Island (1)
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Ghadames Basin (1)
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Libya (2)
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Morocco
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Bou Azzer (3)
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Moroccan Atlas Mountains
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Anti-Atlas (15)
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High Atlas (1)
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Tindouf Basin (1)
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Tunisia (1)
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Western Sahara (1)
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Nubian Shield (14)
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Red Sea Hills (1)
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Sahara (3)
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Southern Africa
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Botswana (1)
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Gariep Belt (6)
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Kaapvaal Craton (5)
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Kalahari Craton (2)
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Karoo Basin (1)
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Namaqualand (1)
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Namaqualand metamorphic complex (1)
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Namibia
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Damara Belt (8)
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Kaoko Belt (6)
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Karibib Namibia (1)
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Luderitz Namibia (1)
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South Africa
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Eastern Cape Province South Africa (1)
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KwaZulu-Natal South Africa (5)
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Northern Cape Province South Africa (1)
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Western Cape Province South Africa (2)
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Zimbabwe (2)
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Tibesti Massif (2)
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West Africa
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Benin (3)
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Burkina Faso (1)
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Cameroon
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Mount Cameroon (1)
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Chad (4)
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Ghana (2)
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Guinea (3)
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Guinea-Bissau (1)
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Ivory Coast (2)
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Liberia (3)
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Mali (11)
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Mauritania (2)
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Mauritanides (2)
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Niger (5)
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Niger Valley (1)
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Nigeria (5)
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Nimba Mountains (1)
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Senegal (4)
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Sierra Leone (1)
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Togo (3)
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West African Craton (2)
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West African Shield (11)
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Zimbabwe Craton (1)
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Antarctica
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Antarctic ice sheet
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East Antarctic ice sheet (1)
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Coats Land (1)
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East Antarctica (6)
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Ellsworth Land
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Filchner Ice Shelf (1)
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Mac Robertson Land
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Queen Maud Land
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Transantarctic Mountains
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Asia
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Arabian Peninsula
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Oman
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Saudi Arabia (6)
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Far East
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China (1)
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Himalayas
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Indian Peninsula
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India
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Karakoram (1)
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Middle East
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Israel
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Jordan (2)
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Turkey
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Atlantic Ocean
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North Atlantic
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Atlantic Ocean Islands
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Atlantic region (3)
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Australasia
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Australia
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Avalon Zone (3)
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Canada
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Eastern Canada
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Maritime Provinces
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Meguma Terrane (2)
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Europe
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Central Europe
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Southern Europe
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Indian Ocean
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Mediterranean Sea
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North America
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Appalachians (3)
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Gulf Coastal Plain (1)
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Red Sea region (4)
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Saint John Island (1)
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Sinai (4)
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Brazil
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Venezuela
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Eastern Venezuela (1)
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Southern Ocean
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Prydz Bay (1)
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Taoudenni (3)
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United States
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Atlantic Coastal Plain (1)
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Florida
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Alachua County Florida (1)
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Osceola County Florida (1)
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Massachusetts (2)
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Narragansett Basin (1)
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New England (2)
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Rhode Island (2)
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commodities
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barite deposits (2)
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brines (6)
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diamond deposits (1)
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fluorspar deposits (1)
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metal ores
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aluminum ores (1)
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base metals (2)
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cobalt ores (5)
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copper ores (10)
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gold ores (6)
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iron ores (2)
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lead ores (6)
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lead-zinc deposits (7)
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manganese ores (1)
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mercury ores (1)
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molybdenum ores (1)
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niobium ores (1)
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platinum ores (1)
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polymetallic ores (7)
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silver ores (6)
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tantalum ores (1)
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tin ores (2)
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tungsten ores (5)
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uranium ores (7)
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zinc ores (6)
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mineral deposits, genesis (28)
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mineral exploration (10)
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oil and gas fields (1)
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petroleum
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natural gas (1)
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phosphate deposits (1)
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-
elements, isotopes
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boron (1)
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carbon
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C-13/C-12 (4)
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chemical ratios (3)
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halogens
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fluorine (2)
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hydrogen
-
D/H (2)
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isotope ratios (28)
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isotopes
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radioactive isotopes
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Pb-206/Pb-204 (5)
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Pb-207/Pb-204 (5)
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Pb-208/Pb-204 (5)
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Rb-87/Sr-86 (2)
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Sm-147/Nd-144 (3)
-
-
stable isotopes
-
C-13/C-12 (4)
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D/H (2)
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Hf-177/Hf-176 (3)
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Nd-144/Nd-143 (13)
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O-18/O-16 (10)
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Pb-206/Pb-204 (5)
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Pb-207/Pb-204 (5)
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Pb-207/Pb-206 (1)
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Pb-208/Pb-204 (5)
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Rb-87/Sr-86 (2)
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S-34/S-32 (3)
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Sm-147/Nd-144 (3)
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Sr-87/Sr-86 (14)
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-
-
Lu/Hf (1)
-
metals
-
actinides
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uranium (1)
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-
alkali metals
-
rubidium
-
Rb-87/Sr-86 (2)
-
-
-
alkaline earth metals
-
barium (1)
-
strontium
-
Rb-87/Sr-86 (2)
-
Sr-87/Sr-86 (14)
-
-
-
hafnium
-
Hf-177/Hf-176 (3)
-
-
lead
-
Pb-206/Pb-204 (5)
-
Pb-207/Pb-204 (5)
-
Pb-207/Pb-206 (1)
-
Pb-208/Pb-204 (5)
-
-
niobium (1)
-
platinum group
-
platinum ores (1)
-
-
rare earths
-
neodymium
-
Nd-144/Nd-143 (13)
-
Sm-147/Nd-144 (3)
-
-
samarium
-
Sm-147/Nd-144 (3)
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-
yttrium (1)
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tantalum (1)
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tungsten (1)
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-
nitrogen (1)
-
noble gases
-
argon (1)
-
-
oxygen
-
O-18/O-16 (10)
-
-
sulfur
-
S-34/S-32 (3)
-
-
-
fossils
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Chordata
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Vertebrata
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Tetrapoda
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Mammalia
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Theria
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Eutheria
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Primates (1)
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ichnofossils
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Skolithos (1)
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problematic microfossils (1)
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Plantae
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algae (1)
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problematic fossils
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problematic microfossils (1)
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-
geochronology methods
-
(U-Th)/He (2)
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Ar/Ar (18)
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fission-track dating (4)
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K/Ar (6)
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Lu/Hf (1)
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paleomagnetism (6)
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Pb/Pb (8)
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Pb/Th (1)
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radiation damage (2)
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Rb/Sr (22)
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Re/Os (1)
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Sm/Nd (12)
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Sr/Sr (1)
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thermochronology (1)
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U/Pb (57)
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U/Th/Pb (6)
-
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geologic age
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Cenozoic
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Quaternary
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Pleistocene (2)
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Tertiary
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Neogene
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Miocene (3)
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Pliocene (1)
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Paleogene
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Eocene (1)
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Paleocene (1)
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upper Cenozoic (1)
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Mesozoic
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Cretaceous (7)
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Jurassic
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Ferrar Group (1)
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Upper Jurassic (1)
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Triassic (2)
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upper Mesozoic (1)
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Paleozoic
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Cambrian
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Lower Cambrian
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Tommotian (1)
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Middle Cambrian (1)
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Upper Cambrian
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Goldenville Formation (1)
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Carboniferous
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Mississippian (1)
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Upper Carboniferous (1)
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Devonian
-
Upper Devonian (1)
-
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lower Paleozoic (6)
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Ordovician
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Lower Ordovician
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Tremadocian
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Halifax Formation (1)
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-
-
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Permian
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Lower Permian (1)
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Silurian (2)
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Phanerozoic (3)
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Precambrian
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Archean
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Mesoarchean (1)
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Paleoarchean (1)
-
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upper Precambrian
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Proterozoic
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Damara System (10)
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Mesoproterozoic
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Stenian (1)
-
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Neoproterozoic
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Cryogenian (2)
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Ediacaran (4)
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Infracambrian (1)
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Otavi Group (1)
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Riphean (1)
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Tonian (4)
-
Vendian (3)
-
-
Paleoproterozoic
-
Birimian (3)
-
-
-
-
-
-
igneous rocks
-
igneous rocks
-
carbonatites (3)
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hypabyssal rocks (1)
-
plutonic rocks
-
diabase (2)
-
diorites
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quartz diorites (3)
-
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gabbros
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norite (1)
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troctolite (1)
-
-
granites
-
adamellite (2)
-
A-type granites (4)
-
charnockite (3)
-
I-type granites (1)
-
leucogranite (7)
-
microgranite (2)
-
monzogranite (2)
-
S-type granites (1)
-
-
granodiorites (4)
-
monzonites (1)
-
pegmatite (6)
-
syenites
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microsyenite (1)
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nepheline syenite (1)
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quartz syenite (1)
-
-
ultramafics
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peridotites
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lherzolite (1)
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spinel lherzolite (2)
-
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pyroxenite (1)
-
-
-
volcanic rocks
-
basalts
-
alkali basalts
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mugearite (1)
-
-
flood basalts (1)
-
mid-ocean ridge basalts (1)
-
ocean-island basalts (1)
-
tholeiite (2)
-
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basanite (1)
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komatiite (1)
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phonolites (1)
-
pyroclastics
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ignimbrite (1)
-
tuff (2)
-
-
rhyolites
-
quartz porphyry (1)
-
-
trachytes (1)
-
-
-
ophiolite (10)
-
-
metamorphic rocks
-
metamorphic rocks
-
amphibolites (3)
-
gneisses
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augen gneiss (2)
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orthogneiss (4)
-
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granulites (13)
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itabirite (1)
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marbles (2)
-
metaigneous rocks
-
metabasite (2)
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metadiabase (1)
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metadiorite (1)
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metagranite (2)
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metapyroxenite (1)
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serpentinite (1)
-
-
metaplutonic rocks (1)
-
metasedimentary rocks
-
metagraywacke (1)
-
metapelite (3)
-
-
metasomatic rocks
-
rodingite (1)
-
serpentinite (1)
-
skarn (8)
-
-
metavolcanic rocks (11)
-
migmatites (4)
-
mylonites (2)
-
quartzites (5)
-
schists
-
tourmalinite (1)
-
-
-
ophiolite (10)
-
turbidite (4)
-
-
minerals
-
carbonates
-
calcite (1)
-
-
halides
-
fluorides
-
fluorite (1)
-
-
-
minerals (1)
-
oxides
-
aluminum oxides (1)
-
magnetite (1)
-
niobates
-
columbite (1)
-
pyrochlore (1)
-
-
tantalates (1)
-
-
phosphates
-
apatite (5)
-
fluorapatite (1)
-
monazite (8)
-
-
silicates
-
chain silicates
-
aenigmatite group
-
sapphirine (1)
-
-
amphibole group
-
clinoamphibole
-
hornblende (4)
-
riebeckite (1)
-
-
-
pyroxene group
-
clinopyroxene
-
pigeonite (1)
-
-
orthopyroxene (1)
-
-
-
framework silicates
-
feldspar group
-
alkali feldspar
-
amazonite (1)
-
K-feldspar (4)
-
microcline (1)
-
perthite (1)
-
-
-
silica minerals
-
coesite (1)
-
quartz (2)
-
-
-
garnierite (1)
-
orthosilicates
-
nesosilicates
-
garnet group (5)
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kyanite (1)
-
olivine group
-
olivine (2)
-
-
sillimanite (2)
-
staurolite (1)
-
titanite group
-
titanite (1)
-
-
zircon group
-
zircon (50)
-
-
-
-
ring silicates
-
tourmaline group
-
dravite (1)
-
schorl (1)
-
-
-
sheet silicates
-
chlorite group
-
chlorite (2)
-
-
margarite (1)
-
mica group
-
biotite (1)
-
muscovite (3)
-
phlogopite (1)
-
-
serpentine group
-
serpentine (1)
-
-
-
-
sulfides
-
molybdenite (2)
-
-
tungstates
-
scheelite (1)
-
-
-
Primary terms
-
absolute age (97)
-
Africa
-
Adrar des Iforas (3)
-
Central Africa
-
Angola (6)
-
Burundi (1)
-
Central African Republic (1)
-
Congo (3)
-
Congo Democratic Republic
-
Kivu Congo Democratic Republic (1)
-
Shaba Congo Democratic Republic (6)
-
-
-
Congo Basin (1)
-
Congo Craton (5)
-
East Africa
-
Ethiopia (5)
-
Kenya
-
Kenya Rift valley (2)
-
-
Lake Turkana (1)
-
Malawi (1)
-
Mozambique (2)
-
Sudan (6)
-
Tanzania (4)
-
Zambia (6)
-
-
East African Lakes
-
Lake Baringo (1)
-
Lake Turkana (1)
-
-
East African Rift (2)
-
Madagascar (5)
-
Mozambique Belt (5)
-
North Africa
-
Algeria
-
Ahaggar (9)
-
Berkine Basin (1)
-
Great Kabylia (1)
-
-
Atlas Mountains
-
Moroccan Atlas Mountains
-
Anti-Atlas (15)
-
High Atlas (1)
-
-
-
Egypt
-
Eastern Desert (9)
-
Sinai Egypt (4)
-
Zabargad Island (1)
-
-
Ghadames Basin (1)
-
Libya (2)
-
Morocco
-
Bou Azzer (3)
-
Moroccan Atlas Mountains
-
Anti-Atlas (15)
-
High Atlas (1)
-
-
-
Tindouf Basin (1)
-
Tunisia (1)
-
Western Sahara (1)
-
-
Nubian Shield (14)
-
Red Sea Hills (1)
-
Sahara (3)
-
Southern Africa
-
Botswana (1)
-
Gariep Belt (6)
-
Kaapvaal Craton (5)
-
Kalahari Craton (2)
-
Karoo Basin (1)
-
Namaqualand (1)
-
Namaqualand metamorphic complex (1)
-
Namibia
-
Damara Belt (8)
-
Kaoko Belt (6)
-
Karibib Namibia (1)
-
Luderitz Namibia (1)
-
-
South Africa
-
Eastern Cape Province South Africa (1)
-
KwaZulu-Natal South Africa (5)
-
Northern Cape Province South Africa (1)
-
Western Cape Province South Africa (2)
-
-
Zimbabwe (2)
-
-
Tibesti Massif (2)
-
West Africa
-
Benin (3)
-
Burkina Faso (1)
-
Cameroon
-
Mount Cameroon (1)
-
-
Chad (4)
-
Ghana (2)
-
Guinea (3)
-
Guinea-Bissau (1)
-
Ivory Coast (2)
-
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Pan-African Orogeny
ABSTRACT The Avalon terrane of southeastern New England is a composite terrane in which various crustal blocks may have different origins and/or tectonic histories. The northern part (west and north of Boston, Massachusetts) correlates well with Avalonian terranes in Newfoundland, Nova Scotia, and New Brunswick, Canada, based on rock types and ages, U-Pb detrital zircon signatures of metasedimentary rocks, and Sm-Nd isotope geochemistry data. In the south, fewer data exist, in part because of poorer rock exposure, and the origins and histories of the rocks are less well constrained. We conducted U-Pb laser ablation–inductively coupled plasma–mass spectrometry analysis on zircon from seven metasedimentary rock samples from multiple previously interpreted subterranes in order to constrain their origins. Two samples of Neoproterozoic Plainfield Formation quartzite from the previously interpreted Hope Valley subterrane in the southwestern part of the southeastern New England Avalon terrane and two from the Neoproterozoic Blackstone Group quartzite from the adjacent Esmond-Dedham subterrane to the east have Tonian youngest detrital zircon age populations. One sample of Cambrian North Attleboro Formation quartzite of the Esmond-Dedham subterrane yielded an Ediacaran youngest detrital zircon age population. Detrital zircon populations of all five samples include abundant Mesoproterozoic zircon and smaller Paleoproterozoic and Archean populations, and are similar to those of the northern part of the southeastern New England Avalon terrane and the Avalonian terranes in Canada. These are interpreted as having a Baltican/Amazonian affinity based primarily on published U-Pb and Lu-Hf detrital zircon data. Based on U-Pb detrital zircon data, there is no significant difference between the Hope Valley and Esmond-Dedham subterranes. Detrital zircon of two samples of the Price Neck and Newport Neck formations of the Neoproterozoic Newport Group in southern Rhode Island is characterized by large ca. 647–643 and ca. 745–733 Ma age populations and minor zircon up to ca. 3.1 Ga. This signature is most consistent with a northwest African affinity. The Newport Group may thus represent a subterrane, terrane, or other crustal block with a different origin and history than the southeastern New England Avalon terrane to the northwest. The boundary of this Newport Block may be restricted to the boundaries of the Newport Group, or it may extend as far north as Weymouth, Massachusetts, as far northwest as (but not including) the North Attleboro Formation quartzite and associated rocks in North Attleboro, Massachusetts, and as far west as Warwick, Rhode Island, where eastern exposures of the Blackstone Group quartzite exist. The Newport Block may have amalgamated with the Amazonian/Baltican part of the Avalon terrane prior to mid-Paleozoic amalgamation with Laurentia, or it may have arrived as a separate terrane after accretion of the Avalon terrane. Alternatively, it may have arrived during the formation of Pangea and been stranded after the breakup of Pangea, as has been proposed previously for rocks of the Georges Bank in offshore Massachusetts. If the latter is correct, then the boundary between the Newport Block and the southeastern New England Avalon terrane is the Pangean suture zone.
Crustal Thickness Variations and Tectonic Settings in the Southwest Cameroon Inferred from Gravity and Topography Data
Petrogenesis of contrasting magmatic suites in the Abu Kharif area, Northern Eastern Desert, Egypt: implications for Pan-African crustal evolution and tungsten mineralization
Uraniferous Leucogranites in the Rössing Area, Namibia: New Insights from Geologic Mapping and Airborne Hyperspectral Imagery
Plombotectonique des gisements du Maroc
Discussion on ‘From Pan-African transpression to Cadomian transtension at the West African margin: new U–Pb zircon ages from the Eastern Saghro Inlier (Anti-Atlas, Morocco)’ by Errami et al . 2020 ( SP 503, 209–233)
Reply to discussion on ‘From Pan-African transpression to Cadomian transtension at the West African margin: new U–Pb zircon ages from the Eastern Saghro Inlier (Anti-Atlas, Morocco)’ by Errami et al . ( SP 503, 209–233)
Neoproterozoic magmatic evolution of the southern Ouaddaï Massif (Chad)
A multidisciplinary approach for the quantitative provenance analysis of siltstone: Mesozoic Mandawa Basin, southeastern Tanzania
Abstract This paper shows how heavy minerals and single-grain varietal studies can be conducted on silt (representing c. 50% of world's sediments) sediments to obtain quantitative data as efficiently as for sand-sized sediments. The analytical workflows include heavy mineral separation using a wide grain-size window (15–355 μ) analysed through integrated optical analysis, Raman spectroscopy, QEMSCAN microscopy and U–Pb dating of detrital zircon. Upper Jurassic–Cretaceous silt-sized sediments from the Mandawa Basin of central-southern Tanzania have been selected for the scope of this research. Raman-aided heavy mineral analysis reveals garnet and apatite to be the most common minerals together with durable zircon, tourmaline and subordinate rutile. Accessory but diagnostic phases are titanite, staurolite, epidote and monazite. Etch pits on garnet and cockscomb features on staurolite document the significant effect of diagenesis on the pristine heavy mineral assemblage. Multivariate statistical analysis highlights a close association among durable minerals (zircon, tourmaline and rutile, ZTR) while garnet and apatite plot alone reflecting independence between the three groups of variables with garnet increasing in Jurassic samples. Raman data for garnet end-member analysis document different associations between Jurassic (richer in A, Bi and Bii types) and Cretaceous (dominant A, Ci and Cii types) samples. U–Pb dating of detrital zircon and their statistical integration with the above-mentioned datasets provide further insights into changes in provenance and/or drainage systems. Metamorphic rocks of the early and late Pan-African orogeny terranes of the Mozambique Belt and those of the Irumide Belt acted as main source of sediment during the Jurassic. Cretaceous sediments record a broadening of the drainage system reaching as far as the Usagran–Ubendian Belt and the Tanzanian Archean Craton.