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NARROW
Format
Article Type
Journal
Publisher
Section
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
-
Africa
-
Afar (1)
-
Central Africa
-
Angola (1)
-
-
East Africa
-
Afar Depression (1)
-
Djibouti (1)
-
Ethiopia
-
Wallo Ethiopia (1)
-
-
Tanzania (1)
-
-
East African Rift (2)
-
North Africa
-
Egypt
-
Alexandria Egypt (1)
-
-
-
Nubian Shield (2)
-
Southern Africa
-
Kaapvaal Craton (1)
-
South Africa (1)
-
-
-
Arctic Ocean
-
Norwegian Sea
-
Haltenbanken (1)
-
-
-
Asia
-
Baikal region (1)
-
Baikal rift zone (1)
-
Far East
-
China
-
Bohaiwan Basin (3)
-
Dongpu Depression (1)
-
Guangdong China (1)
-
Heilongjiang China
-
Daqing Field (1)
-
-
Jiangsu China (1)
-
Jilin China (1)
-
Kunlun Fault (1)
-
Liaoning China
-
Liaohe Field (1)
-
-
North China Platform (1)
-
Ordos Basin (1)
-
Qaidam Basin (1)
-
Shaanxi China (1)
-
Shandong China
-
Shengli Field (1)
-
-
Shanxi China (1)
-
Sichuan Basin (1)
-
Songliao Basin (2)
-
Taihang Mountains (1)
-
Xinjiang China
-
Junggar Basin (1)
-
Tarim Basin (1)
-
-
-
Japan (1)
-
Taiwan (6)
-
-
Himalayas (1)
-
Indian Peninsula
-
Bengal (1)
-
India
-
Gujarat India
-
Kutch India (1)
-
Saurashtra (1)
-
-
Maharashtra India (1)
-
Narmada Valley (1)
-
West Bengal India (1)
-
-
Nepal (1)
-
-
Lake Baikal (2)
-
Middle East
-
Cyprus (1)
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Dead Sea (2)
-
Dead Sea Rift (2)
-
Iran
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Elburz (1)
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Fars Iran (1)
-
-
Israel (3)
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Jordan (3)
-
Lebanon (1)
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Palestine (1)
-
Turkey
-
Anatolia (2)
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Kocaeli Turkey
-
Izmit Turkey (1)
-
-
Menderes Massif (1)
-
North Anatolian Fault (5)
-
Sea of Marmara (1)
-
Sea of Marmara region (1)
-
-
-
Siberian fold belt (1)
-
Tibetan Plateau (1)
-
Tien Shan (1)
-
-
Atlantic Ocean
-
North Atlantic
-
Amazon Fan (1)
-
Gulf of Mexico
-
Mississippi Fan (1)
-
-
North Sea
-
Brent Field (1)
-
Oseberg Field (1)
-
Statfjord Field (1)
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Viking Graben (2)
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-
-
South Atlantic
-
Santos Basin (1)
-
-
-
Australasia
-
Australia
-
Western Australia (1)
-
-
New Zealand
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Marlborough New Zealand
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Kaikoura (1)
-
-
Taupo volcanic zone (1)
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Wairarapa (1)
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Papua (1)
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Papua New Guinea (1)
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Cache Creek Terrane (1)
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Cache Valley (1)
-
Canada
-
Eastern Canada
-
Newfoundland and Labrador
-
Newfoundland (1)
-
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Ontario (1)
-
Quebec
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Abitibi County Quebec
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Chibougamau Quebec (1)
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-
-
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Stikinia Terrane (1)
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Western Canada
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Alberta (1)
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British Columbia
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Bowser Basin (1)
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Canadian Cordillera (2)
-
-
-
Caribbean region
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West Indies
-
Antilles
-
Greater Antilles
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Hispaniola
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Dominican Republic (1)
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Haiti (1)
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-
-
-
-
-
Clearwater River (1)
-
Commonwealth of Independent States
-
Russian Federation
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Baikal region (1)
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Baikal rift zone (1)
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Lake Baikal (2)
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-
-
Death Valley (1)
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Europe
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Adriatic region (1)
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Alps
-
Swiss Alps (1)
-
-
Balkan Peninsula (2)
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Central Europe
-
Switzerland
-
Swiss Alps (1)
-
-
-
Maritsa River (1)
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Pyrenees
-
Spanish Pyrenees (1)
-
-
Southern Europe
-
Albania (1)
-
Bulgaria (1)
-
Greece
-
Crete (2)
-
Greek Aegean Islands
-
Cyclades (1)
-
Samos (1)
-
-
Greek Macedonia
-
Chalkidiki (1)
-
-
Hellenic Arc (1)
-
Ionian Islands (2)
-
Peloponnesus Greece
-
Corinth Greece (1)
-
-
Sterea Ellas (9)
-
-
Iberian Peninsula
-
Spain
-
Andalusia Spain
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Granada Spain
-
Granada Depression (1)
-
-
Nevado-Filabride Complex (1)
-
-
Aragon Spain (1)
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Ebro Basin (1)
-
Spanish Pyrenees (1)
-
-
-
Italy
-
Apennines
-
Northern Apennines (2)
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Southern Apennines (1)
-
-
Calabria Italy (1)
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Campania Italy
-
Bay of Naples (1)
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Phlegraean Fields (1)
-
-
Sicily Italy
-
Syracuse Italy (1)
-
-
Tiber Valley (1)
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Tuscany Italy (2)
-
-
Macedonia
-
Greek Macedonia
-
Chalkidiki (1)
-
-
-
-
Western Europe
-
France
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Pyrenees-Atlantiques France (1)
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Netherlands (1)
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Scandinavia
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Norway (2)
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United Kingdom
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Great Britain
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England
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Alston Block (1)
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Cumbria England (1)
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Derbyshire England (1)
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Somerset England (1)
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Sussex England (1)
-
-
Scotland (1)
-
-
-
-
-
Huanghua Depression (1)
-
Imperial Valley (1)
-
Indian Ocean
-
Red Sea
-
Gulf of Suez (2)
-
Red Sea Rift (1)
-
-
-
Lake District (1)
-
Lusitanian Basin (1)
-
Madison Range (1)
-
Makran (1)
-
Mediterranean region
-
Aegean Islands
-
Greek Aegean Islands
-
Cyclades (1)
-
Samos (1)
-
-
-
Ionian Islands (2)
-
-
Mediterranean Sea
-
East Mediterranean
-
Adriatic Sea (1)
-
Aegean Sea (7)
-
Ionian Sea
-
Gulf of Corinth (25)
-
-
Levantine Basin (1)
-
-
Hellenic Trench (2)
-
West Mediterranean
-
Tyrrhenian Sea (1)
-
-
-
Mexico (2)
-
North America
-
Appalachians
-
Hudson Highlands (1)
-
-
Basin and Range Province
-
Great Basin (1)
-
-
Canadian Shield
-
Grenville Province (1)
-
Superior Province
-
Abitibi Belt (1)
-
-
-
Gulf Coastal Plain (1)
-
Niagara Falls (1)
-
North American Cordillera
-
Canadian Cordillera (2)
-
-
North American Craton (1)
-
Okanagan Valley (1)
-
Omineca Belt (1)
-
Rio Grande Rift (2)
-
Shuswap Complex (1)
-
Slide Mountain Terrane (1)
-
Western Canada Sedimentary Basin (2)
-
Yukon-Tanana Terrane (1)
-
-
North Island (2)
-
Pacific Ocean
-
East Pacific
-
Northeast Pacific
-
Astoria Canyon (1)
-
Escanaba Trough (1)
-
Gulf of Alaska (1)
-
Gulf of California (1)
-
Santa Monica Basin (1)
-
-
-
North Pacific
-
Northeast Pacific
-
Astoria Canyon (1)
-
Escanaba Trough (1)
-
Gulf of Alaska (1)
-
Gulf of California (1)
-
Santa Monica Basin (1)
-
-
Northwest Pacific
-
Yellow Sea
-
Bohai Sea
-
Bohai Bay (1)
-
-
-
-
-
South Pacific
-
Southwest Pacific
-
Hikurangi Trough (1)
-
-
-
West Pacific
-
Northwest Pacific
-
Yellow Sea
-
Bohai Sea
-
Bohai Bay (1)
-
-
-
-
Southwest Pacific
-
Hikurangi Trough (1)
-
-
-
-
Perth Basin (1)
-
Ruby Mountains (1)
-
Salmon River (1)
-
San Andreas Fault (4)
-
Snake River (1)
-
South America
-
Brazil
-
Brazilian Shield (1)
-
-
Colombia (1)
-
Peru (1)
-
-
South Island (1)
-
United States
-
Arizona (1)
-
Bronson Hill Anticlinorium (1)
-
California
-
Imperial County California (2)
-
Inyo County California
-
Coso Hot Springs KGRA (1)
-
Coso Range (1)
-
-
Mendocino County California (1)
-
Northern California (1)
-
Salton Sea (1)
-
San Bernardino County California
-
Cajon Pass (1)
-
-
San Francisco Bay region (1)
-
San Gregorio Fault (1)
-
Santa Cruz County California (1)
-
Sonoma County California (1)
-
Southern California (2)
-
-
Colorado Plateau (1)
-
Connecticut
-
Litchfield County Connecticut (1)
-
-
Death Valley National Park (1)
-
Eastern California shear zone (2)
-
Great Basin (1)
-
Idaho
-
Bannock County Idaho (1)
-
Bannock Range (1)
-
Butte County Idaho (1)
-
Custer County Idaho
-
Borah Peak (1)
-
-
Lost River Fault (3)
-
Lost River Range
-
Borah Peak (1)
-
-
Oneida County Idaho (1)
-
-
Illinois (2)
-
Indiana
-
Dearborn County Indiana (1)
-
-
Kentucky
-
Bracken County Kentucky (1)
-
Grant County Kentucky (1)
-
Kenton County Kentucky (1)
-
-
Louisiana (1)
-
Massachusetts
-
Franklin County Massachusetts (1)
-
-
Mississippi Delta (1)
-
Missouri (1)
-
Montana
-
Gallatin County Montana
-
Hebgen Lake (2)
-
-
-
Nevada
-
Lincoln County Nevada (1)
-
Mormon Mountains (2)
-
Nye County Nevada
-
Yucca Mountain (1)
-
-
-
New England (1)
-
New Mexico
-
Grant County New Mexico (1)
-
-
New York
-
Adirondack Mountains (2)
-
Essex County New York (1)
-
-
Ohio
-
Butler County Ohio (1)
-
Hamilton County Ohio (1)
-
Warren County Ohio (1)
-
-
Oklahoma (1)
-
Oregon
-
Klamath County Oregon
-
Klamath Falls (1)
-
-
-
Sevier orogenic belt (1)
-
South Carolina (1)
-
Southwestern U.S. (1)
-
Tennessee (1)
-
Texas
-
Balcones fault zone (1)
-
Edwards Aquifer (1)
-
Edwards Plateau (1)
-
-
Utah
-
Arches National Park (1)
-
Garfield County Utah (1)
-
Grand County Utah (1)
-
Kane County Utah (1)
-
Salt Lake County Utah
-
Salt Lake City Utah (1)
-
-
Sevier Desert (1)
-
Utah County Utah
-
Provo Utah (1)
-
-
-
Vermont (1)
-
Wasatch fault zone (3)
-
Western U.S. (2)
-
Wyoming (2)
-
-
-
commodities
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brines (1)
-
gems (2)
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geothermal energy (1)
-
metal ores
-
copper ores (1)
-
gold ores (1)
-
molybdenum ores (1)
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silver ores (1)
-
-
mineral deposits, genesis (1)
-
mineral exploration (2)
-
oil and gas fields (7)
-
ornamental materials (1)
-
petroleum
-
natural gas (4)
-
-
ruby (1)
-
-
elements, isotopes
-
carbon
-
C-13/C-12 (3)
-
C-14 (7)
-
-
isotope ratios (3)
-
isotopes
-
radioactive isotopes
-
Be-10 (3)
-
C-14 (7)
-
-
stable isotopes
-
C-13/C-12 (3)
-
O-18/O-16 (2)
-
Sr-87/Sr-86 (2)
-
-
-
metals
-
alkaline earth metals
-
beryllium
-
Be-10 (3)
-
-
magnesium (1)
-
strontium
-
Sr-87/Sr-86 (2)
-
-
-
rare earths (2)
-
-
oxygen
-
O-18/O-16 (2)
-
-
-
fossils
-
cyanobacteria (1)
-
Invertebrata
-
Arthropoda
-
Mandibulata
-
Crustacea
-
Ostracoda (2)
-
-
-
-
Echinodermata
-
Crinozoa
-
Crinoidea (1)
-
-
-
Mollusca
-
Bivalvia (3)
-
Gastropoda (1)
-
-
Protista
-
Foraminifera (2)
-
-
Vermes
-
Annelida (1)
-
-
-
microfossils (5)
-
palynomorphs
-
Dinoflagellata (1)
-
miospores
-
pollen (2)
-
-
-
Plantae
-
algae
-
Rhodophyta
-
Corallinaceae (1)
-
-
-
-
-
geochronology methods
-
(U-Th)/He (4)
-
Ar/Ar (3)
-
exposure age (1)
-
fission-track dating (5)
-
infrared stimulated luminescence (1)
-
optically stimulated luminescence (2)
-
paleomagnetism (2)
-
Th/U (2)
-
thermochronology (4)
-
U/Pb (4)
-
-
geologic age
-
Cenozoic
-
Bronze Age (1)
-
Iron Age (1)
-
Quaternary
-
Holocene
-
Middle Ages (1)
-
Neolithic (1)
-
upper Holocene
-
Roman period (4)
-
-
-
Pleistocene
-
Bandelier Tuff (1)
-
Bishop Tuff (1)
-
lower Pleistocene
-
Calabrian (1)
-
-
middle Pleistocene (2)
-
upper Pleistocene
-
Neapolitan Yellow Tuff (1)
-
-
-
upper Quaternary (5)
-
-
Stone Age
-
Neolithic (1)
-
Paleolithic (2)
-
-
Tertiary
-
Neogene
-
Miocene
-
middle Miocene
-
Serravallian (1)
-
-
upper Miocene
-
Messinian (1)
-
Tortonian (2)
-
-
-
Pliocene
-
lower Pliocene (1)
-
upper Pliocene (1)
-
-
upper Neogene (1)
-
-
Paleogene
-
Dongying Formation (1)
-
Eocene
-
middle Eocene
-
Lutetian (1)
-
-
-
Oligocene (2)
-
-
Shahejie Formation (2)
-
-
-
Mesozoic
-
Antalya Complex (1)
-
Cretaceous
-
Comanchean
-
Buda Limestone (1)
-
Edwards Formation (1)
-
Georgetown Formation (1)
-
Glen Rose Formation (1)
-
-
Lower Cretaceous
-
Albian (2)
-
Barremian (1)
-
Edwards Formation (1)
-
Georgetown Formation (1)
-
Glen Rose Formation (1)
-
Hauterivian (1)
-
-
Upper Cretaceous
-
Buda Limestone (1)
-
Campanian (1)
-
Gulfian
-
Austin Group (1)
-
Eagle Ford Formation (1)
-
-
Maestrichtian (1)
-
Senonian (1)
-
-
-
Jurassic
-
Heather Formation (1)
-
Middle Jurassic
-
Bajocian
-
Tarbert Formation (1)
-
-
-
Norphlet Formation (1)
-
Upper Jurassic
-
Fulmar Formation (1)
-
Kimmeridge Clay (2)
-
Smackover Formation (1)
-
-
-
Triassic
-
Lower Triassic (2)
-
Montney Formation (1)
-
-
-
MIS 5 (1)
-
MIS 7 (1)
-
Paleozoic
-
Carboniferous
-
Mississippian (1)
-
-
Devonian
-
Upper Devonian
-
Frasnian (1)
-
-
-
Ordovician
-
Upper Ordovician
-
Cincinnatian (1)
-
-
-
Permian
-
Lower Permian (1)
-
Upper Permian
-
Zechstein (1)
-
-
-
-
Phanerozoic (2)
-
Precambrian
-
Archean
-
Neoarchean (1)
-
-
upper Precambrian
-
Proterozoic
-
Mesoproterozoic (1)
-
Neoproterozoic (2)
-
-
-
-
-
igneous rocks
-
igneous rocks
-
plutonic rocks
-
granites
-
A-type granites (1)
-
monzogranite (1)
-
-
pegmatite (1)
-
-
volcanic rocks
-
basalts (1)
-
glasses
-
obsidian (1)
-
-
pyroclastics
-
tuff (2)
-
-
-
-
-
metamorphic rocks
-
metamorphic rocks
-
gneisses
-
biotite gneiss (1)
-
orthogneiss (1)
-
paragneiss (1)
-
-
lapis lazuli (1)
-
metasedimentary rocks
-
paragneiss (1)
-
-
mylonites (1)
-
-
turbidite (9)
-
-
meteorites
-
meteorites (1)
-
-
minerals
-
carbonates
-
ankerite (1)
-
calcite (2)
-
malachite (1)
-
siderite (1)
-
-
halides
-
fluorides
-
fluorite (1)
-
-
-
onyx (1)
-
organic minerals
-
amber (1)
-
-
oxides
-
sapphire (1)
-
-
phosphates
-
apatite (3)
-
monazite (1)
-
turquoise (1)
-
-
silicates
-
chain silicates
-
amphibole group (1)
-
-
framework silicates
-
feldspar group
-
plagioclase
-
albite (1)
-
-
-
silica minerals
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agate (1)
-
amethyst (1)
-
carnelian (2)
-
chalcedony (1)
-
chrysoprase (1)
-
jasper (1)
-
moganite (1)
-
opal
-
opal-A (1)
-
opal-CT (1)
-
-
quartz
-
smoky quartz (1)
-
-
-
zeolite group (1)
-
-
orthosilicates
-
nesosilicates
-
titanite group
-
titanite (1)
-
-
zircon group
-
zircon (5)
-
-
-
-
sheet silicates
-
clay minerals (1)
-
mica group
-
biotite (2)
-
-
-
-
sulfates
-
barite (1)
-
gypsum (1)
-
-
sulfides (1)
-
-
Primary terms
-
absolute age (14)
-
Africa
-
Afar (1)
-
Central Africa
-
Angola (1)
-
-
East Africa
-
Afar Depression (1)
-
Djibouti (1)
-
Ethiopia
-
Wallo Ethiopia (1)
-
-
Tanzania (1)
-
-
East African Rift (2)
-
North Africa
-
Egypt
-
Alexandria Egypt (1)
-
-
-
Nubian Shield (2)
-
Southern Africa
-
Kaapvaal Craton (1)
-
South Africa (1)
-
-
-
Arctic Ocean
-
Norwegian Sea
-
Haltenbanken (1)
-
-
-
Asia
-
Baikal region (1)
-
Baikal rift zone (1)
-
Far East
-
China
-
Bohaiwan Basin (3)
-
Dongpu Depression (1)
-
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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Lake Corinth
Figure 1. A: Location map. B: Late Quaternary base-level history inferred f... Available to Purchase
High sediment yields and cool, wet winters: Test of last glacial paleoclimates in the northern Mediterranean Available to Purchase
Figure 3. Maps illustrate rates of solid sediment grain accumulation in thr... Available to Purchase
Figure 3. A: Seismic line 11 across fault-controlled axial channel and nort... Available to Purchase
Pleistocene calcified cyanobacterial mounds, Perachora Peninsula, central Greece: a controversy of growth and history Available to Purchase
Abstract Pleistocene cyanobacterial mounds composed principally of fresh water branched cyanobacterium Rivularia haematites at the west end of Perachora Peninsula, eastern Gulf of Corinth, grew in water on an eroded terrace in a location where several fault systems converge near the triangular end of the peninsula, surrounded by deep water. Differential uplift due to faulting cut many mounds, which were eroded leading to caves inside mounds. Cave-fill stratigraphy reveals subsequent marine submergence, then emergence, then final marine submergence which buried mounds in MIS (Marine Isotope Stage) Stage 5e marine corals and shells. Coralline algae comprising only the euryhaline species Lithophyllum pustulatum postdate the mound frame (between branches in the mounds, and as a previously undescribed pendent growth form with microbialites as cryptic biota in caves). The mound growth phase presents a conflict of interpretation between lacustrine and marine origins. Lacustrine interpretation is favoured by mound ecology (domination by fresh water cyanobacterium Rivularia haematites ) when the Gulf of Corinth was a lake (MIS Stage 6 lowstand); and euryhaline coralline alga Lithophyllum pustulatum grew only after the R. haematites growth phase was complete, presumably when marine influence developed in early 5e. However, published evidence of geochemical signatures suggest the mounds grew in the MIS 5e sea during a phase of intense expulsion of carbonate- and calcium-rich groundwaters from local faults, which diluted the sea water sufficiently to permit calcification of R. haematites in a marine setting. That scenario requires coincidence of: location of the terrace in shallow water during 5e; calcification of a fresh water cyanobacterium during only the first 5e sea-level peak, ceased before the late 5e peak and was never repeated. Lacustrine interpretation requires non-marine calcification, but also needs a subsequent relative lake-level fall to form caves before 5e marine flooding; sea-level fluctuations within 5e could be responsible for formation of cave fill before final burial. Both interpretations are influenced by uplift rates, with the published value of c. 0.3 mm a -1 favouring the marine interpretation in Stage 5e. However, a lacustrine mound origin can be accommodated by a phase of rapid uplift in late Stage 6 to early Stage 5, then fluctuating sea-level in Stage 5e during slow uplift in a complex fault setting; after late Stage 6 to early Stage 5e, uplift rate slowed and the mounds were probably continuously exposed after 5e. For the lacustrine interpretation the debate continues about whether or not: (a) the marine-affinity geochemical signatures in R. haematites are due to alteration by 5e sea water; and (b) a variable uplift rate applies in this complex fault conjunction. However, the marine interpretation seems to require a powerful and sustained expulsion phase of groundwater across the entire end of Perachora Peninsula to dilute sea water sufficiently over a large area throughout the mound growth phase (possibly as much as 2000 years) to allow formation of the Rivularia mounds and exclude all marine biota, a phase that was stopped abruptly and not repeated. This is considered more difficult to accommodate and, therefore, pending further evidence, the non-marine interpretation is favoured.
Discussion on Pleistocene calcified cyanobacterial mounds, Perachora peninsula, central Greece: a controversy of growth and history Geological Society, London, Special Publications , Vol. 255 , 2006, 53–69 Available to Purchase
Active faulting within the offshore western Gulf of Corinth, Greece: Implications for models of continental rift deformation Available to Purchase
A “Great Deepening”: Chronology of rift climax, Corinth rift, Greece Available to Purchase
Listric faulting, sedimentation, and morphological evolution of the Quaternary eastern Corinth rift, Greece: First stages of continental rifting Available to Purchase
Simplified geological map based on the geological map of Greece 1:500000 ( ... Available to Purchase
Waveform Relocation and Focal Mechanism Analysis of an Earthquake Swarm in Trichonis Lake, Western Greece Available to Purchase
Structural controls on basin evolution: Neogene to Quaternary of the Ionian zone, Western Greece Available to Purchase
Grain-size analysis of the Late Pleistocene sediments in the Corinth Rift: insights into strait-influenced hydrodynamics and provenance of an active rift basin Available to Purchase
Abstract Grain-size analysis of the sediments in borehole M0079A, located in the Corinth Rift, was used to explore hydrodynamic conditions and provenance in the Late Pleistocene Corinth Rift. Grain-size populations that were sensitive to the sedimentary environments were characterized by frequency distribution, particle size–standard deviation and probability cumulative curves. Our results indicate the grain-size population component in the range 0.15–0.25 µm may be used as a sensitive proxy for hyperpycnal flows, which have commonly been triggered by river floods from the southern margin of the rift since c. 0.593–0.613 Ma. The high-density plumes derived from the longer rivers of the southern rift that were prevalent before c. 0.593–0.613 Ma. When sediment is supplied as hemipelagic deposition, the proportion of the total grain-size population that is in the 0.3–0.5 µm range becomes an index for suspension fall-out deposits. The core shows coarser sediments during the marine periods, and this may be linked to the current circulation related to the Ishtmia Strait opening. The study thus illustrates how the establishment of interbasinal straits can influence the details of sedimentary hydrodynamics in the deep-water axis of an adjacent depocentre.