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NARROW
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
-
Africa
-
East Africa
-
Kenya
-
Kenya Rift valley (1)
-
-
Uganda (1)
-
-
East African Rift (1)
-
Sahara (2)
-
Sahel (2)
-
Southern Africa
-
Karoo Basin (2)
-
South Africa (2)
-
-
West Africa
-
Mali (1)
-
Niger (1)
-
Nigeria (2)
-
-
-
Antarctica
-
Transantarctic Mountains (1)
-
Victoria Land (1)
-
-
Asia
-
Central Asia
-
Aral Sea (1)
-
Kazakhstan (2)
-
-
Far East
-
China
-
Gansu China
-
Lanzhou China (1)
-
-
Huang He (1)
-
Inner Mongolia China (1)
-
Jiangxi China (2)
-
Loess Plateau (2)
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Sichuan China (1)
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Yunnan China (1)
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Thailand (2)
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Himalayas (1)
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Indian Peninsula
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India
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Delhi India (1)
-
Madhya Pradesh India
-
Sidhi India (1)
-
-
Maharashtra India (2)
-
Narmada Valley (1)
-
Northeastern India
-
Assam India (1)
-
Mizoram India (1)
-
-
Tamil Nadu India (1)
-
Yamuna River (1)
-
-
-
Middle East
-
Iran
-
Fars Iran (1)
-
-
-
Sri Lanka (1)
-
Tibetan Plateau (2)
-
-
Atlantic Ocean
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South Atlantic
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Southwest Atlantic (1)
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Atlantic Ocean Islands
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Canary Islands
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Grand Canary (1)
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Hierro (1)
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Australasia
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Ontario (1)
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Caribbean region
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Antilles
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Puerto Rico (1)
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Dominica (1)
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Cascade Range (1)
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Coast Ranges (2)
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Europe
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Germany
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Switzerland (1)
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Piedmont (4)
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Colorado
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elements, isotopes
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hydrogen
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Cs-137 (3)
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stable isotopes
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Be-10/Be-9 (2)
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C-13/C-12 (2)
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He-3 (1)
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Ne-21 (1)
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O-18/O-16 (1)
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Sr-87/Sr-86 (1)
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-
-
metals
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alkali metals
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cesium
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Cs-137 (3)
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sodium (1)
-
-
alkaline earth metals
-
beryllium
-
Be-10 (8)
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Be-10/Be-9 (2)
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Be-7 (2)
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-
calcium (1)
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magnesium (1)
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strontium
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Sr-87/Sr-86 (1)
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aluminum
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Al-26 (1)
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iron (1)
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lead
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Pb-210 (1)
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mercury (1)
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noble gases
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neon
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Vertebrata
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Mammalia
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Invertebrata
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Vermes
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Plantae
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Spermatophyta
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thallophytes (2)
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geochronology methods
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geologic age
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Tertiary
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Neogene
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Pliocene (1)
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Paleogene
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Eocene
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middle Eocene
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Yamhill Formation (1)
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-
-
-
Mesozoic
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Triassic
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Lower Triassic
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Permian-Triassic boundary (2)
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-
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Paleozoic
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Permian
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Middle Permian (1)
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Upper Permian
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Permian-Triassic boundary (2)
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Phanerozoic (1)
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-
igneous rocks
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igneous rocks
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plutonic rocks
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granites (1)
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volcanic rocks
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pyroclastics (1)
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minerals
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carbonates
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calcite (1)
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minerals (1)
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oxides
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hydroxides (1)
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iron oxides (1)
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silicates
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framework silicates
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silica minerals
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quartz (1)
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-
-
sheet silicates
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clay minerals
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smectite (1)
-
-
-
-
-
Primary terms
-
absolute age (3)
-
Africa
-
East Africa
-
Kenya
-
Kenya Rift valley (1)
-
-
Uganda (1)
-
-
East African Rift (1)
-
Sahara (2)
-
Sahel (2)
-
Southern Africa
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Karoo Basin (2)
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South Africa (2)
-
-
West Africa
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Mali (1)
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Niger (1)
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Nigeria (2)
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-
-
Antarctica
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Transantarctic Mountains (1)
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Victoria Land (1)
-
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Asia
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Central Asia
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Aral Sea (1)
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Kazakhstan (2)
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Far East
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China
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Gansu China
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Lanzhou China (1)
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Huang He (1)
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Inner Mongolia China (1)
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Jiangxi China (2)
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Loess Plateau (2)
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Sichuan China (1)
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Yunnan China (1)
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Thailand (2)
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Himalayas (1)
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Indian Peninsula
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India
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Delhi India (1)
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Madhya Pradesh India
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Sidhi India (1)
-
-
Maharashtra India (2)
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Narmada Valley (1)
-
Northeastern India
-
Assam India (1)
-
Mizoram India (1)
-
-
Tamil Nadu India (1)
-
Yamuna River (1)
-
-
-
Middle East
-
Iran
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Fars Iran (1)
-
-
-
Sri Lanka (1)
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Tibetan Plateau (2)
-
-
Atlantic Ocean
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South Atlantic
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Southwest Atlantic (1)
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Atlantic Ocean Islands
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atmosphere (2)
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bacteria (2)
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carbon
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organic carbon (3)
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Caribbean region
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Antilles
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Greater Antilles
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Lesser Antilles
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Dominica (1)
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-
-
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Caspian Sea (1)
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Cenozoic
-
Bronze Age (1)
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Chalcolithic (1)
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Quaternary
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Holocene
-
Neolithic (1)
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upper Holocene (6)
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-
Pleistocene
-
upper Pleistocene (1)
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upper Quaternary (2)
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Stone Age
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Neolithic (1)
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Paleolithic (1)
-
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Tertiary
-
Neogene
-
Miocene
-
Surma Group (1)
-
upper Miocene (1)
-
-
Pliocene (1)
-
-
Paleogene
-
Eocene
-
middle Eocene
-
Tyee Formation (1)
-
-
Yamhill Formation (1)
-
-
-
-
-
Central America
-
Guatemala (1)
-
-
Chordata
-
Vertebrata
-
Tetrapoda
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Mammalia
-
Theria
-
Eutheria
-
Rodentia (1)
-
-
-
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clay mineralogy (2)
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Germany
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foundations (2)
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ground water (8)
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hydrogen
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tritium (1)
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hydrology (19)
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igneous rocks
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plutonic rocks
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granites (1)
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-
volcanic rocks
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pyroclastics (1)
-
-
-
Indian Ocean
-
Red Sea (1)
-
-
Invertebrata
-
Arthropoda
-
Mandibulata
-
Crustacea
-
Ostracoda (1)
-
-
-
-
Protista
-
Foraminifera (1)
-
Thecamoeba (1)
-
Tintinnidae (1)
-
-
Vermes
-
scolecodonts (1)
-
-
-
isotopes
-
radioactive isotopes
-
Al-26 (1)
-
Be-10 (8)
-
Be-10/Be-9 (2)
-
Be-7 (2)
-
C-14 (2)
-
Cs-137 (3)
-
Pb-210 (1)
-
tritium (1)
-
-
stable isotopes
-
Be-10/Be-9 (2)
-
C-13/C-12 (2)
-
He-3 (1)
-
Ne-21 (1)
-
O-18/O-16 (1)
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Sr-87/Sr-86 (1)
-
-
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land subsidence (1)
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land use (24)
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marine installations (1)
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Mediterranean region
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Ionian Islands (1)
-
-
Mediterranean Sea
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East Mediterranean
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Aegean Sea (1)
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Black Sea (1)
-
-
-
Mesozoic
-
Triassic
-
Lower Triassic
-
Permian-Triassic boundary (2)
-
-
-
-
metals
-
alkali metals
-
cesium
-
Cs-137 (3)
-
-
sodium (1)
-
-
alkaline earth metals
-
beryllium
-
Be-10 (8)
-
Be-10/Be-9 (2)
-
Be-7 (2)
-
-
calcium (1)
-
magnesium (1)
-
strontium
-
Sr-87/Sr-86 (1)
-
-
-
aluminum
-
Al-26 (1)
-
-
iron (1)
-
lead
-
Pb-210 (1)
-
-
mercury (1)
-
-
meteorology (1)
-
mineral resources (1)
-
minerals (1)
-
noble gases
-
helium
-
He-3 (1)
-
-
neon
-
Ne-21 (1)
-
-
radon (1)
-
-
North America
-
Appalachians
-
Piedmont (4)
-
-
Great Lakes region (1)
-
Great Plains
-
Southern Great Plains (1)
-
-
-
Ocean Drilling Program
-
Leg 138
-
ODP Site 846 (1)
-
-
Leg 169S
-
ODP Site 1033 (1)
-
-
-
ocean floors (1)
-
oil and gas fields (2)
-
oxygen
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O-18/O-16 (1)
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Pacific Coast (1)
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paleoclimatology (3)
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paleoecology (1)
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paleogeography (2)
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paleomagnetism (3)
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Paleozoic
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Permian
-
Guadalupian
-
Capitanian (1)
-
-
Middle Permian (1)
-
Upper Permian
-
Permian-Triassic boundary (2)
-
-
-
-
palynology (1)
-
palynomorphs
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acritarchs (1)
-
Dinoflagellata (1)
-
miospores
-
pollen (3)
-
-
-
Phanerozoic (1)
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phosphorus (1)
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Plantae
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algae (1)
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Bryophyta (1)
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Spermatophyta
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Angiospermae (1)
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pollution (6)
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coal (1)
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sedimentary structures
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sedimentation (16)
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sediments
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clastic sediments
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dust (7)
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soil erosion
Mercury evidence of Emeishan volcanism driving the mid-Capitanian (Middle Permian) extinction
Impacts of Large-scale Magmatism on Land Plant Ecosystems
An Assessment of the Environmental Impact of Coal Mining through Acid Mine Drainage and Soil Degradation from Makum Coalfields, Upper Assam, India: A Case Study
Integrated Agrogeophysical Approach for Investigating Soil Pipes in Agricultural Fields
Evaluation of the spatial characteristics of slope erosion using field electrical resistivity measurements
Pre-agricultural soil erosion rates in the midwestern United States
Morphometric Analysis of Yamuna River Basin in Delhi Region: Implications to Hydrological Hazards
Strength damage mechanism and pore structure evolution of modified Pisha sandstone cement soil with metakaolin
Gully Erosion: An Underestimated Hazard?
Assessment of Logistic Regression Model Performance and Physical Controls on January 9, 2018, Debris Flows, Thomas Fire, California
Groundwater Management in India: Some Recent Breakthroughs
GEMAS: adaptation of weathering indices for European agricultural soil derived from carbonate parent materials
Abstract For the first time, we present a decadal-scale stable isotope record (δ 18 O, δ 13 C) of 67 speleothem calcite samples coming from an artificial tunnel network located in Graz, Austria. Stable isotope data are interpreted with the help of time series (TS) analysis of mean air temperatures (MAT) and mean annual precipitations (MAP) that have been monitored and recorded in a neighbouring meteorological station. Speleothem records have proved to be very useful in reconstructing changes of environmental conditions. For studied stalagmites, which grew between 1945 and 2018, the δ 18 O values average −18.64‰ and range from −23‰ to −17‰ (VPDB, Vienna Pee Dee Belemnite), suggesting variable climatic conditions. The δ 18 O values of calcite increase along the growth axis and are correlated with high temporal resolution MAT, MAP and weighted mean annual δ 18 O of precipitations. For the same time interval, while the temperature TS show an increasing trend, with a steeper gradient since the 1980s, the precipitation TS presents a weak decreasing tendency. Increase in the δ 13 C values of speleothems from −33‰ to −24‰ (VPDB) is correlated with increasing temperature and drought, associated CO 2 degassing and soil erosion over the tunnel system.
Late Quaternary geochronologic record of soil formation and erosion: Effects of climate change on Mojave Desert hillslopes (Nevada, USA)
Erosion due to a century of road construction and maintenance at Mount Diablo State Park, California
ABSTRACT Mount Diablo State Park exemplifies many other conservation areas where managers balance the dual missions of protecting natural resources while providing public access. Roads and trails that crisscross the park are etched into the geomorphic surface, capturing and redirecting storm runoff, and presenting both a challenge for soil conservation and a consequence of construction and maintenance. We used field mapping, remote sensing, and modeling to assess erosion along the roads and trails in Mount Diablo State Park, which encompasses the headwaters of several urbanized watersheds. The field mapping in 2011 determined that 56% of the assessed roads and trails required either repair or reconstruction to control erosion and that ~67% of the culverts in the park required either repair or replacement. Aerial photography and modeling showed that other erosion (unrelated to roads or trails) preferentially occurred during wet periods, in specific lithologies, and on convergent slopes. Although lithology and climate drive slope-forming geomorphic processes, we found that the road and trail system (1) expanded the stream network with a capillary-like system of rills, (2) catalyzed prolonged erosion, and (3) altered the timing and pattern of sediment yield. In addition to water-driven erosion during wet periods, road and trail surfaces were subject to mechanical and wind erosion during dry periods. Spatially, dry erosion and runoff both conformed with and crossed topographic gradients by following the road and trail network. Road- and trail-induced erosion occurred across a wider range of rock properties and slope geometries than is typical for other erosion. Hence, the roads and trails have expanded the spatial and temporal boundary conditions over which geomorphic processes operate and, due to continual soil disturbance, have accelerated erosion rates. Although road density is a commonly used metric to rank road-related impacts at watershed scales, it misses both spatial variability and the opportunity to identify specific road and trail segments for remediation. We developed a spatially explicit scoring scheme based on actual erosion and the potential for sedimentation of discrete waterbodies. The data were incorporated into the park’s road and trail management plan in 2016.