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GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Asia
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Far East
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China
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Inner Mongolia China (2)
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Jiangxi China (1)
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Liaoning China (1)
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Nanling (1)
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Atlantic Ocean
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North Atlantic
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North Sea (1)
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Australasia
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Australia (1)
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Canada
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Eastern Canada
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Maritime Provinces
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New Brunswick (2)
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Nova Scotia (1)
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Meguma Terrane (1)
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Newfoundland and Labrador
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Newfoundland (1)
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Ontario
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Algoma District Ontario
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Wawa Ontario (2)
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Coldwell Complex (3)
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Thunder Bay District Ontario (1)
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Quebec
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Gaspe-Est County Quebec
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Quebec City Quebec (1)
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Western Canada
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Athabasca Basin (1)
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Central America
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Europe
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Canadian Shield
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Keweenawan Rift (2)
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Rocky Mountains
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U. S. Rocky Mountains
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Bitterroot Range (1)
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Pacific Ocean
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North Pacific
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Northwest Pacific
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Yellow Sea
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Bohai Sea
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West Pacific
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Northwest Pacific
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Yellow Sea
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Platte River basin (1)
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United States
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U. S. Rocky Mountains
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commodities
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brines (1)
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fluorspar deposits (1)
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metal ores
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beryllium ores (2)
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copper ores (4)
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gold ores (4)
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iron ores (1)
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lead ores (1)
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lead-zinc deposits (1)
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niobium ores (6)
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palladium ores (1)
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polymetallic ores (1)
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rare earth deposits (8)
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silver ores (2)
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tin ores (2)
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tungsten ores (4)
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uranium ores (1)
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zirconium ores (3)
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mineral deposits, genesis (20)
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petroleum (2)
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elements, isotopes
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carbon
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C-13/C-12 (2)
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chemical ratios (1)
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halogens
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hydrogen
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D/H (1)
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deuterium (1)
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isotope ratios (6)
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isotopes
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radioactive isotopes
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Pb-206/Pb-204 (1)
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Pb-207/Pb-204 (1)
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Pb-208/Pb-204 (1)
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Sm-147/Nd-144 (1)
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stable isotopes
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C-13/C-12 (2)
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D/H (1)
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deuterium (1)
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Hf-177/Hf-176 (1)
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Nd-144/Nd-143 (1)
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O-18/O-16 (5)
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Pb-206/Pb-204 (1)
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Pb-207/Pb-204 (1)
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Pb-208/Pb-204 (1)
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S-33/S-32 (1)
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S-34/S-32 (2)
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S-36 (1)
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Sm-147/Nd-144 (1)
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Sr-87/Sr-86 (2)
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metals
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actinides
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thorium (1)
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alkaline earth metals
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barium (1)
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strontium
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Sr-87/Sr-86 (2)
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bismuth (1)
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cadmium (1)
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gallium (1)
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germanium (1)
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hafnium
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Hf-177/Hf-176 (1)
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indium (2)
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lead
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Pb-206/Pb-204 (1)
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Pb-207/Pb-204 (1)
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Pb-208/Pb-204 (1)
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molybdenum (1)
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niobium (1)
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platinum group
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palladium ores (1)
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rare earths
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cerium (1)
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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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yttrium (4)
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thallium (1)
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titanium (1)
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zirconium (2)
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oxygen
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O-18/O-16 (5)
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sulfur
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S-33/S-32 (1)
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S-34/S-32 (2)
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S-36 (1)
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tellurium (1)
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geochronology methods
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geologic age
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Tertiary
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Mesozoic
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Paleozoic
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Precambrian
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upper Precambrian
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Paleoproterozoic (1)
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igneous rocks
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igneous rocks
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gabbros
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troctolite (1)
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pegmatite (4)
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syenites
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alkali syenites (1)
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nepheline syenite
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agpaite (1)
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miaskite (1)
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quartz syenite (1)
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volcanic rocks
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basalts
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alkali basalts (1)
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rhyolites (1)
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metamorphic rocks
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metamorphic rocks
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hornfels (2)
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metasedimentary rocks (1)
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metasomatic rocks
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greisen (1)
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skarn (2)
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schists
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greenstone (1)
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minerals
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arsenides
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arsenopyrite (1)
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carbonates
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bastnaesite (1)
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parisite (1)
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halides
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chlorides
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halite (2)
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fluorides
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bastnaesite (1)
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fluorite (2)
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parisite (1)
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oxides
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niobates
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columbite (2)
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fergusonite (1)
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samarskite (1)
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rutile (1)
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tantalates
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microlite (1)
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phosphates
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fluorapatite (1)
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monazite (2)
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xenotime (2)
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silicates
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chain silicates
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amphibole group
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clinoamphibole
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arfvedsonite (1)
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pyroxene group
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clinopyroxene
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aegirine (2)
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framework silicates
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nepheline group
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nepheline (1)
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silica minerals
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quartz (3)
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orthosilicates
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nesosilicates
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phenakite group
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phenakite (1)
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zircon group
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zircon (3)
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sheet silicates
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mica group
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biotite (1)
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polylithionite (1)
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sulfides
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arsenopyrite (1)
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bornite (1)
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chalcopyrite (2)
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pyrrhotite (2)
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sphalerite (1)
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tungstates
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ferberite (1)
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scheelite (1)
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wolframite (1)
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Primary terms
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absolute age (3)
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Asia
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Far East
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China
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Inner Mongolia China (2)
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Jiangxi China (1)
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Liaoning China (1)
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Nanling (1)
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-
-
-
Atlantic Ocean
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North Atlantic
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North Sea (1)
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-
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Australasia
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Australia (1)
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barite deposits (1)
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brines (1)
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Canada
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Eastern Canada
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Maritime Provinces
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New Brunswick (2)
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Nova Scotia (1)
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Meguma Terrane (1)
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Newfoundland and Labrador
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Newfoundland (1)
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Ontario
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Algoma District Ontario
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Wawa Ontario (2)
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-
Coldwell Complex (3)
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Thunder Bay District Ontario (1)
-
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Quebec
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Gaspe-Est County Quebec
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Gaspe Quebec (2)
-
-
Quebec City Quebec (1)
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-
-
Western Canada
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Athabasca Basin (1)
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British Columbia (1)
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Manitoba
-
Lynn Lake Manitoba (2)
-
-
Northwest Territories (1)
-
-
-
carbon
-
C-13/C-12 (2)
-
-
Cenozoic
-
Tertiary
-
Paleogene
-
Dongying Formation (1)
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-
Shahejie Formation (1)
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Central America
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Honduras (1)
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crystal chemistry (3)
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crystal structure (1)
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Europe
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Ireland (1)
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Scandinavia
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Sweden (1)
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faults (3)
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geochemistry (8)
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ground water (1)
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hydrogen
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D/H (1)
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deuterium (1)
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igneous rocks
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plutonic rocks
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gabbros
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troctolite (1)
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granites
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aplite (1)
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pegmatite (4)
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syenites
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alkali syenites (1)
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nepheline syenite
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agpaite (1)
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miaskite (1)
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quartz syenite (1)
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volcanic rocks
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basalts
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alkali basalts (1)
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rhyolites (1)
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inclusions
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fluid inclusions (14)
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intrusions (7)
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isotopes
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radioactive isotopes
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Pb-206/Pb-204 (1)
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Pb-207/Pb-204 (1)
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Pb-208/Pb-204 (1)
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Sm-147/Nd-144 (1)
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stable isotopes
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C-13/C-12 (2)
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D/H (1)
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deuterium (1)
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Hf-177/Hf-176 (1)
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Nd-144/Nd-143 (1)
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O-18/O-16 (5)
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Pb-206/Pb-204 (1)
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Pb-207/Pb-204 (1)
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Pb-208/Pb-204 (1)
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S-34/S-32 (2)
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magmas (6)
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Mesozoic
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metal ores
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metals
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alkaline earth metals
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strontium
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Hf-177/Hf-176 (1)
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indium (2)
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lead
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Pb-206/Pb-204 (1)
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Pb-207/Pb-204 (1)
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Pb-208/Pb-204 (1)
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platinum group
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Nd-144/Nd-143 (1)
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metamorphic rocks
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North America
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Canadian Shield
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Keweenawan Rift (2)
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ocean floors (1)
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oxygen
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O-18/O-16 (5)
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Pacific Ocean
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West Pacific
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Yellow Sea
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Bohai Bay (1)
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Paleozoic
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Cambrian
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Carboniferous (1)
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phase equilibria (2)
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Precambrian
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Archean (3)
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upper Precambrian
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Proterozoic
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Mesoproterozoic
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Paleoproterozoic (1)
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sedimentary petrology (1)
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spectroscopy (1)
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United States
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Colorado (3)
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U. S. Rocky Mountains
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sedimentary rocks
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sedimentary rocks
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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Discriminating Between Primary and Secondary Au Events in a Paragenetically Complex Archean Lode-Gold Deposit, Wawa Gold Corridor, Ontario, Canada Available to Purchase
Multi-stage metasomatic Zr mineralization in the world-class Baerzhe rare earth element Nb-Zr-Be deposit, China Available to Purchase
The age and origin of the South Mountain Batholith (Nova Scotia, Canada) as constrained by zircon U–Pb geochronology, geochemistry, and O–Hf isotopes Open Access
Relationships among the Geordie Lake Cu-Pd deposit, alkaline basalt, and syenites in the Coldwell Complex, Midcontinent Rift, Canada Available to Purchase
Concentration Mechanisms of Rare Earth Element-Nb-Zr-Be Mineralization in the Baerzhe Deposit, Northeast China: Insights from Textural and Chemical Features of Amphibole and Rare Metal Minerals Available to Purchase
The role of magma injection and crystal sorting in the formation of early gabbros at the Coldwell Complex, Ontario, Canada Available to Purchase
Textural Features and Chemical Evolution in Ta-Nb Oxides: Implications for Deuteric Rare-Metal Mineralization in the Yichun Granite-Marginal Pegmatite, Southeastern China Available to Purchase
Identifying externally derived sulfur in conduit-type Cu–platinum-group element deposits: The importance of multiple sulfur isotope studies Available to Purchase
Textural and Chemical Constraints on the Formation of Disseminated Granite-hosted W-Ta-Nb Mineralization at the Dajishan Deposit, Nanling Range, Southeastern China Available to Purchase
Mineralogy, Chemistry, and Fluid-Aided Evolution of the Pea Ridge Fe Oxide-(Y + REE) Deposit, Southeast Missouri, USA Available to Purchase
Identification of Fluid Inclusion Solid Phases Using a Focused Ion Beam Scanning Electron Microscope with Energy Dispersive Spectroscopy: Implications For Interpreting Microthermometric Data and Composition of Fluids in Sn (-w-mo) Deposits Available to Purchase
The Minor Element Endowment of Modern Sea-Floor Massive Sulfides and Comparison with Deposits Hosted in Ancient Volcanic Successions Available to Purchase
Abstract Sea-floor massive sulfide deposits represent a new type of base and precious metal resources that may be exploited by future deep-sea mining operations. These deposits occur in diverse tectonic environments and are mostly located along the global mid-ocean ridge system within international waters and arc-related settings within the exclusive economic zones of the world’s oceans. Much controversy is currently centered on the question whether sea-floor massive sulfide deposits represent a significant resource of metals that could be exploited to meet the metal demand of modern technology-based society. Chemical analysis of sulfide samples from sea-floor hydrothermal vent sites worldwide shows that sea-floor massive sulfides can be enriched in the minor elements Bi, Cd, Ga, Ge, Hg, In, Mo, Sb, Se, Te, and Tl, with concentrations ranging up to several tens or hundreds of parts per million. The minor element content of seafloor sulfides broadly varies with volcanic and tectonic setting. Massive sulfides on mid-ocean ridges commonly show high concentrations of Se, Mo, and Te, whereas arc-related sulfide deposits can be enriched in Cd, Hg, Sb, and Tl. Superposed on the volcanic and tectonic controls, the minor element content of sea-floor sulfides is strongly influenced by the temperature-dependent solubility of these elements. The high- to intermediatetemperature suite of minor elements, Bi, In, Mo, Se, and Te, is typically enriched in massive sulfides composed of chalcopyrite, while the low-temperature suite of minor elements, Cd, Ga, Ge, Hg, Sb, and Tl, is more typically associated with sphalerite-rich massive sulfides. Temperature-related minor element enrichment trends observed in modern sea-floor hydrothermal systems are broadly comparable to those encountered in fossil massive sulfide deposits. Although knowledge on the mineralogical sequestration of the minor elements in sea-floor massive sulfide deposits is limited, a significant proportion of the total amount of minor elements contained in massive sulfides appears to be incorporated into the crystal structure of the main sulfide minerals, including pyrite, pyrrhotite, chalcopyrite, sphalerite, wurtzite, and galena. In addition, the over 80 trace minerals recognized represent important hosts of minor elements in massive sulfides. As modern sea-floor sulfides have not been affected by metamorphic recrystallization and remobilization, the minor element distribution and geometallurgical properties of the massive sulfides may differ from those of ancient massive sulfide deposits. The compilation of geochemical data from samples collected from hydrothermal vent sites worldwide now permits a first-order evaluation of the global minor element endowment of sea-floor sulfide deposits. Based on an estimated 600 million metric tons (Mt) of massive sulfides in the neovolcanic zones of the world’s oceans, the amount of minor elements contained in sea-floor deposits is fairly small when compared to land-based mineral resources. Although some of the minor elements are potentially valuable commodities and could be recovered as co- or by-products from sulfide concentrates, sea-floor massive sulfide deposits clearly do not represent a significant or strategic future resource for these elements.