Leadville Mining District, Lake County, Colorado, USAi
| Regional Level Types | |
|---|---|
| Leadville Mining District | Mining District |
| Lake County | County |
| Colorado | State |
| USA | Country |
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Latitude & Longitude (WGS84):
39° North , 106° West (est.)
Estimate based on other nearby localities or region boundaries.
Margin of Error:
~17km
Type:
Köppen climate type:
Other/historical names associated with this locality:
Empire District; California District; Evans District; Iowa District
A former Ag-Zn-Au-Pb-Cu-Mn-Fe-S-Bi-Cd-V-W mining district. The district extends from Leadville East to the crest of the Mosquito Range and from Canterbury Hill and Prospect Mountain in the North to Empire Gulch in the South. It includes about 30 square miles, mostly in T9S, R79 & 80W. The most intensely mineralized area lies immediately East of Leadville and covers about 8 square miles. Operated during the period 1860 to 1999. Coordinates provided by the USGS MRDS database are to the approximate center of the district.
At today's metal prices (2006), Ag, Zn, Au, & Pb are the main products of the district; Cu is a byproduct. Manganiferous iron ore was used in steelmaking; iron-silver and iron-manganese-silver ores were produced for smelter flux. Bi & Cd were recovered as byproducts of smelting. Pyrite was used to make sulfuric acid. Tungsten minerals (in one ore body) and vanadium minerals are reported but have not been recovered.
Mineralization is comprised of replacement deposits (Deposits data: Model code 72; USGS model code 19a; Deposit model name: Polymetallic replacement; Mark3 model number 47;; Model code 56; USGS model code 17a; Deposit model name: Placer Au;; Model code 224; USGS model code 32a; BC deposit profile E12; Deposit model name: Mississippi Valley, S.E. Missouri Pb-Zn; Mark3 model number 42) hosted in rocks of the Curtis Formation (dolomite). The host rocks include Proterozoic Sawatch Quartzite; Cambrian Peerless Shale; Cambrian Manitou Dolomite; Ordovician Parting Sandstone; Devonian Dyer Dolomite; Devonian Gilman Sandstone; Late Devonian Leadville Dolomite; Mississippian Belden Formation black shale; Pennsylvanian Minturn Formation arkose; Pennsylvanian porphyry (Pando, Lincoln, Evans Gulch, Sacramento, Johnson Gulch, rhyolite, and fragmental porphyries). Associated rocks include Tertiary St. Kevin Granite. Gangue contains manganoan siderite (manganosiderite). Local alteration includes silicification & sericitization. Local rocks include Laramide intrusive rocks.
Major minerals in each of four types of ore bodies are listed: (1) hypogene oxide-silicate ore, (2) hypogene sulfide veins and stockworks, (3) blanket or manto replacement ore, and (4) oxidized or supergene ore.
Granitic and metamorphic basement rocks are overlain by 500 feet of east-dipping marine Paleozoic sedimentary rocks, cut by numerous faults, and intruded by many Tertiary igneous rocks. Five types of ore bodies are (1) hypogene oxide-silicate ore, (2) hypogene sulfide veins and stockworks, (3) blanket or manto replacement ore, (4) oxidized or supergene ore, and (5) placer deposits.
Local geologic structures include numerous faults of several periods.
After 140 years of nearly continuous mining activity, the Leadville district ranks among the most productive areas for base and precious metals in the U.S. First, gold placer deposits, then lode gold deposits were worked, from 1860 to 1875; oxidized silver-lead ores were dominant from 1876 to 1902; then oxidized zinc ores were worked from 1902 to 1923; finally, mixed sulfide base- and precious-metal ores were mined from 1924 almost continuously until 1999.
Production information: An estimate of total metal production, based on published reports and the reporter's estimate of recent production, includes 3,250,000 ounces of Au, 270,000,000 ounces of Ag, 53,000 tons of Cu, 1,200,000 tons of Pb, and 1,235,000 tons of Zn. Nearly 29 million tons of ore were mined. Almost 1,000,000 tons of manganiferous iron ore and 2,900,000 tons of iron-silver and iron-manganese-silver ore, plus an unknown quantity of pyrite, were produced.
For the 1860-1999 cumulative production listed in the previous comment, assuming the amounts are metric tons, at 2010 prices, the commodity importance order and dollar value in millions is: Ag $4.9 Au $3.7 Zn $3.0 Pb $2.6 Cu $0.4 For the 1860-1963 cumulative production, Tweto, 1968, lists the relative economic importance as follows: 37% Ag; 22% Zn; 21% Pb; 13% Au; 3% Cu; 4% other including Bi and Mg.
Production statistics data: Year: 1999 (period 1860-1999): Ore mined: 29,000,000 metric tons.
Production history details: Primary recovery: Ag: 8,400 metric tons; Zn: 1,235,000 metric tons; Au: 101 metric tons; Pb: 1,200,000 metric tons; and, Secondary recovery: Cu: 53,000 metric tons.
Reserve resource information: Low-grade manganese resources may total 2,000,000 tons of oxidized ore, containing 10% to 35% Mn, plus 2,000,000 tons of primary (manganosiderite) ore, containing 14 to 20% Mn. (Hedges, J.H., 1940).
At today's metal prices (2006), Ag, Zn, Au, & Pb are the main products of the district; Cu is a byproduct. Manganiferous iron ore was used in steelmaking; iron-silver and iron-manganese-silver ores were produced for smelter flux. Bi & Cd were recovered as byproducts of smelting. Pyrite was used to make sulfuric acid. Tungsten minerals (in one ore body) and vanadium minerals are reported but have not been recovered.
Mineralization is comprised of replacement deposits (Deposits data: Model code 72; USGS model code 19a; Deposit model name: Polymetallic replacement; Mark3 model number 47;; Model code 56; USGS model code 17a; Deposit model name: Placer Au;; Model code 224; USGS model code 32a; BC deposit profile E12; Deposit model name: Mississippi Valley, S.E. Missouri Pb-Zn; Mark3 model number 42) hosted in rocks of the Curtis Formation (dolomite). The host rocks include Proterozoic Sawatch Quartzite; Cambrian Peerless Shale; Cambrian Manitou Dolomite; Ordovician Parting Sandstone; Devonian Dyer Dolomite; Devonian Gilman Sandstone; Late Devonian Leadville Dolomite; Mississippian Belden Formation black shale; Pennsylvanian Minturn Formation arkose; Pennsylvanian porphyry (Pando, Lincoln, Evans Gulch, Sacramento, Johnson Gulch, rhyolite, and fragmental porphyries). Associated rocks include Tertiary St. Kevin Granite. Gangue contains manganoan siderite (manganosiderite). Local alteration includes silicification & sericitization. Local rocks include Laramide intrusive rocks.
Major minerals in each of four types of ore bodies are listed: (1) hypogene oxide-silicate ore, (2) hypogene sulfide veins and stockworks, (3) blanket or manto replacement ore, and (4) oxidized or supergene ore.
Granitic and metamorphic basement rocks are overlain by 500 feet of east-dipping marine Paleozoic sedimentary rocks, cut by numerous faults, and intruded by many Tertiary igneous rocks. Five types of ore bodies are (1) hypogene oxide-silicate ore, (2) hypogene sulfide veins and stockworks, (3) blanket or manto replacement ore, (4) oxidized or supergene ore, and (5) placer deposits.
Local geologic structures include numerous faults of several periods.
After 140 years of nearly continuous mining activity, the Leadville district ranks among the most productive areas for base and precious metals in the U.S. First, gold placer deposits, then lode gold deposits were worked, from 1860 to 1875; oxidized silver-lead ores were dominant from 1876 to 1902; then oxidized zinc ores were worked from 1902 to 1923; finally, mixed sulfide base- and precious-metal ores were mined from 1924 almost continuously until 1999.
Production information: An estimate of total metal production, based on published reports and the reporter's estimate of recent production, includes 3,250,000 ounces of Au, 270,000,000 ounces of Ag, 53,000 tons of Cu, 1,200,000 tons of Pb, and 1,235,000 tons of Zn. Nearly 29 million tons of ore were mined. Almost 1,000,000 tons of manganiferous iron ore and 2,900,000 tons of iron-silver and iron-manganese-silver ore, plus an unknown quantity of pyrite, were produced.
For the 1860-1999 cumulative production listed in the previous comment, assuming the amounts are metric tons, at 2010 prices, the commodity importance order and dollar value in millions is: Ag $4.9 Au $3.7 Zn $3.0 Pb $2.6 Cu $0.4 For the 1860-1963 cumulative production, Tweto, 1968, lists the relative economic importance as follows: 37% Ag; 22% Zn; 21% Pb; 13% Au; 3% Cu; 4% other including Bi and Mg.
Production statistics data: Year: 1999 (period 1860-1999): Ore mined: 29,000,000 metric tons.
Production history details: Primary recovery: Ag: 8,400 metric tons; Zn: 1,235,000 metric tons; Au: 101 metric tons; Pb: 1,200,000 metric tons; and, Secondary recovery: Cu: 53,000 metric tons.
Reserve resource information: Low-grade manganese resources may total 2,000,000 tons of oxidized ore, containing 10% to 35% Mn, plus 2,000,000 tons of primary (manganosiderite) ore, containing 14 to 20% Mn. (Hedges, J.H., 1940).
Select Mineral List Type
Standard Detailed Gallery Strunz Chemical ElementsCommodity List
This is a list of exploitable or exploited mineral commodities recorded from this region.Mineral List
Mineral list contains entries from the region specified including sub-localities115 valid minerals. 1 (TL) - type locality of valid minerals. 1 (FRL) - first recorded locality of unapproved mineral/variety/etc.
Rock Types Recorded
Rock list contains entries from the region specified including sub-localities
Select Rock List Type
Alphabetical List Tree DiagramDetailed Mineral List:
| ⓘ Acanthite Formula: Ag2S Localities: Reported from at least 7 localities in this region. |
| ⓘ Aikinite Formula: CuPbBiS3 |
| ⓘ Alabandite Formula: MnS |
| ⓘ 'Alaskaite' |
| ⓘ Altaite Formula: PbTe |
| ⓘ Alunite Formula: KAl3(SO4)2(OH)6 |
| ⓘ Anglesite Formula: PbSO4 Localities: Reported from at least 11 localities in this region. |
| ⓘ Ankerite Formula: Ca(Fe2+,Mg)(CO3)2 |
| ⓘ Aragonite Formula: CaCO3 |
| ⓘ Aragonite var. Lead-bearing Aragonite Formula: (Ca,Pb)CO3 Locality: Evelyn Mine, Lake County, Colorado, USA |
| ⓘ Aragonite var. Zinc-bearing Aragonite Formula: (Ca,Zn)CO3 |
| ⓘ Argentojarosite ? Formula: AgFe3+3(SO4)2(OH)6 Localities: Description: May be plumbojarosite |
| ⓘ Arsenopyrite Formula: FeAsS Localities: Reported from at least 6 localities in this region. |
| ⓘ Aurichalcite Formula: (Zn,Cu)5(CO3)2(OH)6 Localities: Reported from at least 6 localities in this region. |
| ⓘ Azurite Formula: Cu3(CO3)2(OH)2 |
| ⓘ Baryte Formula: BaSO4 Localities: Reported from at least 9 localities in this region. |
| ⓘ Bindheimite Formula: Pb2Sb2O6O |
| ⓘ Birnessite Formula: (Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O |
| ⓘ Bismuthinite Formula: Bi2S3 |
| ⓘ Bismutite Formula: (BiO)2CO3 |
| ⓘ Bournonite Formula: PbCuSbS3 References: Neal YedlinIdentified by Vandall Thomas King: Visual Identification |
| ⓘ Brochantite Formula: Cu4(SO4)(OH)6 |
| ⓘ Bromargyrite Formula: AgBr Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Calaverite Formula: AuTe2 |
| ⓘ Calcite Formula: CaCO3 Localities: Reported from at least 10 localities in this region. |
| ⓘ Caledonite Formula: Pb5Cu2(SO4)3(CO3)(OH)6 |
| ⓘ Canfieldite Formula: Ag8SnS6 |
| ⓘ Cerussite Formula: PbCO3 Localities: Reported from at least 48 localities in this region. |
| ⓘ Chalcanthite Formula: CuSO4 · 5H2O |
| ⓘ Chalcocite Formula: Cu2S Localities: Reported from at least 8 localities in this region. |
| ⓘ Chalcophanite Formula: ZnMn4+3O7 · 3H2O |
| ⓘ Chalcophyllite ? Formula: Cu18Al2(AsO4)4(SO4)3(OH)24 · 36H2O |
| ⓘ Chalcopyrite Formula: CuFeS2 Localities: Reported from at least 15 localities in this region. |
| ⓘ Chlorargyrite Formula: AgCl Localities: Reported from at least 35 localities in this region. |
| ⓘ Chlorargyrite var. Bromine-bearing Chlorargyrite Formula: Ag(Cl,Br) |
| ⓘ 'Chlorite Group' Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Chrysocolla Formula: Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 Localities: Ibex Mine, Breece Hill, Leadville, Lake County, Colorado, USA Sherman Mine (Sherman tunnel; Leadville Corporation Mine; Day Mines; Hilltop Mine), Upper Iowa Gulch, Lake County, Colorado, USA Adelaide Mine, Iron Hill, Lake County, Colorado, USA Highland Chief Mine, Yankee Hill, Leadville, Lake County, Colorado, USA |
| ⓘ Covellite Formula: CuS |
| ⓘ Cryptomelane Formula: K(Mn4+7Mn3+)O16 |
| ⓘ Cuprite Formula: Cu2O |
| ⓘ Descloizite Formula: PbZn(VO4)(OH) Localities: Reported from at least 6 localities in this region. |
| ⓘ Descloizite var. Dechenite Formula: PbZn(VO4,AsO4)(OH) |
| ⓘ Digenite Formula: Cu9S5 |
| ⓘ Dolomite Formula: CaMg(CO3)2 Localities: Reported from at least 18 localities in this region. |
| ⓘ Enargite Formula: Cu3AsS4 |
| ⓘ Epidote Formula: (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Epsomite Formula: MgSO4 · 7H2O |
| ⓘ Galena Formula: PbS Localities: Reported from at least 74 localities in this region. |
| ⓘ Galena var. Silver-bearing Galena Formula: PbS with Ag Localities: Reported from at least 11 localities in this region. |
| ⓘ Galenobismutite Formula: PbBi2S4 |
| ⓘ Goethite Formula: Fe3+O(OH) Localities: Ibex Mine, Breece Hill, Leadville, Lake County, Colorado, USA Sherman Mine (Sherman tunnel; Leadville Corporation Mine; Day Mines; Hilltop Mine), Upper Iowa Gulch, Lake County, Colorado, USA Elk & Grey Swan group, Breece Hill, Leadville, Lake County, Colorado, USA Big Four Mine, Leadville, Lake County, Colorado, USA |
| ⓘ Goslarite Formula: ZnSO4 · 7H2O |
| ⓘ Graphite Formula: C |
| ⓘ Gypsum Formula: CaSO4 · 2H2O |
| ⓘ Hematite Formula: Fe2O3 Localities: Reported from at least 15 localities in this region. |
| ⓘ Hemimorphite Formula: Zn4Si2O7(OH)2 · H2O Localities: Reported from at least 23 localities in this region. |
| ⓘ Hessite Formula: Ag2Te |
| ⓘ Hetaerolite Formula: ZnMn2O4 Localities: Description: Hydrohetaerolite is known only in the Leadville district, Lake County. There it is widespread, relatively abundant, and important as an ore of zinc.
The mineral is widespread in the district, even well below the main zone of oxidation. It occurs as fra |
| ⓘ Hetaerolite var. Hydrohetaerolite (FRL) Formula: Zn(Mn,◻)2(O,OH)4 Localities: Description: Hydrohetaerolite is known only in the Leadville district, Lake County. There it is widespread, relatively abundant, and important as an ore of zinc.
The mineral is widespread in the district, even well below the main zone of oxidation. It occurs as fra |
| ⓘ Hollandite Formula: Ba(Mn4+6Mn3+2)O16 |
| ⓘ Huntite Formula: CaMg3(CO3)4 Description: Forms a major portion of the "Chinese talc" with quartz, dolomite and possibly native silver. |
| ⓘ Hübnerite Formula: MnWO4 |
| ⓘ Hydrozincite Formula: Zn5(CO3)2(OH)6 |
| ⓘ Iodargyrite Formula: AgI |
| ⓘ Jarosite Formula: KFe3+3(SO4)2(OH)6 Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Kaolinite Formula: Al2(Si2O5)(OH)4 Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Kobellite Formula: Pb22Cu4(Bi,Sb)30S69 |
| ⓘ Lanarkite Formula: Pb2(SO4)O |
| ⓘ Leadhillite Formula: Pb4(CO3)2(SO4)(OH)2 References: |
| ⓘ Lillianite (TL) Formula: Pb3-2xAgxBi2+xS6 Type Locality: Description: Much doubt has been generated concerning lillianite from the original locality. Gustav Flink made a crystallographic study of "lillianite" in 1910, but Berry (1940) suggested that Flink's data could be identical to that of galenobismuthite, but with "c" doubled and concluded, based on XRD studies that "lillianite" was heterogeneous. Paul Ramdohr (1969) wrote - "Normally not stable at low temperature and actually broken down into a mixture of Pb- and Bi-sulfides, mostly galena and galenobismuthite [and acanthite], but sometimes intact." Ramdohr mentioned that similar heterogeneity was observed from other occurrences. An occurrence at Iilijärvi [Jilijärvi], Finland was believed by Ramdohr to have authentic lillianite, that is not transformed into a mixture over time. Syritso and Senerova (1964) studied the lillianite problem and provided data which "confirmed and enlarged" knowledge of the mineral from Finland. Otto and Strunz (1968) synthesized a homogeneous mineral with lillianite's formula and properties. |
| ⓘ 'Limonite' Localities: Reported from at least 9 localities in this region. |
| ⓘ Linarite Formula: PbCu(SO4)(OH)2 |
| ⓘ Litharge Formula: PbO Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Magnetite Formula: Fe2+Fe3+2O4 Localities: Reported from at least 8 localities in this region. |
| ⓘ Malachite Formula: Cu2(CO3)(OH)2 Localities: Reported from at least 6 localities in this region. |
| ⓘ 'Manganese Oxides' References: |
| ⓘ Marcasite Formula: FeS2 |
| ⓘ Massicot Formula: PbO |
| ⓘ Matildite Formula: AgBiS2 Localities: Black Cloud Mine (Resurrection Mine 0080650339; Yak Tunnel; Leadville Unit; Irene Shaft), Iowa Gulch, Leadville, Lake County, Colorado, USA Leadville, Lake County, Colorado, USA Tucson Mine, Iron Hill, Lake County, Colorado, USA White Cap Mine, Lake County, Colorado, USA Greenback Mine, Iron Hill, Lake County, Colorado, USA ? (more information) |
| ⓘ Melanterite Formula: Fe2+(H2O)6(SO4) · H2O |
| ⓘ Mimetite Formula: Pb5(AsO4)3Cl |
| ⓘ Minium Formula: Pb3O4 Localities: Reported from at least 11 localities in this region. |
| ⓘ Muscovite Formula: KAl2(AlSi3O10)(OH)2 Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Muscovite var. Sericite Formula: KAl2(AlSi3O10)(OH)2 Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Native Copper Formula: Cu Localities: Ibex Mine, Breece Hill, Leadville, Lake County, Colorado, USA Sherman Mine (Sherman tunnel; Leadville Corporation Mine; Day Mines; Hilltop Mine), Upper Iowa Gulch, Lake County, Colorado, USA Maid Of Erin Mine, Carbonate Hill, Leadville, Lake County, Colorado, USA Adelaide Mine, Iron Hill, Lake County, Colorado, USA |
| ⓘ Native Gold Formula: Au Localities: Reported from at least 18 localities in this region. |
| ⓘ Native Gold var. Electrum Formula: (Au,Ag) |
| ⓘ Native Lead Formula: Pb |
| ⓘ Native Selenium Formula: Se Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Native Silver Formula: Ag Localities: Reported from at least 10 localities in this region. |
| ⓘ Native Sulphur Formula: S8 |
| ⓘ Native Tellurium Formula: Te References: |
| ⓘ Natroalunite Formula: NaAl3(SO4)2(OH)6 Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Opal Formula: SiO2 · nH2O |
| ⓘ Orthoclase Formula: K(AlSi3O8) |
| ⓘ Oxyplumboroméite Formula: Pb2Sb2O6O References: |
| ⓘ Paragonite Formula: NaAl2(AlSi3O10)(OH)2 |
| ⓘ 'Pearceite-T2ac' Formula: [Ag6As2S7][Ag9CuS4] |
| ⓘ Plumbojarosite Formula: Pb0.5Fe3+3(SO4)2(OH)6 |
| ⓘ Proustite Formula: Ag3AsS3 Locality: Leadville, Lake County, Colorado, USA |
| ⓘ 'Psilomelane' Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Pyrargyrite Formula: Ag3SbS3 |
| ⓘ Pyrite Formula: FeS2 Localities: Reported from at least 46 localities in this region. |
| ⓘ Pyrolusite Formula: Mn4+O2 Localities: Reported from at least 13 localities in this region. |
| ⓘ Pyromorphite Formula: Pb5(PO4)3Cl Localities: Reported from at least 15 localities in this region. |
| ⓘ Pyrophyllite Formula: Al2Si4O10(OH)2 |
| ⓘ 'Pyroxene Group' Formula: ADSi2O6 Locality: Leadville, Lake County, Colorado, USA |
| ⓘ Pyrrhotite Formula: Fe1-xS |
| ⓘ Quartz Formula: SiO2 Localities: Reported from at least 38 localities in this region. |
| ⓘ Quartz var. Chalcedony Formula: SiO2 |
| ⓘ Rhodochrosite Formula: MnCO3 Localities: Reported from at least 8 localities in this region. |
| ⓘ Rhodonite Formula: CaMn3Mn[Si5O15] |
| ⓘ Romanèchite Formula: (Ba,H2O)2(Mn4+,Mn3+)5O10 |
| ⓘ Rosasite Formula: (Cu,Zn)2(CO3)(OH)2 |
| ⓘ Sauconite Formula: Na0.3Zn3((Si,Al)4O10)(OH)2 · 4H2O |
| ⓘ Scheelite Formula: Ca(WO4) Localities: Reported from at least 11 localities in this region. |
| ⓘ 'Serpentine Subgroup' Formula: D3[Si2O5](OH)4 |
| ⓘ Siderite Formula: FeCO3 Localities: Reported from at least 8 localities in this region. |
| ⓘ Siderite var. Manganese-bearing Siderite Formula: (Fe,Mn)CO3 |
| ⓘ Siderite var. Mg-rich Siderite Formula: (Fe,Mg)CO3 |
| ⓘ Siderite var. Oligonite Formula: (Fe,Mn)CO3 Locality: Leadville, Lake County, Colorado, USA References: |
| ⓘ Smithsonite Formula: ZnCO3 Localities: Reported from at least 8 localities in this region. |
| ⓘ Sphalerite Formula: ZnS Localities: Reported from at least 40 localities in this region. |
| ⓘ Sphalerite var. Marmatite Formula: (Zn,Fe)S |
| ⓘ Stephanite Formula: Ag5SbS4 |
| ⓘ Tarbuttite ? Formula: Zn2(PO4)(OH) |
| ⓘ 'Tennantite Subgroup' Formula: Cu6(Cu4C2+2)As4S12S |
| ⓘ Tenorite Formula: CuO Locality: Luema, Lake County, Colorado, USA |
| ⓘ 'Tetrahedrite Subgroup' Formula: Cu6(Cu4C2+2)Sb4S12S Localities: Reported from at least 7 localities in this region. |
| ⓘ Turquoise Formula: CuAl6(PO4)4(OH)8 · 4H2O Locality: Leadville, Lake County, Colorado, USA References: |
| ⓘ Uraninite Formula: UO2 |
| ⓘ Vanadinite Formula: Pb5(VO4)3Cl |
| ⓘ Vivianite Formula: Fe2+Fe2+2(PO4)2 · 8H2O |
| ⓘ 'Wad' Localities: Reported from at least 25 localities in this region. |
| ⓘ 'Wad var. Wackenrodite' References: |
| ⓘ Willemite Formula: Zn2SiO4 |
| ⓘ 'Wolframite Group' Localities: Reported from at least 7 localities in this region. |
| ⓘ Wollastonite Formula: Ca3(Si3O9) |
| ⓘ Wulfenite Formula: Pb(MoO4) |
| ⓘ Wurtzite Formula: (Zn,Fe)S |
| ⓘ Zincrosasite Formula: (Zn,Cu)2(CO3)(OH)2 References: |
Gallery:
List of minerals arranged by Strunz 10th Edition classification
| Group 1 - Elements | |||
|---|---|---|---|
| ⓘ | Native Copper | 1.AA.05 | Cu |
| ⓘ | Native Gold var. Electrum | 1.AA.05 | (Au,Ag) |
| ⓘ | 1.AA.05 | Au | |
| ⓘ | Native Lead | 1.AA.05 | Pb |
| ⓘ | Native Silver | 1.AA.05 | Ag |
| ⓘ | Graphite | 1.CB.05a | C |
| ⓘ | Native Sulphur | 1.CC.05 | S8 |
| ⓘ | Native Selenium | 1.CC.10 | Se |
| ⓘ | Native Tellurium | 1.CC.10 | Te |
| Group 2 - Sulphides and Sulfosalts | |||
| ⓘ | Chalcocite | 2.BA.05 | Cu2S |
| ⓘ | Digenite | 2.BA.10 | Cu9S5 |
| ⓘ | Acanthite | 2.BA.35 | Ag2S |
| ⓘ | Hessite | 2.BA.60 | Ag2Te |
| ⓘ | Canfieldite | 2.BA.70 | Ag8SnS6 |
| ⓘ | Covellite | 2.CA.05a | CuS |
| ⓘ | Sphalerite | 2.CB.05a | ZnS |
| ⓘ | var. Marmatite | 2.CB.05a | (Zn,Fe)S |
| ⓘ | Chalcopyrite | 2.CB.10a | CuFeS2 |
| ⓘ | Wurtzite | 2.CB.45 | (Zn,Fe)S |
| ⓘ | Pyrrhotite | 2.CC.10 | Fe1-xS |
| ⓘ | Alabandite | 2.CD.10 | MnS |
| ⓘ | Altaite | 2.CD.10 | PbTe |
| ⓘ | Galena | 2.CD.10 | PbS |
| ⓘ | var. Silver-bearing Galena | 2.CD.10 | PbS with Ag |
| ⓘ | Bismuthinite | 2.DB.05 | Bi2S3 |
| ⓘ | Calaverite | 2.EA.10 | AuTe2 |
| ⓘ | Pyrite | 2.EB.05a | FeS2 |
| ⓘ | Marcasite | 2.EB.10a | FeS2 |
| ⓘ | Arsenopyrite | 2.EB.20 | FeAsS |
| ⓘ | Proustite | 2.GA.05 | Ag3AsS3 |
| ⓘ | Pyrargyrite | 2.GA.05 | Ag3SbS3 |
| ⓘ | Bournonite | 2.GA.50 | PbCuSbS3 |
| ⓘ | 'Tennantite Subgroup' | 2.GB.05 | Cu6(Cu4C2+2)As4S12S |
| ⓘ | 'Tetrahedrite Subgroup' | 2.GB.05 | Cu6(Cu4C2+2)Sb4S12S |
| ⓘ | Stephanite | 2.GB.10 | Ag5SbS4 |
| ⓘ | Aikinite | 2.HB.05a | CuPbBiS3 |
| ⓘ | Kobellite | 2.HB.10a | Pb22Cu4(Bi,Sb)30S69 |
| ⓘ | Matildite | 2.JA.20 | AgBiS2 |
| ⓘ | Galenobismutite | 2.JB.25e | PbBi2S4 |
| ⓘ | Lillianite (TL) | 2.JB.40a | Pb3-2xAgxBi2+xS6 |
| ⓘ | Enargite | 2.KA.05 | Cu3AsS4 |
| Group 3 - Halides | |||
| ⓘ | Iodargyrite | 3.AA.10 | AgI |
| ⓘ | Bromargyrite | 3.AA.15 | AgBr |
| ⓘ | Chlorargyrite | 3.AA.15 | AgCl |
| ⓘ | var. Bromine-bearing Chlorargyrite | 3.AA.15 | Ag(Cl,Br) |
| Group 4 - Oxides and Hydroxides | |||
| ⓘ | Goethite | 4.00. | Fe3+O(OH) |
| ⓘ | Cuprite | 4.AA.10 | Cu2O |
| ⓘ | Tenorite | 4.AB.10 | CuO |
| ⓘ | Litharge | 4.AC.20 | PbO |
| ⓘ | Massicot | 4.AC.25 | PbO |
| ⓘ | Magnetite | 4.BB.05 | Fe2+Fe3+2O4 |
| ⓘ | Hetaerolite | 4.BB.10 | ZnMn2O4 |
| ⓘ | var. Hydrohetaerolite (TL) | 4.BB.10 | Zn(Mn,◻)2(O,OH)4 |
| ⓘ | Minium | 4.BD.05 | Pb3O4 |
| ⓘ | Hematite | 4.CB.05 | Fe2O3 |
| ⓘ | Quartz var. Chalcedony | 4.DA.05 | SiO2 |
| ⓘ | 4.DA.05 | SiO2 | |
| ⓘ | Opal | 4.DA.10 | SiO2 · nH2O |
| ⓘ | Pyrolusite | 4.DB.05 | Mn4+O2 |
| ⓘ | Hübnerite | 4.DB.30 | MnWO4 |
| ⓘ | 'Wolframite Group' | 4.DB.30 va | |
| ⓘ | Oxyplumboroméite | 4.DH. | Pb2Sb2O6O |
| ⓘ | Bindheimite | 4.DH.20 | Pb2Sb2O6O |
| ⓘ | Cryptomelane | 4.DK.05a | K(Mn4+7Mn3+)O16 |
| ⓘ | Hollandite | 4.DK.05a | Ba(Mn4+6Mn3+2)O16 |
| ⓘ | Romanèchite | 4.DK.10 | (Ba,H2O)2(Mn4+,Mn3+)5O10 |
| ⓘ | Uraninite | 4.DL.05 | UO2 |
| ⓘ | Chalcophanite | 4.FL.20 | ZnMn4+3O7 · 3H2O |
| ⓘ | Birnessite | 4.FL.45 | (Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O |
| Group 5 - Nitrates and Carbonates | |||
| ⓘ | Calcite | 5.AB.05 | CaCO3 |
| ⓘ | Siderite var. Oligonite | 5.AB.05 | (Fe,Mn)CO3 |
| ⓘ | Rhodochrosite | 5.AB.05 | MnCO3 |
| ⓘ | Siderite | 5.AB.05 | FeCO3 |
| ⓘ | Smithsonite | 5.AB.05 | ZnCO3 |
| ⓘ | Siderite var. Manganese-bearing Siderite | 5.AB.05 | (Fe,Mn)CO3 |
| ⓘ | var. Mg-rich Siderite | 5.AB.05 | (Fe,Mg)CO3 |
| ⓘ | Ankerite | 5.AB.10 | Ca(Fe2+,Mg)(CO3)2 |
| ⓘ | Dolomite | 5.AB.10 | CaMg(CO3)2 |
| ⓘ | Aragonite | 5.AB.15 | CaCO3 |
| ⓘ | Cerussite | 5.AB.15 | PbCO3 |
| ⓘ | Aragonite var. Lead-bearing Aragonite | 5.AB.15 | (Ca,Pb)CO3 |
| ⓘ | var. Zinc-bearing Aragonite | 5.AB.15 | (Ca,Zn)CO3 |
| ⓘ | Huntite | 5.AB.25 | CaMg3(CO3)4 |
| ⓘ | Azurite | 5.BA.05 | Cu3(CO3)2(OH)2 |
| ⓘ | Malachite | 5.BA.10 | Cu2(CO3)(OH)2 |
| ⓘ | Rosasite | 5.BA.10 | (Cu,Zn)2(CO3)(OH)2 |
| ⓘ | Zincrosasite | 5.BA.10 | (Zn,Cu)2(CO3)(OH)2 |
| ⓘ | Aurichalcite | 5.BA.15 | (Zn,Cu)5(CO3)2(OH)6 |
| ⓘ | Hydrozincite | 5.BA.15 | Zn5(CO3)2(OH)6 |
| ⓘ | Bismutite | 5.BE.25 | (BiO)2CO3 |
| ⓘ | Leadhillite | 5.BF.40 | Pb4(CO3)2(SO4)(OH)2 |
| Group 7 - Sulphates, Chromates, Molybdates and Tungstates | |||
| ⓘ | Anglesite | 7.AD.35 | PbSO4 |
| ⓘ | Baryte | 7.AD.35 | BaSO4 |
| ⓘ | Brochantite | 7.BB.25 | Cu4(SO4)(OH)6 |
| ⓘ | Alunite | 7.BC.10 | KAl3(SO4)2(OH)6 |
| ⓘ | Argentojarosite ? | 7.BC.10 | AgFe3+3(SO4)2(OH)6 |
| ⓘ | Jarosite | 7.BC.10 | KFe3+3(SO4)2(OH)6 |
| ⓘ | Natroalunite | 7.BC.10 | NaAl3(SO4)2(OH)6 |
| ⓘ | Plumbojarosite | 7.BC.10 | Pb0.5Fe3+3(SO4)2(OH)6 |
| ⓘ | Caledonite | 7.BC.50 | Pb5Cu2(SO4)3(CO3)(OH)6 |
| ⓘ | Linarite | 7.BC.65 | PbCu(SO4)(OH)2 |
| ⓘ | Lanarkite | 7.BD.40 | Pb2(SO4)O |
| ⓘ | Chalcanthite | 7.CB.20 | CuSO4 · 5H2O |
| ⓘ | Melanterite | 7.CB.35 | Fe2+(H2O)6(SO4) · H2O |
| ⓘ | Epsomite | 7.CB.40 | MgSO4 · 7H2O |
| ⓘ | Goslarite | 7.CB.40 | ZnSO4 · 7H2O |
| ⓘ | Gypsum | 7.CD.40 | CaSO4 · 2H2O |
| ⓘ | Scheelite | 7.GA.05 | Ca(WO4) |
| ⓘ | Wulfenite | 7.GA.05 | Pb(MoO4) |
| Group 8 - Phosphates, Arsenates and Vanadates | |||
| ⓘ | Tarbuttite ? | 8.BB.35 | Zn2(PO4)(OH) |
| ⓘ | Descloizite var. Dechenite | 8.BH.40 | PbZn(VO4,AsO4)(OH) |
| ⓘ | 8.BH.40 | PbZn(VO4)(OH) | |
| ⓘ | Mimetite | 8.BN.05 | Pb5(AsO4)3Cl |
| ⓘ | Pyromorphite | 8.BN.05 | Pb5(PO4)3Cl |
| ⓘ | Vanadinite | 8.BN.05 | Pb5(VO4)3Cl |
| ⓘ | Vivianite | 8.CE.40 | Fe2+Fe2+2(PO4)2 · 8H2O |
| ⓘ | Turquoise | 8.DD.15 | CuAl6(PO4)4(OH)8 · 4H2O |
| ⓘ | Chalcophyllite ? | 8.DF.30 | Cu18Al2(AsO4)4(SO4)3(OH)24 · 36H2O |
| Group 9 - Silicates | |||
| ⓘ | Willemite | 9.AA.05 | Zn2SiO4 |
| ⓘ | Hemimorphite | 9.BD.10 | Zn4Si2O7(OH)2 · H2O |
| ⓘ | Epidote | 9.BG.05a | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| ⓘ | Wollastonite | 9.DG.05 | Ca3(Si3O9) |
| ⓘ | Rhodonite | 9.DK.05 | CaMn3Mn[Si5O15] |
| ⓘ | Pyrophyllite | 9.EC.10 | Al2Si4O10(OH)2 |
| ⓘ | Muscovite | 9.EC.15 | KAl2(AlSi3O10)(OH)2 |
| ⓘ | Paragonite | 9.EC.15 | NaAl2(AlSi3O10)(OH)2 |
| ⓘ | Muscovite var. Sericite | 9.EC.15 | KAl2(AlSi3O10)(OH)2 |
| ⓘ | Sauconite | 9.EC.45 | Na0.3Zn3((Si,Al)4O10)(OH)2 · 4H2O |
| ⓘ | Kaolinite | 9.ED.05 | Al2(Si2O5)(OH)4 |
| ⓘ | Chrysocolla | 9.ED.20 | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| ⓘ | Orthoclase | 9.FA.30 | K(AlSi3O8) |
| Unclassified | |||
| ⓘ | 'Alaskaite' | - | |
| ⓘ | 'Pearceite-T2ac' | - | [Ag6As2S7][Ag9CuS4] |
| ⓘ | 'Chlorite Group' | - | |
| ⓘ | 'Limonite' | - | |
| ⓘ | 'Psilomelane' | - | |
| ⓘ | 'Wad var. Wackenrodite' | - | |
| ⓘ | '' | - | |
| ⓘ | 'Pyroxene Group' | - | ADSi2O6 |
| ⓘ | 'Serpentine Subgroup' | - | D3[Si2O5](OH)4 |
| ⓘ | 'Manganese Oxides' | - | |
List of minerals for each chemical element
| H | Hydrogen | |
|---|---|---|
| H | ⓘ Alunite | KAl3(SO4)2(OH)6 |
| H | ⓘ Argentojarosite | AgFe33+(SO4)2(OH)6 |
| H | ⓘ Aurichalcite | (Zn,Cu)5(CO3)2(OH)6 |
| H | ⓘ Azurite | Cu3(CO3)2(OH)2 |
| H | ⓘ Birnessite | (Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O |
| H | ⓘ Brochantite | Cu4(SO4)(OH)6 |
| H | ⓘ Caledonite | Pb5Cu2(SO4)3(CO3)(OH)6 |
| H | ⓘ Chalcophanite | ZnMn34+O7 · 3H2O |
| H | ⓘ Chalcanthite | CuSO4 · 5H2O |
| H | ⓘ Chalcophyllite | Cu18Al2(AsO4)4(SO4)3(OH)24 · 36H2O |
| H | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| H | ⓘ Descloizite var. Dechenite | PbZn(VO4,AsO4)(OH) |
| H | ⓘ Descloizite | PbZn(VO4)(OH) |
| H | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| H | ⓘ Epsomite | MgSO4 · 7H2O |
| H | ⓘ Goethite | Fe3+O(OH) |
| H | ⓘ Goslarite | ZnSO4 · 7H2O |
| H | ⓘ Gypsum | CaSO4 · 2H2O |
| H | ⓘ Hemimorphite | Zn4Si2O7(OH)2 · H2O |
| H | ⓘ Hetaerolite var. Hydrohetaerolite | Zn(Mn,◻)2(O,OH)4 |
| H | ⓘ Hydrozincite | Zn5(CO3)2(OH)6 |
| H | ⓘ Jarosite | KFe33+(SO4)2(OH)6 |
| H | ⓘ Kaolinite | Al2(Si2O5)(OH)4 |
| H | ⓘ Leadhillite | Pb4(CO3)2(SO4)(OH)2 |
| H | ⓘ Linarite | PbCu(SO4)(OH)2 |
| H | ⓘ Malachite | Cu2(CO3)(OH)2 |
| H | ⓘ Melanterite | Fe2+(H2O)6(SO4) · H2O |
| H | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| H | ⓘ Natroalunite | NaAl3(SO4)2(OH)6 |
| H | ⓘ Opal | SiO2 · nH2O |
| H | ⓘ Paragonite | NaAl2(AlSi3O10)(OH)2 |
| H | ⓘ Plumbojarosite | Pb0.5Fe33+(SO4)2(OH)6 |
| H | ⓘ Pyrophyllite | Al2Si4O10(OH)2 |
| H | ⓘ Romanèchite | (Ba,H2O)2(Mn4+,Mn3+)5O10 |
| H | ⓘ Rosasite | (Cu,Zn)2(CO3)(OH)2 |
| H | ⓘ Sauconite | Na0.3Zn3((Si,Al)4O10)(OH)2 · 4H2O |
| H | ⓘ Tarbuttite | Zn2(PO4)(OH) |
| H | ⓘ Turquoise | CuAl6(PO4)4(OH)8 · 4H2O |
| H | ⓘ Vivianite | Fe2+Fe22+(PO4)2 · 8H2O |
| H | ⓘ Zincrosasite | (Zn,Cu)2(CO3)(OH)2 |
| H | ⓘ Muscovite var. Sericite | KAl2(AlSi3O10)(OH)2 |
| H | ⓘ Serpentine Subgroup | D3[Si2O5](OH)4 |
| C | Carbon | |
| C | ⓘ Ankerite | Ca(Fe2+,Mg)(CO3)2 |
| C | ⓘ Aragonite | CaCO3 |
| C | ⓘ Aurichalcite | (Zn,Cu)5(CO3)2(OH)6 |
| C | ⓘ Azurite | Cu3(CO3)2(OH)2 |
| C | ⓘ Bismutite | (BiO)2CO3 |
| C | ⓘ Calcite | CaCO3 |
| C | ⓘ Caledonite | Pb5Cu2(SO4)3(CO3)(OH)6 |
| C | ⓘ Cerussite | PbCO3 |
| C | ⓘ Dolomite | CaMg(CO3)2 |
| C | ⓘ Graphite | C |
| C | ⓘ Huntite | CaMg3(CO3)4 |
| C | ⓘ Hydrozincite | Zn5(CO3)2(OH)6 |
| C | ⓘ Leadhillite | Pb4(CO3)2(SO4)(OH)2 |
| C | ⓘ Malachite | Cu2(CO3)(OH)2 |
| C | ⓘ Siderite var. Oligonite | (Fe,Mn)CO3 |
| C | ⓘ Rhodochrosite | MnCO3 |
| C | ⓘ Rosasite | (Cu,Zn)2(CO3)(OH)2 |
| C | ⓘ Siderite | FeCO3 |
| C | ⓘ Smithsonite | ZnCO3 |
| C | ⓘ Aragonite var. Lead-bearing Aragonite | (Ca,Pb)CO3 |
| C | ⓘ Zincrosasite | (Zn,Cu)2(CO3)(OH)2 |
| C | ⓘ Siderite var. Manganese-bearing Siderite | (Fe,Mn)CO3 |
| C | ⓘ Siderite var. Mg-rich Siderite | (Fe,Mg)CO3 |
| C | ⓘ Aragonite var. Zinc-bearing Aragonite | (Ca,Zn)CO3 |
| O | Oxygen | |
| O | ⓘ Alunite | KAl3(SO4)2(OH)6 |
| O | ⓘ Anglesite | PbSO4 |
| O | ⓘ Ankerite | Ca(Fe2+,Mg)(CO3)2 |
| O | ⓘ Argentojarosite | AgFe33+(SO4)2(OH)6 |
| O | ⓘ Aragonite | CaCO3 |
| O | ⓘ Aurichalcite | (Zn,Cu)5(CO3)2(OH)6 |
| O | ⓘ Azurite | Cu3(CO3)2(OH)2 |
| O | ⓘ Baryte | BaSO4 |
| O | ⓘ Bindheimite | Pb2Sb2O6O |
| O | ⓘ Birnessite | (Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O |
| O | ⓘ Bismutite | (BiO)2CO3 |
| O | ⓘ Brochantite | Cu4(SO4)(OH)6 |
| O | ⓘ Calcite | CaCO3 |
| O | ⓘ Caledonite | Pb5Cu2(SO4)3(CO3)(OH)6 |
| O | ⓘ Cerussite | PbCO3 |
| O | ⓘ Chalcophanite | ZnMn34+O7 · 3H2O |
| O | ⓘ Chalcanthite | CuSO4 · 5H2O |
| O | ⓘ Quartz var. Chalcedony | SiO2 |
| O | ⓘ Chalcophyllite | Cu18Al2(AsO4)4(SO4)3(OH)24 · 36H2O |
| O | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| O | ⓘ Cryptomelane | K(Mn74+Mn3+)O16 |
| O | ⓘ Cuprite | Cu2O |
| O | ⓘ Descloizite var. Dechenite | PbZn(VO4,AsO4)(OH) |
| O | ⓘ Descloizite | PbZn(VO4)(OH) |
| O | ⓘ Dolomite | CaMg(CO3)2 |
| O | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| O | ⓘ Epsomite | MgSO4 · 7H2O |
| O | ⓘ Goethite | Fe3+O(OH) |
| O | ⓘ Goslarite | ZnSO4 · 7H2O |
| O | ⓘ Gypsum | CaSO4 · 2H2O |
| O | ⓘ Hematite | Fe2O3 |
| O | ⓘ Hemimorphite | Zn4Si2O7(OH)2 · H2O |
| O | ⓘ Hetaerolite | ZnMn2O4 |
| O | ⓘ Hollandite | Ba(Mn64+Mn23+)O16 |
| O | ⓘ Hübnerite | MnWO4 |
| O | ⓘ Huntite | CaMg3(CO3)4 |
| O | ⓘ Hetaerolite var. Hydrohetaerolite | Zn(Mn,◻)2(O,OH)4 |
| O | ⓘ Hydrozincite | Zn5(CO3)2(OH)6 |
| O | ⓘ Jarosite | KFe33+(SO4)2(OH)6 |
| O | ⓘ Kaolinite | Al2(Si2O5)(OH)4 |
| O | ⓘ Lanarkite | Pb2(SO4)O |
| O | ⓘ Leadhillite | Pb4(CO3)2(SO4)(OH)2 |
| O | ⓘ Linarite | PbCu(SO4)(OH)2 |
| O | ⓘ Litharge | PbO |
| O | ⓘ Magnetite | Fe2+Fe23+O4 |
| O | ⓘ Malachite | Cu2(CO3)(OH)2 |
| O | ⓘ Massicot | PbO |
| O | ⓘ Melanterite | Fe2+(H2O)6(SO4) · H2O |
| O | ⓘ Mimetite | Pb5(AsO4)3Cl |
| O | ⓘ Minium | Pb3O4 |
| O | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| O | ⓘ Natroalunite | NaAl3(SO4)2(OH)6 |
| O | ⓘ Siderite var. Oligonite | (Fe,Mn)CO3 |
| O | ⓘ Opal | SiO2 · nH2O |
| O | ⓘ Orthoclase | K(AlSi3O8) |
| O | ⓘ Paragonite | NaAl2(AlSi3O10)(OH)2 |
| O | ⓘ Plumbojarosite | Pb0.5Fe33+(SO4)2(OH)6 |
| O | ⓘ Pyrolusite | Mn4+O2 |
| O | ⓘ Pyromorphite | Pb5(PO4)3Cl |
| O | ⓘ Pyrophyllite | Al2Si4O10(OH)2 |
| O | ⓘ Quartz | SiO2 |
| O | ⓘ Rhodochrosite | MnCO3 |
| O | ⓘ Rhodonite | CaMn3Mn[Si5O15] |
| O | ⓘ Romanèchite | (Ba,H2O)2(Mn4+,Mn3+)5O10 |
| O | ⓘ Rosasite | (Cu,Zn)2(CO3)(OH)2 |
| O | ⓘ Sauconite | Na0.3Zn3((Si,Al)4O10)(OH)2 · 4H2O |
| O | ⓘ Scheelite | Ca(WO4) |
| O | ⓘ Siderite | FeCO3 |
| O | ⓘ Smithsonite | ZnCO3 |
| O | ⓘ Tarbuttite | Zn2(PO4)(OH) |
| O | ⓘ Aragonite var. Lead-bearing Aragonite | (Ca,Pb)CO3 |
| O | ⓘ Tenorite | CuO |
| O | ⓘ Turquoise | CuAl6(PO4)4(OH)8 · 4H2O |
| O | ⓘ Uraninite | UO2 |
| O | ⓘ Vanadinite | Pb5(VO4)3Cl |
| O | ⓘ Vivianite | Fe2+Fe22+(PO4)2 · 8H2O |
| O | ⓘ Willemite | Zn2SiO4 |
| O | ⓘ Wulfenite | Pb(MoO4) |
| O | ⓘ Wollastonite | Ca3(Si3O9) |
| O | ⓘ Zincrosasite | (Zn,Cu)2(CO3)(OH)2 |
| O | ⓘ Muscovite var. Sericite | KAl2(AlSi3O10)(OH)2 |
| O | ⓘ Pyroxene Group | ADSi2O6 |
| O | ⓘ Siderite var. Manganese-bearing Siderite | (Fe,Mn)CO3 |
| O | ⓘ Serpentine Subgroup | D3[Si2O5](OH)4 |
| O | ⓘ Siderite var. Mg-rich Siderite | (Fe,Mg)CO3 |
| O | ⓘ Aragonite var. Zinc-bearing Aragonite | (Ca,Zn)CO3 |
| O | ⓘ Oxyplumboroméite | Pb2Sb2O6O |
| Na | Sodium | |
| Na | ⓘ Birnessite | (Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O |
| Na | ⓘ Natroalunite | NaAl3(SO4)2(OH)6 |
| Na | ⓘ Paragonite | NaAl2(AlSi3O10)(OH)2 |
| Na | ⓘ Sauconite | Na0.3Zn3((Si,Al)4O10)(OH)2 · 4H2O |
| Mg | Magnesium | |
| Mg | ⓘ Ankerite | Ca(Fe2+,Mg)(CO3)2 |
| Mg | ⓘ Dolomite | CaMg(CO3)2 |
| Mg | ⓘ Epsomite | MgSO4 · 7H2O |
| Mg | ⓘ Huntite | CaMg3(CO3)4 |
| Mg | ⓘ Siderite var. Mg-rich Siderite | (Fe,Mg)CO3 |
| Al | Aluminium | |
| Al | ⓘ Alunite | KAl3(SO4)2(OH)6 |
| Al | ⓘ Chalcophyllite | Cu18Al2(AsO4)4(SO4)3(OH)24 · 36H2O |
| Al | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| Al | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| Al | ⓘ Kaolinite | Al2(Si2O5)(OH)4 |
| Al | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| Al | ⓘ Natroalunite | NaAl3(SO4)2(OH)6 |
| Al | ⓘ Orthoclase | K(AlSi3O8) |
| Al | ⓘ Paragonite | NaAl2(AlSi3O10)(OH)2 |
| Al | ⓘ Pyrophyllite | Al2Si4O10(OH)2 |
| Al | ⓘ Sauconite | Na0.3Zn3((Si,Al)4O10)(OH)2 · 4H2O |
| Al | ⓘ Turquoise | CuAl6(PO4)4(OH)8 · 4H2O |
| Al | ⓘ Muscovite var. Sericite | KAl2(AlSi3O10)(OH)2 |
| Si | Silicon | |
| Si | ⓘ Quartz var. Chalcedony | SiO2 |
| Si | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| Si | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| Si | ⓘ Hemimorphite | Zn4Si2O7(OH)2 · H2O |
| Si | ⓘ Kaolinite | Al2(Si2O5)(OH)4 |
| Si | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| Si | ⓘ Opal | SiO2 · nH2O |
| Si | ⓘ Orthoclase | K(AlSi3O8) |
| Si | ⓘ Paragonite | NaAl2(AlSi3O10)(OH)2 |
| Si | ⓘ Pyrophyllite | Al2Si4O10(OH)2 |
| Si | ⓘ Quartz | SiO2 |
| Si | ⓘ Rhodonite | CaMn3Mn[Si5O15] |
| Si | ⓘ Sauconite | Na0.3Zn3((Si,Al)4O10)(OH)2 · 4H2O |
| Si | ⓘ Willemite | Zn2SiO4 |
| Si | ⓘ Wollastonite | Ca3(Si3O9) |
| Si | ⓘ Muscovite var. Sericite | KAl2(AlSi3O10)(OH)2 |
| Si | ⓘ Pyroxene Group | ADSi2O6 |
| Si | ⓘ Serpentine Subgroup | D3[Si2O5](OH)4 |
| P | Phosphorus | |
| P | ⓘ Pyromorphite | Pb5(PO4)3Cl |
| P | ⓘ Tarbuttite | Zn2(PO4)(OH) |
| P | ⓘ Turquoise | CuAl6(PO4)4(OH)8 · 4H2O |
| P | ⓘ Vivianite | Fe2+Fe22+(PO4)2 · 8H2O |
| S | Sulfur | |
| S | ⓘ Acanthite | Ag2S |
| S | ⓘ Aikinite | CuPbBiS3 |
| S | ⓘ Alabandite | MnS |
| S | ⓘ Alunite | KAl3(SO4)2(OH)6 |
| S | ⓘ Anglesite | PbSO4 |
| S | ⓘ Argentojarosite | AgFe33+(SO4)2(OH)6 |
| S | ⓘ Arsenopyrite | FeAsS |
| S | ⓘ Pearceite-T2ac | [Ag6As2S7][Ag9CuS4] |
| S | ⓘ Baryte | BaSO4 |
| S | ⓘ Bismuthinite | Bi2S3 |
| S | ⓘ Bournonite | PbCuSbS3 |
| S | ⓘ Brochantite | Cu4(SO4)(OH)6 |
| S | ⓘ Caledonite | Pb5Cu2(SO4)3(CO3)(OH)6 |
| S | ⓘ Canfieldite | Ag8SnS6 |
| S | ⓘ Chalcopyrite | CuFeS2 |
| S | ⓘ Chalcanthite | CuSO4 · 5H2O |
| S | ⓘ Chalcocite | Cu2S |
| S | ⓘ Chalcophyllite | Cu18Al2(AsO4)4(SO4)3(OH)24 · 36H2O |
| S | ⓘ Covellite | CuS |
| S | ⓘ Digenite | Cu9S5 |
| S | ⓘ Enargite | Cu3AsS4 |
| S | ⓘ Epsomite | MgSO4 · 7H2O |
| S | ⓘ Galena | PbS |
| S | ⓘ Galenobismutite | PbBi2S4 |
| S | ⓘ Goslarite | ZnSO4 · 7H2O |
| S | ⓘ Gypsum | CaSO4 · 2H2O |
| S | ⓘ Jarosite | KFe33+(SO4)2(OH)6 |
| S | ⓘ Kobellite | Pb22Cu4(Bi,Sb)30S69 |
| S | ⓘ Lanarkite | Pb2(SO4)O |
| S | ⓘ Leadhillite | Pb4(CO3)2(SO4)(OH)2 |
| S | ⓘ Lillianite | Pb3-2xAgxBi2+xS6 |
| S | ⓘ Linarite | PbCu(SO4)(OH)2 |
| S | ⓘ Marcasite | FeS2 |
| S | ⓘ Matildite | AgBiS2 |
| S | ⓘ Melanterite | Fe2+(H2O)6(SO4) · H2O |
| S | ⓘ Natroalunite | NaAl3(SO4)2(OH)6 |
| S | ⓘ Plumbojarosite | Pb0.5Fe33+(SO4)2(OH)6 |
| S | ⓘ Proustite | Ag3AsS3 |
| S | ⓘ Pyrargyrite | Ag3SbS3 |
| S | ⓘ Pyrite | FeS2 |
| S | ⓘ Pyrrhotite | Fe1-xS |
| S | ⓘ Sphalerite | ZnS |
| S | ⓘ Stephanite | Ag5SbS4 |
| S | ⓘ Native Sulphur | S8 |
| S | ⓘ Tennantite Subgroup | Cu6(Cu4C22+)As4S12S |
| S | ⓘ Tetrahedrite Subgroup | Cu6(Cu4C22+)Sb4S12S |
| S | ⓘ Wurtzite | (Zn,Fe)S |
| S | ⓘ Sphalerite var. Marmatite | (Zn,Fe)S |
| S | ⓘ Galena var. Silver-bearing Galena | PbS with Ag |
| Cl | Chlorine | |
| Cl | ⓘ Chlorargyrite | AgCl |
| Cl | ⓘ Chlorargyrite var. Bromine-bearing Chlorargyrite | Ag(Cl,Br) |
| Cl | ⓘ Mimetite | Pb5(AsO4)3Cl |
| Cl | ⓘ Pyromorphite | Pb5(PO4)3Cl |
| Cl | ⓘ Vanadinite | Pb5(VO4)3Cl |
| K | Potassium | |
| K | ⓘ Alunite | KAl3(SO4)2(OH)6 |
| K | ⓘ Cryptomelane | K(Mn74+Mn3+)O16 |
| K | ⓘ Jarosite | KFe33+(SO4)2(OH)6 |
| K | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| K | ⓘ Orthoclase | K(AlSi3O8) |
| K | ⓘ Muscovite var. Sericite | KAl2(AlSi3O10)(OH)2 |
| Ca | Calcium | |
| Ca | ⓘ Ankerite | Ca(Fe2+,Mg)(CO3)2 |
| Ca | ⓘ Aragonite | CaCO3 |
| Ca | ⓘ Birnessite | (Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O |
| Ca | ⓘ Calcite | CaCO3 |
| Ca | ⓘ Dolomite | CaMg(CO3)2 |
| Ca | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| Ca | ⓘ Gypsum | CaSO4 · 2H2O |
| Ca | ⓘ Huntite | CaMg3(CO3)4 |
| Ca | ⓘ Rhodonite | CaMn3Mn[Si5O15] |
| Ca | ⓘ Scheelite | Ca(WO4) |
| Ca | ⓘ Aragonite var. Lead-bearing Aragonite | (Ca,Pb)CO3 |
| Ca | ⓘ Wollastonite | Ca3(Si3O9) |
| Ca | ⓘ Aragonite var. Zinc-bearing Aragonite | (Ca,Zn)CO3 |
| V | Vanadium | |
| V | ⓘ Descloizite var. Dechenite | PbZn(VO4,AsO4)(OH) |
| V | ⓘ Descloizite | PbZn(VO4)(OH) |
| V | ⓘ Vanadinite | Pb5(VO4)3Cl |
| Mn | Manganese | |
| Mn | ⓘ Alabandite | MnS |
| Mn | ⓘ Birnessite | (Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O |
| Mn | ⓘ Chalcophanite | ZnMn34+O7 · 3H2O |
| Mn | ⓘ Cryptomelane | K(Mn74+Mn3+)O16 |
| Mn | ⓘ Hetaerolite | ZnMn2O4 |
| Mn | ⓘ Hollandite | Ba(Mn64+Mn23+)O16 |
| Mn | ⓘ Hübnerite | MnWO4 |
| Mn | ⓘ Hetaerolite var. Hydrohetaerolite | Zn(Mn,◻)2(O,OH)4 |
| Mn | ⓘ Siderite var. Oligonite | (Fe,Mn)CO3 |
| Mn | ⓘ Pyrolusite | Mn4+O2 |
| Mn | ⓘ Rhodochrosite | MnCO3 |
| Mn | ⓘ Rhodonite | CaMn3Mn[Si5O15] |
| Mn | ⓘ Romanèchite | (Ba,H2O)2(Mn4+,Mn3+)5O10 |
| Mn | ⓘ Siderite var. Manganese-bearing Siderite | (Fe,Mn)CO3 |
| Fe | Iron | |
| Fe | ⓘ Ankerite | Ca(Fe2+,Mg)(CO3)2 |
| Fe | ⓘ Argentojarosite | AgFe33+(SO4)2(OH)6 |
| Fe | ⓘ Arsenopyrite | FeAsS |
| Fe | ⓘ Chalcopyrite | CuFeS2 |
| Fe | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| Fe | ⓘ Goethite | Fe3+O(OH) |
| Fe | ⓘ Hematite | Fe2O3 |
| Fe | ⓘ Jarosite | KFe33+(SO4)2(OH)6 |
| Fe | ⓘ Magnetite | Fe2+Fe23+O4 |
| Fe | ⓘ Marcasite | FeS2 |
| Fe | ⓘ Melanterite | Fe2+(H2O)6(SO4) · H2O |
| Fe | ⓘ Siderite var. Oligonite | (Fe,Mn)CO3 |
| Fe | ⓘ Plumbojarosite | Pb0.5Fe33+(SO4)2(OH)6 |
| Fe | ⓘ Pyrite | FeS2 |
| Fe | ⓘ Pyrrhotite | Fe1-xS |
| Fe | ⓘ Siderite | FeCO3 |
| Fe | ⓘ Vivianite | Fe2+Fe22+(PO4)2 · 8H2O |
| Fe | ⓘ Wurtzite | (Zn,Fe)S |
| Fe | ⓘ Sphalerite var. Marmatite | (Zn,Fe)S |
| Fe | ⓘ Siderite var. Manganese-bearing Siderite | (Fe,Mn)CO3 |
| Fe | ⓘ Siderite var. Mg-rich Siderite | (Fe,Mg)CO3 |
| Cu | Copper | |
| Cu | ⓘ Aikinite | CuPbBiS3 |
| Cu | ⓘ Pearceite-T2ac | [Ag6As2S7][Ag9CuS4] |
| Cu | ⓘ Aurichalcite | (Zn,Cu)5(CO3)2(OH)6 |
| Cu | ⓘ Azurite | Cu3(CO3)2(OH)2 |
| Cu | ⓘ Bournonite | PbCuSbS3 |
| Cu | ⓘ Brochantite | Cu4(SO4)(OH)6 |
| Cu | ⓘ Caledonite | Pb5Cu2(SO4)3(CO3)(OH)6 |
| Cu | ⓘ Chalcopyrite | CuFeS2 |
| Cu | ⓘ Chalcanthite | CuSO4 · 5H2O |
| Cu | ⓘ Chalcocite | Cu2S |
| Cu | ⓘ Chalcophyllite | Cu18Al2(AsO4)4(SO4)3(OH)24 · 36H2O |
| Cu | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| Cu | ⓘ Covellite | CuS |
| Cu | ⓘ Cuprite | Cu2O |
| Cu | ⓘ Native Copper | Cu |
| Cu | ⓘ Digenite | Cu9S5 |
| Cu | ⓘ Enargite | Cu3AsS4 |
| Cu | ⓘ Kobellite | Pb22Cu4(Bi,Sb)30S69 |
| Cu | ⓘ Linarite | PbCu(SO4)(OH)2 |
| Cu | ⓘ Malachite | Cu2(CO3)(OH)2 |
| Cu | ⓘ Rosasite | (Cu,Zn)2(CO3)(OH)2 |
| Cu | ⓘ Tennantite Subgroup | Cu6(Cu4C22+)As4S12S |
| Cu | ⓘ Tenorite | CuO |
| Cu | ⓘ Tetrahedrite Subgroup | Cu6(Cu4C22+)Sb4S12S |
| Cu | ⓘ Turquoise | CuAl6(PO4)4(OH)8 · 4H2O |
| Cu | ⓘ Zincrosasite | (Zn,Cu)2(CO3)(OH)2 |
| Zn | Zinc | |
| Zn | ⓘ Aurichalcite | (Zn,Cu)5(CO3)2(OH)6 |
| Zn | ⓘ Chalcophanite | ZnMn34+O7 · 3H2O |
| Zn | ⓘ Descloizite var. Dechenite | PbZn(VO4,AsO4)(OH) |
| Zn | ⓘ Descloizite | PbZn(VO4)(OH) |
| Zn | ⓘ Goslarite | ZnSO4 · 7H2O |
| Zn | ⓘ Hemimorphite | Zn4Si2O7(OH)2 · H2O |
| Zn | ⓘ Hetaerolite | ZnMn2O4 |
| Zn | ⓘ Hetaerolite var. Hydrohetaerolite | Zn(Mn,◻)2(O,OH)4 |
| Zn | ⓘ Hydrozincite | Zn5(CO3)2(OH)6 |
| Zn | ⓘ Rosasite | (Cu,Zn)2(CO3)(OH)2 |
| Zn | ⓘ Sauconite | Na0.3Zn3((Si,Al)4O10)(OH)2 · 4H2O |
| Zn | ⓘ Smithsonite | ZnCO3 |
| Zn | ⓘ Sphalerite | ZnS |
| Zn | ⓘ Tarbuttite | Zn2(PO4)(OH) |
| Zn | ⓘ Willemite | Zn2SiO4 |
| Zn | ⓘ Wurtzite | (Zn,Fe)S |
| Zn | ⓘ Zincrosasite | (Zn,Cu)2(CO3)(OH)2 |
| Zn | ⓘ Sphalerite var. Marmatite | (Zn,Fe)S |
| Zn | ⓘ Aragonite var. Zinc-bearing Aragonite | (Ca,Zn)CO3 |
| As | Arsenic | |
| As | ⓘ Arsenopyrite | FeAsS |
| As | ⓘ Pearceite-T2ac | [Ag6As2S7][Ag9CuS4] |
| As | ⓘ Chalcophyllite | Cu18Al2(AsO4)4(SO4)3(OH)24 · 36H2O |
| As | ⓘ Descloizite var. Dechenite | PbZn(VO4,AsO4)(OH) |
| As | ⓘ Enargite | Cu3AsS4 |
| As | ⓘ Mimetite | Pb5(AsO4)3Cl |
| As | ⓘ Proustite | Ag3AsS3 |
| As | ⓘ Tennantite Subgroup | Cu6(Cu4C22+)As4S12S |
| Se | Selenium | |
| Se | ⓘ Native Selenium | Se |
| Br | Bromine | |
| Br | ⓘ Bromargyrite | AgBr |
| Br | ⓘ Chlorargyrite var. Bromine-bearing Chlorargyrite | Ag(Cl,Br) |
| Mo | Molybdenum | |
| Mo | ⓘ Wulfenite | Pb(MoO4) |
| Ag | Silver | |
| Ag | ⓘ Acanthite | Ag2S |
| Ag | ⓘ Argentojarosite | AgFe33+(SO4)2(OH)6 |
| Ag | ⓘ Pearceite-T2ac | [Ag6As2S7][Ag9CuS4] |
| Ag | ⓘ Bromargyrite | AgBr |
| Ag | ⓘ Canfieldite | Ag8SnS6 |
| Ag | ⓘ Chlorargyrite | AgCl |
| Ag | ⓘ Native Gold var. Electrum | (Au,Ag) |
| Ag | ⓘ Chlorargyrite var. Bromine-bearing Chlorargyrite | Ag(Cl,Br) |
| Ag | ⓘ Hessite | Ag2Te |
| Ag | ⓘ Iodargyrite | AgI |
| Ag | ⓘ Lillianite | Pb3-2xAgxBi2+xS6 |
| Ag | ⓘ Matildite | AgBiS2 |
| Ag | ⓘ Proustite | Ag3AsS3 |
| Ag | ⓘ Pyrargyrite | Ag3SbS3 |
| Ag | ⓘ Native Silver | Ag |
| Ag | ⓘ Stephanite | Ag5SbS4 |
| Ag | ⓘ Galena var. Silver-bearing Galena | PbS with Ag |
| Sn | Tin | |
| Sn | ⓘ Canfieldite | Ag8SnS6 |
| Sb | Antimony | |
| Sb | ⓘ Bindheimite | Pb2Sb2O6O |
| Sb | ⓘ Bournonite | PbCuSbS3 |
| Sb | ⓘ Kobellite | Pb22Cu4(Bi,Sb)30S69 |
| Sb | ⓘ Pyrargyrite | Ag3SbS3 |
| Sb | ⓘ Stephanite | Ag5SbS4 |
| Sb | ⓘ Tetrahedrite Subgroup | Cu6(Cu4C22+)Sb4S12S |
| Sb | ⓘ Oxyplumboroméite | Pb2Sb2O6O |
| Te | Tellurium | |
| Te | ⓘ Altaite | PbTe |
| Te | ⓘ Calaverite | AuTe2 |
| Te | ⓘ Hessite | Ag2Te |
| Te | ⓘ Native Tellurium | Te |
| I | Iodine | |
| I | ⓘ Iodargyrite | AgI |
| Ba | Barium | |
| Ba | ⓘ Baryte | BaSO4 |
| Ba | ⓘ Hollandite | Ba(Mn64+Mn23+)O16 |
| Ba | ⓘ Romanèchite | (Ba,H2O)2(Mn4+,Mn3+)5O10 |
| W | Tungsten | |
| W | ⓘ Hübnerite | MnWO4 |
| W | ⓘ Scheelite | Ca(WO4) |
| Au | Gold | |
| Au | ⓘ Calaverite | AuTe2 |
| Au | ⓘ Native Gold var. Electrum | (Au,Ag) |
| Au | ⓘ Native Gold | Au |
| Pb | Lead | |
| Pb | ⓘ Aikinite | CuPbBiS3 |
| Pb | ⓘ Altaite | PbTe |
| Pb | ⓘ Anglesite | PbSO4 |
| Pb | ⓘ Bindheimite | Pb2Sb2O6O |
| Pb | ⓘ Bournonite | PbCuSbS3 |
| Pb | ⓘ Caledonite | Pb5Cu2(SO4)3(CO3)(OH)6 |
| Pb | ⓘ Cerussite | PbCO3 |
| Pb | ⓘ Descloizite var. Dechenite | PbZn(VO4,AsO4)(OH) |
| Pb | ⓘ Descloizite | PbZn(VO4)(OH) |
| Pb | ⓘ Galena | PbS |
| Pb | ⓘ Galenobismutite | PbBi2S4 |
| Pb | ⓘ Kobellite | Pb22Cu4(Bi,Sb)30S69 |
| Pb | ⓘ Lanarkite | Pb2(SO4)O |
| Pb | ⓘ Native Lead | Pb |
| Pb | ⓘ Leadhillite | Pb4(CO3)2(SO4)(OH)2 |
| Pb | ⓘ Lillianite | Pb3-2xAgxBi2+xS6 |
| Pb | ⓘ Linarite | PbCu(SO4)(OH)2 |
| Pb | ⓘ Litharge | PbO |
| Pb | ⓘ Massicot | PbO |
| Pb | ⓘ Mimetite | Pb5(AsO4)3Cl |
| Pb | ⓘ Minium | Pb3O4 |
| Pb | ⓘ Plumbojarosite | Pb0.5Fe33+(SO4)2(OH)6 |
| Pb | ⓘ Pyromorphite | Pb5(PO4)3Cl |
| Pb | ⓘ Aragonite var. Lead-bearing Aragonite | (Ca,Pb)CO3 |
| Pb | ⓘ Vanadinite | Pb5(VO4)3Cl |
| Pb | ⓘ Wulfenite | Pb(MoO4) |
| Pb | ⓘ Galena var. Silver-bearing Galena | PbS with Ag |
| Pb | ⓘ Oxyplumboroméite | Pb2Sb2O6O |
| Bi | Bismuth | |
| Bi | ⓘ Aikinite | CuPbBiS3 |
| Bi | ⓘ Bismuthinite | Bi2S3 |
| Bi | ⓘ Bismutite | (BiO)2CO3 |
| Bi | ⓘ Galenobismutite | PbBi2S4 |
| Bi | ⓘ Kobellite | Pb22Cu4(Bi,Sb)30S69 |
| Bi | ⓘ Lillianite | Pb3-2xAgxBi2+xS6 |
| Bi | ⓘ Matildite | AgBiS2 |
| U | Uranium | |
| U | ⓘ Uraninite | UO2 |
Other Databases
| Wikipedia: | https://en.wikipedia.org/wiki/Leadville_mining_district |
|---|---|
| Wikidata ID: | Q6508807 |
Localities in this Region
- Colorado
- Lake County
- A M Mine
- A V Mine
- Adams Shaft
- Agwalt Tunnel
- Alicante
- Alice Placer Mine
- Altoona
- American Eagle
- Antioch Quarry
- Arkansas River Placers
- Badger State Mine
- Bald Mountain Shaft
- Ballard - President - Big Six Mine
- Ballard Mine
- Bangkok Mine
- Banker Mine
- Banner Mine
- Bates
- Beck Shaft
- Belcher Shaft
- Belle Placer
- Ben Burb Shaft
- Benton Mine
- Bessie Wilgus Shaft
- Big Chicago
- Big Chief Mine
- Bison Shaft
- Black Prince
- Blanche
- Blind Tom
- Blonger Mine
- Bob Ingersol
- Boehmer
- Bohn Mine
- Bon Air
- Buckeye Mine
- Bullseye Mine
- Burton Placer
- Cady Mine
- Canterbury Hill
- Capitol Northern Mine
- Casey
- Castle View Mine
- Cato Mining Company
- Chalk Mountain
- Chautauquan
- Chippewa Number 3 Mine
- Clarendon Placer
- Clear Grit
- Cleveland
- Cloud City Shaft
- Cloverleaf
- Codfish Balls
- Colorado; Little Frying Pan Gulches Occurrence
- Colorado Belle Placer
- Colorado Princess
- Columbia Tunnel (Columbia No. 2 Mine)
- Comstock - Hopemore - Hunter (Comstock Copper Mine 0080650154; Comstock-Hopemore; Hopemore Mine 0080650226)
- Comstock Copper Mine
- Contract Shaft
- Cora Belle Mine
- Coronado Mine
- Daly
- Delante Shaft
- Delmonte Mine
- Diamond Mine (Diamond Shaft)
- Dillion
- Dodridge
- Doublecheck
- Dyer Mine
- E Flagstaff
- Eclipse
- Eliza Hamburg
- Ella Beeler
- Elva Elma tunnel
- Emily Shaft Hollis Property
- Emmett Mine
- Empire Gulch
- Estay Tunnel
- Evans Gulch
- Evelyn Mine
- Famous Mine
- Fanny Rawlings (Fanny Rawlins)
- Finnerty
- Fitzhugh
- Forepaugh Mine
- Forest Rose
- Free America No. 2
- Fryer Hill
- Gallagher Old Mikado
- Gambetta Mine
- Garibaldi Tunnel
- Giant
- Gleason
- Gold Occurrence (MRDS - 10016193)
- Gold Occurrence (MRDS - 10016201)
- Gold Occurrence (MRDS - 10091039)
- Gold Occurrence (MRDS - 10091040)
- Gold Occurrence (MRDS - 10091043)
- Gold Occurrence (MRDS - 10091047)
- Gravel Pit (MRDS - 10142418)
- Gravel Pit (MRDS - 10190863)
- Gravel Pit (MRDS - 10191102)
- Gravel Pit (MRDS - 10191341)
- Gravel Pit (MRDS - 10191394)
- Gravel Pit (MRDS - 10207450)
- Gray Eagle Mine
- Great O'Sullivan Mine
- Green Mountain
- Habendum
- Hard To Beat
- Harvard No. 1 Mine
- Hayden Shaft
- Haytrosser Mine
- Hazard Mine
- Hegeman Mine
- Hellena - Ibex Extension
- Hess Tunnel
- Hibschle Mine
- Highland Mary Tunnel
- Hoffer
- Home Extension Mine
- Hope Mine
- Hopemore
- Houston Tunnel
- Howard Shaft
- Hugh Shaft
- Hussy
- Ida Nyce Shaft
- Iowa Gulch
- Iron Hill
- J. R. Loker
- Jamie Lee
- Jason Mine
- Johnson
- Jones Pit
- Kathy K Mine
- Katy
- Keene Shaft
- Keno Shaft
- Kleff Shaft
- Kroll
- Last Chance Mine
- Last Chip No. 1
- Last Chip No. 2
- Last Chip No. 3
- Lazy Bill
- ⭔Leadville
- Lake County
- Colorado
- Lake County
- Leadville
- Carbonate Hill
- Cord Mine
- Fryer Hill
- Iowa Gulch
- Irene Mine
- Little Ellen Hill
- Little Stray Horse Gulch
- May Day Mine
- Penrose Mine
- Printer Boy Hill
- Rock Hill
- Yankee Hill
- Leadville Occurrence
- Little Alice Tunnel
- Little Bob Shaft
- Little Galesburg
- Little Keystone Shaft (Dinero)
- Little Major
- Little Miami
- Little Nellie
- Little Prince
- Little Sister Placer
- Little Winnie Shaft
- Long and Derry Hill
- Lower California Gulch Placers
- Luema
- Luzerne
- Lyons Placer
- Mahala Mine
- Mammoth Mine
- Manganese mine (MRDS - 10166517)
- Manganese mine (MRDS - 10215213)
- Manganese mine (MRDS - 10263772)
- McCormick Mine
- Midas Mine
- Midland Shaft
- Mikado New
- Miller
- Minnie Pump Shaft
- Modest Barrel
- Modest Girl
- Modoc Mine
- Moffat Mine
- Monarch Mine
- Montgomery
- Moose Mine
- Mosquito Range
- Mt Massive Placer
- Murray Tunnel
- National Placer
- Negro Infant
- Neptune
- Nevada Tunnel
- New Cambetta
- New England
- New York
- Newell
- Newton and Flagstaff Claims
- North Mike
- Northern Shaft
- O'Donovan Rosa Shaft
- O K
- Ollie Reed
- Only Chance
- Orion Mine
- Oro City Shaft
- Ostrom
- Page Tunnel
- Peerless Tunnel
- Pendry Mine
- Penn No. 3 Mine
- Pilot
- Pima Placer
- Pittsburgh
- Ponsardine Shaft
- Porter Mine
- Pos Shaft
- President shaft
- Price Mine
- Prospect Mountain
- Pyrenees Mine
- Quadrilateral Mine
- Red Head Shaft
- Reindeer Shaft
- Result Mine
- Reveille
- Revenue No. 1
- Rex Mine
- Saguache Placers
- Savage Mine
- Sawatch Tunnel (Siwatch Tunnel)
- Seneca Mine
- Seventy-Six
- Silver Spoon
- Sixth Street Mine
- St Ann
- St Louis Mine
- St Louis Tunnel
- St Marys
- Star Mine
- Star of Hope
- Star of the West Mine
- Starr Placer Coronado
- Steel Spring
- Stevens Mine
- Stonewall Jackson Shaft
- Sullivan Mine
- Sunday No. 2 Mine
- Surprise Shaft
- Tarshish
- Tenderfoot Shaft
- Thespian Mine
- Tip Top Mine
- Triumph
- Uintah Placer
- Ulster Newton
- Union
- Upper California Gulch Placers
- Upper Iowa Gulch
- Vanderbilt Mine
- Venier Mine
- Venture Shaft
- Villa Shaft
- Vining Shaft
- Washburne
- Waterloo
- Webster Tunnel
- Weston Pass District
- White Cap Mine
- Whiteside Shaft
- William Wallale Mine
- Winnie Mine
- Wolcott Mine
- Wootten Placer
- Wright
- X Shaft
- Yale Tunnel
- Younger
- Zinc-Lead occurrence (MRDS - 10016203)
- Zinc - Lead Occurrence (MRDS - 10091037)
- Zinc - Lead Occurrence (MRDS - 10091041)
- Zuni Placer
- Leadville
- Lake County
Other Regions, Features and Areas that Intersect
North AmericaContinent
- Rocky MountainsMountain Range
North America PlateTectonic Plate
- Great Plains DomainDomain
- Southern Rocky MountainsOrogenic Belt
USA
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References
(n.d.) Minerals Availability System (MAS), U.S. Bureau of Mines.file ID #80650007
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Leadville Mining District, Lake County, Colorado, USA