Murray Basin, Australiai
| Regional Level Types | |
|---|---|
| Murray Basin | Basin |
| Australia | Country |
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Type:
Largest Settlements:
| Place | Population |
|---|---|
| Shepparton | 38,773 (2017) |
| Mildura | 30,016 (2013) |
| Murray Bridge | 19,577 (2013) |
| Echuca | 19,457 (2013) |
| Wangaratta | 16,845 (2013) |
| Horsham | 14,285 (2013) |
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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-localities163 valid minerals. 9 (TL) - type locality of valid minerals.
Rock Types Recorded
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Rock list contains entries from the region specified including sub-localities
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Alphabetical List Tree DiagramDetailed Mineral List:
| ⓘ Aegirine Formula: NaFe3+Si2O6 |
| ⓘ Aikinite Formula: PbCuBiS3 References: Hong, Wei, Fabris, Adrian, Wise, Tom, Collins, Alan S., Gilbert, Sarah, Selby, David, Curtis, Stacey, Reid, Anthony J. (2023) Metallogenic Setting and Temporal Evolution of Porphyry Cu-Mo Mineralization and Alteration in the Delamerian Orogen, South Australia: Insights From Zircon U-Pb, Molybdenite Re-Os, and In Situ White Mica Rb-Sr Geochronology. Economic Geology, 118 (6) 1291-1318 doi:10.5382/econgeo.5012 |
| ⓘ Albite Formula: Na(AlSi3O8) Description: "Albite, previously recorded as oligoclase, forms white to translucent wedge-shaped crystals up to 2.5 cm long in cavities with quartz and orthoclase." References: |
| ⓘ Alunogen Formula: Al2(SO4)3 · 17H2O |
| ⓘ Analcime Formula: Na(AlSi2O6) · H2O Description: "In a pegmatoidal phase of the leucetite at the Cosgrove quarry analcime has been identified forming subhedral, turbid crystals possibly replacing primary leucite. Analcime also forms white, opaque prisms about 1.5mm long replacing nepheline in vesicles in the leucetite." |
| ⓘ Anatase Formula: TiO2 Localities: Description: "Bipyramidal bluish black crystals of anatase up to 1 mm long have been found in cavities in the Lake Boga granite. They may be associated with kidwellite." |
| ⓘ Andalusite Formula: Al2(SiO4)O |
| ⓘ Anorthite Formula: Ca(Al2Si2O8) Localities: Murchison meteorite, Murchison, City of Greater Shepparton, Victoria, Australia Karoonda meteorite, Karoonda, District Council of Karoonda East Murray, South Australia, Australia Moama meteorite, Womboota, Cadell Co., New South Wales, Australia Pinnaroo meteorite, Pinnaroo, Southern Mallee District Council, South Australia, Australia |
| ⓘ Antigorite Formula: Mg3(Si2O5)(OH)4 |
| ⓘ 'Apatite' Formula: Ca5(PO4)3(Cl/F/OH) |
| ⓘ Aragonite Formula: CaCO3 Localities: Murchison meteorite, Murchison, City of Greater Shepparton, Victoria, Australia Bungunnia station, Mid Murray Council, South Australia, Australia Henschke Quarry (Naracoorte Quarrying Co.), Naracoorte, Naracoorte Lucindale Council, South Australia, Australia North Stromatolite Lake, Coorong Lakes, Coorong District Council, South Australia, Australia |
| ⓘ Atacamite Formula: Cu2(OH)3Cl References: |
| ⓘ Augite Formula: (CaxMgyFez)(Mgy1Fez1)Si2O6 Localities: Murchison meteorite, Murchison, City of Greater Shepparton, Victoria, Australia Karoonda meteorite, Karoonda, District Council of Karoonda East Murray, South Australia, Australia Moama meteorite, Womboota, Cadell Co., New South Wales, Australia Pinnaroo meteorite, Pinnaroo, Southern Mallee District Council, South Australia, Australia |
| ⓘ Augite var. Fassaite Formula: (Ca,Na)(Mg,Fe2+,Al,Fe3+,Ti)[(Si,Al)2O6] |
| ⓘ Autunite Formula: Ca(UO2)2(PO4)2 · 10-12H2O Description: Small flakes of autunite were originally recorded from Wycherproof in 1976. Ten years later it had been found as pale to bright yellow platy crystals up to 2mm on edge in a pegmatite matrix. Some of the more translucent crystals may be meta-autunite, and it is also difficult to distinguish between autunite and saleeite at this locality without chemical tests. |
| ⓘ Azurite Formula: Cu3(CO3)2(OH)2 Localities: Description: "Powdery coatings, fibrous tuffs and thin films of malachite and azurite have been found on joints in the granite." |
| ⓘ Baryte Formula: BaSO4 |
| ⓘ Beryl Formula: Be3Al2(Si6O18) Description: "Several colourless prismatic crystals of beryl up to 1.5 cm long have been found in one clay-filled cavity in the Lake Boga granite." |
| ⓘ 'Biotite' Formula: K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 |
| ⓘ Bismoclite Formula: BiOCl References: |
| ⓘ Bleasdaleite (TL) Formula: (Ca,Fe3+)2Cu5(Bi,Cu)(PO4)4(H2O,OH,Cl)13 Type Locality: Description: "In April 1995 a boulder was broken open of pegmatite in the quarry, exposing copper mineralisation consisting of massive supergene chalcocite partially altered to a suite of secondary copper and silver minerals, including one containing Ca,Cu,Bi,P and Cl. (Bleasdaleite).
The chalcocite in the bleasdaleite-bearing boulder forms massive patches up to about 5 cm across, occupying space between large orthoclase crystals. The rock around these patches is stained green, possibly due to malachite. Thin sections show that much of the chalcocite has been corroded and altered to veinlets of covellite. Secondary minerals have precipitated on the corroded surface of the chalcocite-covelliet. Pseudomalachite and chalcosiderite/turquoise form globules and crusts, while rare ulrichit, libethenite, torbernite and iodargyrite are present as scattered crystals with dimensions less than 1 mm. Bleasdaleite itself occurs as thin, dark brown scaly crusts and hemispherical clusters up to about 0.1 mm across. Scanning electron microscopy reveals delicate tabular crystals forming open rosette-like clusters and linings. The crystals reach up to about 20 micron across but are less than 1 micron thick. The lustre on broken surfaces is resinous, streak pale brown. Thin sections show bleasdaleite crystals are transparent and also reveal a well developed (001) cleavage." References: |
| ⓘ Bornite Formula: Cu5FeS4 References: Hong, Wei, Fabris, Adrian, Wise, Tom, Collins, Alan S., Gilbert, Sarah, Selby, David, Curtis, Stacey, Reid, Anthony J. (2023) Metallogenic Setting and Temporal Evolution of Porphyry Cu-Mo Mineralization and Alteration in the Delamerian Orogen, South Australia: Insights From Zircon U-Pb, Molybdenite Re-Os, and In Situ White Mica Rb-Sr Geochronology. Economic Geology, 118 (6) 1291-1318 doi:10.5382/econgeo.5012 |
| ⓘ Cacoxenite Formula: Fe3+24AlO6(PO4)17(OH)12 · 75H2O References: |
| ⓘ Calcite Formula: CaCO3 Localities: Reported from at least 7 localities in this region. |
| ⓘ 'Calcium Amphibole Subgroup' Formula: AnCa2(Z2+5-mZ3+m)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 References: Hong, Wei, Fabris, Adrian, Wise, Tom, Collins, Alan S., Gilbert, Sarah, Selby, David, Curtis, Stacey, Reid, Anthony J. (2023) Metallogenic Setting and Temporal Evolution of Porphyry Cu-Mo Mineralization and Alteration in the Delamerian Orogen, South Australia: Insights From Zircon U-Pb, Molybdenite Re-Os, and In Situ White Mica Rb-Sr Geochronology. Economic Geology, 118 (6) 1291-1318 doi:10.5382/econgeo.5012 |
| ⓘ 'Calcium Amphibole Subgroup var. Hornblende' Formula: AnCa2(Z2+5-mZ3+m)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 References: Hong, Wei, Fabris, Adrian, Wise, Tom, Collins, Alan S., Gilbert, Sarah, Selby, David, Curtis, Stacey, Reid, Anthony J. (2023) Metallogenic Setting and Temporal Evolution of Porphyry Cu-Mo Mineralization and Alteration in the Delamerian Orogen, South Australia: Insights From Zircon U-Pb, Molybdenite Re-Os, and In Situ White Mica Rb-Sr Geochronology. Economic Geology, 118 (6) 1291-1318 doi:10.5382/econgeo.5012 |
| ⓘ Cassiterite Formula: SnO2 |
| ⓘ Celestine Formula: SrSO4 |
| ⓘ Chalcanthite Formula: CuSO4 · 5H2O |
| ⓘ Chalcocite Formula: Cu2S Localities: Description: "The chalcocite in the bleasdaleite-bearing boulder forms massive patches up to about 5 cm across, occupying space between large orthoclase crystals. The rock around these patches is stained green, possibly due to malachite. Thin sections show that much of the chalcocite has been corroded and altered to veinlets of covellite. Secondary minerals have precipitated on the corroded surface of the chalcocite-covellite." |
| ⓘ Chalcopyrite Formula: CuFeS2 Localities: Lake Boga granite quarry, Lake Boga, Swan Hill Rural City, Victoria, Australia Karoonda meteorite, Karoonda, District Council of Karoonda East Murray, South Australia, Australia Currency Creek Copper Mine, Goolwa, Alexandrina Council, South Australia, Australia Bendigo prospect, Warnes, Pastoral Unincorporated Area, South Australia, Australia Description: "Small grains of chalcopyrite are relatively common throughout the granite. In one cavity a crystal measuring 1.2 cm and coated with sooty blue chalcocite or covellite was collected. Grains of chalcopyrite or covellite was collected. Grains of chalcopyrite in the granite are often ringed with yellowish alteration halos, and on some surfaces thin stains of azurite and malachite occur. The chalcopyrite is the most probable source for copper in the later-formed phosphates and uranyl-phosphates. Brownish masses consisting of a mixture of iron oxides and chalcocite replacing chalcopyrite occur in some veins and cavities." |
| ⓘ Chalcosiderite Formula: CuFe3+6(PO4)4(OH)8 · 4H2O Description: "Pale blue, pale green or bluish green globular crusts and individual spheres or hemispheres of minerals in the composition series between turquoise and chalcosiderite are widespread in the Lake Boga granite quarry. They occur most often lining small miarolitic cavities but may also be found on joint planes and in cavities etched in fluorapatite. Individual globules may reach close to 1 mm across. Well formed crystals have not been observed. Massive partial replacements of orthoclase crystals by turquoise have been collected, but are very rare. As an early-formed secondary hydrothermal mineral, turquoise/chalcosiderite is found with most of the other secondary phosphates from Lake Boga. Microprobe analyses of the bluish green crusts show the compositions fall between ferrian turquoise and aluminan chalcosiderite." |
| ⓘ Cheralite Formula: CaTh(PO4)2 |
| ⓘ Chlorapatite Formula: Ca5(PO4)3Cl |
| ⓘ Chlorargyrite Formula: AgCl Description: "Highly lustrous single crystals of brownish green chlorargyrite less than 0.5 mm across occur very rarely in cavities in the granite. They may be found with orange-brown clay, turquoise/chalcosiderite and, more rarely, with torbernite. The source of the silver in the granite is unknown." |
| ⓘ 'Chlorite Group' |
| ⓘ Chromite Formula: Fe2+Cr3+2O4 Localities: Murchison meteorite, Murchison, City of Greater Shepparton, Victoria, Australia Barratta meteorite, Barratta, Townsend Co., New South Wales, Australia Moama meteorite, Womboota, Cadell Co., New South Wales, Australia Pinnaroo meteorite, Pinnaroo, Southern Mallee District Council, South Australia, Australia |
| ⓘ Chrysocolla Formula: Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| ⓘ 'Clay minerals' References: https://www.mindat.org/locentry-11351.htmlIdentification: Visual Identification |
| ⓘ Clinoenstatite Formula: MgSiO3 |
| ⓘ 'Clinopyroxene Subgroup' Localities: Description: Clinopyroxene — The dominant pyroxene is Ca-poor and frequently twinned clinopyroxene (Fs~20) [labelled 'clinohypersthene' by Mason & Wiik]. |
| ⓘ Connellite Formula: Cu19(SO4)(OH)32Cl4 · 3H2O |
| ⓘ Corundum Formula: Al2O3 |
| ⓘ Corundum var. Sapphire Formula: Al2O3 |
| ⓘ Covellite Formula: CuS Localities: Description: "The chalcocite in the bleasdaleite-bearing boulder forms massive patches up to about 5 cm across, occupying space between large orthoclase crystals. The rock around these patches is stained green, possibly due to malachite. Thin sections show that much of the chalcocite has been corroded and altered to veinlets of covellite. Secondary minerals have precipitated on the corroded surface of the chalcocite-covellite." |
| ⓘ Crandallite Formula: CaAl3(PO4)(PO3OH)(OH)6 Description: "Crandalite occurs rarely as glistening white hemispheres up to 0.3 mm across in miarolitic cavities. As well, pale blue crandallite with a pearly lustre forms rare cavity infillings and prismatic radiating crystal sprays a few mm across, possibly pseudomorphs after wavellite. Microprobe analysis show this pale blue variety has a composition between crandallite and goyazite and contains a small amount of copper. It is best refered to as cuprian strontian crandallite." References: |
| ⓘ Cronstedtite Formula: Fe2+2Fe3+((Si,Fe3+)2O5)(OH)4 References: |
| ⓘ Cuprite Formula: Cu2O |
| ⓘ Cyrilovite Formula: NaFe3+3(PO4)2(OH)4 · 2H2O Localities: Description: "Cyrilovite forms bright sparkling yellow drusy crusts and dull brownish yellow globules in miarolitic cavities in the Lake Boga granite. The crusts are made up of transparent golden yellow crystals up to 0.05 mm across." |
| ⓘ Daubréelite Formula: Fe2+Cr3+2S4 |
| ⓘ Diamond Formula: C |
| ⓘ Digenite Formula: Cu9S5 |
| ⓘ Diopside Formula: CaMgSi2O6 |
| ⓘ Djurleite Formula: Cu31S16 |
| ⓘ Dolomite Formula: CaMg(CO3)2 Localities: Reported from at least 6 localities in this region. |
| ⓘ Enstatite Formula: Mg2Si2O6 |
| ⓘ Eosphorite Formula: Mn2+Al(PO4)(OH)2 · H2O Description: "Attractive honey-brown to pinkish brown, tapering prismatic crystals of eosphorite occur in cavities in the Wycherproof pegmatite veins. Drusy crusts of eosphorite crystals up to 0.2mm have been found in a vertical seam in the adjacent granite. In the pegmatites, the larger crystals often form sheaf-like aggregates, with individual crystals up to 1cm long. The eosphorite crystals often appear dull due to a thin coating of cyrilovite." |
| ⓘ Epidote Formula: (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| ⓘ Epsomite Formula: MgSO4 · 7H2O |
| ⓘ Eskolaite Formula: Cr2O3 |
| ⓘ 'Fayalite-Forsterite Series' Localities: Murchison meteorite, Murchison, City of Greater Shepparton, Victoria, Australia Karoonda meteorite, Karoonda, District Council of Karoonda East Murray, South Australia, Australia Barratta meteorite, Barratta, Townsend Co., New South Wales, Australia Pinnaroo meteorite, Pinnaroo, Southern Mallee District Council, South Australia, Australia |
| ⓘ Ferberite Formula: FeWO4 Description: "Small clusters of black tabular crystals of ferberite up to 2 mm across occur in miarolitic cavities in the Lake Boga granite."
Ferberite has also been found in crystalline masses up to 5 cm across embedded in granite. |
| ⓘ Fluorapatite Formula: Ca5(PO4)3F |
| ⓘ Fluorapatite var. Carbonate-rich Fluorapatite Formula: Ca5(PO4,CO3)3(F,O) Localities: Description: "Attractive well-formed fluorapatite crystals are found in miarolitic cavities, particularly in the upper levels of the quarry. In general, crystals have simple hexagonal to near circular outlines, and range from tabular to blocky and, less often to prismatic. Complex terminations are absent, and crystals usually have a flat lustrous pinacoids face, often showing growth outlines. Some crystals show weakly developed low angle pyramidal faces. The prism faces are almost always striated. The largest crystal collected include tabular varieties 4.5 cm across and 1 cm thick, and prisms 2.5 cm long and 1.2 cm across. Colour in the larger crystals generally ranges from shades of dull greyish to bluish green and deep opaque blue. Most crystals show colour zoning involving these shades, as well as near colourless and pale purple zones. The most common scheme is for pale blue translucent crystals to have dark blue bands at the upper and lower pinacoids. Sparklings of smaller crystals from opaque cream or grey to colourless or transparent blue or mauve are also found. Apatite has also been found rarely at Lake Boga as lustrous, fibrous globular dark green linings to cavities." |
| ⓘ Fluorite Formula: CaF2 Description: "Thin seams of purple fluorite have been found on joint planes in the granite." References: |
| ⓘ Fluor-schorl Formula: NaFe2+3Al6(Si6O18)(BO3)3(OH)3F Description: Fluor-schorl is the dominant tourmaline at Lake Boga occurring as black interlocking crystals masses up to 15 cm across in the granite, also as single black crystals up to 5 cm long in miarolitic cavities (pers. com. S.Mills) References: Dyar, M. Darby, Meyer, Hans-Peter, Rossman, George R., Henry, Darrell J., Prem, Markus, Ludwig, Thomas, Nasdala, Lutz, Lengauer, Christian L., Tillmanns, Ekkehart, Niedermayr, Gerhard, Ertl, Andreas, Kolitsch, Uwe, Dyar, M. Darby, Meyer, Hans-Peter, Rossman, George R., Henry, Darrell J., Prem, Markus, Ludwig, Thomas, Nasdala, Lutz, Lengauer, Christian L., Tillmanns, Ekkehart, Niedermayr, Gerhard (2016) Fluor-schorl, a new member of the tourmaline supergroup, and new data on schorl from the cotype localities. European Journal of Mineralogy, 28 (1) 163-177 doi:10.1127/ejm/2015/0027-2501 |
| ⓘ Forsterite Formula: Mg2SiO4 |
| ⓘ 'Garnet Group' Formula: X3Z2(SiO4)3 |
| ⓘ Geerite Formula: Cu8S5 |
| ⓘ 'Glass' |
| ⓘ Glauberite Formula: Na2Ca(SO4)2 |
| ⓘ Goethite Formula: Fe3+O(OH) References: |
| ⓘ Graphite Formula: C |
| ⓘ Greenalite Formula: (Fe2+,Fe3+)2-3Si2O5(OH)4 |
| ⓘ Grossite Formula: CaAl4O7 |
| ⓘ Gypsum Formula: CaSO4 · 2H2O Localities: Reported from at least 28 localities in this region. Habit: Combination of l {111} and e {103} faces. Rounded appearance. Colour: Reddish |
| ⓘ Gypsum var. Selenite Formula: CaSO4 · 2H2O Localities: Wentworth, Wentworth Co., New South Wales, Australia Casuarina Gulch, Six Mile Creek, Neilpo Station, Wentworth, Wentworth Co., New South Wales, Australia Chinkapook, Swan Hill Rural City, Victoria, Australia Chinkapook Lake, Towan Plains Faunal Reserve (Towan Plains Nature Conservation Reserve), Turoar, Swan Hill Rural City, Victoria, Australia |
| ⓘ Halite Formula: NaCl Localities: Pink Lakes, Linga, Mildura, Rural City of Mildura, Victoria, Australia Chinkapook Lake, Towan Plains Faunal Reserve (Towan Plains Nature Conservation Reserve), Turoar, Swan Hill Rural City, Victoria, Australia Myall Lakes Reserve, Bolton, Swan Hill Rural City, Victoria, Australia Spectacle Lakes, Hattah, Rural City of Mildura, Victoria, Australia |
| ⓘ Halotrichite Formula: FeAl2(SO4)4 · 22H2O |
| ⓘ Hematite Formula: Fe2O3 |
| ⓘ Hexahydrite Formula: MgSO4 · 6H2O |
| ⓘ Hexamolybdenum Formula: (Mo,Ru,Fe,Ir,Os) |
| ⓘ Hibonite Formula: CaAl12O19 |
| ⓘ Hydromagnesite Formula: Mg5(CO3)4(OH)2 · 4H2O |
| ⓘ 'Hypersthene' Formula: (Mg,Fe)SiO3 |
| ⓘ Ilmenite Formula: Fe2+TiO3 Localities: Reported from at least 6 localities in this region. |
| ⓘ Iodargyrite Formula: AgI Description: "A pegmatite boulder containing patches of massive chalcocite up to 4 cm across was found in April 1995. The chalcocite occupies cavities between large orthoclase crystals. Alteration of the chalcocite has produced a suite of secondary copper phosphate minerals in small cavities. In some cavities are colourless, waxy, platy to tabular crystals, up to about 1.0 mm across, which have been identified as a polymorph of silver iodide, probably iodargyrite." References: |
| ⓘ Isocubanite Formula: CuFe2S3 |
| ⓘ Kaolinite Formula: Al2(Si2O5)(OH)4 |
| ⓘ 'K Feldspar' References: Hong, Wei, Fabris, Adrian, Wise, Tom, Collins, Alan S., Gilbert, Sarah, Selby, David, Curtis, Stacey, Reid, Anthony J. (2023) Metallogenic Setting and Temporal Evolution of Porphyry Cu-Mo Mineralization and Alteration in the Delamerian Orogen, South Australia: Insights From Zircon U-Pb, Molybdenite Re-Os, and In Situ White Mica Rb-Sr Geochronology. Economic Geology, 118 (6) 1291-1318 doi:10.5382/econgeo.5012 |
| ⓘ Kidwellite Formula: NaFe3+9+x(PO4)6(OH)11 · 3H2O, x = 0.33 Localities: Description: "At Lake Boga, cream to pale yellow spherical clusters up to 0.3 mm across of delicate platy crystals of kidwellite have been found in miarolitic cavities. On a few specimens the mineral forms a continuous furry coating on the cavity walls. When broken, the spheres have a fibrous silky appearance in contrast to the waxy, globular, cream or pale yellow clay mineral which may be associated. Kidwellite occurs with cyrilovite, turquoise/chalcosiderite, torbernite or saleeite." |
| ⓘ Kosnarite Formula: KZr2(PO4)3 Description: "Rhombohedral, vitreous, grey blue crystals up to 0.5mm acros occurring with eosphorite and cyrilovite in a 1cm wide miarolic cavity have been identified as kosnarite." |
| ⓘ Kunatite (TL) Formula: CuFe3+2(PO4)2(OH)2 · 4H2O Type Locality: Description: "Kunatite was first found about 1990, and occurs on only 7 or 8 small pieces of granite matrix, which may have been the contents of a single miarolitic cavity. kunatite from Lake Boga occurs as acicular to lath-like microcrystals that are rapidially intergrown to form compactto slightly open spheres, hemispheres and flattened sprays up to about 0.25mm across. Individual fibrous crystals are up to 30 micron long and 5 micron thick. The only supergene mineral associated with kunatite is chalcosiderite/turquoise. Thin blades of manganoan ferberite occur on several of the specimens, but this is regarded as an accidental association. The matrix minerals are smoky quartz, white albite, cream orthoclase and muscovite." |
| ⓘ Lakebogaite (TL) Formula: CaNaFe3+2H(UO2)2(PO4)4(OH)2 · 8H2O Type Locality: Description: "Lakebogaite occurs as bright lemon-yellow transparent prismatic crystals up to 0.4 mm across. The crystals have a vitreous luster and a pale yellow streak. It is associated with meurigite-Na, torbernite and saleeite on a matrix of microcline, albite, smoky quarz, and muscovite." |
| ⓘ Lawrencite Formula: (Fe2+,Ni)Cl2 Locality: Pinnaroo meteorite, Pinnaroo, Southern Mallee District Council, South Australia, Australia Description: After some initial missteps, acetone washing was used to quell further deterioration. |
| ⓘ Lazulite Formula: MgAl2(PO4)2(OH)2 Colour: Blue Description: Blue crystals in pegmatitic granite. Ex Ruth Coulsell Collection. References: |
| ⓘ Leucite Formula: K(AlSi2O6) |
| ⓘ Leucophosphite Formula: KFe3+2(PO4)2(OH) · 2H2O Localities: Description: "Leucophosphite from Lake Boga forms hemispherical clusters up to 1 mm across consisting of translucent, pale pink to brownish pink, tabular crystals which appear slightly twisted. They occur with globular cyrilovite, kidwellite and a pale yellow clay mineral in miarolitic cavities." |
| ⓘ 'Leucoxene' |
| ⓘ Libethenite Formula: Cu2(PO4)(OH) Description: "Crusts and hemispherical tufts and sprays of transparent dark green to olive green libethenite crystals occur in miarolitic cavities in the Lake Boga granite. Crystals are prismatic and up to 2.5 mm long, ranging from finely fibrous needles to more stubby individuals which are well-terminated. Small cavities may be completely lined with inwardly pointing libethenite crystals. The minerals most frequently associated with libethenite are turquoise/chalcosiderite, ulrichite, pseudomalachite and sampleite." |
| ⓘ 'Limonite' |
| ⓘ Machiite (TL) Formula: Al2Ti3O9 Type Locality: |
| ⓘ Mackinawite Formula: FeS |
| ⓘ Magnesite Formula: MgCO3 References: |
| ⓘ Magnetite Formula: Fe2+Fe3+2O4 Localities: Reported from at least 6 localities in this region. |
| ⓘ Magnetite var. Titanium-bearing Magnetite Formula: Fe2+(Fe3+,Ti)2O4 |
| ⓘ Malachite Formula: Cu2(CO3)(OH)2 Localities: Description: "Powdery coatings, fibrous tuffs and thin films of malachite and azurite have been found on joints in the granite." |
| ⓘ 'Melilite Group' Formula: Ca2M(XSiO7) |
| ⓘ Merrillite Formula: Ca9NaMg(PO4)7 |
| ⓘ Meta-autunite Formula: Ca(UO2)2(PO4)2 · 6H2O |
| ✪ Metanatroautunite Formula: Na(UO2)(PO4)(H2O)3 Habit: As clusters to 4 mm. Colour: lemon yellow Description: "The metanatroautunite forms crystals and clusters up to 4 mm across on limonite-coated joint planes and in miarolitic cavities. Crystals may appear to be aggregates of intergrown plates with slightly rounded edges. In some crystals with more blocky habits, these plates may be separated. The upper surface of these crystals tend to be slightly concave and crinkled partly due to dehydration. Rare intergrowths with saleeite or torbernite occur.
Metanatroautunite is initially difficult to distinguish from saleeite at Lake Boga. However, metanatroautunite tends to be translucent with a pearly or slightly greasy lustre, and be bright lemon yellow. This colour may be slightly more intense on the edge than on the upper face. Saleeite at Lake Boga is generally transparent and more golden yellow." |
| ⓘ Metatorbernite Formula: Cu(UO2)2(PO4)2 · 8H2O Description: "A few opaque dull-green microcrystals of metatorbernite have been found in small etch cavities." |
| ⓘ Meurigite-K Formula: KFe3+8(PO4)6(OH)7 · 6.5H2O Description: Originally thought to be a mineral resembling potassian kidwellite (Birch 1994) has now been confirmed as meurigite-K.
"At Wycheproof, meurigite occurs as yellow spheres and hemispheres up to about 0.2 mm across, with a silky white to cream fibrous internal structure. It is accompanied by rockbridgeite, cyrilovite and leucophosphite in small etch cavities in the granite pegmatite veins." |
| ⓘ Meurigite-Na Formula: NaFe3+8(PO4)6(OH)7 · 6.5H2O |
| ⓘ Microcline Formula: K(AlSi3O8) |
| ✪ Mirabilite Formula: Na2SO4 · 10H2O |
| ⓘ Moissanite Formula: SiC References: Heck, Philipp R., Greer, Jennika, Kööp, Levke, Trappitsch, Reto, Gyngard, Frank, Busemann, Henner, Maden, Colin, Ávila, Janaína N., Davis, Andrew M., Wieler, Rainer (2020) Lifetimes of interstellar dust from cosmic ray exposure ages of presolar silicon carbide. Proceedings of the National Academy of Sciences, 117 (4) 1884-1889 doi:10.1073/pnas.1904573117 |
| ⓘ Molybdenite Formula: MoS2 Localities: Description: "Very small platy crystals of molybdenite, usually less than 0.1 mm across, have been found in a few cavities in the granite." |
| ⓘ Monazite-(Ce) Formula: Ce(PO4) |
| ⓘ 'Monazite Group' Formula: REE(PO4) |
| ⓘ Moncheite Formula: Pt(Te,Bi)2 |
| ⓘ Moncheite var. Chengbolite |
| ⓘ Montmorillonite Formula: (Na,Ca)0.33(Al,Mg)2(Si4O10)(OH)2 · nH2O |
| ⓘ Murchisite (TL) Formula: Cr5S6 Type Locality: |
| ⓘ Muscovite Formula: KAl2(AlSi3O10)(OH)2 Localities: Lake Boga granite quarry, Lake Boga, Swan Hill Rural City, Victoria, Australia Wycheproof granite quarry, Wycheproof, Buloke Shire, Victoria, Australia Kewell deposit, Stawell, Northern Grampians Shire, Victoria, Australia Bendigo prospect, Warnes, Pastoral Unincorporated Area, South Australia, Australia |
| ⓘ Muscovite var. Illite Formula: K0.65Al2.0[Al0.65Si3.35O10](OH)2 |
| ⓘ Native Bismuth Formula: Bi |
| ⓘ Native Copper Formula: Cu |
| ⓘ Native Gold Formula: Au Localities: Cocks Eldorado dredge, Eldorado, Rural City of Wangaratta, Victoria, Australia Cawkers Well gold field, Weinterigen Station, Wilcannia, Young Co., New South Wales, Australia Kewell deposit, Stawell, Northern Grampians Shire, Victoria, Australia Wildwood deposit, Glenorchy, Northern Grampians Shire, Victoria, Australia |
| ⓘ Native Iron Formula: Fe Localities: Murchison meteorite, Murchison, City of Greater Shepparton, Victoria, Australia Barratta meteorite, Barratta, Townsend Co., New South Wales, Australia Moama meteorite, Womboota, Cadell Co., New South Wales, Australia Pinnaroo meteorite, Pinnaroo, Southern Mallee District Council, South Australia, Australia |
| ⓘ Native Iron var. Kamacite Formula: (Fe,Ni) |
| ⓘ Native Iron var. Martensite Formula: Fe |
| ⓘ Natrodufrénite Formula: NaFe2+Fe3+5(PO4)4(OH)6 · 2H2O Description: "Specimens showing dull greyish green globular coatings, occurring very rarely on joints stained with brown iron hydroxides were found in 1994.. he crusts have a slightly silky appearance due to their finely fibrous nature. Scanning electron micrographs show the globules consist of tiny radiating prismatic crystallites." |
| ⓘ Natrojarosite Formula: NaFe3(SO4)2(OH)6 |
| ⓘ Nepheline Formula: Na3K(Al4Si4O16) |
| ⓘ Nierite Formula: Si3N4 |
| ⓘ Nontronite Formula: Na0.3Fe2((Si,Al)4O10)(OH)2 · nH2O |
| ⓘ Oldhamite Formula: CaS |
| ⓘ Opal Formula: SiO2 · nH2O |
| ⓘ Opal var. Opal-AN Formula: SiO2 · nH2O Description: "Rare hyalite has been recorded as joint fillings." |
| ⓘ Orthoclase Formula: K(AlSi3O8) Description: "Blocky crystals of orthoclase line miarolitic cavities, but have often grown across the cavities and are poorly or non terminated. They are usually white to cream and perthitic, with the sodic phase often etched out leaving a skeletal structure. The crystals commonly show Carlsbad twinning. Large blocky terminated crystals measuring up to 10 x 11x 12cm have been collected." References: |
| ⓘ 'Orthopyroxene Subgroup' |
| ⓘ Pentlandite Formula: (NixFey)Σ9S8 |
| ⓘ Perovskite Formula: CaTiO3 |
| ⓘ Pickeringite Formula: MgAl2(SO4)4 · 22H2O |
| ⓘ Pigeonite Formula: (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| ⓘ 'Plagioclase' Formula: (Na,Ca)[(Si,Al)AlSi2]O8 Localities: Cosgrove quarry, Cosgrove, City of Greater Shepparton, Victoria, Australia Karoonda meteorite, Karoonda, District Council of Karoonda East Murray, South Australia, Australia Barratta meteorite, Barratta, Townsend Co., New South Wales, Australia Pinnaroo meteorite, Pinnaroo, Southern Mallee District Council, South Australia, Australia Bendigo prospect, Warnes, Pastoral Unincorporated Area, South Australia, Australia |
| ⓘ 'Plessite' |
| ⓘ Portlandite Formula: Ca(OH)2 Description: Specimen was not in situ. Confirmation needed.
See discussion in http://www.mindat.org/mesg-7-55384.html
"A pale grey chert like mass, measuring about 45 x 30 x 25 cm was found in August 1995. The specimen had apparently been dislodged from where it had been enclosed in granite in the northeast corner of the quarr, about 6 metres from the top of the eastern wall. Thin quartz/calcite veinlets cut the portlandite." |
| ⓘ Powellite Formula: Ca(MoO4) References: |
| ⓘ 'Protodolomite' Formula: (Ca,Mg)CO3 |
| ⓘ Pseudomalachite Formula: Cu5(PO4)2(OH)4 Description: "Pseudomalachite occurs as irregular globular aggregates and, more rarely, rough crystals up to a few mm across, in cavities in the Lake Boga granite. It is pearly to vitreous, and transparent to translucent dark blueish green. It is often associated libethenite and ulrichite. The mineral also occurs as massive cavity fillings and scaly coatings on joint planes, where it its often seen with sampleiite, and may also occur very rarely as layers between cleavage flakes of muscovite." |
| ⓘ Pseudorutile Formula: Fe2Ti3O9 |
| ⓘ Pseudorutile var. Hydroxylian Pseudorutile Formula: FeTi6O13 · 4H2O ? References: |
| ⓘ Pyrite Formula: FeS2 Localities: Lake Boga granite quarry, Lake Boga, Swan Hill Rural City, Victoria, Australia Kewell deposit, Stawell, Northern Grampians Shire, Victoria, Australia Karoonda meteorite, Karoonda, District Council of Karoonda East Murray, South Australia, Australia Lake Alexandrina, South Australia, Australia Bendigo prospect, Warnes, Pastoral Unincorporated Area, South Australia, Australia |
| ⓘ Pyrolusite Formula: Mn4+O2 |
| ⓘ 'Pyroxene Group' Formula: ADSi2O6 Description: Orthopyroxene & Clinopyroxene, Ca-rich & Ca-poor pyroxenes: Hypersthene w. Augite lamellae most noticeable, but pigeonite also present |
| ⓘ Pyrrhotite Formula: Fe1-xS |
| ⓘ Quartz Formula: SiO2 Localities: Lake Boga granite quarry, Lake Boga, Swan Hill Rural City, Victoria, Australia Currency Creek Copper Mine, Goolwa, Alexandrina Council, South Australia, Australia Mintabie Homestead, District Council of Karoonda East Murray, South Australia, Australia Bendigo prospect, Warnes, Pastoral Unincorporated Area, South Australia, Australia Description: "Generally, quartz crystals in the miarolitic cavities are dark smoky to pale pinkish brown, well terminated, translucent to transparent and often gem quality. Crystals up to 23 cm long have been found, although they are more commonly 5-8 cm. They are often coated with a thin veneer of white clay and drusy fluorapatite crystals." |
| ⓘ Quartz var. Smoky Quartz Formula: SiO2 |
| ⓘ Redingtonite Formula: (Fe2+,Mg,Ni)(Cr,Al)2(SO4)4 · 22H2O |
| ⓘ Rockbridgeite Formula: (Fe2+0.5Fe3+0.5)2Fe3+3(PO4)3(OH)5 Localities: Description: "Dark bluish green irregular masses of rockbridgeite have been found as earthy fillings and globular linings in miarolitic cavities up to about 1 cm across in a medium-grained aplitic phase of the Lake Boga Granite. Hemispheres and globular crusts of transparent yellow cyrilovite frequently coat the rockbridgeite." |
| ⓘ Rutile Formula: TiO2 Localities: Lake Boga granite quarry, Lake Boga, Swan Hill Rural City, Victoria, Australia WIM 150 deposit, Horsham, Rural City of Horsham, Victoria, Australia Mindarie Mineral Sands Mine (Mindarie Mine), Mindarie, District Council of Karoonda East Murray, South Australia, Australia Pinnaroo meteorite, Pinnaroo, Southern Mallee District Council, South Australia, Australia Donald Rare Earth & Mineral Sands Project, Yarriambiack Shire, Victoria, Australia Description: "Small lustrous bipyramidal black crystals of rutile occur on quartz in some cavities." |
| ⓘ Saléeite Formula: Mg(UO2)2(PO4)2 · 10H2O Localities: Description: "Saleeite crystals occur in miarolitic cavities and on limonite-encrusted joint planes in the Lake Boga granite. Pale to lemon or greenish yellow translucent to transparent platy crystals occur as fan-like clusters or flattened aggregates. They are usually less than 3 mm on edge but exceptional crystals may reach 9 mm. Thick tabular and unusual prismatic crystals are less common. Saleeite may overgrow torbernite crystals at Lake Boga." |
| ⓘ Sampleite Formula: NaCaCu5(PO4)4Cl · 5H2O Description: "This is one of the most attractive of the rare phosphates at Lake Boga, occurring as vivid sky blue, micaceous aggregates on joint planes and platy to powdery cavity infillings in the granite. Groups of free standing tabular transparent blue crystals up to 0.5 mm high are frequently observed. Sampleite is most closely associated with pseudomalachite, but may also be found with libethenite, turquoise/chalcosiderite, cyrilovite and more rarely, ulrichite." References: |
| ⓘ Schorl Formula: NaFe2+3Al6(Si6O18)(BO3)3(OH)3(OH) Localities: Description: Schorl is confined to the miarolitic cavities forming fine fibrous needle like black/brown crystals. (pers.com. S.Mills) |
| ⓘ Schreibersite Formula: (Fe,Ni)3P |
| ⓘ Schwertmannite Formula: Fe3+16(OH,SO4)12-13O16 · 10-12H2O |
| ✪ Selwynite (TL) Formula: NaK(Be,Al)Zr2(PO4)4 · 2H2O Type Locality: Habit: Has not been found in crystals Colour: pale purple to purplish blue Description: "This extremely rare mineral, a sodium beryllium zirconium phoshate, has been found in one of the pegmatite veins in the Wycherproof granite. It infills irregular cavities up to 8mm across, as deep purplish blue vitreous to fibrous masses and as granular pale purle aggregates mixed with limonite and muscovite. It may be associated with wardite and eosphorite." |
| ⓘ Sepiolite Formula: Mg4(Si6O15)(OH)2 · 6H2O |
| ⓘ 'Serpentine Subgroup' Formula: D3[Si2O5](OH)4 |
| ⓘ Siderite Formula: FeCO3 |
| ⓘ Sideronatrite Formula: Na2Fe(SO4)2(OH) · 3H2O |
| ⓘ Sillimanite Formula: Al2(SiO4)O |
| ⓘ 'Smectite Group' Formula: A0.3D2-3[T4O10]Z2 · nH2O |
| ⓘ Sphalerite Formula: ZnS |
| ⓘ Spinel Formula: MgAl2O4 |
| ⓘ Spinel var. Pleonaste Formula: (Mg,Fe)Al2O4 |
| ⓘ Strengite Formula: FePO4 · 2H2O |
| ⓘ Taenite Formula: (Fe,Ni) |
| ⓘ Tamarugite Formula: NaAl(SO4)2 · 6H2O |
| ⓘ Tetrataenite Formula: FeNi |
| ⓘ Thénardite Formula: Na2SO4 |
| ⓘ Tochilinite Formula: Fe2+5-6(Mg,Fe2+)5S6(OH)10 References: |
| ⓘ Topaz Formula: Al2(SiO4)(F,OH)2 |
| ⓘ Torbernite Formula: Cu(UO2)2(PO4)2 · 12H2O Description: "Torbernite is the most widespread of the uranium-bearing phosphates at Lake Boga. It is found on joint planes and in small cavities and is frequently associated with limonite crusts and films. Crystals may also be found on clay filling cavities and between cleavage flakes in books of muscovite. Torbernite usually occurs as thin, lustrous, transparent pale green to emerald green tabular crystals up to 2.5 mm on edge. These may lay flat on joints or occur as free standing aggregates in cavities. Thick tabular to blocky crystals of a more intense green have also been found. Torbernite occurs with most of the other phosphates at Lake Boga." References: Jambor, John L., Pertsev, Nikolai N., Roberts, Andrew C. (2000) New Mineral Names. American Mineralogist, 85. 1321-1325 |
| ⓘ Tridymite Formula: SiO2 Localities: Description: Bladed crystals are unusually pure [silica >99.6%] |
| ⓘ Troilite Formula: FeS Localities: Murchison meteorite, Murchison, City of Greater Shepparton, Victoria, Australia Karoonda meteorite, Karoonda, District Council of Karoonda East Murray, South Australia, Australia Barratta meteorite, Barratta, Townsend Co., New South Wales, Australia Moama meteorite, Womboota, Cadell Co., New South Wales, Australia Pinnaroo meteorite, Pinnaroo, Southern Mallee District Council, South Australia, Australia |
| ⓘ Turquoise Formula: CuAl6(PO4)4(OH)8 · 4H2O Description: "Pale blue, pale green or bluish green globular crusts and individual spheres or hemispheres of minerals in the composition series between turquoise and chalcosiderite are widespread in the Lake Boga granite quarry. They occur most often lining small miarolitic cavities but may also be found on joint planes and in cavities etched in fluorapatite. Individual globules may reach close to 1 mm across. Well formed crystals have not been observed. Massive partial replacements of orthoclase crystals by turquoise have been collected, but are very rare. As an early-formed secondary hydrothermal mineral, turquoise/chalcosiderite is found with most of the other secondary phosphates from Lake Boga. Microprobe analyses of the bluish green crusts show the compositions fall between ferrian turquoise and aluminan chalcosiderite." |
| ⓘ Ulrichite (TL) Formula: CaCu(UO2)(PO4)2 · 4H2O Type Locality: Description: "This attractive mineral was first collected at the Lake Boga quarry in the mid-1980s. A zone a few metres across at the base of the east wall of the quarry, at a depth of around 20 metres has yielded all the ulrichite so far collected. Ulrichite forms delicate radiating sprays of translucent to transparent, pale green to bright lime green, needle-like crystals up to 1 mm long and 0.05 mm thick. They occur in small close up, irregular miarolitic cavities in a fine-grained equigranular phase of the Lake Boga granite. Some of the cavities are lined or partly filled with a glistening reddish brown clay mineral. Ulrichite is amongst the earliest of the secondary minerals to crystalise at Lake Boga and occurs most frequently with turquoise/chalcosiderite. It is also observed with cyrilovite, libethenite, pseudomalachite and rarely, with torbernite. It has also been found on etched fluorapatite crystals." References: |
| ⓘ 'UM2007-17-PO:CaClCuHNa' Formula: NaCaCu5(PO4)4Cl · nH2O (n~4.5) |
| ⓘ Uraninite Formula: UO2 |
| ⓘ Variscite Formula: AlPO4 · 2H2O |
| ⓘ 'Wad' |
| ⓘ Wardite Formula: NaAl3(PO4)2(OH)4 · 2H2O Description: "It forms blocky crystals up to 2mm across showing pyramidal forms, occasionally etched, and with a frosting of cyrilovite. Broken crystals are vitreous, transparent and pale yellow. Eosphorite crystals are usually associated with the wardite." |
| ⓘ Warkite (TL) Formula: Ca2Sc6Al6O20 Type Locality: |
| ⓘ Wavellite Formula: Al3(PO4)2(OH)3 · 5H2O Description: "Colourless to white, prismatic wavellite crystals up to 1 mm long occur rarely, forming fibrous radiating aggregates in cavities with pale blue turquoise. The mineral has also been found as flattened radiating aggregates of pale blue crystals on joint planes in the granite." References: |
| ⓘ Whewellite Formula: Ca(C2O4) · H2O |
| ⓘ Wycheproofite (TL) Formula: NaAlZr(PO4)2(OH) · H2O Type Locality: Description: "It forms compact, cream to pinkish orange, fibrous masses filling small cavities in one of the pegmatite veins at Wycheproof. It has a vitreous lustre and is softer than feldspar with witch it may be confused." |
| ⓘ Xenotime-(Y) Formula: Y(PO4) |
| ⓘ Zircon Formula: Zr(SiO4) Localities: Cocks Eldorado dredge, Eldorado, Rural City of Wangaratta, Victoria, Australia WIM 150 deposit, Horsham, Rural City of Horsham, Victoria, Australia Mindarie Mineral Sands Mine (Mindarie Mine), Mindarie, District Council of Karoonda East Murray, South Australia, Australia Donald Rare Earth & Mineral Sands Project, Yarriambiack Shire, Victoria, Australia |
Gallery:
List of minerals arranged by Strunz 10th Edition classification
| Group 1 - Elements | |||
|---|---|---|---|
| ⓘ | Native Copper | 1.AA.05 | Cu |
| ⓘ | Native Gold | 1.AA.05 | Au |
| ⓘ | Native Iron | 1.AE.05 | Fe |
| ⓘ | var. Kamacite | 1.AE.05 | (Fe,Ni) |
| ⓘ | var. Martensite | 1.AE.05 | Fe |
| ⓘ | Hexamolybdenum | 1.AE.05 | (Mo,Ru,Fe,Ir,Os) |
| ⓘ | Taenite | 1.AE.10 | (Fe,Ni) |
| ⓘ | Tetrataenite | 1.AE.10 | FeNi |
| ⓘ | Schreibersite | 1.BD.05 | (Fe,Ni)3P |
| ⓘ | Native Bismuth | 1.CA.05 | Bi |
| ⓘ | Graphite | 1.CB.05a | C |
| ⓘ | Diamond | 1.CB.10a | C |
| ⓘ | Moissanite | 1.DA. | SiC |
| ⓘ | Nierite | 1.DB.05 | Si3N4 |
| Group 2 - Sulphides and Sulfosalts | |||
| ⓘ | Chalcocite | 2.BA.05 | Cu2S |
| ⓘ | Djurleite | 2.BA.05 | Cu31S16 |
| ⓘ | Geerite | 2.BA.05 | Cu8S5 |
| ⓘ | Digenite | 2.BA.10 | Cu9S5 |
| ⓘ | Bornite | 2.BA.15 | Cu5FeS4 |
| ⓘ | Pentlandite | 2.BB.15 | (NixFey)Σ9S8 |
| ⓘ | Covellite | 2.CA.05a | CuS |
| ⓘ | Sphalerite | 2.CB.05a | ZnS |
| ⓘ | Chalcopyrite | 2.CB.10a | CuFeS2 |
| ⓘ | Murchisite (TL) | 2.CB.47 | Cr5S6 |
| ⓘ | Isocubanite | 2.CB.55b | CuFe2S3 |
| ⓘ | Pyrrhotite | 2.CC.10 | Fe1-xS |
| ⓘ | Troilite | 2.CC.10 | FeS |
| ⓘ | Mackinawite | 2.CC.25 | FeS |
| ⓘ | Oldhamite | 2.CD.10 | CaS |
| ⓘ | Daubréelite | 2.DA.05 | Fe2+Cr3+2S4 |
| ⓘ | Moncheite | 2.EA.20 | Pt(Te,Bi)2 |
| ⓘ | var. Chengbolite | 2.EA.20 | Pt(Te,Bi)2 |
| ⓘ | Molybdenite | 2.EA.30 | MoS2 |
| ⓘ | Pyrite | 2.EB.05a | FeS2 |
| ⓘ | Tochilinite | 2.FD.35 | Fe2+5-6(Mg,Fe2+)5S6(OH)10 |
| ⓘ | Aikinite | 2.HB.05a | PbCuBiS3 |
| Group 3 - Halides | |||
| ⓘ | Iodargyrite | 3.AA.10 | AgI |
| ⓘ | Chlorargyrite | 3.AA.15 | AgCl |
| ⓘ | Halite | 3.AA.20 | NaCl |
| ⓘ | Lawrencite | 3.AB.20 | (Fe2+,Ni)Cl2 |
| ⓘ | Fluorite | 3.AB.25 | CaF2 |
| ⓘ | Atacamite | 3.DA.10a | Cu2(OH)3Cl |
| ⓘ | Connellite | 3.DA.25 | Cu19(SO4)(OH)32Cl4 · 3H2O |
| ⓘ | Bismoclite | 3.DC.25 | BiOCl |
| Group 4 - Oxides and Hydroxides | |||
| ⓘ | Goethite | 4.00. | Fe3+O(OH) |
| ⓘ | Cuprite | 4.AA.10 | Cu2O |
| ⓘ | Chromite | 4.BB.05 | Fe2+Cr3+2O4 |
| ⓘ | Magnetite | 4.BB.05 | Fe2+Fe3+2O4 |
| ⓘ | Spinel | 4.BB.05 | MgAl2O4 |
| ⓘ | Magnetite var. Titanium-bearing Magnetite | 4.BB.05 | Fe2+(Fe3+,Ti)2O4 |
| ⓘ | Spinel var. Pleonaste | 4.BB.05 | (Mg,Fe)Al2O4 |
| ⓘ | Warkite (TL) | 4.BC.15 | Ca2Sc6Al6O20 |
| ⓘ | Corundum | 4.CB.05 | Al2O3 |
| ⓘ | Eskolaite | 4.CB.05 | Cr2O3 |
| ⓘ | Hematite | 4.CB.05 | Fe2O3 |
| ⓘ | Ilmenite | 4.CB.05 | Fe2+TiO3 |
| ⓘ | Corundum var. Sapphire | 4.CB.05 | Al2O3 |
| ⓘ | Pseudorutile | 4.CB.25 | Fe2Ti3O9 |
| ⓘ | var. Hydroxylian Pseudorutile | 4.CB.25 | FeTi6O13 · 4H2O ? |
| ⓘ | Machiite (TL) | 4.CB.35 | Al2Ti3O9 |
| ⓘ | Grossite | 4.CC.15 | CaAl4O7 |
| ⓘ | Perovskite | 4.CC.30 | CaTiO3 |
| ⓘ | Hibonite | 4.CC.45 | CaAl12O19 |
| ⓘ | Quartz | 4.DA.05 | SiO2 |
| ⓘ | var. Smoky Quartz | 4.DA.05 | SiO2 |
| ⓘ | Opal var. Opal-AN | 4.DA.10 | SiO2 · nH2O |
| ⓘ | 4.DA.10 | SiO2 · nH2O | |
| ⓘ | Tridymite | 4.DA.10 | SiO2 |
| ⓘ | Cassiterite | 4.DB.05 | SnO2 |
| ⓘ | Pyrolusite | 4.DB.05 | Mn4+O2 |
| ⓘ | Rutile | 4.DB.05 | TiO2 |
| ⓘ | Ferberite | 4.DB.30 | FeWO4 |
| ⓘ | Anatase | 4.DD.05 | TiO2 |
| ⓘ | Uraninite | 4.DL.05 | UO2 |
| ⓘ | Portlandite | 4.FE.05 | Ca(OH)2 |
| Group 5 - Nitrates and Carbonates | |||
| ⓘ | Calcite | 5.AB.05 | CaCO3 |
| ⓘ | Magnesite | 5.AB.05 | MgCO3 |
| ⓘ | Siderite | 5.AB.05 | FeCO3 |
| ⓘ | Dolomite | 5.AB.10 | CaMg(CO3)2 |
| ⓘ | Aragonite | 5.AB.15 | CaCO3 |
| ⓘ | Azurite | 5.BA.05 | Cu3(CO3)2(OH)2 |
| ⓘ | Malachite | 5.BA.10 | Cu2(CO3)(OH)2 |
| ⓘ | Hydromagnesite | 5.DA.05 | Mg5(CO3)4(OH)2 · 4H2O |
| Group 7 - Sulphates, Chromates, Molybdates and Tungstates | |||
| ⓘ | Glauberite | 7.AD.25 | Na2Ca(SO4)2 |
| ⓘ | Thénardite | 7.AD.25 | Na2SO4 |
| ⓘ | Baryte | 7.AD.35 | BaSO4 |
| ⓘ | Celestine | 7.AD.35 | SrSO4 |
| ⓘ | Natrojarosite | 7.BC.10 | NaFe3(SO4)2(OH)6 |
| ⓘ | Chalcanthite | 7.CB.20 | CuSO4 · 5H2O |
| ⓘ | Hexahydrite | 7.CB.25 | MgSO4 · 6H2O |
| ⓘ | Epsomite | 7.CB.40 | MgSO4 · 7H2O |
| ⓘ | Alunogen | 7.CB.45 | Al2(SO4)3 · 17H2O |
| ⓘ | Halotrichite | 7.CB.85 | FeAl2(SO4)4 · 22H2O |
| ⓘ | Pickeringite | 7.CB.85 | MgAl2(SO4)4 · 22H2O |
| ⓘ | Redingtonite | 7.CB.85 | (Fe2+,Mg,Ni)(Cr,Al)2(SO4)4 · 22H2O |
| ⓘ | Tamarugite | 7.CC.10 | NaAl(SO4)2 · 6H2O |
| ⓘ | Mirabilite | 7.CD.10 | Na2SO4 · 10H2O |
| ⓘ | Gypsum | 7.CD.40 | CaSO4 · 2H2O |
| ⓘ | var. Selenite | 7.CD.40 | CaSO4 · 2H2O |
| ⓘ | Schwertmannite | 7.DE.15 | Fe3+16(OH,SO4)12-13O16 · 10-12H2O |
| ⓘ | Sideronatrite | 7.DF.20 | Na2Fe(SO4)2(OH) · 3H2O |
| ⓘ | Powellite | 7.GA.05 | Ca(MoO4) |
| Group 8 - Phosphates, Arsenates and Vanadates | |||
| ⓘ | Merrillite | 8.AC.45 | Ca9NaMg(PO4)7 |
| ⓘ | Kosnarite | 8.AC.60 | KZr2(PO4)3 |
| ⓘ | Xenotime-(Y) | 8.AD.35 | Y(PO4) |
| ⓘ | Monazite-(Ce) | 8.AD.50 | Ce(PO4) |
| ⓘ | Cheralite | 8.AD.50 | CaTh(PO4)2 |
| ⓘ | Libethenite | 8.BB.30 | Cu2(PO4)(OH) |
| ⓘ | Lazulite | 8.BB.40 | MgAl2(PO4)2(OH)2 |
| ⓘ | Rockbridgeite | 8.BC.10 | (Fe2+0.5Fe3+0.5)2Fe3+3(PO4)3(OH)5 |
| ⓘ | Pseudomalachite | 8.BD.05 | Cu5(PO4)2(OH)4 |
| ⓘ | Crandallite | 8.BL.10 | CaAl3(PO4)(PO3OH)(OH)6 |
| ⓘ | Fluorapatite var. Carbonate-rich Fluorapatite | 8.BN.05 | Ca5(PO4,CO3)3(F,O) |
| ⓘ | Chlorapatite | 8.BN.05 | Ca5(PO4)3Cl |
| ⓘ | Fluorapatite | 8.BN.05 | Ca5(PO4)3F |
| ⓘ | Selwynite (TL) | 8.CA.20 | NaK(Be,Al)Zr2(PO4)4 · 2H2O |
| ⓘ | Strengite | 8.CD.10 | FePO4 · 2H2O |
| ⓘ | Variscite | 8.CD.10 | AlPO4 · 2H2O |
| ⓘ | Kunatite (TL) | 8.DC.15 | CuFe3+2(PO4)2(OH)2 · 4H2O |
| ⓘ | Cacoxenite | 8.DC.40 | Fe3+24AlO6(PO4)17(OH)12 · 75H2O |
| ⓘ | Wavellite | 8.DC.50 | Al3(PO4)2(OH)3 · 5H2O |
| ⓘ | Chalcosiderite | 8.DD.15 | CuFe3+6(PO4)4(OH)8 · 4H2O |
| ⓘ | Turquoise | 8.DD.15 | CuAl6(PO4)4(OH)8 · 4H2O |
| ⓘ | Eosphorite | 8.DD.20 | Mn2+Al(PO4)(OH)2 · H2O |
| ⓘ | Sampleite | 8.DG.05 | NaCaCu5(PO4)4Cl · 5H2O |
| ⓘ | Leucophosphite | 8.DH.10 | KFe3+2(PO4)2(OH) · 2H2O |
| ⓘ | Meurigite-K | 8.DJ.20 | KFe3+8(PO4)6(OH)7 · 6.5H2O |
| ⓘ | Meurigite-Na | 8.DJ.20 | NaFe3+8(PO4)6(OH)7 · 6.5H2O |
| ⓘ | Wycheproofite (TL) | 8.DJ.30 | NaAlZr(PO4)2(OH) · H2O |
| ⓘ | Natrodufrénite | 8.DK.15 | NaFe2+Fe3+5(PO4)4(OH)6 · 2H2O |
| ⓘ | Kidwellite | 8.DK.20 | NaFe3+9+x(PO4)6(OH)11 · 3H2O, x = 0.33 |
| ⓘ | Bleasdaleite (TL) | 8.DK.25 | (Ca,Fe3+)2Cu5(Bi,Cu)(PO4)4(H2O,OH,Cl)13 |
| ⓘ | Cyrilovite | 8.DL.10 | NaFe3+3(PO4)2(OH)4 · 2H2O |
| ⓘ | Wardite | 8.DL.10 | NaAl3(PO4)2(OH)4 · 2H2O |
| ⓘ | Ulrichite (TL) | 8.EA.15 | CaCu(UO2)(PO4)2 · 4H2O |
| ⓘ | Lakebogaite (TL) | 8.EA.20 | CaNaFe3+2H(UO2)2(PO4)4(OH)2 · 8H2O |
| ⓘ | Autunite | 8.EB.05 | Ca(UO2)2(PO4)2 · 10-12H2O |
| ⓘ | Saléeite | 8.EB.05 | Mg(UO2)2(PO4)2 · 10H2O |
| ⓘ | Torbernite | 8.EB.05 | Cu(UO2)2(PO4)2 · 12H2O |
| ⓘ | Meta-autunite | 8.EB.10 | Ca(UO2)2(PO4)2 · 6H2O |
| ⓘ | Metatorbernite | 8.EB.10 | Cu(UO2)2(PO4)2 · 8H2O |
| ⓘ | Metanatroautunite | 8.EB.10 | Na(UO2)(PO4)(H2O)3 |
| Group 9 - Silicates | |||
| ⓘ | Forsterite | 9.AC.05 | Mg2SiO4 |
| ⓘ | Zircon | 9.AD.30 | Zr(SiO4) |
| ⓘ | Sillimanite | 9.AF.05 | Al2(SiO4)O |
| ⓘ | Andalusite | 9.AF.10 | Al2(SiO4)O |
| ⓘ | Topaz | 9.AF.35 | Al2(SiO4)(F,OH)2 |
| ⓘ | Epidote | 9.BG.05a | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| ⓘ | Beryl | 9.CJ.05 | Be3Al2(Si6O18) |
| ⓘ | Fluor-schorl | 9.CK. | NaFe2+3Al6(Si6O18)(BO3)3(OH)3F |
| ⓘ | Schorl | 9.CK.05 | NaFe2+3Al6(Si6O18)(BO3)3(OH)3(OH) |
| ⓘ | Enstatite | 9.DA.05 | Mg2Si2O6 |
| ⓘ | Clinoenstatite | 9.DA.10 | MgSiO3 |
| ⓘ | Pigeonite | 9.DA.10 | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| ⓘ | Augite | 9.DA.15 | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| ⓘ | Diopside | 9.DA.15 | CaMgSi2O6 |
| ⓘ | Augite var. Fassaite | 9.DA.15 | (Ca,Na)(Mg,Fe2+,Al,Fe3+,Ti)[(Si,Al)2O6] |
| ⓘ | Aegirine | 9.DA.25 | NaFe3+Si2O6 |
| ⓘ | Muscovite var. Illite | 9.EC.15 | K0.65Al2.0[Al0.65Si3.35O10](OH)2 |
| ⓘ | 9.EC.15 | KAl2(AlSi3O10)(OH)2 | |
| ⓘ | Montmorillonite | 9.EC.40 | (Na,Ca)0.33(Al,Mg)2(Si4O10)(OH)2 · nH2O |
| ⓘ | Nontronite | 9.EC.40 | Na0.3Fe2((Si,Al)4O10)(OH)2 · nH2O |
| ⓘ | Kaolinite | 9.ED.05 | Al2(Si2O5)(OH)4 |
| ⓘ | Antigorite | 9.ED.15 | Mg3(Si2O5)(OH)4 |
| ⓘ | Cronstedtite | 9.ED.15 | Fe2+2Fe3+((Si,Fe3+)2O5)(OH)4 |
| ⓘ | Greenalite | 9.ED.15 | (Fe2+,Fe3+)2-3Si2O5(OH)4 |
| ⓘ | Chrysocolla | 9.ED.20 | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| ⓘ | Sepiolite | 9.EE.25 | Mg4(Si6O15)(OH)2 · 6H2O |
| ⓘ | Nepheline | 9.FA.05 | Na3K(Al4Si4O16) |
| ⓘ | Microcline | 9.FA.30 | K(AlSi3O8) |
| ⓘ | Orthoclase | 9.FA.30 | K(AlSi3O8) |
| ⓘ | Albite | 9.FA.35 | Na(AlSi3O8) |
| ⓘ | Anorthite | 9.FA.35 | Ca(Al2Si2O8) |
| ⓘ | Analcime | 9.GB.05 | Na(AlSi2O6) · H2O |
| ⓘ | Leucite | 9.GB.05 | K(AlSi2O6) |
| Group 10 - Organic Compounds | |||
| ⓘ | Whewellite | 10.AB.45 | Ca(C2O4) · H2O |
| Unclassified | |||
| ⓘ | 'Biotite' | - | K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 |
| ⓘ | 'Chlorite Group' | - | |
| ⓘ | 'Clay minerals' | - | |
| ⓘ | 'Calcium Amphibole Subgroup var. Hornblende' | - | AnCa2(Z2+5-mZ3+m)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| ⓘ | 'Hypersthene' | - | (Mg,Fe)SiO3 |
| ⓘ | 'Limonite' | - | |
| ⓘ | 'Monazite Group' | - | REE(PO4) |
| ⓘ | 'Wad' | - | |
| ⓘ | 'Leucoxene' | - | |
| ⓘ | 'Clinopyroxene Subgroup' | - | |
| ⓘ | 'Fayalite-Forsterite Series' | - | |
| ⓘ | 'Plagioclase' | - | (Na,Ca)[(Si,Al)AlSi2]O8 |
| ⓘ | 'K Feldspar' | - | |
| ⓘ | 'Pyroxene Group' | - | ADSi2O6 |
| ⓘ | 'Garnet Group' | - | X3Z2(SiO4)3 |
| ⓘ | 'Plessite' | - | |
| ⓘ | 'Orthopyroxene Subgroup' | - | |
| ⓘ | 'Smectite Group' | - | A0.3D2-3[T4O10]Z2 · nH2O |
| ⓘ | 'Serpentine Subgroup' | - | D3[Si2O5](OH)4 |
| ⓘ | 'Glass' | - | |
| ⓘ | 'Protodolomite' | - | (Ca,Mg)CO3 |
| ⓘ | 'Apatite' | - | Ca5(PO4)3(Cl/F/OH) |
| ⓘ | 'Melilite Group' | - | Ca2M(XSiO7) |
| ⓘ | 'Calcium Amphibole Subgroup' | - | AnCa2(Z2+5-mZ3+m)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| ⓘ | 'UM2007-17-PO:CaClCuHNa' | - | NaCaCu5(PO4)4Cl · nH2O (n~4.5) |
List of minerals for each chemical element
| H | Hydrogen | |
|---|---|---|
| H | ⓘ Alunogen | Al2(SO4)3 · 17H2O |
| H | ⓘ Analcime | Na(AlSi2O6) · H2O |
| H | ⓘ Antigorite | Mg3(Si2O5)(OH)4 |
| H | ⓘ Atacamite | Cu2(OH)3Cl |
| H | ⓘ Autunite | Ca(UO2)2(PO4)2 · 10-12H2O |
| H | ⓘ Azurite | Cu3(CO3)2(OH)2 |
| H | ⓘ Biotite | K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 |
| H | ⓘ Cacoxenite | Fe243+AlO6(PO4)17(OH)12 · 75H2O |
| H | ⓘ Chalcosiderite | CuFe63+(PO4)4(OH)8 · 4H2O |
| H | ⓘ Chalcanthite | CuSO4 · 5H2O |
| H | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| H | ⓘ Connellite | Cu19(SO4)(OH)32Cl4 · 3H2O |
| H | ⓘ Crandallite | CaAl3(PO4)(PO3OH)(OH)6 |
| H | ⓘ Cronstedtite | Fe22+Fe3+((Si,Fe3+)2O5)(OH)4 |
| H | ⓘ Cyrilovite | NaFe33+(PO4)2(OH)4 · 2H2O |
| H | ⓘ Eosphorite | Mn2+Al(PO4)(OH)2 · H2O |
| H | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| H | ⓘ Epsomite | MgSO4 · 7H2O |
| H | ⓘ Goethite | Fe3+O(OH) |
| H | ⓘ Greenalite | (Fe2+,Fe3+)2-3Si2O5(OH)4 |
| H | ⓘ Gypsum | CaSO4 · 2H2O |
| H | ⓘ Halotrichite | FeAl2(SO4)4 · 22H2O |
| H | ⓘ Hexahydrite | MgSO4 · 6H2O |
| H | ⓘ Calcium Amphibole Subgroup var. Hornblende | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| H | ⓘ Opal var. Opal-AN | SiO2 · nH2O |
| H | ⓘ Hydromagnesite | Mg5(CO3)4(OH)2 · 4H2O |
| H | ⓘ Muscovite var. Illite | K0.65Al2.0[Al0.65Si3.35O10](OH)2 |
| H | ⓘ Kaolinite | Al2(Si2O5)(OH)4 |
| H | ⓘ Kidwellite | NaFe3+9+x(PO4)6(OH)11 · 3H2O, x = 0.33 |
| H | ⓘ Lazulite | MgAl2(PO4)2(OH)2 |
| H | ⓘ Leucophosphite | KFe23+(PO4)2(OH) · 2H2O |
| H | ⓘ Libethenite | Cu2(PO4)(OH) |
| H | ⓘ Malachite | Cu2(CO3)(OH)2 |
| H | ⓘ Meta-autunite | Ca(UO2)2(PO4)2 · 6H2O |
| H | ⓘ Metatorbernite | Cu(UO2)2(PO4)2 · 8H2O |
| H | ⓘ Mirabilite | Na2SO4 · 10H2O |
| H | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| H | ⓘ Montmorillonite | (Na,Ca)0.33(Al,Mg)2(Si4O10)(OH)2 · nH2O |
| H | ⓘ Natrodufrénite | NaFe2+Fe53+(PO4)4(OH)6 · 2H2O |
| H | ⓘ Natrojarosite | NaFe3(SO4)2(OH)6 |
| H | ⓘ Nontronite | Na0.3Fe2((Si,Al)4O10)(OH)2 · nH2O |
| H | ⓘ Opal | SiO2 · nH2O |
| H | ⓘ Pickeringite | MgAl2(SO4)4 · 22H2O |
| H | ⓘ Portlandite | Ca(OH)2 |
| H | ⓘ Pseudomalachite | Cu5(PO4)2(OH)4 |
| H | ⓘ Redingtonite | (Fe2+,Mg,Ni)(Cr,Al)2(SO4)4 · 22H2O |
| H | ⓘ Rockbridgeite | (Fe2+0.5Fe3+0.5)2Fe33+(PO4)3(OH)5 |
| H | ⓘ Saléeite | Mg(UO2)2(PO4)2 · 10H2O |
| H | ⓘ Sampleite | NaCaCu5(PO4)4Cl · 5H2O |
| H | ⓘ Schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3(OH) |
| H | ⓘ Sepiolite | Mg4(Si6O15)(OH)2 · 6H2O |
| H | ⓘ Sideronatrite | Na2Fe(SO4)2(OH) · 3H2O |
| H | ⓘ Metanatroautunite | Na(UO2)(PO4)(H2O)3 |
| H | ⓘ Strengite | FePO4 · 2H2O |
| H | ⓘ Tamarugite | NaAl(SO4)2 · 6H2O |
| H | ⓘ Tochilinite | Fe2+5-6(Mg,Fe2+)5S6(OH)10 |
| H | ⓘ Topaz | Al2(SiO4)(F,OH)2 |
| H | ⓘ Torbernite | Cu(UO2)2(PO4)2 · 12H2O |
| H | ⓘ Turquoise | CuAl6(PO4)4(OH)8 · 4H2O |
| H | ⓘ Ulrichite | CaCu(UO2)(PO4)2 · 4H2O |
| H | ⓘ Variscite | AlPO4 · 2H2O |
| H | ⓘ Wardite | NaAl3(PO4)2(OH)4 · 2H2O |
| H | ⓘ Wavellite | Al3(PO4)2(OH)3 · 5H2O |
| H | ⓘ Whewellite | Ca(C2O4) · H2O |
| H | ⓘ Wycheproofite | NaAlZr(PO4)2(OH) · H2O |
| H | ⓘ Gypsum var. Selenite | CaSO4 · 2H2O |
| H | ⓘ Bleasdaleite | (Ca,Fe3+)2Cu5(Bi,Cu)(PO4)4(H2O,OH,Cl)13 |
| H | ⓘ Pseudorutile var. Hydroxylian Pseudorutile | FeTi6O13 · 4H2O ? |
| H | ⓘ Meurigite-K | KFe83+(PO4)6(OH)7 · 6.5H2O |
| H | ⓘ Schwertmannite | Fe163+(OH,SO4)12-13O16 · 10-12H2O |
| H | ⓘ Selwynite | NaK(Be,Al)Zr2(PO4)4 · 2H2O |
| H | ⓘ Smectite Group | A0.3D2-3[T4O10]Z2 · nH2O |
| H | ⓘ Serpentine Subgroup | D3[Si2O5](OH)4 |
| H | ⓘ Fluor-schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3F |
| H | ⓘ Apatite | Ca5(PO4)3(Cl/F/OH) |
| H | ⓘ Calcium Amphibole Subgroup | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| H | ⓘ Lakebogaite | CaNaFe23+H(UO2)2(PO4)4(OH)2 · 8H2O |
| H | ⓘ Meurigite-Na | NaFe83+(PO4)6(OH)7 · 6.5H2O |
| H | ⓘ Kunatite | CuFe23+(PO4)2(OH)2 · 4H2O |
| H | ⓘ UM2007-17-PO:CaClCuHNa | NaCaCu5(PO4)4Cl · nH2O (n~4.5) |
| Be | Beryllium | |
| Be | ⓘ Beryl | Be3Al2(Si6O18) |
| Be | ⓘ Selwynite | NaK(Be,Al)Zr2(PO4)4 · 2H2O |
| B | Boron | |
| B | ⓘ Schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3(OH) |
| B | ⓘ Fluor-schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3F |
| C | Carbon | |
| C | ⓘ Aragonite | CaCO3 |
| C | ⓘ Azurite | Cu3(CO3)2(OH)2 |
| C | ⓘ Calcite | CaCO3 |
| C | ⓘ Fluorapatite var. Carbonate-rich Fluorapatite | Ca5(PO4,CO3)3(F,O) |
| C | ⓘ Diamond | C |
| C | ⓘ Dolomite | CaMg(CO3)2 |
| C | ⓘ Graphite | C |
| C | ⓘ Hydromagnesite | Mg5(CO3)4(OH)2 · 4H2O |
| C | ⓘ Magnesite | MgCO3 |
| C | ⓘ Malachite | Cu2(CO3)(OH)2 |
| C | ⓘ Moissanite | SiC |
| C | ⓘ Siderite | FeCO3 |
| C | ⓘ Whewellite | Ca(C2O4) · H2O |
| C | ⓘ Protodolomite | (Ca,Mg)CO3 |
| N | Nitrogen | |
| N | ⓘ Nierite | Si3N4 |
| O | Oxygen | |
| O | ⓘ Aegirine | NaFe3+Si2O6 |
| O | ⓘ Albite | Na(AlSi3O8) |
| O | ⓘ Alunogen | Al2(SO4)3 · 17H2O |
| O | ⓘ Analcime | Na(AlSi2O6) · H2O |
| O | ⓘ Anatase | TiO2 |
| O | ⓘ Andalusite | Al2(SiO4)O |
| O | ⓘ Anorthite | Ca(Al2Si2O8) |
| O | ⓘ Antigorite | Mg3(Si2O5)(OH)4 |
| O | ⓘ Aragonite | CaCO3 |
| O | ⓘ Atacamite | Cu2(OH)3Cl |
| O | ⓘ Augite | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| O | ⓘ Autunite | Ca(UO2)2(PO4)2 · 10-12H2O |
| O | ⓘ Azurite | Cu3(CO3)2(OH)2 |
| O | ⓘ Baryte | BaSO4 |
| O | ⓘ Biotite | K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 |
| O | ⓘ Bismoclite | BiOCl |
| O | ⓘ Beryl | Be3Al2(Si6O18) |
| O | ⓘ Cacoxenite | Fe243+AlO6(PO4)17(OH)12 · 75H2O |
| O | ⓘ Calcite | CaCO3 |
| O | ⓘ Fluorapatite var. Carbonate-rich Fluorapatite | Ca5(PO4,CO3)3(F,O) |
| O | ⓘ Cassiterite | SnO2 |
| O | ⓘ Celestine | SrSO4 |
| O | ⓘ Chalcosiderite | CuFe63+(PO4)4(OH)8 · 4H2O |
| O | ⓘ Chalcanthite | CuSO4 · 5H2O |
| O | ⓘ Chlorapatite | Ca5(PO4)3Cl |
| O | ⓘ Chromite | Fe2+Cr23+O4 |
| O | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| O | ⓘ Clinoenstatite | MgSiO3 |
| O | ⓘ Connellite | Cu19(SO4)(OH)32Cl4 · 3H2O |
| O | ⓘ Corundum | Al2O3 |
| O | ⓘ Crandallite | CaAl3(PO4)(PO3OH)(OH)6 |
| O | ⓘ Cronstedtite | Fe22+Fe3+((Si,Fe3+)2O5)(OH)4 |
| O | ⓘ Cuprite | Cu2O |
| O | ⓘ Cyrilovite | NaFe33+(PO4)2(OH)4 · 2H2O |
| O | ⓘ Diopside | CaMgSi2O6 |
| O | ⓘ Dolomite | CaMg(CO3)2 |
| O | ⓘ Enstatite | Mg2Si2O6 |
| O | ⓘ Eosphorite | Mn2+Al(PO4)(OH)2 · H2O |
| O | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| O | ⓘ Epsomite | MgSO4 · 7H2O |
| O | ⓘ Eskolaite | Cr2O3 |
| O | ⓘ Ferberite | FeWO4 |
| O | ⓘ Fluorapatite | Ca5(PO4)3F |
| O | ⓘ Forsterite | Mg2SiO4 |
| O | ⓘ Glauberite | Na2Ca(SO4)2 |
| O | ⓘ Goethite | Fe3+O(OH) |
| O | ⓘ Greenalite | (Fe2+,Fe3+)2-3Si2O5(OH)4 |
| O | ⓘ Grossite | CaAl4O7 |
| O | ⓘ Gypsum | CaSO4 · 2H2O |
| O | ⓘ Halotrichite | FeAl2(SO4)4 · 22H2O |
| O | ⓘ Hematite | Fe2O3 |
| O | ⓘ Hexahydrite | MgSO4 · 6H2O |
| O | ⓘ Hibonite | CaAl12O19 |
| O | ⓘ Calcium Amphibole Subgroup var. Hornblende | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| O | ⓘ Opal var. Opal-AN | SiO2 · nH2O |
| O | ⓘ Hydromagnesite | Mg5(CO3)4(OH)2 · 4H2O |
| O | ⓘ Hypersthene | (Mg,Fe)SiO3 |
| O | ⓘ Muscovite var. Illite | K0.65Al2.0[Al0.65Si3.35O10](OH)2 |
| O | ⓘ Ilmenite | Fe2+TiO3 |
| O | ⓘ Kaolinite | Al2(Si2O5)(OH)4 |
| O | ⓘ Kidwellite | NaFe3+9+x(PO4)6(OH)11 · 3H2O, x = 0.33 |
| O | ⓘ Kosnarite | KZr2(PO4)3 |
| O | ⓘ Lazulite | MgAl2(PO4)2(OH)2 |
| O | ⓘ Leucophosphite | KFe23+(PO4)2(OH) · 2H2O |
| O | ⓘ Libethenite | Cu2(PO4)(OH) |
| O | ⓘ Leucite | K(AlSi2O6) |
| O | ⓘ Magnesite | MgCO3 |
| O | ⓘ Magnetite | Fe2+Fe23+O4 |
| O | ⓘ Malachite | Cu2(CO3)(OH)2 |
| O | ⓘ Meta-autunite | Ca(UO2)2(PO4)2 · 6H2O |
| O | ⓘ Metatorbernite | Cu(UO2)2(PO4)2 · 8H2O |
| O | ⓘ Microcline | K(AlSi3O8) |
| O | ⓘ Mirabilite | Na2SO4 · 10H2O |
| O | ⓘ Monazite Group | REE(PO4) |
| O | ⓘ Monazite-(Ce) | Ce(PO4) |
| O | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| O | ⓘ Montmorillonite | (Na,Ca)0.33(Al,Mg)2(Si4O10)(OH)2 · nH2O |
| O | ⓘ Natrodufrénite | NaFe2+Fe53+(PO4)4(OH)6 · 2H2O |
| O | ⓘ Natrojarosite | NaFe3(SO4)2(OH)6 |
| O | ⓘ Nepheline | Na3K(Al4Si4O16) |
| O | ⓘ Nontronite | Na0.3Fe2((Si,Al)4O10)(OH)2 · nH2O |
| O | ⓘ Opal | SiO2 · nH2O |
| O | ⓘ Orthoclase | K(AlSi3O8) |
| O | ⓘ Perovskite | CaTiO3 |
| O | ⓘ Pickeringite | MgAl2(SO4)4 · 22H2O |
| O | ⓘ Pigeonite | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| O | ⓘ Portlandite | Ca(OH)2 |
| O | ⓘ Powellite | Ca(MoO4) |
| O | ⓘ Pseudorutile | Fe2Ti3O9 |
| O | ⓘ Pseudomalachite | Cu5(PO4)2(OH)4 |
| O | ⓘ Pyrolusite | Mn4+O2 |
| O | ⓘ Quartz | SiO2 |
| O | ⓘ Redingtonite | (Fe2+,Mg,Ni)(Cr,Al)2(SO4)4 · 22H2O |
| O | ⓘ Rockbridgeite | (Fe2+0.5Fe3+0.5)2Fe33+(PO4)3(OH)5 |
| O | ⓘ Rutile | TiO2 |
| O | ⓘ Saléeite | Mg(UO2)2(PO4)2 · 10H2O |
| O | ⓘ Sampleite | NaCaCu5(PO4)4Cl · 5H2O |
| O | ⓘ Corundum var. Sapphire | Al2O3 |
| O | ⓘ Schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3(OH) |
| O | ⓘ Sepiolite | Mg4(Si6O15)(OH)2 · 6H2O |
| O | ⓘ Siderite | FeCO3 |
| O | ⓘ Sideronatrite | Na2Fe(SO4)2(OH) · 3H2O |
| O | ⓘ Sillimanite | Al2(SiO4)O |
| O | ⓘ Quartz var. Smoky Quartz | SiO2 |
| O | ⓘ Metanatroautunite | Na(UO2)(PO4)(H2O)3 |
| O | ⓘ Spinel | MgAl2O4 |
| O | ⓘ Strengite | FePO4 · 2H2O |
| O | ⓘ Tamarugite | NaAl(SO4)2 · 6H2O |
| O | ⓘ Thénardite | Na2SO4 |
| O | ⓘ Magnetite var. Titanium-bearing Magnetite | Fe2+(Fe3+,Ti)2O4 |
| O | ⓘ Tochilinite | Fe2+5-6(Mg,Fe2+)5S6(OH)10 |
| O | ⓘ Topaz | Al2(SiO4)(F,OH)2 |
| O | ⓘ Torbernite | Cu(UO2)2(PO4)2 · 12H2O |
| O | ⓘ Tridymite | SiO2 |
| O | ⓘ Turquoise | CuAl6(PO4)4(OH)8 · 4H2O |
| O | ⓘ Ulrichite | CaCu(UO2)(PO4)2 · 4H2O |
| O | ⓘ Uraninite | UO2 |
| O | ⓘ Variscite | AlPO4 · 2H2O |
| O | ⓘ Wardite | NaAl3(PO4)2(OH)4 · 2H2O |
| O | ⓘ Wavellite | Al3(PO4)2(OH)3 · 5H2O |
| O | ⓘ Whewellite | Ca(C2O4) · H2O |
| O | ⓘ Wycheproofite | NaAlZr(PO4)2(OH) · H2O |
| O | ⓘ Xenotime-(Y) | Y(PO4) |
| O | ⓘ Zircon | Zr(SiO4) |
| O | ⓘ Gypsum var. Selenite | CaSO4 · 2H2O |
| O | ⓘ Merrillite | Ca9NaMg(PO4)7 |
| O | ⓘ Spinel var. Pleonaste | (Mg,Fe)Al2O4 |
| O | ⓘ Cheralite | CaTh(PO4)2 |
| O | ⓘ Bleasdaleite | (Ca,Fe3+)2Cu5(Bi,Cu)(PO4)4(H2O,OH,Cl)13 |
| O | ⓘ Pseudorutile var. Hydroxylian Pseudorutile | FeTi6O13 · 4H2O ? |
| O | ⓘ Meurigite-K | KFe83+(PO4)6(OH)7 · 6.5H2O |
| O | ⓘ Schwertmannite | Fe163+(OH,SO4)12-13O16 · 10-12H2O |
| O | ⓘ Selwynite | NaK(Be,Al)Zr2(PO4)4 · 2H2O |
| O | ⓘ Fayalite-Forsterite Series | |
| O | ⓘ Plagioclase | (Na,Ca)[(Si,Al)AlSi2]O8 |
| O | ⓘ Pyroxene Group | ADSi2O6 |
| O | ⓘ Garnet Group | X3Z2(SiO4)3 |
| O | ⓘ Augite var. Fassaite | (Ca,Na)(Mg,Fe2+,Al,Fe3+,Ti)[(Si,Al)2O6] |
| O | ⓘ Smectite Group | A0.3D2-3[T4O10]Z2 · nH2O |
| O | ⓘ Serpentine Subgroup | D3[Si2O5](OH)4 |
| O | ⓘ Protodolomite | (Ca,Mg)CO3 |
| O | ⓘ Fluor-schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3F |
| O | ⓘ Apatite | Ca5(PO4)3(Cl/F/OH) |
| O | ⓘ Melilite Group | Ca2M(XSiO7) |
| O | ⓘ Calcium Amphibole Subgroup | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| O | ⓘ Lakebogaite | CaNaFe23+H(UO2)2(PO4)4(OH)2 · 8H2O |
| O | ⓘ Meurigite-Na | NaFe83+(PO4)6(OH)7 · 6.5H2O |
| O | ⓘ Kunatite | CuFe23+(PO4)2(OH)2 · 4H2O |
| O | ⓘ Warkite | Ca2Sc6Al6O20 |
| O | ⓘ Machiite | Al2Ti3O9 |
| O | ⓘ UM2007-17-PO:CaClCuHNa | NaCaCu5(PO4)4Cl · nH2O (n~4.5) |
| F | Fluorine | |
| F | ⓘ Biotite | K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 |
| F | ⓘ Fluorapatite var. Carbonate-rich Fluorapatite | Ca5(PO4,CO3)3(F,O) |
| F | ⓘ Fluorapatite | Ca5(PO4)3F |
| F | ⓘ Fluorite | CaF2 |
| F | ⓘ Calcium Amphibole Subgroup var. Hornblende | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| F | ⓘ Topaz | Al2(SiO4)(F,OH)2 |
| F | ⓘ Fluor-schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3F |
| F | ⓘ Apatite | Ca5(PO4)3(Cl/F/OH) |
| F | ⓘ Calcium Amphibole Subgroup | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| Na | Sodium | |
| Na | ⓘ Aegirine | NaFe3+Si2O6 |
| Na | ⓘ Albite | Na(AlSi3O8) |
| Na | ⓘ Analcime | Na(AlSi2O6) · H2O |
| Na | ⓘ Cyrilovite | NaFe33+(PO4)2(OH)4 · 2H2O |
| Na | ⓘ Glauberite | Na2Ca(SO4)2 |
| Na | ⓘ Halite | NaCl |
| Na | ⓘ Kidwellite | NaFe3+9+x(PO4)6(OH)11 · 3H2O, x = 0.33 |
| Na | ⓘ Mirabilite | Na2SO4 · 10H2O |
| Na | ⓘ Montmorillonite | (Na,Ca)0.33(Al,Mg)2(Si4O10)(OH)2 · nH2O |
| Na | ⓘ Natrodufrénite | NaFe2+Fe53+(PO4)4(OH)6 · 2H2O |
| Na | ⓘ Natrojarosite | NaFe3(SO4)2(OH)6 |
| Na | ⓘ Nepheline | Na3K(Al4Si4O16) |
| Na | ⓘ Nontronite | Na0.3Fe2((Si,Al)4O10)(OH)2 · nH2O |
| Na | ⓘ Sampleite | NaCaCu5(PO4)4Cl · 5H2O |
| Na | ⓘ Schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3(OH) |
| Na | ⓘ Sideronatrite | Na2Fe(SO4)2(OH) · 3H2O |
| Na | ⓘ Metanatroautunite | Na(UO2)(PO4)(H2O)3 |
| Na | ⓘ Tamarugite | NaAl(SO4)2 · 6H2O |
| Na | ⓘ Thénardite | Na2SO4 |
| Na | ⓘ Wardite | NaAl3(PO4)2(OH)4 · 2H2O |
| Na | ⓘ Wycheproofite | NaAlZr(PO4)2(OH) · H2O |
| Na | ⓘ Merrillite | Ca9NaMg(PO4)7 |
| Na | ⓘ Selwynite | NaK(Be,Al)Zr2(PO4)4 · 2H2O |
| Na | ⓘ Plagioclase | (Na,Ca)[(Si,Al)AlSi2]O8 |
| Na | ⓘ Augite var. Fassaite | (Ca,Na)(Mg,Fe2+,Al,Fe3+,Ti)[(Si,Al)2O6] |
| Na | ⓘ Fluor-schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3F |
| Na | ⓘ Lakebogaite | CaNaFe23+H(UO2)2(PO4)4(OH)2 · 8H2O |
| Na | ⓘ Meurigite-Na | NaFe83+(PO4)6(OH)7 · 6.5H2O |
| Na | ⓘ UM2007-17-PO:CaClCuHNa | NaCaCu5(PO4)4Cl · nH2O (n~4.5) |
| Mg | Magnesium | |
| Mg | ⓘ Antigorite | Mg3(Si2O5)(OH)4 |
| Mg | ⓘ Augite | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| Mg | ⓘ Biotite | K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 |
| Mg | ⓘ Clinoenstatite | MgSiO3 |
| Mg | ⓘ Diopside | CaMgSi2O6 |
| Mg | ⓘ Dolomite | CaMg(CO3)2 |
| Mg | ⓘ Enstatite | Mg2Si2O6 |
| Mg | ⓘ Epsomite | MgSO4 · 7H2O |
| Mg | ⓘ Forsterite | Mg2SiO4 |
| Mg | ⓘ Hexahydrite | MgSO4 · 6H2O |
| Mg | ⓘ Hydromagnesite | Mg5(CO3)4(OH)2 · 4H2O |
| Mg | ⓘ Hypersthene | (Mg,Fe)SiO3 |
| Mg | ⓘ Lazulite | MgAl2(PO4)2(OH)2 |
| Mg | ⓘ Magnesite | MgCO3 |
| Mg | ⓘ Montmorillonite | (Na,Ca)0.33(Al,Mg)2(Si4O10)(OH)2 · nH2O |
| Mg | ⓘ Pickeringite | MgAl2(SO4)4 · 22H2O |
| Mg | ⓘ Pigeonite | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| Mg | ⓘ Redingtonite | (Fe2+,Mg,Ni)(Cr,Al)2(SO4)4 · 22H2O |
| Mg | ⓘ Saléeite | Mg(UO2)2(PO4)2 · 10H2O |
| Mg | ⓘ Sepiolite | Mg4(Si6O15)(OH)2 · 6H2O |
| Mg | ⓘ Spinel | MgAl2O4 |
| Mg | ⓘ Tochilinite | Fe2+5-6(Mg,Fe2+)5S6(OH)10 |
| Mg | ⓘ Merrillite | Ca9NaMg(PO4)7 |
| Mg | ⓘ Spinel var. Pleonaste | (Mg,Fe)Al2O4 |
| Mg | ⓘ Fayalite-Forsterite Series | |
| Mg | ⓘ Augite var. Fassaite | (Ca,Na)(Mg,Fe2+,Al,Fe3+,Ti)[(Si,Al)2O6] |
| Mg | ⓘ Protodolomite | (Ca,Mg)CO3 |
| Al | Aluminium | |
| Al | ⓘ Albite | Na(AlSi3O8) |
| Al | ⓘ Alunogen | Al2(SO4)3 · 17H2O |
| Al | ⓘ Analcime | Na(AlSi2O6) · H2O |
| Al | ⓘ Andalusite | Al2(SiO4)O |
| Al | ⓘ Anorthite | Ca(Al2Si2O8) |
| Al | ⓘ Biotite | K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 |
| Al | ⓘ Beryl | Be3Al2(Si6O18) |
| Al | ⓘ Cacoxenite | Fe243+AlO6(PO4)17(OH)12 · 75H2O |
| Al | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| Al | ⓘ Corundum | Al2O3 |
| Al | ⓘ Crandallite | CaAl3(PO4)(PO3OH)(OH)6 |
| Al | ⓘ Eosphorite | Mn2+Al(PO4)(OH)2 · H2O |
| Al | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| Al | ⓘ Grossite | CaAl4O7 |
| Al | ⓘ Halotrichite | FeAl2(SO4)4 · 22H2O |
| Al | ⓘ Hibonite | CaAl12O19 |
| Al | ⓘ Calcium Amphibole Subgroup var. Hornblende | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| Al | ⓘ Muscovite var. Illite | K0.65Al2.0[Al0.65Si3.35O10](OH)2 |
| Al | ⓘ Kaolinite | Al2(Si2O5)(OH)4 |
| Al | ⓘ Lazulite | MgAl2(PO4)2(OH)2 |
| Al | ⓘ Leucite | K(AlSi2O6) |
| Al | ⓘ Microcline | K(AlSi3O8) |
| Al | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| Al | ⓘ Montmorillonite | (Na,Ca)0.33(Al,Mg)2(Si4O10)(OH)2 · nH2O |
| Al | ⓘ Nepheline | Na3K(Al4Si4O16) |
| Al | ⓘ Nontronite | Na0.3Fe2((Si,Al)4O10)(OH)2 · nH2O |
| Al | ⓘ Orthoclase | K(AlSi3O8) |
| Al | ⓘ Pickeringite | MgAl2(SO4)4 · 22H2O |
| Al | ⓘ Redingtonite | (Fe2+,Mg,Ni)(Cr,Al)2(SO4)4 · 22H2O |
| Al | ⓘ Corundum var. Sapphire | Al2O3 |
| Al | ⓘ Schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3(OH) |
| Al | ⓘ Sillimanite | Al2(SiO4)O |
| Al | ⓘ Spinel | MgAl2O4 |
| Al | ⓘ Tamarugite | NaAl(SO4)2 · 6H2O |
| Al | ⓘ Topaz | Al2(SiO4)(F,OH)2 |
| Al | ⓘ Turquoise | CuAl6(PO4)4(OH)8 · 4H2O |
| Al | ⓘ Variscite | AlPO4 · 2H2O |
| Al | ⓘ Wardite | NaAl3(PO4)2(OH)4 · 2H2O |
| Al | ⓘ Wavellite | Al3(PO4)2(OH)3 · 5H2O |
| Al | ⓘ Wycheproofite | NaAlZr(PO4)2(OH) · H2O |
| Al | ⓘ Spinel var. Pleonaste | (Mg,Fe)Al2O4 |
| Al | ⓘ Selwynite | NaK(Be,Al)Zr2(PO4)4 · 2H2O |
| Al | ⓘ Plagioclase | (Na,Ca)[(Si,Al)AlSi2]O8 |
| Al | ⓘ Augite var. Fassaite | (Ca,Na)(Mg,Fe2+,Al,Fe3+,Ti)[(Si,Al)2O6] |
| Al | ⓘ Fluor-schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3F |
| Al | ⓘ Calcium Amphibole Subgroup | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| Al | ⓘ Warkite | Ca2Sc6Al6O20 |
| Al | ⓘ Machiite | Al2Ti3O9 |
| Si | Silicon | |
| Si | ⓘ Aegirine | NaFe3+Si2O6 |
| Si | ⓘ Albite | Na(AlSi3O8) |
| Si | ⓘ Analcime | Na(AlSi2O6) · H2O |
| Si | ⓘ Andalusite | Al2(SiO4)O |
| Si | ⓘ Anorthite | Ca(Al2Si2O8) |
| Si | ⓘ Antigorite | Mg3(Si2O5)(OH)4 |
| Si | ⓘ Augite | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| Si | ⓘ Biotite | K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 |
| Si | ⓘ Beryl | Be3Al2(Si6O18) |
| Si | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| Si | ⓘ Clinoenstatite | MgSiO3 |
| Si | ⓘ Cronstedtite | Fe22+Fe3+((Si,Fe3+)2O5)(OH)4 |
| Si | ⓘ Diopside | CaMgSi2O6 |
| Si | ⓘ Enstatite | Mg2Si2O6 |
| Si | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| Si | ⓘ Forsterite | Mg2SiO4 |
| Si | ⓘ Greenalite | (Fe2+,Fe3+)2-3Si2O5(OH)4 |
| Si | ⓘ Calcium Amphibole Subgroup var. Hornblende | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| Si | ⓘ Opal var. Opal-AN | SiO2 · nH2O |
| Si | ⓘ Hypersthene | (Mg,Fe)SiO3 |
| Si | ⓘ Muscovite var. Illite | K0.65Al2.0[Al0.65Si3.35O10](OH)2 |
| Si | ⓘ Kaolinite | Al2(Si2O5)(OH)4 |
| Si | ⓘ Leucite | K(AlSi2O6) |
| Si | ⓘ Microcline | K(AlSi3O8) |
| Si | ⓘ Moissanite | SiC |
| Si | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| Si | ⓘ Montmorillonite | (Na,Ca)0.33(Al,Mg)2(Si4O10)(OH)2 · nH2O |
| Si | ⓘ Nepheline | Na3K(Al4Si4O16) |
| Si | ⓘ Nontronite | Na0.3Fe2((Si,Al)4O10)(OH)2 · nH2O |
| Si | ⓘ Opal | SiO2 · nH2O |
| Si | ⓘ Orthoclase | K(AlSi3O8) |
| Si | ⓘ Pigeonite | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| Si | ⓘ Quartz | SiO2 |
| Si | ⓘ Schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3(OH) |
| Si | ⓘ Sepiolite | Mg4(Si6O15)(OH)2 · 6H2O |
| Si | ⓘ Sillimanite | Al2(SiO4)O |
| Si | ⓘ Quartz var. Smoky Quartz | SiO2 |
| Si | ⓘ Topaz | Al2(SiO4)(F,OH)2 |
| Si | ⓘ Tridymite | SiO2 |
| Si | ⓘ Zircon | Zr(SiO4) |
| Si | ⓘ Nierite | Si3N4 |
| Si | ⓘ Fayalite-Forsterite Series | |
| Si | ⓘ Plagioclase | (Na,Ca)[(Si,Al)AlSi2]O8 |
| Si | ⓘ Pyroxene Group | ADSi2O6 |
| Si | ⓘ Garnet Group | X3Z2(SiO4)3 |
| Si | ⓘ Augite var. Fassaite | (Ca,Na)(Mg,Fe2+,Al,Fe3+,Ti)[(Si,Al)2O6] |
| Si | ⓘ Serpentine Subgroup | D3[Si2O5](OH)4 |
| Si | ⓘ Fluor-schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3F |
| Si | ⓘ Melilite Group | Ca2M(XSiO7) |
| Si | ⓘ Calcium Amphibole Subgroup | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| P | Phosphorus | |
| P | ⓘ Autunite | Ca(UO2)2(PO4)2 · 10-12H2O |
| P | ⓘ Cacoxenite | Fe243+AlO6(PO4)17(OH)12 · 75H2O |
| P | ⓘ Fluorapatite var. Carbonate-rich Fluorapatite | Ca5(PO4,CO3)3(F,O) |
| P | ⓘ Chalcosiderite | CuFe63+(PO4)4(OH)8 · 4H2O |
| P | ⓘ Chlorapatite | Ca5(PO4)3Cl |
| P | ⓘ Crandallite | CaAl3(PO4)(PO3OH)(OH)6 |
| P | ⓘ Cyrilovite | NaFe33+(PO4)2(OH)4 · 2H2O |
| P | ⓘ Eosphorite | Mn2+Al(PO4)(OH)2 · H2O |
| P | ⓘ Fluorapatite | Ca5(PO4)3F |
| P | ⓘ Kidwellite | NaFe3+9+x(PO4)6(OH)11 · 3H2O, x = 0.33 |
| P | ⓘ Kosnarite | KZr2(PO4)3 |
| P | ⓘ Lazulite | MgAl2(PO4)2(OH)2 |
| P | ⓘ Leucophosphite | KFe23+(PO4)2(OH) · 2H2O |
| P | ⓘ Libethenite | Cu2(PO4)(OH) |
| P | ⓘ Meta-autunite | Ca(UO2)2(PO4)2 · 6H2O |
| P | ⓘ Metatorbernite | Cu(UO2)2(PO4)2 · 8H2O |
| P | ⓘ Monazite Group | REE(PO4) |
| P | ⓘ Monazite-(Ce) | Ce(PO4) |
| P | ⓘ Natrodufrénite | NaFe2+Fe53+(PO4)4(OH)6 · 2H2O |
| P | ⓘ Pseudomalachite | Cu5(PO4)2(OH)4 |
| P | ⓘ Rockbridgeite | (Fe2+0.5Fe3+0.5)2Fe33+(PO4)3(OH)5 |
| P | ⓘ Saléeite | Mg(UO2)2(PO4)2 · 10H2O |
| P | ⓘ Sampleite | NaCaCu5(PO4)4Cl · 5H2O |
| P | ⓘ Schreibersite | (Fe,Ni)3P |
| P | ⓘ Metanatroautunite | Na(UO2)(PO4)(H2O)3 |
| P | ⓘ Strengite | FePO4 · 2H2O |
| P | ⓘ Torbernite | Cu(UO2)2(PO4)2 · 12H2O |
| P | ⓘ Turquoise | CuAl6(PO4)4(OH)8 · 4H2O |
| P | ⓘ Ulrichite | CaCu(UO2)(PO4)2 · 4H2O |
| P | ⓘ Variscite | AlPO4 · 2H2O |
| P | ⓘ Wardite | NaAl3(PO4)2(OH)4 · 2H2O |
| P | ⓘ Wavellite | Al3(PO4)2(OH)3 · 5H2O |
| P | ⓘ Wycheproofite | NaAlZr(PO4)2(OH) · H2O |
| P | ⓘ Xenotime-(Y) | Y(PO4) |
| P | ⓘ Merrillite | Ca9NaMg(PO4)7 |
| P | ⓘ Cheralite | CaTh(PO4)2 |
| P | ⓘ Bleasdaleite | (Ca,Fe3+)2Cu5(Bi,Cu)(PO4)4(H2O,OH,Cl)13 |
| P | ⓘ Meurigite-K | KFe83+(PO4)6(OH)7 · 6.5H2O |
| P | ⓘ Selwynite | NaK(Be,Al)Zr2(PO4)4 · 2H2O |
| P | ⓘ Apatite | Ca5(PO4)3(Cl/F/OH) |
| P | ⓘ Lakebogaite | CaNaFe23+H(UO2)2(PO4)4(OH)2 · 8H2O |
| P | ⓘ Meurigite-Na | NaFe83+(PO4)6(OH)7 · 6.5H2O |
| P | ⓘ Kunatite | CuFe23+(PO4)2(OH)2 · 4H2O |
| P | ⓘ UM2007-17-PO:CaClCuHNa | NaCaCu5(PO4)4Cl · nH2O (n~4.5) |
| S | Sulfur | |
| S | ⓘ Aikinite | PbCuBiS3 |
| S | ⓘ Alunogen | Al2(SO4)3 · 17H2O |
| S | ⓘ Baryte | BaSO4 |
| S | ⓘ Bornite | Cu5FeS4 |
| S | ⓘ Celestine | SrSO4 |
| S | ⓘ Chalcopyrite | CuFeS2 |
| S | ⓘ Chalcanthite | CuSO4 · 5H2O |
| S | ⓘ Chalcocite | Cu2S |
| S | ⓘ Connellite | Cu19(SO4)(OH)32Cl4 · 3H2O |
| S | ⓘ Covellite | CuS |
| S | ⓘ Daubréelite | Fe2+Cr23+S4 |
| S | ⓘ Digenite | Cu9S5 |
| S | ⓘ Djurleite | Cu31S16 |
| S | ⓘ Epsomite | MgSO4 · 7H2O |
| S | ⓘ Geerite | Cu8S5 |
| S | ⓘ Glauberite | Na2Ca(SO4)2 |
| S | ⓘ Gypsum | CaSO4 · 2H2O |
| S | ⓘ Halotrichite | FeAl2(SO4)4 · 22H2O |
| S | ⓘ Hexahydrite | MgSO4 · 6H2O |
| S | ⓘ Isocubanite | CuFe2S3 |
| S | ⓘ Mackinawite | FeS |
| S | ⓘ Mirabilite | Na2SO4 · 10H2O |
| S | ⓘ Molybdenite | MoS2 |
| S | ⓘ Natrojarosite | NaFe3(SO4)2(OH)6 |
| S | ⓘ Oldhamite | CaS |
| S | ⓘ Pentlandite | (NixFey)Σ9S8 |
| S | ⓘ Pickeringite | MgAl2(SO4)4 · 22H2O |
| S | ⓘ Pyrite | FeS2 |
| S | ⓘ Pyrrhotite | Fe1-xS |
| S | ⓘ Redingtonite | (Fe2+,Mg,Ni)(Cr,Al)2(SO4)4 · 22H2O |
| S | ⓘ Sideronatrite | Na2Fe(SO4)2(OH) · 3H2O |
| S | ⓘ Sphalerite | ZnS |
| S | ⓘ Tamarugite | NaAl(SO4)2 · 6H2O |
| S | ⓘ Thénardite | Na2SO4 |
| S | ⓘ Tochilinite | Fe2+5-6(Mg,Fe2+)5S6(OH)10 |
| S | ⓘ Troilite | FeS |
| S | ⓘ Gypsum var. Selenite | CaSO4 · 2H2O |
| S | ⓘ Schwertmannite | Fe163+(OH,SO4)12-13O16 · 10-12H2O |
| S | ⓘ Murchisite | Cr5S6 |
| Cl | Chlorine | |
| Cl | ⓘ Atacamite | Cu2(OH)3Cl |
| Cl | ⓘ Bismoclite | BiOCl |
| Cl | ⓘ Chlorapatite | Ca5(PO4)3Cl |
| Cl | ⓘ Chlorargyrite | AgCl |
| Cl | ⓘ Connellite | Cu19(SO4)(OH)32Cl4 · 3H2O |
| Cl | ⓘ Halite | NaCl |
| Cl | ⓘ Calcium Amphibole Subgroup var. Hornblende | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| Cl | ⓘ Lawrencite | (Fe2+,Ni)Cl2 |
| Cl | ⓘ Sampleite | NaCaCu5(PO4)4Cl · 5H2O |
| Cl | ⓘ Bleasdaleite | (Ca,Fe3+)2Cu5(Bi,Cu)(PO4)4(H2O,OH,Cl)13 |
| Cl | ⓘ Apatite | Ca5(PO4)3(Cl/F/OH) |
| Cl | ⓘ Calcium Amphibole Subgroup | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| Cl | ⓘ UM2007-17-PO:CaClCuHNa | NaCaCu5(PO4)4Cl · nH2O (n~4.5) |
| K | Potassium | |
| K | ⓘ Biotite | K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 |
| K | ⓘ Muscovite var. Illite | K0.65Al2.0[Al0.65Si3.35O10](OH)2 |
| K | ⓘ Kosnarite | KZr2(PO4)3 |
| K | ⓘ Leucophosphite | KFe23+(PO4)2(OH) · 2H2O |
| K | ⓘ Leucite | K(AlSi2O6) |
| K | ⓘ Microcline | K(AlSi3O8) |
| K | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| K | ⓘ Nepheline | Na3K(Al4Si4O16) |
| K | ⓘ Orthoclase | K(AlSi3O8) |
| K | ⓘ Meurigite-K | KFe83+(PO4)6(OH)7 · 6.5H2O |
| K | ⓘ Selwynite | NaK(Be,Al)Zr2(PO4)4 · 2H2O |
| Ca | Calcium | |
| Ca | ⓘ Anorthite | Ca(Al2Si2O8) |
| Ca | ⓘ Aragonite | CaCO3 |
| Ca | ⓘ Augite | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| Ca | ⓘ Autunite | Ca(UO2)2(PO4)2 · 10-12H2O |
| Ca | ⓘ Calcite | CaCO3 |
| Ca | ⓘ Fluorapatite var. Carbonate-rich Fluorapatite | Ca5(PO4,CO3)3(F,O) |
| Ca | ⓘ Chlorapatite | Ca5(PO4)3Cl |
| Ca | ⓘ Crandallite | CaAl3(PO4)(PO3OH)(OH)6 |
| Ca | ⓘ Diopside | CaMgSi2O6 |
| Ca | ⓘ Dolomite | CaMg(CO3)2 |
| Ca | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| Ca | ⓘ Fluorapatite | Ca5(PO4)3F |
| Ca | ⓘ Fluorite | CaF2 |
| Ca | ⓘ Glauberite | Na2Ca(SO4)2 |
| Ca | ⓘ Grossite | CaAl4O7 |
| Ca | ⓘ Gypsum | CaSO4 · 2H2O |
| Ca | ⓘ Hibonite | CaAl12O19 |
| Ca | ⓘ Calcium Amphibole Subgroup var. Hornblende | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| Ca | ⓘ Meta-autunite | Ca(UO2)2(PO4)2 · 6H2O |
| Ca | ⓘ Montmorillonite | (Na,Ca)0.33(Al,Mg)2(Si4O10)(OH)2 · nH2O |
| Ca | ⓘ Oldhamite | CaS |
| Ca | ⓘ Perovskite | CaTiO3 |
| Ca | ⓘ Pigeonite | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| Ca | ⓘ Portlandite | Ca(OH)2 |
| Ca | ⓘ Powellite | Ca(MoO4) |
| Ca | ⓘ Sampleite | NaCaCu5(PO4)4Cl · 5H2O |
| Ca | ⓘ Ulrichite | CaCu(UO2)(PO4)2 · 4H2O |
| Ca | ⓘ Whewellite | Ca(C2O4) · H2O |
| Ca | ⓘ Gypsum var. Selenite | CaSO4 · 2H2O |
| Ca | ⓘ Merrillite | Ca9NaMg(PO4)7 |
| Ca | ⓘ Cheralite | CaTh(PO4)2 |
| Ca | ⓘ Bleasdaleite | (Ca,Fe3+)2Cu5(Bi,Cu)(PO4)4(H2O,OH,Cl)13 |
| Ca | ⓘ Plagioclase | (Na,Ca)[(Si,Al)AlSi2]O8 |
| Ca | ⓘ Augite var. Fassaite | (Ca,Na)(Mg,Fe2+,Al,Fe3+,Ti)[(Si,Al)2O6] |
| Ca | ⓘ Protodolomite | (Ca,Mg)CO3 |
| Ca | ⓘ Apatite | Ca5(PO4)3(Cl/F/OH) |
| Ca | ⓘ Melilite Group | Ca2M(XSiO7) |
| Ca | ⓘ Calcium Amphibole Subgroup | AnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2 |
| Ca | ⓘ Lakebogaite | CaNaFe23+H(UO2)2(PO4)4(OH)2 · 8H2O |
| Ca | ⓘ Warkite | Ca2Sc6Al6O20 |
| Ca | ⓘ UM2007-17-PO:CaClCuHNa | NaCaCu5(PO4)4Cl · nH2O (n~4.5) |
| Sc | Scandium | |
| Sc | ⓘ Warkite | Ca2Sc6Al6O20 |
| Ti | Titanium | |
| Ti | ⓘ Anatase | TiO2 |
| Ti | ⓘ Biotite | K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 |
| Ti | ⓘ Ilmenite | Fe2+TiO3 |
| Ti | ⓘ Perovskite | CaTiO3 |
| Ti | ⓘ Pseudorutile | Fe2Ti3O9 |
| Ti | ⓘ Rutile | TiO2 |
| Ti | ⓘ Magnetite var. Titanium-bearing Magnetite | Fe2+(Fe3+,Ti)2O4 |
| Ti | ⓘ Pseudorutile var. Hydroxylian Pseudorutile | FeTi6O13 · 4H2O ? |
| Ti | ⓘ Augite var. Fassaite | (Ca,Na)(Mg,Fe2+,Al,Fe3+,Ti)[(Si,Al)2O6] |
| Ti | ⓘ Machiite | Al2Ti3O9 |
| Cr | Chromium | |
| Cr | ⓘ Chromite | Fe2+Cr23+O4 |
| Cr | ⓘ Daubréelite | Fe2+Cr23+S4 |
| Cr | ⓘ Eskolaite | Cr2O3 |
| Cr | ⓘ Redingtonite | (Fe2+,Mg,Ni)(Cr,Al)2(SO4)4 · 22H2O |
| Cr | ⓘ Murchisite | Cr5S6 |
| Mn | Manganese | |
| Mn | ⓘ Eosphorite | Mn2+Al(PO4)(OH)2 · H2O |
| Mn | ⓘ Pyrolusite | Mn4+O2 |
| Fe | Iron | |
| Fe | ⓘ Aegirine | NaFe3+Si2O6 |
| Fe | ⓘ Augite | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| Fe | ⓘ Biotite | K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 |
| Fe | ⓘ Bornite | Cu5FeS4 |
| Fe | ⓘ Cacoxenite | Fe243+AlO6(PO4)17(OH)12 · 75H2O |
| Fe | ⓘ Chalcosiderite | CuFe63+(PO4)4(OH)8 · 4H2O |
| Fe | ⓘ Chalcopyrite | CuFeS2 |
| Fe | ⓘ Chromite | Fe2+Cr23+O4 |
| Fe | ⓘ Cronstedtite | Fe22+Fe3+((Si,Fe3+)2O5)(OH)4 |
| Fe | ⓘ Cyrilovite | NaFe33+(PO4)2(OH)4 · 2H2O |
| Fe | ⓘ Daubréelite | Fe2+Cr23+S4 |
| Fe | ⓘ Epidote | (CaCa)(AlAlFe3+)O[Si2O7][SiO4](OH) |
| Fe | ⓘ Ferberite | FeWO4 |
| Fe | ⓘ Goethite | Fe3+O(OH) |
| Fe | ⓘ Greenalite | (Fe2+,Fe3+)2-3Si2O5(OH)4 |
| Fe | ⓘ Halotrichite | FeAl2(SO4)4 · 22H2O |
| Fe | ⓘ Hematite | Fe2O3 |
| Fe | ⓘ Hypersthene | (Mg,Fe)SiO3 |
| Fe | ⓘ Ilmenite | Fe2+TiO3 |
| Fe | ⓘ Native Iron | Fe |
| Fe | ⓘ Isocubanite | CuFe2S3 |
| Fe | ⓘ Native Iron var. Kamacite | (Fe,Ni) |
| Fe | ⓘ Kidwellite | NaFe3+9+x(PO4)6(OH)11 · 3H2O, x = 0.33 |
| Fe | ⓘ Lawrencite | (Fe2+,Ni)Cl2 |
| Fe | ⓘ Leucophosphite | KFe23+(PO4)2(OH) · 2H2O |
| Fe | ⓘ Mackinawite | FeS |
| Fe | ⓘ Magnetite | Fe2+Fe23+O4 |
| Fe | ⓘ Natrodufrénite | NaFe2+Fe53+(PO4)4(OH)6 · 2H2O |
| Fe | ⓘ Natrojarosite | NaFe3(SO4)2(OH)6 |
| Fe | ⓘ Nontronite | Na0.3Fe2((Si,Al)4O10)(OH)2 · nH2O |
| Fe | ⓘ Pentlandite | (NixFey)Σ9S8 |
| Fe | ⓘ Pigeonite | (CaxMgyFez)(Mgy1Fez1)Si2O6 |
| Fe | ⓘ Pseudorutile | Fe2Ti3O9 |
| Fe | ⓘ Pyrite | FeS2 |
| Fe | ⓘ Pyrrhotite | Fe1-xS |
| Fe | ⓘ Redingtonite | (Fe2+,Mg,Ni)(Cr,Al)2(SO4)4 · 22H2O |
| Fe | ⓘ Rockbridgeite | (Fe2+0.5Fe3+0.5)2Fe33+(PO4)3(OH)5 |
| Fe | ⓘ Schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3(OH) |
| Fe | ⓘ Schreibersite | (Fe,Ni)3P |
| Fe | ⓘ Siderite | FeCO3 |
| Fe | ⓘ Sideronatrite | Na2Fe(SO4)2(OH) · 3H2O |
| Fe | ⓘ Strengite | FePO4 · 2H2O |
| Fe | ⓘ Taenite | (Fe,Ni) |
| Fe | ⓘ Tetrataenite | FeNi |
| Fe | ⓘ Magnetite var. Titanium-bearing Magnetite | Fe2+(Fe3+,Ti)2O4 |
| Fe | ⓘ Tochilinite | Fe2+5-6(Mg,Fe2+)5S6(OH)10 |
| Fe | ⓘ Troilite | FeS |
| Fe | ⓘ Spinel var. Pleonaste | (Mg,Fe)Al2O4 |
| Fe | ⓘ Bleasdaleite | (Ca,Fe3+)2Cu5(Bi,Cu)(PO4)4(H2O,OH,Cl)13 |
| Fe | ⓘ Pseudorutile var. Hydroxylian Pseudorutile | FeTi6O13 · 4H2O ? |
| Fe | ⓘ Meurigite-K | KFe83+(PO4)6(OH)7 · 6.5H2O |
| Fe | ⓘ Schwertmannite | Fe163+(OH,SO4)12-13O16 · 10-12H2O |
| Fe | ⓘ Fayalite-Forsterite Series | |
| Fe | ⓘ Native Iron var. Martensite | Fe |
| Fe | ⓘ Augite var. Fassaite | (Ca,Na)(Mg,Fe2+,Al,Fe3+,Ti)[(Si,Al)2O6] |
| Fe | ⓘ Fluor-schorl | NaFe32+Al6(Si6O18)(BO3)3(OH)3F |
| Fe | ⓘ Lakebogaite | CaNaFe23+H(UO2)2(PO4)4(OH)2 · 8H2O |
| Fe | ⓘ Meurigite-Na | NaFe83+(PO4)6(OH)7 · 6.5H2O |
| Fe | ⓘ Hexamolybdenum | (Mo,Ru,Fe,Ir,Os) |
| Fe | ⓘ Kunatite | CuFe23+(PO4)2(OH)2 · 4H2O |
| Ni | Nickel | |
| Ni | ⓘ Native Iron var. Kamacite | (Fe,Ni) |
| Ni | ⓘ Lawrencite | (Fe2+,Ni)Cl2 |
| Ni | ⓘ Pentlandite | (NixFey)Σ9S8 |
| Ni | ⓘ Redingtonite | (Fe2+,Mg,Ni)(Cr,Al)2(SO4)4 · 22H2O |
| Ni | ⓘ Schreibersite | (Fe,Ni)3P |
| Ni | ⓘ Taenite | (Fe,Ni) |
| Ni | ⓘ Tetrataenite | FeNi |
| Cu | Copper | |
| Cu | ⓘ Aikinite | PbCuBiS3 |
| Cu | ⓘ Atacamite | Cu2(OH)3Cl |
| Cu | ⓘ Azurite | Cu3(CO3)2(OH)2 |
| Cu | ⓘ Bornite | Cu5FeS4 |
| Cu | ⓘ Chalcosiderite | CuFe63+(PO4)4(OH)8 · 4H2O |
| Cu | ⓘ Chalcopyrite | CuFeS2 |
| Cu | ⓘ Chalcanthite | CuSO4 · 5H2O |
| Cu | ⓘ Chalcocite | Cu2S |
| Cu | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| Cu | ⓘ Connellite | Cu19(SO4)(OH)32Cl4 · 3H2O |
| Cu | ⓘ Covellite | CuS |
| Cu | ⓘ Cuprite | Cu2O |
| Cu | ⓘ Native Copper | Cu |
| Cu | ⓘ Digenite | Cu9S5 |
| Cu | ⓘ Djurleite | Cu31S16 |
| Cu | ⓘ Geerite | Cu8S5 |
| Cu | ⓘ Isocubanite | CuFe2S3 |
| Cu | ⓘ Libethenite | Cu2(PO4)(OH) |
| Cu | ⓘ Malachite | Cu2(CO3)(OH)2 |
| Cu | ⓘ Metatorbernite | Cu(UO2)2(PO4)2 · 8H2O |
| Cu | ⓘ Pseudomalachite | Cu5(PO4)2(OH)4 |
| Cu | ⓘ Sampleite | NaCaCu5(PO4)4Cl · 5H2O |
| Cu | ⓘ Torbernite | Cu(UO2)2(PO4)2 · 12H2O |
| Cu | ⓘ Turquoise | CuAl6(PO4)4(OH)8 · 4H2O |
| Cu | ⓘ Ulrichite | CaCu(UO2)(PO4)2 · 4H2O |
| Cu | ⓘ Bleasdaleite | (Ca,Fe3+)2Cu5(Bi,Cu)(PO4)4(H2O,OH,Cl)13 |
| Cu | ⓘ Kunatite | CuFe23+(PO4)2(OH)2 · 4H2O |
| Cu | ⓘ UM2007-17-PO:CaClCuHNa | NaCaCu5(PO4)4Cl · nH2O (n~4.5) |
| Zn | Zinc | |
| Zn | ⓘ Sphalerite | ZnS |
| Sr | Strontium | |
| Sr | ⓘ Celestine | SrSO4 |
| Y | Yttrium | |
| Y | ⓘ Xenotime-(Y) | Y(PO4) |
| Zr | Zirconium | |
| Zr | ⓘ Kosnarite | KZr2(PO4)3 |
| Zr | ⓘ Wycheproofite | NaAlZr(PO4)2(OH) · H2O |
| Zr | ⓘ Zircon | Zr(SiO4) |
| Zr | ⓘ Selwynite | NaK(Be,Al)Zr2(PO4)4 · 2H2O |
| Mo | Molybdenum | |
| Mo | ⓘ Molybdenite | MoS2 |
| Mo | ⓘ Powellite | Ca(MoO4) |
| Mo | ⓘ Hexamolybdenum | (Mo,Ru,Fe,Ir,Os) |
| Ru | Ruthenium | |
| Ru | ⓘ Hexamolybdenum | (Mo,Ru,Fe,Ir,Os) |
| Ag | Silver | |
| Ag | ⓘ Chlorargyrite | AgCl |
| Ag | ⓘ Iodargyrite | AgI |
| Sn | Tin | |
| Sn | ⓘ Cassiterite | SnO2 |
| Te | Tellurium | |
| Te | ⓘ Moncheite | Pt(Te,Bi)2 |
| I | Iodine | |
| I | ⓘ Iodargyrite | AgI |
| Ba | Barium | |
| Ba | ⓘ Baryte | BaSO4 |
| Ce | Cerium | |
| Ce | ⓘ Monazite-(Ce) | Ce(PO4) |
| W | Tungsten | |
| W | ⓘ Ferberite | FeWO4 |
| Os | Osmium | |
| Os | ⓘ Hexamolybdenum | (Mo,Ru,Fe,Ir,Os) |
| Ir | Iridium | |
| Ir | ⓘ Hexamolybdenum | (Mo,Ru,Fe,Ir,Os) |
| Pt | Platinum | |
| Pt | ⓘ Moncheite | Pt(Te,Bi)2 |
| Au | Gold | |
| Au | ⓘ Native Gold | Au |
| Pb | Lead | |
| Pb | ⓘ Aikinite | PbCuBiS3 |
| Bi | Bismuth | |
| Bi | ⓘ Aikinite | PbCuBiS3 |
| Bi | ⓘ Bismoclite | BiOCl |
| Bi | ⓘ Native Bismuth | Bi |
| Bi | ⓘ Moncheite | Pt(Te,Bi)2 |
| Bi | ⓘ Bleasdaleite | (Ca,Fe3+)2Cu5(Bi,Cu)(PO4)4(H2O,OH,Cl)13 |
| Th | Thorium | |
| Th | ⓘ Cheralite | CaTh(PO4)2 |
| U | Uranium | |
| U | ⓘ Autunite | Ca(UO2)2(PO4)2 · 10-12H2O |
| U | ⓘ Meta-autunite | Ca(UO2)2(PO4)2 · 6H2O |
| U | ⓘ Metatorbernite | Cu(UO2)2(PO4)2 · 8H2O |
| U | ⓘ Saléeite | Mg(UO2)2(PO4)2 · 10H2O |
| U | ⓘ Metanatroautunite | Na(UO2)(PO4)(H2O)3 |
| U | ⓘ Torbernite | Cu(UO2)2(PO4)2 · 12H2O |
| U | ⓘ Ulrichite | CaCu(UO2)(PO4)2 · 4H2O |
| U | ⓘ Uraninite | UO2 |
| U | ⓘ Lakebogaite | CaNaFe23+H(UO2)2(PO4)4(OH)2 · 8H2O |
Geochronology
Mineralization age: to Carboniferous : 7000 Ma to 309 ± 6 MaImportant note: This table is based only on rock and mineral ages recorded on mindat.org for this locality and is not necessarily a complete representation of the geochronology, but does give an indication of possible mineralization events relevant to this locality. As more age information is added this table may expand in the future. A break in the table simply indicates a lack of data entered here, not necessarily a break in the geologic sequence. Grey background entries are from different, related, localities.
| Geologic Time | Rocks, Minerals and Events | |||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Phanerozoic | ||||||||||||||||
| Paleozoic | ||||||||||||||||
| Carboniferous | ||||||||||||||||
| Pennsylvanian |
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| Devonian | ||||||||||||||||
| Late/Upper Devonian |
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| Middle Devonian |
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Fossils
There are 72 fossil localities from the PaleoBioDB database within this region.These data are provided on an experimental basis and are taken from external databases. Mindat.org has no control currently over the accuracy of these data.
| Occurrences | 943 |
|---|---|
| Youngest Fossil Listed | 0.01 Ma (Pleistocene) |
| Oldest Fossil Listed | 439 Ma (Silurian) |
| Stratigraphic Units | Click here to view 25 stratigraphic units. |
| Fossils from Region | Click here to show the list. |
| Fossil Localities | Click to show 72 fossil localities |
- New South Wales
- Cenozoic🐚 Bone Gulch
- Miocene🐚 Bookpurnong Fm
- Cenozoic🐚 Fisherman's Ciff
- Pleistocene🐚 Fisherman's Cliff
- Pleistocene🐚 Keilor Cranium
- Pleistocene🐚 Lake Menindee
- Pleistocene🐚 Lake Tandou
- Cenozoic🐚 Menindee
- Early/Lower Devonian🐚 Mount Ida Formation
- Pleistocene🐚 Site 50
- Pleistocene🐚 Unit B
- Pleistocene🐚 Willandra Lake
- South Australia
- Pleistocene🐚 Blanche Cave
- Miocene🐚 Blanchetown
- Cenozoic🐚 Bookmark Cliffs
- Pleistocene🐚 Buckridge Cave
- Pleistocene🐚 Bundey
- Pleistocene🐚 Cheese and Putty Cave
- Pleistocene🐚 Comaum Forest Cave
- Pleistocene🐚 Coorong Beach
- Oligocene🐚 Fred's Landing
- Miocene🐚 Mannum
- Miocene🐚 Mannum Limestone
- Miocene🐚 Murray River Cliffs
- Miocene🐚 Nor'west Bend
- Miocene🐚 Overland Corner
- Cenozoic🐚 Oyster buildup
- Cenozoic🐚 Oyster buildup Walker Flat
- Miocene🐚 PL3084 - south of Morgan
- Pleistocene🐚 Robertson Cave
- Miocene🐚 Small gully 4.8 km S of Morgan Ferry–Cadell road
- Pleistocene🐚 Victoria Fossil Cave
- Cenozoic🐚 Wellington
Localities in this Region
- New South Wales
- Balranald Shire
- Cadell Co.
- Nicholson Co.
- Taila Co.
- Tara Co.
- Townsend Co.
- Wakool Co.
- Wentworth Co.
- Windeyer Co.
- Young Co.
- Wilcannia
- Weinterigen Station
- Wilcannia
- South Australia
- Alexandrina Council
- Goolwa
- Berri Barmera Council
- Barmera
- Coorong District Council
- District Council of Karoonda East Murray
- Alexandrina Council
- South Australia
- District Council of Karoonda East Murray
- District Council of Loxton Waikerie
- Lake Alexandrina
- Mid Murray Council
- ⭔Murray Mallee
- Murray Riverlands
- Naracoorte Lucindale Council
- Naracoorte
- Pastoral Unincorporated Area
- Anabama Hill
- Warnes
- Renmark Paringa Council
- Southern Mallee District Council
- Pinnaroo
- Victoria
- Buloke Shire
- Lake Tyrell
- Wycheproof
- Campaspe Shire
- Rushworth
- City of Greater Shepparton
- Cosgrove
- Murchison
- Gannawarra Shire
- Loddon Shire
- Moira Shire
- Waggarandall
- Northern Grampians Shire
- Glenorchy
- Stawell
- Rural City of Horsham
- Rural City of Mildura
- Carwarp
- Hattah
- Lake Cullulleraine
- Linga
- Mildura
- Rural City of Wangaratta
- Eldorado
- Swan Hill Rural City
- Yarriambiack Shire
- Buloke Shire
Other Regions, Features and Areas that Intersect
Australia
- Adelaide SuperbasinBasin
- Berri BasinBasin
- Curnamona ProvinceGeologic Province
- Redan DomainDomain
- Delamerian OrogenOrogen
- Great Dividing RangeMountain Range
- Lachlan OrogenOrogen
- Bendigo ZoneZone (Tectonic)
- Melbourne-Mathinna ZoneZone (Tectonic)
- Tabberabbera ZoneZone (Tectonic)
- West ProvinceGeologic Province
- New South Wales
- Darling BasinBasin
- South Australia
- Coorong National ParkNational Park
- Fleurieu PeninsulaPeninsula
- South Australia
- Lake AlexandrinaLake
- Mount Lofty RangesMountain Range
- Murray BasinBasin
- Olary ProvinceGeologic Province
- South East - Limestone CoastCoast
- South Mount Lofty Ranges (Adelaide Hills)Mountain Range
- Victoria
- Bendigo ZoneZone (Tectonic)
- Murray-Sunset National ParkNational Park
- Selwyn ProvinceGeologic Province
Australian PlateTectonic Plate
- Delamerian OrogenOrogenic Belt
- Lachlan Fold BeltOrogenic Belt
- Stalwell ZoneOrogenic Belt
- Macquarie Arc
- Hay-Booligal ZoneVolcanic Arc
- South Australian Craton
- Adelaide Rift ComplexOrogenic Belt
This page contains all mineral locality references listed on mindat.org. This does not claim to be a complete list. If you know of more minerals from this site, please register so you can add to our database. This locality information is for reference purposes only. You should never attempt to
visit any sites listed in mindat.org without first ensuring that you have the permission of the land and/or mineral rights holders
for access and that you are aware of all safety precautions necessary.
References
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Cocks Eldorado dredge, Eldorado, Rural City of Wangaratta, Victoria, Australia