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Gunpowder District, City of Mount Isa, Queensland, Australiai
Regional Level Types
Gunpowder DistrictMining District
City of Mount IsaCity
QueenslandState
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Latitude & Longitude:
19° South , 138° East (est.)
Estimate based on other nearby localities or region boundaries.
Margin of Error:
~215km
Locality type:


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Select Mineral List Type

Standard Detailed Gallery Strunz Chemical Elements

Commodity 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-localities

62 valid minerals. 1 (TL) - type locality of valid minerals.

Rock Types Recorded

Note: data is currently VERY limited. Please bear with us while we work towards adding this information!

Rock list contains entries from the region specified including sub-localities

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Alphabetical List Tree Diagram

Detailed Mineral List:

β“˜ Alunite
Formula: KAl3(SO4)2(OH)6
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Anglesite
Formula: PbSO4
Reference: ournal of Geochemical Exploration Volume 8, Issues 1-2, October 1977, Pages 189-202
β“˜ Anilite
Formula: Cu7S4
Reference: Richardson, S.M. and Day, A.D. (1997) Geology of the Esperanza copper deposit. Proceedings of the 3rd International Mining Geology Conference, Launceston. pg. 51-56; Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ Ankerite
Formula: Ca(Fe2+,Mg)(CO3)2
Reference: Large, R. R., & McGoldrick, P. J. (1998). Lithogeochemical halos and geochemical vectors to stratiform sediment hosted Zn–Pb–Ag deposits, 1. Lady Loretta Deposit, Queensland. Journal of Geochemical Exploration, 63(1), 37-56.
β“˜ Antlerite
Formula: Cu3(SO4)(OH)4
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Arsenopyrite
Formula: FeAsS
Reference: Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ Asbolane
Formula: (Ni,Co)2-xMn4+(O,OH)4 · nH2O
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Atacamite
Formula: Cu2(OH)3Cl
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Azurite
Formula: Cu3(CO3)2(OH)2
Reference: Sielecki, R. (1988): The Mount Isa-Cloncurry Mineral Field. Mineralogical Record, 19, 469ff.
β“˜ Baryte
Formula: BaSO4
Reference: ournal of Geochemical Exploration Volume 8, Issues 1-2, October 1977, Pages 189-202; Large, R. R., & McGoldrick, P. J. (1998). Lithogeochemical halos and geochemical vectors to stratiform sediment hosted Zn–Pb–Ag deposits, 1. Lady Loretta Deposit, Queensland. Journal of Geochemical Exploration, 63(1), 37-56.
β“˜ 'Biotite'
Formula: K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Reference: Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ Bornite
Formula: Cu5FeS4
Reference: Rob Lavinsky
β“˜ Brochantite
Formula: Cu4(SO4)(OH)6
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Calcite
Formula: CaCO3
Reference: Econ Geol (1991) 86:278-301
β“˜ Cerussite
Formula: PbCO3
Reference: ournal of Geochemical Exploration Volume 8, Issues 1-2, October 1977, Pages 189-202
β“˜ Chalcoalumite
Formula: CuAl4(SO4)(OH)12 · 3H2O
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Chalcocite
Formula: Cu2S
Localities: Reported from at least 6 localities in this region.
Reference: http://www.buka.com.au/minresjun2001.html
β“˜ Chalcopyrite
Formula: CuFeS2
Localities: Reported from at least 10 localities in this region.
Reference: van Dijk, P.M. (1991) Regional syndeformational copper mineralization in the western Mount Isa Block, Australia. Economic Geology 86:2, 278-301.
β“˜ Chalcosiderite
Formula: CuFe3+6(PO4)4(OH)8 · 4H2O
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ 'Chlorite Group'
Reference: Econ Geol (1991) 86:278-301
β“˜ Chrysocolla
Formula: Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
Reference: Sielecki, R. (1988): The Mount Isa-Cloncurry Mineral Field. Mineralogical Record, 19, 469ff.
β“˜ Cobaltite
Formula: CoAsS
Reference: Richardson, S.M. and Day, A.D. (1997) Geology of the Esperanza copper deposit. Proceedings of the 3rd International Mining Geology Conference, Launceston. pg. 51-56; Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ Conichalcite
Formula: CaCu(AsO4)(OH)
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Copper
Formula: Cu
Reference: Richardson, S.M. and Day, A.D. (1997) Geology of the Esperanza copper deposit. Proceedings of the 3rd International Mining Geology Conference, Launceston. pg. 51-56
β“˜ 'Copper Stain'
Reference: Econ Geol (1991) 86:278-301
β“˜ Covellite
Formula: CuS
Reference: Econ Geol (1991) 86:278-301
β“˜ Cuprite
Formula: Cu2O
Reference: http://www.buka.com.au/minresjun2001.html; de Keyser, F. (1958) Geology and mineral deposits in the Paradise Creek area, North-West Queensland, Bureau of Mineral Resources, Geology and Geophysics, Department of National Development, Record 1958/100.
β“˜ Cyanotrichite
Formula: Cu4Al2(SO4)(OH)12 · 2H2O
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Digenite
Formula: Cu9S5
Reference: Rob Lavinsky
β“˜ Djurleite
Formula: Cu31S16
Reference: Richardson, S.M. and Day, A.D. (1997) Geology of the Esperanza copper deposit. Proceedings of the 3rd International Mining Geology Conference, Launceston. pg. 51-56; Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ Dolomite
Formula: CaMg(CO3)2
Localities: Reported from at least 7 localities in this region.
Reference: van Dijk, P.M. (1991) Regional syndeformational copper mineralization in the western Mount Isa Block, Australia. Economic Geology 86:2, 278-301.
β“˜ Enargite
Formula: Cu3AsS4
Reference: Richardson, S.M. and Day, A.D. (1997) Geology of the Esperanza copper deposit. Proceedings of the 3rd International Mining Geology Conference, Launceston. pg. 51-56; Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ 'Freibergite Subgroup'
Formula: (Ag6,[Ag6]4+)(Cu4 C2+2)Sb4S12S0-1
Reference: Large, R. R., & McGoldrick, P. J. (1998). Lithogeochemical halos and geochemical vectors to stratiform sediment hosted Zn–Pb–Ag deposits, 1. Lady Loretta Deposit, Queensland. Journal of Geochemical Exploration, 63(1), 37-56.
β“˜ Galena
Formula: PbS
Reference: Min Yearbook (1988) - zinc: 6.; Canadian Mineralogist Vol. 23, pp. 89-94 (1985); ournal of Geochemical Exploration Volume 8, Issues 1-2, October 1977, Pages 189-202; Large, R. R., & McGoldrick, P. J. (1998). Lithogeochemical halos and geochemical vectors to stratiform sediment hosted Zn–Pb–Ag deposits, 1. Lady Loretta Deposit, Queensland. Journal of Geochemical Exploration, 63(1), 37-56.
β“˜ Geerite
Formula: Cu8S5
Reference: Richardson, S.M. and Day, A.D. (1997) Geology of the Esperanza copper deposit. Proceedings of the 3rd International Mining Geology Conference, Launceston. pg. 51-56
β“˜ Gibbsite
Formula: Al(OH)3
Reference: Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ Goethite
Formula: Ξ±-Fe3+O(OH)
Reference: Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ Greenockite
Formula: CdS
Reference: Min. Yearbook (1988) - zinc: 6.; Canadian Mineralogist Vol. 23, pp. 89-94 (1985)
β“˜ Greenockite var. Zinc-bearing Greenockite
Formula: (Cd,Zn)S
Reference: Min. Yearbook (1988) - zinc: 6.; Canadian Mineralogist Vol. 23, pp. 89-94 (1985)
β“˜ Hematite
Formula: Fe2O3
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Jarosite
Formula: KFe3+ 3(SO4)2(OH)6
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Kaolinite
Formula: Al2(Si2O5)(OH)4
Reference: Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ Leucophosphite
Formula: KFe3+2(PO4)2(OH) · 2H2O
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Libethenite
Formula: Cu2(PO4)(OH)
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Malachite
Formula: Cu2(CO3)(OH)2
Localities: Reported from at least 7 localities in this region.
Reference: Sielecki, R. (1988): The Mount Isa-Cloncurry Mineral Field. Mineralogical Record, 19, 469ff.
β“˜ Marcasite
Formula: FeS2
Reference: Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ 'Mica Group'
Reference: van Dijk, P.M. (1991) Regional syndeformational copper mineralization in the western Mount Isa Block, Australia. Economic Geology 86:2, 278-301.
β“˜ Molybdenite
Formula: MoS2
Reference: Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ 'Monazite'
Formula: REE(PO4)
Reference: Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ NatrodufrΓ©nite
Formula: NaFe2+Fe3+5(PO4)4(OH)6 · 2H2O
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Nissonite
Formula: Cu2Mg2(PO4)2(OH)2 · 5H2O
Reference: Min Rec 24:49
β“˜ Olivenite
Formula: Cu2(AsO4)(OH)
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Opal
Formula: SiO2 · nH2O
Reference: Richardson, S.M. and Day, A.D. (1997) Geology of the Esperanza copper deposit. Proceedings of the 3rd International Mining Geology Conference, Launceston. pg. 51-56
β“˜ Orthoclase
Formula: K(AlSi3O8)
Reference: Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ Pseudomalachite
Formula: Cu5(PO4)2(OH)4
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Pyrite
Formula: FeS2
Localities: Reported from at least 7 localities in this region.
Reference: Min Yearbook (1988) - zinc: 6.; Canadian Mineralogist Vol. 23, pp. 89-94 (1985); ournal of Geochemical Exploration Volume 8, Issues 1-2, October 1977, Pages 189-202; Carr, G. R. (1984). Primary geochemical and mineralogical dispersion in the vicinity of the Lady Loretta Zn-Pb-Ag deposit, northwest Queensland. Journal of Geochemical Exploration, 22(1), 217-238.; Large, R. R., & McGoldrick, P. J. (1998). Lithogeochemical halos and geochemical vectors to stratiform sediment hosted Zn–Pb–Ag deposits, 1. Lady Loretta Deposit, Queensland. Journal of Geochemical Exploration, 63(1), 37-56.
β“˜ Quartz
Formula: SiO2
Localities: Reported from at least 11 localities in this region.
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10. ; Econ Geol (1991) 86:278-301
β“˜ Rutile
Formula: TiO2
Reference: Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.
β“˜ Siderite
Formula: FeCO3
Reference: Carr, G. R. (1984). Primary geochemical and mineralogical dispersion in the vicinity of the Lady Loretta Zn-Pb-Ag deposit, northwest Queensland. Journal of Geochemical Exploration, 22(1), 217-238.; Large, R. R., & McGoldrick, P. J. (1998). Lithogeochemical halos and geochemical vectors to stratiform sediment hosted Zn–Pb–Ag deposits, 1. Lady Loretta Deposit, Queensland. Journal of Geochemical Exploration, 63(1), 37-56.
β“˜ Siegenite
Formula: CoNi2S4
Reference: Richardson, S.M. and Day, A.D. (1997) Geology of the Esperanza copper deposit. Proceedings of the 3rd International Mining Geology Conference, Launceston. pg. 51-56
β“˜ Sieleckiite (TL)
Formula: Cu3Al4(PO4)2(OH)12 · 2H2O
Type Locality:
Reference: Birch, W.D. & Pring, A. (1988) Sieleckiite, a new copper aluminium phosphate from Mt Oxide, Queensland, Australia. Mineralogical Magazine 52, 515-518; Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10; Elliott, P. (2017) Refinement of the crystal structure of sieleckiite and revision of its symmetry. Mineralogical Magazine, 81, 917-922.
β“˜ Sphalerite
Formula: ZnS
Reference: Min Yearbook (1988) - zinc: 6.; Canadian Mineralogist Vol. 23, pp. 89-94 (1985); ournal of Geochemical Exploration Volume 8, Issues 1-2, October 1977, Pages 189-202; Large, R. R., & McGoldrick, P. J. (1998). Lithogeochemical halos and geochemical vectors to stratiform sediment hosted Zn–Pb–Ag deposits, 1. Lady Loretta Deposit, Queensland. Journal of Geochemical Exploration, 63(1), 37-56.
β“˜ Spionkopite
Formula: Cu39S28
Reference: Richardson, S.M. and Day, A.D. (1997) Geology of the Esperanza copper deposit. Proceedings of the 3rd International Mining Geology Conference, Launceston. pg. 51-56
β“˜ Tenorite
Formula: CuO
Reference: de Keyser, F. (1958) Geology and mineral deposits in the Paradise Creek area, North-West Queensland, Bureau of Mineral Resources, Geology and Geophysics, Department of National Development, Record 1958/100.
β“˜ 'Tetrahedrite Subgroup'
Formula: Cu6(Cu4C2+2)Sb4S12S
Reference: ournal of Geochemical Exploration Volume 8, Issues 1-2, October 1977, Pages 189-202; Large, R. R., & McGoldrick, P. J. (1998). Lithogeochemical halos and geochemical vectors to stratiform sediment hosted Zn–Pb–Ag deposits, 1. Lady Loretta Deposit, Queensland. Journal of Geochemical Exploration, 63(1), 37-56.
β“˜ Turquoise
Formula: CuAl6(PO4)4(OH)8 · 4H2O
Reference: [MinRec 18:431, 19:471, 19:486]; Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Variscite
Formula: AlPO4 · 2H2O
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Wavellite
Formula: Al3(PO4)2(OH,F)3 · 5H2O
Reference: Day, B. E. & Beyer, B. D. (1996): Some mines of the Mt Isa district. Part 3 - The Mt Oxide mine. Australian J. of Mineralogy 2 (1), 3-10.
β“˜ Yarrowite
Formula: Cu9S8
Reference: Richardson, S.M. and Day, A.D. (1997) Geology of the Esperanza copper deposit. Proceedings of the 3rd International Mining Geology Conference, Launceston. pg. 51-56
β“˜ Zircon
Formula: Zr(SiO4)
Reference: Vera Munro-Smith (2006) Cobalt Mineralisation in Selected Australian Deposits. PhD thesis, University of Western Sydney.

Gallery:

List of minerals arranged by Strunz 10th Edition classification

Group 1 - Elements
β“˜Copper1.AA.05Cu
Group 2 - Sulphides and Sulfosalts
β“˜Anilite2.BA.10Cu7S4
β“˜Arsenopyrite2.EB.20FeAsS
β“˜Bornite2.BA.15Cu5FeS4
β“˜Chalcocite2.BA.05Cu2S
β“˜Chalcopyrite2.CB.10aCuFeS2
β“˜Cobaltite2.EB.25CoAsS
β“˜Covellite2.CA.05aCuS
β“˜Digenite2.BA.10Cu9S5
β“˜Djurleite2.BA.05Cu31S16
β“˜Enargite2.KA.05Cu3AsS4
β“˜'Freibergite Subgroup'2.GB.05(Ag6,[Ag6]4+)(Cu4 C2+2)Sb4S12S0-1
β“˜Galena2.CD.10PbS
β“˜Geerite2.BA.05Cu8S5
β“˜Greenockite2.CB.45CdS
β“˜var. Zinc-bearing Greenockite2.CB.45(Cd,Zn)S
β“˜Marcasite2.EB.10aFeS2
β“˜Molybdenite2.EA.30MoS2
β“˜Pyrite2.EB.05aFeS2
β“˜Siegenite2.DA.05CoNi2S4
β“˜Sphalerite2.CB.05aZnS
β“˜Spionkopite2.CA.05cCu39S28
β“˜'Tetrahedrite Subgroup'2.GB.05Cu6(Cu4C2+2)Sb4S12S
β“˜Yarrowite2.CA.05dCu9S8
Group 3 - Halides
β“˜Atacamite3.DA.10aCu2(OH)3Cl
Group 4 - Oxides and Hydroxides
β“˜Asbolane4.FL.30(Ni,Co)2-xMn4+(O,OH)4 Β· nH2O
β“˜Cuprite4.AA.10Cu2O
β“˜Gibbsite4.FE.10Al(OH)3
β“˜Goethite4.00.Ξ±-Fe3+O(OH)
β“˜Hematite4.CB.05Fe2O3
β“˜Opal4.DA.10SiO2 Β· nH2O
β“˜Quartz4.DA.05SiO2
β“˜Rutile4.DB.05TiO2
β“˜Tenorite4.AB.10CuO
Group 5 - Nitrates and Carbonates
β“˜Ankerite5.AB.10Ca(Fe2+,Mg)(CO3)2
β“˜Azurite5.BA.05Cu3(CO3)2(OH)2
β“˜Calcite5.AB.05CaCO3
β“˜Cerussite5.AB.15PbCO3
β“˜Dolomite5.AB.10CaMg(CO3)2
β“˜Malachite5.BA.10Cu2(CO3)(OH)2
β“˜Siderite5.AB.05FeCO3
Group 7 - Sulphates, Chromates, Molybdates and Tungstates
β“˜Alunite7.BC.10KAl3(SO4)2(OH)6
β“˜Anglesite7.AD.35PbSO4
β“˜Antlerite7.BB.15Cu3(SO4)(OH)4
β“˜Baryte7.AD.35BaSO4
β“˜Brochantite7.BB.25Cu4(SO4)(OH)6
β“˜Chalcoalumite7.DD.75CuAl4(SO4)(OH)12 Β· 3H2O
β“˜Cyanotrichite7.DE.10Cu4Al2(SO4)(OH)12 Β· 2H2O
β“˜Jarosite7.BC.10KFe3+ 3(SO4)2(OH)6
Group 8 - Phosphates, Arsenates and Vanadates
β“˜Chalcosiderite8.DD.15CuFe3+6(PO4)4(OH)8 Β· 4H2O
β“˜Conichalcite8.BH.35CaCu(AsO4)(OH)
β“˜Leucophosphite8.DH.10KFe3+2(PO4)2(OH) Β· 2H2O
β“˜Libethenite8.BB.30Cu2(PO4)(OH)
β“˜NatrodufrΓ©nite8.DK.15NaFe2+Fe3+5(PO4)4(OH)6 Β· 2H2O
β“˜Nissonite8.DC.05Cu2Mg2(PO4)2(OH)2 Β· 5H2O
β“˜Olivenite8.BB.30Cu2(AsO4)(OH)
β“˜Pseudomalachite8.BD.05Cu5(PO4)2(OH)4
β“˜Sieleckiite (TL)8.DF.25Cu3Al4(PO4)2(OH)12 Β· 2H2O
β“˜Turquoise8.DD.15CuAl6(PO4)4(OH)8 Β· 4H2O
β“˜Variscite8.CD.10AlPO4 Β· 2H2O
β“˜Wavellite8.DC.50Al3(PO4)2(OH,F)3 Β· 5H2O
Group 9 - Silicates
β“˜Chrysocolla9.ED.20Cu2-xAlx(H2-xSi2O5)(OH)4 Β· nH2O, x < 1
β“˜Kaolinite9.ED.05Al2(Si2O5)(OH)4
β“˜Orthoclase9.FA.30K(AlSi3O8)
β“˜Zircon9.AD.30Zr(SiO4)
Unclassified Minerals, Rocks, etc.
β“˜'Biotite'-K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
β“˜'Chlorite Group'-
β“˜'Copper Stain'-
β“˜'Mica Group'-
β“˜'Monazite'-REE(PO4)

List of minerals for each chemical element

HHydrogen
Hβ“˜ SieleckiiteCu3Al4(PO4)2(OH)12 · 2H2O
Hβ“˜ LibetheniteCu2(PO4)(OH)
Hβ“˜ NissoniteCu2Mg2(PO4)2(OH)2 · 5H2O
Hβ“˜ AzuriteCu3(CO3)2(OH)2
Hβ“˜ TurquoiseCuAl6(PO4)4(OH)8 · 4H2O
Hβ“˜ ChrysocollaCu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
Hβ“˜ MalachiteCu2(CO3)(OH)2
Hβ“˜ NatrodufrΓ©niteNaFe2+Fe53+(PO4)4(OH)6 · 2H2O
Hβ“˜ AntleriteCu3(SO4)(OH)4
Hβ“˜ ChalcoalumiteCuAl4(SO4)(OH)12 · 3H2O
Hβ“˜ AluniteKAl3(SO4)2(OH)6
Hβ“˜ Asbolane(Ni,Co)2-xMn4+(O,OH)4 · nH2O
Hβ“˜ AtacamiteCu2(OH)3Cl
Hβ“˜ BrochantiteCu4(SO4)(OH)6
Hβ“˜ ChalcosideriteCuFe63+(PO4)4(OH)8 · 4H2O
Hβ“˜ ConichalciteCaCu(AsO4)(OH)
Hβ“˜ CyanotrichiteCu4Al2(SO4)(OH)12 · 2H2O
Hβ“˜ JarositeKFe3+ 3(SO4)2(OH)6
Hβ“˜ LeucophosphiteKFe23+(PO4)2(OH) · 2H2O
Hβ“˜ OliveniteCu2(AsO4)(OH)
Hβ“˜ PseudomalachiteCu5(PO4)2(OH)4
Hβ“˜ VarisciteAlPO4 · 2H2O
Hβ“˜ WavelliteAl3(PO4)2(OH,F)3 · 5H2O
Hβ“˜ OpalSiO2 · nH2O
Hβ“˜ KaoliniteAl2(Si2O5)(OH)4
Hβ“˜ GoethiteΞ±-Fe3+O(OH)
Hβ“˜ GibbsiteAl(OH)3
Hβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
CCarbon
Cβ“˜ AzuriteCu3(CO3)2(OH)2
Cβ“˜ MalachiteCu2(CO3)(OH)2
Cβ“˜ DolomiteCaMg(CO3)2
Cβ“˜ CalciteCaCO3
Cβ“˜ CerussitePbCO3
Cβ“˜ SideriteFeCO3
Cβ“˜ AnkeriteCa(Fe2+,Mg)(CO3)2
OOxygen
Oβ“˜ SieleckiiteCu3Al4(PO4)2(OH)12 · 2H2O
Oβ“˜ LibetheniteCu2(PO4)(OH)
Oβ“˜ NissoniteCu2Mg2(PO4)2(OH)2 · 5H2O
Oβ“˜ AzuriteCu3(CO3)2(OH)2
Oβ“˜ TurquoiseCuAl6(PO4)4(OH)8 · 4H2O
Oβ“˜ ChrysocollaCu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
Oβ“˜ MalachiteCu2(CO3)(OH)2
Oβ“˜ BaryteBaSO4
Oβ“˜ CupriteCu2O
Oβ“˜ NatrodufrΓ©niteNaFe2+Fe53+(PO4)4(OH)6 · 2H2O
Oβ“˜ AntleriteCu3(SO4)(OH)4
Oβ“˜ ChalcoalumiteCuAl4(SO4)(OH)12 · 3H2O
Oβ“˜ AluniteKAl3(SO4)2(OH)6
Oβ“˜ Asbolane(Ni,Co)2-xMn4+(O,OH)4 · nH2O
Oβ“˜ AtacamiteCu2(OH)3Cl
Oβ“˜ BrochantiteCu4(SO4)(OH)6
Oβ“˜ ChalcosideriteCuFe63+(PO4)4(OH)8 · 4H2O
Oβ“˜ ConichalciteCaCu(AsO4)(OH)
Oβ“˜ CyanotrichiteCu4Al2(SO4)(OH)12 · 2H2O
Oβ“˜ HematiteFe2O3
Oβ“˜ JarositeKFe3+ 3(SO4)2(OH)6
Oβ“˜ LeucophosphiteKFe23+(PO4)2(OH) · 2H2O
Oβ“˜ OliveniteCu2(AsO4)(OH)
Oβ“˜ PseudomalachiteCu5(PO4)2(OH)4
Oβ“˜ QuartzSiO2
Oβ“˜ VarisciteAlPO4 · 2H2O
Oβ“˜ WavelliteAl3(PO4)2(OH,F)3 · 5H2O
Oβ“˜ DolomiteCaMg(CO3)2
Oβ“˜ CalciteCaCO3
Oβ“˜ AnglesitePbSO4
Oβ“˜ CerussitePbCO3
Oβ“˜ TenoriteCuO
Oβ“˜ OpalSiO2 · nH2O
Oβ“˜ SideriteFeCO3
Oβ“˜ RutileTiO2
Oβ“˜ MonaziteREE(PO4)
Oβ“˜ ZirconZr(SiO4)
Oβ“˜ OrthoclaseK(AlSi3O8)
Oβ“˜ KaoliniteAl2(Si2O5)(OH)4
Oβ“˜ GoethiteΞ±-Fe3+O(OH)
Oβ“˜ GibbsiteAl(OH)3
Oβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Oβ“˜ AnkeriteCa(Fe2+,Mg)(CO3)2
FFluorine
Fβ“˜ WavelliteAl3(PO4)2(OH,F)3 · 5H2O
Fβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
NaSodium
Naβ“˜ NatrodufrΓ©niteNaFe2+Fe53+(PO4)4(OH)6 · 2H2O
MgMagnesium
Mgβ“˜ NissoniteCu2Mg2(PO4)2(OH)2 · 5H2O
Mgβ“˜ DolomiteCaMg(CO3)2
Mgβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Mgβ“˜ AnkeriteCa(Fe2+,Mg)(CO3)2
AlAluminium
Alβ“˜ SieleckiiteCu3Al4(PO4)2(OH)12 · 2H2O
Alβ“˜ TurquoiseCuAl6(PO4)4(OH)8 · 4H2O
Alβ“˜ ChrysocollaCu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
Alβ“˜ ChalcoalumiteCuAl4(SO4)(OH)12 · 3H2O
Alβ“˜ AluniteKAl3(SO4)2(OH)6
Alβ“˜ CyanotrichiteCu4Al2(SO4)(OH)12 · 2H2O
Alβ“˜ VarisciteAlPO4 · 2H2O
Alβ“˜ WavelliteAl3(PO4)2(OH,F)3 · 5H2O
Alβ“˜ OrthoclaseK(AlSi3O8)
Alβ“˜ KaoliniteAl2(Si2O5)(OH)4
Alβ“˜ GibbsiteAl(OH)3
Alβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
SiSilicon
Siβ“˜ ChrysocollaCu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
Siβ“˜ QuartzSiO2
Siβ“˜ OpalSiO2 · nH2O
Siβ“˜ ZirconZr(SiO4)
Siβ“˜ OrthoclaseK(AlSi3O8)
Siβ“˜ KaoliniteAl2(Si2O5)(OH)4
Siβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
PPhosphorus
Pβ“˜ SieleckiiteCu3Al4(PO4)2(OH)12 · 2H2O
Pβ“˜ LibetheniteCu2(PO4)(OH)
Pβ“˜ NissoniteCu2Mg2(PO4)2(OH)2 · 5H2O
Pβ“˜ TurquoiseCuAl6(PO4)4(OH)8 · 4H2O
Pβ“˜ NatrodufrΓ©niteNaFe2+Fe53+(PO4)4(OH)6 · 2H2O
Pβ“˜ ChalcosideriteCuFe63+(PO4)4(OH)8 · 4H2O
Pβ“˜ LeucophosphiteKFe23+(PO4)2(OH) · 2H2O
Pβ“˜ PseudomalachiteCu5(PO4)2(OH)4
Pβ“˜ VarisciteAlPO4 · 2H2O
Pβ“˜ WavelliteAl3(PO4)2(OH,F)3 · 5H2O
Pβ“˜ MonaziteREE(PO4)
SSulfur
Sβ“˜ GalenaPbS
Sβ“˜ SphaleriteZnS
Sβ“˜ PyriteFeS2
Sβ“˜ Greenockite var. Zinc-bearing Greenockite(Cd,Zn)S
Sβ“˜ BaryteBaSO4
Sβ“˜ ChalcociteCu2S
Sβ“˜ AntleriteCu3(SO4)(OH)4
Sβ“˜ ChalcoalumiteCuAl4(SO4)(OH)12 · 3H2O
Sβ“˜ AluniteKAl3(SO4)2(OH)6
Sβ“˜ BrochantiteCu4(SO4)(OH)6
Sβ“˜ CyanotrichiteCu4Al2(SO4)(OH)12 · 2H2O
Sβ“˜ JarositeKFe3+ 3(SO4)2(OH)6
Sβ“˜ BorniteCu5FeS4
Sβ“˜ DigeniteCu9S5
Sβ“˜ ChalcopyriteCuFeS2
Sβ“˜ CovelliteCuS
Sβ“˜ AnglesitePbSO4
Sβ“˜ Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
Sβ“˜ DjurleiteCu31S16
Sβ“˜ CobaltiteCoAsS
Sβ“˜ AniliteCu7S4
Sβ“˜ YarrowiteCu9S8
Sβ“˜ EnargiteCu3AsS4
Sβ“˜ SpionkopiteCu39S28
Sβ“˜ GeeriteCu8S5
Sβ“˜ SiegeniteCoNi2S4
Sβ“˜ ArsenopyriteFeAsS
Sβ“˜ MarcasiteFeS2
Sβ“˜ MolybdeniteMoS2
Sβ“˜ GreenockiteCdS
Sβ“˜ Freibergite Subgroup(Ag6,[Ag6]4+)(Cu4 C22+)Sb4S12S0-1
ClChlorine
Clβ“˜ AtacamiteCu2(OH)3Cl
KPotassium
Kβ“˜ AluniteKAl3(SO4)2(OH)6
Kβ“˜ JarositeKFe3+ 3(SO4)2(OH)6
Kβ“˜ LeucophosphiteKFe23+(PO4)2(OH) · 2H2O
Kβ“˜ OrthoclaseK(AlSi3O8)
Kβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
CaCalcium
Caβ“˜ ConichalciteCaCu(AsO4)(OH)
Caβ“˜ DolomiteCaMg(CO3)2
Caβ“˜ CalciteCaCO3
Caβ“˜ AnkeriteCa(Fe2+,Mg)(CO3)2
TiTitanium
Tiβ“˜ RutileTiO2
Tiβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
MnManganese
Mnβ“˜ Asbolane(Ni,Co)2-xMn4+(O,OH)4 · nH2O
FeIron
Feβ“˜ PyriteFeS2
Feβ“˜ NatrodufrΓ©niteNaFe2+Fe53+(PO4)4(OH)6 · 2H2O
Feβ“˜ ChalcosideriteCuFe63+(PO4)4(OH)8 · 4H2O
Feβ“˜ HematiteFe2O3
Feβ“˜ JarositeKFe3+ 3(SO4)2(OH)6
Feβ“˜ LeucophosphiteKFe23+(PO4)2(OH) · 2H2O
Feβ“˜ BorniteCu5FeS4
Feβ“˜ ChalcopyriteCuFeS2
Feβ“˜ SideriteFeCO3
Feβ“˜ ArsenopyriteFeAsS
Feβ“˜ MarcasiteFeS2
Feβ“˜ GoethiteΞ±-Fe3+O(OH)
Feβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Feβ“˜ AnkeriteCa(Fe2+,Mg)(CO3)2
CoCobalt
Coβ“˜ Asbolane(Ni,Co)2-xMn4+(O,OH)4 · nH2O
Coβ“˜ CobaltiteCoAsS
Coβ“˜ SiegeniteCoNi2S4
NiNickel
Niβ“˜ Asbolane(Ni,Co)2-xMn4+(O,OH)4 · nH2O
Niβ“˜ SiegeniteCoNi2S4
CuCopper
Cuβ“˜ SieleckiiteCu3Al4(PO4)2(OH)12 · 2H2O
Cuβ“˜ LibetheniteCu2(PO4)(OH)
Cuβ“˜ NissoniteCu2Mg2(PO4)2(OH)2 · 5H2O
Cuβ“˜ AzuriteCu3(CO3)2(OH)2
Cuβ“˜ TurquoiseCuAl6(PO4)4(OH)8 · 4H2O
Cuβ“˜ ChrysocollaCu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
Cuβ“˜ MalachiteCu2(CO3)(OH)2
Cuβ“˜ CupriteCu2O
Cuβ“˜ ChalcociteCu2S
Cuβ“˜ AntleriteCu3(SO4)(OH)4
Cuβ“˜ ChalcoalumiteCuAl4(SO4)(OH)12 · 3H2O
Cuβ“˜ AtacamiteCu2(OH)3Cl
Cuβ“˜ BrochantiteCu4(SO4)(OH)6
Cuβ“˜ ChalcosideriteCuFe63+(PO4)4(OH)8 · 4H2O
Cuβ“˜ ConichalciteCaCu(AsO4)(OH)
Cuβ“˜ CyanotrichiteCu4Al2(SO4)(OH)12 · 2H2O
Cuβ“˜ OliveniteCu2(AsO4)(OH)
Cuβ“˜ PseudomalachiteCu5(PO4)2(OH)4
Cuβ“˜ BorniteCu5FeS4
Cuβ“˜ DigeniteCu9S5
Cuβ“˜ ChalcopyriteCuFeS2
Cuβ“˜ CovelliteCuS
Cuβ“˜ Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
Cuβ“˜ DjurleiteCu31S16
Cuβ“˜ TenoriteCuO
Cuβ“˜ AniliteCu7S4
Cuβ“˜ YarrowiteCu9S8
Cuβ“˜ EnargiteCu3AsS4
Cuβ“˜ SpionkopiteCu39S28
Cuβ“˜ GeeriteCu8S5
Cuβ“˜ CopperCu
Cuβ“˜ Freibergite Subgroup(Ag6,[Ag6]4+)(Cu4 C22+)Sb4S12S0-1
ZnZinc
Znβ“˜ SphaleriteZnS
Znβ“˜ Greenockite var. Zinc-bearing Greenockite(Cd,Zn)S
AsArsenic
Asβ“˜ ConichalciteCaCu(AsO4)(OH)
Asβ“˜ OliveniteCu2(AsO4)(OH)
Asβ“˜ CobaltiteCoAsS
Asβ“˜ EnargiteCu3AsS4
Asβ“˜ ArsenopyriteFeAsS
ZrZirconium
Zrβ“˜ ZirconZr(SiO4)
MoMolybdenum
Moβ“˜ MolybdeniteMoS2
AgSilver
Agβ“˜ Freibergite Subgroup(Ag6,[Ag6]4+)(Cu4 C22+)Sb4S12S0-1
CdCadmium
Cdβ“˜ Greenockite var. Zinc-bearing Greenockite(Cd,Zn)S
Cdβ“˜ GreenockiteCdS
SbAntimony
Sbβ“˜ Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
Sbβ“˜ Freibergite Subgroup(Ag6,[Ag6]4+)(Cu4 C22+)Sb4S12S0-1
BaBarium
Baβ“˜ BaryteBaSO4
PbLead
Pbβ“˜ GalenaPbS
Pbβ“˜ AnglesitePbSO4
Pbβ“˜ CerussitePbCO3

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