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Nunarsuit Island, Kujalleq, Greenlandi
Regional Level Types
Nunarsuit IslandIsland
KujalleqMunicipality
GreenlandAutonomous Territory

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Locality type:
Other/historical names associated with this locality:
Nunarssuit
Other Languages:
Bulgarian:
Нунарсуит, ГрСнландия
Cebuano:
Nunarsuit, Kujalleq, Greenland
Swedish:
Nunarsuit, Kujalleq, GrΓΆnland


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Select Mineral List Type

Standard Detailed Gallery Strunz Chemical Elements

Mineral List

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

21 valid minerals. 1 erroneous literature entry.

Detailed Mineral List:

β“˜ Aegirine
Formula: NaFe3+Si2O6
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Aegirine-augite
Formula: (NaaCabFe2+cMgd)(Fe3+eAlfFe2+gMgh)Si2O6
Reference: http://www.koeln.netsurf.de/~w.steffens/green.htm
β“˜ Aenigmatite
Formula: Na4[Fe2+10Ti2]O4[Si12O36]
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Albite
Formula: Na(AlSi3O8)
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Albite var. Oligoclase
Formula: (Na,Ca)[Al(Si,Al)Si2O8]
Reference: http://www.koeln.netsurf.de/~w.steffens/green.htm
β“˜ 'Alkali Feldspar'
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ 'Amphibole Supergroup'
Formula: AB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Reference: Hodson, M.E. (1998): The origin of igneous layering in the Nunarssuit syenite, South Greenland. Mineralogical Magazine. 62, 9-27
β“˜ Andradite
Formula: Ca3Fe3+2(SiO4)3
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Andradite var. Hydroandradite
Formula: Ca3Fe3+2(SiO4)3-x(OH)4x
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Annite
Formula: KFe2+3(AlSi3O10)(OH)2
Reference: Hodson, M.E. (1998): The origin of igneous layering in the Nunarssuit syenite, South Greenland. Mineralogical Magazine. 62, 9-27
β“˜ 'Apatite'
Formula: Ca5(PO4)3(Cl/F/OH)
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Arfvedsonite
Formula: [Na][Na2][Fe2+4Fe3+]Si8O22(OH)2
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Astrophyllite
Formula: K2NaFe2+7Ti2Si8O26(OH)4F
Reference: http://www.uni-tuebingen.de/uni/emi/ag-markl/pages/marks/pages/abstracts/EUG2001.html; Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Augite
Formula: (CaxMgyFez)(Mgy1Fez1)Si2O6
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ 'Barkevikite'
Description: Obsolte name. See amphibole
Reference: Hodson, M.E. (1998): The origin of igneous layering in the Nunarssuit syenite, South Greenland. Mineralogical Magazine. 62, 9-27
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: Hodson, M.E. (1998): The origin of igneous layering in the Nunarssuit syenite, South Greenland. Mineralogical Magazine. 62, 9-27
β“˜ Chevkinite-(Ce)
Formula: Ce4(Ti,Fe2+,Fe3+)5O8(Si2O7)2
Description: Cumulus phase in a layered syenite (normally graded : mafic base and feldspar upwards).
Reference: Parsons, I. and Butterfield, A. W. (1981): Sedimentary features of the Nunarssuit and Klokken syenites, S Greenland. Journal of the Geological Society. 138 (3), 289-306.
β“˜ 'Clinopyroxene Subgroup'
Description: ferro-salite-hedenbergite
Reference: Hodson, M.E. (1998): The origin of igneous layering in the Nunarssuit syenite, South Greenland. Mineralogical Magazine. 62, 9-27
β“˜ Fayalite
Formula: Fe2+2SiO4
Reference: Hodson, M.E. (1998): The origin of igneous layering in the Nunarssuit syenite, South Greenland. Mineralogical Magazine. 62, 9-27
β“˜ 'Fayalite-Forsterite Series'
Reference: Hodson, M.E. (1998): The origin of igneous layering in the Nunarssuit syenite, South Greenland. Mineralogical Magazine. 62, 9-27
β“˜ 'Feldspar Group'
Reference: http://www.koeln.netsurf.de/~w.steffens/green.htm
β“˜ 'Feldspar Group var. Perthite'
Reference: http://www.koeln.netsurf.de/~w.steffens/green.htm
β“˜ Ferro-actinolite
Formula: ◻Ca2Fe2+5(Si8O22)OH2
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Ferro-edenite
Formula: NaCa2Fe2+5(Si7Al)O22OH2
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Fluorapatite
Formula: Ca5(PO4)3F
Reference: Finch, A.A., Mansfeld, J. & Andersen, T. (2001) U-Pb radiometric age of Nunarsuit pegmatite, Greenland: constraints on the timing of Gardar magmatism. Bulletin of the Geological Society of Denmark, Vol. 48, pp. 1–7, Copenhagen.
β“˜ Fluorite
Formula: CaF2
Reference: http://www.koeln.netsurf.de/~w.steffens/green.htm
β“˜ Ilmenite
Formula: Fe2+TiO3
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Magnetite
Formula: Fe2+Fe3+2O4
Reference: Finch, A.A., Mansfeld, J. & Andersen, T. (2001) U-Pb radiometric age of Nunarsuit pegmatite, Greenland: constraints on the timing of Gardar magmatism. Bulletin of the Geological Society of Denmark, Vol. 48, pp. 1–7, Copenhagen.
β“˜ Magnetite var. Titanium-bearing Magnetite
Formula: Fe2+(Fe3+,Ti)2O4
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Microcline
Formula: K(AlSi3O8)
Reference: Finch, A.A., Mansfeld, J. & Andersen, T. (2001) U-Pb radiometric age of Nunarsuit pegmatite, Greenland: constraints on the timing of Gardar magmatism. Bulletin of the Geological Society of Denmark, Vol. 48, pp. 1–7, Copenhagen.
β“˜ 'Monazite'
Formula: REE(PO4)
Reference: Finch, A.A., Mansfeld, J. & Andersen, T. (2001) U-Pb radiometric age of Nunarsuit pegmatite, Greenland: constraints on the timing of Gardar magmatism. Bulletin of the Geological Society of Denmark, Vol. 48, pp. 1–7, Copenhagen.
β“˜ Quartz
Formula: SiO2
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Titanite
Formula: CaTi(SiO4)O
Reference: Marks,M., Vennemann, T., Siebel, W. & Markl, G.(2003): Quantification of Magmatic and Hydrothermal Processes in a Peralkaline Syenite-Alkali Granite Complex Based on Textures, Phase Equilibria, and Stable and Radiogenic Isotopes. Journal of Petrology. 44:1247-1280
β“˜ Zircon
Formula: Zr(SiO4)
Description: Cumulus phase in a layered syenite (normally graded : mafic base and feldspar upwards).
Reference: Finch, A.A., Mansfeld, J. & Andersen, T. (2001) U-Pb radiometric age of Nunarsuit pegmatite, Greenland: constraints on the timing of Gardar magmatism. Bulletin of the Geological Society of Denmark, Vol. 48, pp. 1–7, Copenhagen.

Gallery:

List of minerals arranged by Strunz 10th Edition classification

Group 3 - Halides
β“˜Fluorite3.AB.25CaF2
Group 4 - Oxides and Hydroxides
β“˜Ilmenite4.CB.05Fe2+TiO3
β“˜Magnetite4.BB.05Fe2+Fe3+2O4
β“˜var. Titanium-bearing Magnetite4.BB.05Fe2+(Fe3+,Ti)2O4
β“˜Quartz4.DA.05SiO2
Group 8 - Phosphates, Arsenates and Vanadates
β“˜Fluorapatite8.BN.05Ca5(PO4)3F
Group 9 - Silicates
β“˜Aegirine9.DA.25NaFe3+Si2O6
β“˜Aegirine-augite9.DA.20(NaaCabFe2+cMgd)(Fe3+eAlfFe2+gMgh)Si2O6
β“˜Aenigmatite9.DH.40Na4[Fe2+10Ti2]O4[Si12O36]
β“˜Albite9.FA.35Na(AlSi3O8)
β“˜var. Oligoclase9.FA.35(Na,Ca)[Al(Si,Al)Si2O8]
β“˜Andradite9.AD.25Ca3Fe3+2(SiO4)3
β“˜var. Hydroandradite9.AD.25Ca3Fe3+2(SiO4)3-x(OH)4x
β“˜Annite9.EC.20KFe2+3(AlSi3O10)(OH)2
β“˜Arfvedsonite9.DE.25[Na][Na2][Fe2+4Fe3+]Si8O22(OH)2
β“˜Astrophyllite9.DC.05K2NaFe2+7Ti2Si8O26(OH)4F
β“˜Augite9.DA.15(CaxMgyFez)(Mgy1Fez1)Si2O6
β“˜Chevkinite-(Ce)9.BE.70Ce4(Ti,Fe2+,Fe3+)5O8(Si2O7)2
β“˜Fayalite9.AC.05Fe2+2SiO4
β“˜Ferro-actinolite9.DE.10β—»Ca2Fe2+5(Si8O22)OH2
β“˜Ferro-edenite9.DE.15NaCa2Fe2+5(Si7Al)O22OH2
β“˜Microcline9.FA.30K(AlSi3O8)
β“˜Titanite9.AG.15CaTi(SiO4)O
β“˜Zircon9.AD.30Zr(SiO4)
Unclassified Minerals, Rocks, etc.
β“˜'Alkali Feldspar'-
β“˜'Amphibole Supergroup'-AB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
β“˜'Apatite'-Ca5(PO4)3(Cl/F/OH)
β“˜'Barkevikite' ?-
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“˜'Clinopyroxene Subgroup'-
β“˜'Fayalite-Forsterite Series'-
β“˜'Feldspar Group'-
β“˜'var. Perthite'-
β“˜'Monazite'-REE(PO4)

List of minerals for each chemical element

HHydrogen
Hβ“˜ Arfvedsonite[Na][Na2][Fe42+Fe3+]Si8O22(OH)2
Hβ“˜ AstrophylliteK2NaFe72+Ti2Si8O26(OH)4F
Hβ“˜ Ferro-edeniteNaCa2Fe52+(Si7Al)O22OH2
Hβ“˜ Ferro-actinolite◻Ca2Fe52+(Si8O22)OH2
Hβ“˜ Andradite var. HydroandraditeCa3Fe23+(SiO4)3-x(OH)4x
Hβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Hβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Hβ“˜ AnniteKFe32+(AlSi3O10)(OH)2
Hβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
OOxygen
Oβ“˜ AegirineNaFe3+Si2O6
Oβ“˜ AenigmatiteNa4[Fe102+Ti2]O4[Si12O36]
Oβ“˜ Arfvedsonite[Na][Na2][Fe42+Fe3+]Si8O22(OH)2
Oβ“˜ AstrophylliteK2NaFe72+Ti2Si8O26(OH)4F
Oβ“˜ Augite(CaxMgyFez)(Mgy1Fez1)Si2O6
Oβ“˜ QuartzSiO2
Oβ“˜ Ferro-edeniteNaCa2Fe52+(Si7Al)O22OH2
Oβ“˜ IlmeniteFe2+TiO3
Oβ“˜ AlbiteNa(AlSi3O8)
Oβ“˜ Ferro-actinolite◻Ca2Fe52+(Si8O22)OH2
Oβ“˜ TitaniteCaTi(SiO4)O
Oβ“˜ Andradite var. HydroandraditeCa3Fe23+(SiO4)3-x(OH)4x
Oβ“˜ Aegirine-augite(NaaCabFec2+Mgd)(Fee3+AlfFeg2+Mgh)Si2O6
Oβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
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“˜ FayaliteFe22+SiO4
Oβ“˜ Albite var. Oligoclase(Na,Ca)[Al(Si,Al)Si2O8]
Oβ“˜ Chevkinite-(Ce)Ce4(Ti,Fe2+,Fe3+)5O8(Si2O7)2
Oβ“˜ ZirconZr(SiO4)
Oβ“˜ FluorapatiteCa5(PO4)3F
Oβ“˜ MonaziteREE(PO4)
Oβ“˜ MagnetiteFe2+Fe23+O4
Oβ“˜ MicroclineK(AlSi3O8)
Oβ“˜ AnniteKFe32+(AlSi3O10)(OH)2
Oβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Oβ“˜ Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
Oβ“˜ AndraditeCa3Fe23+(SiO4)3
FFluorine
Fβ“˜ AstrophylliteK2NaFe72+Ti2Si8O26(OH)4F
Fβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Fβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Fβ“˜ FluoriteCaF2
Fβ“˜ FluorapatiteCa5(PO4)3F
Fβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
NaSodium
Naβ“˜ AegirineNaFe3+Si2O6
Naβ“˜ AenigmatiteNa4[Fe102+Ti2]O4[Si12O36]
Naβ“˜ Arfvedsonite[Na][Na2][Fe42+Fe3+]Si8O22(OH)2
Naβ“˜ AstrophylliteK2NaFe72+Ti2Si8O26(OH)4F
Naβ“˜ Ferro-edeniteNaCa2Fe52+(Si7Al)O22OH2
Naβ“˜ AlbiteNa(AlSi3O8)
Naβ“˜ Aegirine-augite(NaaCabFec2+Mgd)(Fee3+AlfFeg2+Mgh)Si2O6
Naβ“˜ Albite var. Oligoclase(Na,Ca)[Al(Si,Al)Si2O8]
MgMagnesium
Mgβ“˜ Augite(CaxMgyFez)(Mgy1Fez1)Si2O6
Mgβ“˜ Aegirine-augite(NaaCabFec2+Mgd)(Fee3+AlfFeg2+Mgh)Si2O6
Mgβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
AlAluminium
Alβ“˜ Ferro-edeniteNaCa2Fe52+(Si7Al)O22OH2
Alβ“˜ AlbiteNa(AlSi3O8)
Alβ“˜ Aegirine-augite(NaaCabFec2+Mgd)(Fee3+AlfFeg2+Mgh)Si2O6
Alβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Alβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Alβ“˜ Albite var. Oligoclase(Na,Ca)[Al(Si,Al)Si2O8]
Alβ“˜ MicroclineK(AlSi3O8)
Alβ“˜ AnniteKFe32+(AlSi3O10)(OH)2
SiSilicon
Siβ“˜ AegirineNaFe3+Si2O6
Siβ“˜ AenigmatiteNa4[Fe102+Ti2]O4[Si12O36]
Siβ“˜ Arfvedsonite[Na][Na2][Fe42+Fe3+]Si8O22(OH)2
Siβ“˜ AstrophylliteK2NaFe72+Ti2Si8O26(OH)4F
Siβ“˜ Augite(CaxMgyFez)(Mgy1Fez1)Si2O6
Siβ“˜ QuartzSiO2
Siβ“˜ Ferro-edeniteNaCa2Fe52+(Si7Al)O22OH2
Siβ“˜ AlbiteNa(AlSi3O8)
Siβ“˜ Ferro-actinolite◻Ca2Fe52+(Si8O22)OH2
Siβ“˜ TitaniteCaTi(SiO4)O
Siβ“˜ Andradite var. HydroandraditeCa3Fe23+(SiO4)3-x(OH)4x
Siβ“˜ Aegirine-augite(NaaCabFec2+Mgd)(Fee3+AlfFeg2+Mgh)Si2O6
Siβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Siβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Siβ“˜ FayaliteFe22+SiO4
Siβ“˜ Albite var. Oligoclase(Na,Ca)[Al(Si,Al)Si2O8]
Siβ“˜ Chevkinite-(Ce)Ce4(Ti,Fe2+,Fe3+)5O8(Si2O7)2
Siβ“˜ ZirconZr(SiO4)
Siβ“˜ MicroclineK(AlSi3O8)
Siβ“˜ AnniteKFe32+(AlSi3O10)(OH)2
Siβ“˜ AndraditeCa3Fe23+(SiO4)3
PPhosphorus
Pβ“˜ FluorapatiteCa5(PO4)3F
Pβ“˜ MonaziteREE(PO4)
Pβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
ClChlorine
Clβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Clβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
KPotassium
Kβ“˜ AstrophylliteK2NaFe72+Ti2Si8O26(OH)4F
Kβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Kβ“˜ MicroclineK(AlSi3O8)
Kβ“˜ AnniteKFe32+(AlSi3O10)(OH)2
CaCalcium
Caβ“˜ Augite(CaxMgyFez)(Mgy1Fez1)Si2O6
Caβ“˜ Ferro-edeniteNaCa2Fe52+(Si7Al)O22OH2
Caβ“˜ Ferro-actinolite◻Ca2Fe52+(Si8O22)OH2
Caβ“˜ TitaniteCaTi(SiO4)O
Caβ“˜ Andradite var. HydroandraditeCa3Fe23+(SiO4)3-x(OH)4x
Caβ“˜ Aegirine-augite(NaaCabFec2+Mgd)(Fee3+AlfFeg2+Mgh)Si2O6
Caβ“˜ FluoriteCaF2
Caβ“˜ Albite var. Oligoclase(Na,Ca)[Al(Si,Al)Si2O8]
Caβ“˜ FluorapatiteCa5(PO4)3F
Caβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Caβ“˜ AndraditeCa3Fe23+(SiO4)3
TiTitanium
Tiβ“˜ AenigmatiteNa4[Fe102+Ti2]O4[Si12O36]
Tiβ“˜ AstrophylliteK2NaFe72+Ti2Si8O26(OH)4F
Tiβ“˜ IlmeniteFe2+TiO3
Tiβ“˜ TitaniteCaTi(SiO4)O
Tiβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Tiβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Tiβ“˜ Chevkinite-(Ce)Ce4(Ti,Fe2+,Fe3+)5O8(Si2O7)2
Tiβ“˜ Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
FeIron
Feβ“˜ AegirineNaFe3+Si2O6
Feβ“˜ AenigmatiteNa4[Fe102+Ti2]O4[Si12O36]
Feβ“˜ Arfvedsonite[Na][Na2][Fe42+Fe3+]Si8O22(OH)2
Feβ“˜ AstrophylliteK2NaFe72+Ti2Si8O26(OH)4F
Feβ“˜ Augite(CaxMgyFez)(Mgy1Fez1)Si2O6
Feβ“˜ Ferro-edeniteNaCa2Fe52+(Si7Al)O22OH2
Feβ“˜ IlmeniteFe2+TiO3
Feβ“˜ Ferro-actinolite◻Ca2Fe52+(Si8O22)OH2
Feβ“˜ Andradite var. HydroandraditeCa3Fe23+(SiO4)3-x(OH)4x
Feβ“˜ Aegirine-augite(NaaCabFec2+Mgd)(Fee3+AlfFeg2+Mgh)Si2O6
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“˜ FayaliteFe22+SiO4
Feβ“˜ Chevkinite-(Ce)Ce4(Ti,Fe2+,Fe3+)5O8(Si2O7)2
Feβ“˜ MagnetiteFe2+Fe23+O4
Feβ“˜ AnniteKFe32+(AlSi3O10)(OH)2
Feβ“˜ Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
Feβ“˜ AndraditeCa3Fe23+(SiO4)3
ZrZirconium
Zrβ“˜ ZirconZr(SiO4)
CeCerium
Ceβ“˜ Chevkinite-(Ce)Ce4(Ti,Fe2+,Fe3+)5O8(Si2O7)2

Fossils

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Other Databases

Wikidata ID:Q24828874
GeoNames ID:3421386

Localities in this Region

Other Regions, Features and Areas that Intersect

North America PlateTectonic Plate

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