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Mac Robertson Land, Eastern Antarctica, Antarcticai
Regional Level Types
Mac Robertson Land- not defined -
Eastern AntarcticaRegion
AntarcticaContinent

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Latitude & Longitude (WGS84):
70° South , 65° East
Latitude & Longitude (decimal):
KΓΆppen climate type:
Other Languages:
Russian:
ЗСмля Мак-РобСртсона, Восточная Антарктида, Антарктида


Mac. Robertson Land is the portion of Antarctica lying southward of the coast between William Scoresby Bay and Cape Darnley. It is located at 70Β°00β€²S 65Β°00β€²E. In the east, Mac. Robertson Land includes the Prince Charles Mountains. It was named by the British Australian and New Zealand Antarctic Research Expedition (BANZARE) (1929-1931), under Sir Douglas Mawson, after Sir Macpherson Robertson of Melbourne, a patron of the expedition.

From 1965 onwards, members of the SAE (Soviet Antarctic Expeditions) began undertaking geological fieldwork in the Prince Charles Mountains, eventually establishing a base, Soyuz Station, on the eastern shore of Beaver Lake in the northern Prince Charles Mountains. [Wikipedia]

Select Mineral List Type

Standard Detailed Gallery Strunz Chemical Elements

Mineral List

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

46 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

Select Rock List Type

Alphabetical List Tree Diagram

Detailed Mineral List:

β“˜ 'Alkali amphibole'
Reference: Sheraton, J. W., & England, R. N. (1980). Highly potassic mafic dykes from Antarctica. Journal of the Geological Society of Australia, 27(1-2), 129-135.
β“˜ Almandine
Formula: Fe2+3Al2(SiO4)3
Reference: Eur. J. Mineral. , 1991, 3, pp. 367-386.
β“˜ 'Amphibole Supergroup'
Formula: AB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Reference: Sheraton, J. W., & England, R. N. (1980). Highly potassic mafic dykes from Antarctica. Journal of the Geological Society of Australia, 27(1-2), 129-135.
β“˜ Anatase
Formula: TiO2
Reference: Sheraton, J. W., & England, R. N. (1980). Highly potassic mafic dykes from Antarctica. Journal of the Geological Society of Australia, 27(1-2), 129-135.
β“˜ 'Apatite'
Formula: Ca5(PO4)3(Cl/F/OH)
Localities: Reported from at least 6 localities in this region.
Reference: S. F. Foley, A. V. Andronikov, S. Melzer (2002) Petrology of ultramafic lamprophyres from the Beaver Lake area of Eastern Antarctica and their relation to the breakup of Gondwanaland. Mineralogy and Petrology 74:361-384
β“˜ Arfvedsonite
Formula: [Na][Na2][Fe2+4Fe3+]Si8O22(OH)2
Reference: Sheraton, J. W., & England, R. N. (1980). Highly potassic mafic dykes from Antarctica. Journal of the Geological Society of Australia, 27(1-2), 129-135.
β“˜ Baddeleyite
Formula: ZrO2
Reference: Andronikov, A. V., & Foley, S. F. (2001). Trace element and Nd–Sr isotopic composition of ultramafic lamprophyres from the East Antarctic Beaver Lake area. Chemical Geology, 175(3-4), 291-305.
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: AV Andronikov (1992) The first study of upper mantle inclusions from the Prince Charles Mountains, East Antarctica in Recent Progress in Antarctic Earth Science Tokyo pp163-171
β“˜ Bornite
Formula: Cu5FeS4
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773
β“˜ Calcite
Formula: CaCO3
Reference: Kogarko, L.N., Kurat, G., and Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45(3), 497-501.
β“˜ Chalcopyrite
Formula: CuFeS2
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773
β“˜ Chlorapatite
Formula: Ca5(PO4)3Cl
Description: S-bearing
Reference: Kogarko, L.N., Kurat, G., and Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45(3), 497-501.
β“˜ 'Chrome-Spinel (of Dana)'
Reference: Andronikov, A. V., & Foley, S. F. (2001). Trace element and Nd–Sr isotopic composition of ultramafic lamprophyres from the East Antarctic Beaver Lake area. Chemical Geology, 175(3-4), 291-305.
β“˜ Clinohumite
Formula: Mg9(SiO4)4F2
Reference: Kogarko, L.N., Kurat, G., and Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45(3), 497-501.
β“˜ 'Clinopyroxene Subgroup'
Reference: Kogarko, L.N., Kurat, G., and Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45(3), 497-501.
β“˜ Cordierite
Formula: (Mg,Fe)2Al3(AlSi5O18)
Reference: Eur. J. Mineral. , 1991, 3, pp. 367-386.
β“˜ Diopside
Formula: CaMgSi2O6
Reference: Kogarko, L.N., Kurat, G., and Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45(3), 497-501.
β“˜ Diopside var. Chromium-bearing Diopside
Formula: Ca(Mg,Cr)Si2O6
Reference: Kogarko, L.N., Kurat, G., and Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45(3), 497-501.
β“˜ Dolomite
Formula: CaMg(CO3)2
Reference: Kogarko, L.N., Kurat, G., and Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45(3), 497-501.
β“˜ Enstatite
Formula: Mg2Si2O6
Reference: Eur. J. Mineral. , 1991, 3, pp. 367-386.
β“˜ 'Fayalite-Forsterite Series'
Reference: AV Andronikov (1992) The first study of upper mantle inclusions from the Prince Charles Mountains, East Antarctica in Recent Progress in Antarctic Earth Science Tokyo pp163-171; S. F. Foley, A. V. Andronikov, S. Melzer (2002) Petrology of ultramafic lamprophyres from the Beaver Lake area of Eastern Antarctica and their relation to the breakup of Gondwanaland. Mineralogy and Petrology 74:361-384
β“˜ 'Feldspar Group'
Reference: Grew, E.S.; Manton, W.I. (1979) Geochronologic studies in East Antarctica: age of a pegmatite in Mawson charnockite. Antarctic Journal of the U.S., 14(5), 2-3.
β“˜ Forsterite
Formula: Mg2SiO4
Reference: Kogarko, L.N., Kurat, G., and Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45(3), 497-501.
β“˜ 'Garnet Group'
Formula: X3Z2(SiO4)3
Reference: AV Andronikov (1992) The first study of upper mantle inclusions from the Prince Charles Mountains, East Antarctica in Recent Progress in Antarctic Earth Science Tokyo pp163-171 Andronikov, A. V., & Foley, S. F. (2001). Trace element and Nd–Sr isotopic composition of ultramafic lamprophyres from the East Antarctic Beaver Lake area. Chemical Geology, 175(3-4), 291-305.
β“˜ Henrymeyerite
Formula: Ba(Ti4+7Fe2+)O16
Reference: Kogarko, L.N., Kurat, G., and Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45(3), 497-501.
β“˜ Hercynite
Formula: Fe2+Al2O4
Description: Surrounded by sillimanite and almandine, or cordierite coronas.
Reference: Eur. J. Mineral. , 1991, 3, pp. 367-386.
β“˜ 'Hornblende'
Reference: Grew, E.S.; Manton, W.I. (1979) Geochronologic studies in East Antarctica: age of a pegmatite in Mawson charnockite. Antarctic Journal of the U.S., 14(5), 2-3.
β“˜ Humite
Formula: (Mg,Fe2+)7(SiO4)3F2
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773
β“˜ 'Humite Group'
Reference: Kogarko, L.N., Kurat, G., and Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45(3), 497-501.
β“˜ Ilmenite
Formula: Fe2+TiO3
Description: Surrounded by sillimanite and/or almandine coronas.
Reference: Eur. J. Mineral. , 1991, 3, pp. 367-386.
β“˜ 'Kelyphite'
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773 Andronikov, Alexandre V., Irina E. Andronikova, and Ondrej Pour. (2022) "Major and Trace-Element Chemistry of Cr-Spinel in Upper Mantle Xenoliths from East Antarctica" Minerals 12, no. 6: 720. https://doi.org/10.3390/min12060720
β“˜ 'K Feldspar'
Formula: KAlSi3O8
Reference: Eur. J. Mineral. , 1991, 3, pp. 367-386.
β“˜ Leucite
Formula: K(AlSi2O6)
Reference: Sheraton, J. W., & England, R. N. (1980). Highly potassic mafic dykes from Antarctica. Journal of the Geological Society of Australia, 27(1-2), 129-135.
β“˜ Magnesio-arfvedsonite
Formula: {Na}{Na2}{Mg4Fe3+}(Si8O22)(OH)2
Reference: Sheraton, J. W., & England, R. N. (1980). Highly potassic mafic dykes from Antarctica. Journal of the Geological Society of Australia, 27(1-2), 129-135.
β“˜ Magnesite
Formula: MgCO3
Reference: Kogarko, L.N., Kurat, G., and Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45(3), 497-501.
β“˜ Magnesite var. Iron-bearing Magnesite
Formula: (Mg,Fe)CO3
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773
β“˜ Magnetite
Formula: Fe2+Fe3+2O4
Reference: Eur. J. Mineral. , 1991, 3, pp. 367-386.
β“˜ Magnetite var. Titanium-bearing Magnetite
Formula: Fe2+(Fe3+,Ti)2O4
Reference: AV Andronikov (1992) The first study of upper mantle inclusions from the Prince Charles Mountains, East Antarctica in Recent Progress in Antarctic Earth Science Tokyo pp163-171; S. F. Foley, A. V. Andronikov, S. Melzer (2002) Petrology of ultramafic lamprophyres from the Beaver Lake area of Eastern Antarctica and their relation to the breakup of Gondwanaland. Mineralogy and Petrology 74:361-384
β“˜ 'Melilite Group'
Formula: Ca2M(XSiO7)
Reference: AV Andronikov (1992) The first study of upper mantle inclusions from the Prince Charles Mountains, East Antarctica in Recent Progress in Antarctic Earth Science Tokyo pp163-171; S. F. Foley, A. V. Andronikov, S. Melzer (2002) Petrology of ultramafic lamprophyres from the Beaver Lake area of Eastern Antarctica and their relation to the breakup of Gondwanaland. Mineralogy and Petrology 74:361-384
β“˜ 'Mica Group'
Reference: Sheraton, J. W., & England, R. N. (1980). Highly potassic mafic dykes from Antarctica. Journal of the Geological Society of Australia, 27(1-2), 129-135.
β“˜ Microcline
Formula: K(AlSi3O8)
Reference: Sheraton, J. W., & England, R. N. (1980). Highly potassic mafic dykes from Antarctica. Journal of the Geological Society of Australia, 27(1-2), 129-135.
β“˜ Millerite
Formula: NiS
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773
β“˜ 'Monazite'
Formula: REE(PO4)
Reference: Sushchevskaya, N.M., Belyatsky, B.V., Dubinin, E.P., and Levchenko, O.V. (2017) Evolution of the Kerguelen Plume and Its Impact upon the Continental and Oceanic Magmatism of East Antarctica. Geochemistry International, 55(9), 775–779.
β“˜ Monticellite
Formula: CaMgSiO4
Reference: S. F. Foley, A. V. Andronikov, S. Melzer (2002) Petrology of ultramafic lamprophyres from the Beaver Lake area of Eastern Antarctica and their relation to the breakup of Gondwanaland. Mineralogy and Petrology 74:361-384
β“˜ Nepheline
Formula: Na3K(Al4Si4O16)
Reference: AV Andronikov (1992) The first study of upper mantle inclusions from the Prince Charles Mountains, East Antarctica in Recent Progress in Antarctic Earth Science Tokyo pp163-171; S. F. Foley, A. V. Andronikov, S. Melzer (2002) Petrology of ultramafic lamprophyres from the Beaver Lake area of Eastern Antarctica and their relation to the breakup of Gondwanaland. Mineralogy and Petrology 74:361-384
β“˜ 'Olivine Group'
Formula: M2SiO4
Reference: Andronikov, A. V., & Foley, S. F. (2001). Trace element and Nd–Sr isotopic composition of ultramafic lamprophyres from the East Antarctic Beaver Lake area. Chemical Geology, 175(3-4), 291-305.
β“˜ 'Orthopyroxene Subgroup'
Reference: Kogarko, L.N., Kurat, G., Ntaflos, T. (2007) Henrymeyerite in the metasomatized upper mantle of eastern Antarctica. The Canadian Mineralogist, 45:3, 497-501.
β“˜ Pentlandite
Formula: (NixFey)Ξ£9S8
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773
β“˜ Perovskite
Formula: CaTiO3
Reference: S. F. Foley, A. V. Andronikov, S. Melzer (2002) Petrology of ultramafic lamprophyres from the Beaver Lake area of Eastern Antarctica and their relation to the breakup of Gondwanaland. Mineralogy and Petrology 74:361-384
β“˜ Perrierite-(Ce)
Formula: Ce4MgFe3+2Ti2(Si2O7)2O8
Reference: Grew, E.S.; Manton, W.I. (1979) Geochronologic studies in East Antarctica: age of a pegmatite in Mawson charnockite. Antarctic Journal of the U.S., 14(5), 2-3.
β“˜ Phlogopite
Formula: KMg3(AlSi3O10)(OH)2
Reference: S. F. Foley, A. V. Andronikov, S. Melzer (2002) Petrology of ultramafic lamprophyres from the Beaver Lake area of Eastern Antarctica and their relation to the breakup of Gondwanaland. Mineralogy and Petrology 74:361-384 Andronikov, A. V., & Foley, S. F. (2001). Trace element and Nd–Sr isotopic composition of ultramafic lamprophyres from the East Antarctic Beaver Lake area. Chemical Geology, 175(3-4), 291-305.
β“˜ 'Plagioclase'
Formula: (Na,Ca)[(Si,Al)AlSi2]O8
Reference: Eur. J. Mineral. , 1991, 3, pp. 367-386.
β“˜ Polydymite
Formula: Ni2+Ni3+2S4
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773
β“˜ Prehnite
Formula: Ca2Al2Si3O10(OH)2
Reference: Walker, K. R., & Mond, A. (1971). Mica lamprophyre (alnΓΆite) from Radok Lake, Prince Charles Mountains, Antarctica. Australia. Department of National Development. Bureau of Mineral Resources, Geology and Geophysics, Record No. 1971/108
β“˜ Priderite
Formula: K(Ti4+7Fe3+)O16
Reference: Andronikov, A. V., & Foley, S. F. (2001). Trace element and Nd–Sr isotopic composition of ultramafic lamprophyres from the East Antarctic Beaver Lake area. Chemical Geology, 175(3-4), 291-305.
β“˜ Pyrite
Formula: FeS2
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773
β“˜ Pyrrhotite
Formula: Fe1-xS
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773
β“˜ Quartz
Formula: SiO2
Reference: Eur. J. Mineral. , 1991, 3, pp. 367-386.
β“˜ Richterite
Formula: {Na}{NaCa}{Mg5}(Si8O22)(OH)2
Reference: Sheraton, J. W., & England, R. N. (1980). Highly potassic mafic dykes from Antarctica. Journal of the Geological Society of Australia, 27(1-2), 129-135.
β“˜ Rutile
Formula: TiO2
Reference: Eur. J. Mineral. , 1991, 3, pp. 367-386.
β“˜ Sapphirine
Formula: Mg4(Mg3Al9)O4[Si3Al9O36]
Reference: Mineralogical Magazine 1963 33 : 635-645
β“˜ 'Serpentine Subgroup'
Formula: D3[Si2O5](OH)4
Reference: Walker, K. R., & Mond, A. (1971). Mica lamprophyre (alnΓΆite) from Radok Lake, Prince Charles Mountains, Antarctica. Australia. Department of National Development. Bureau of Mineral Resources, Geology and Geophysics, Record No. 1971/108
β“˜ Siderite
Formula: FeCO3
Reference: Grew, E.S. (1984) Field studies on the Jetty Peninsula (Amery Ice Shelf area) with the 30th Soviet Antarctic Expedition. Antarctic Journal of the United States, 20, 52-53.
β“˜ Siegenite
Formula: CoNi2S4
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773
β“˜ Sillimanite
Formula: Al2(SiO4)O
Reference: Eur. J. Mineral. , 1991, 3, pp. 367-386.
β“˜ Spinel
Formula: MgAl2O4
Reference: AV Andronikov (1992) The first study of upper mantle inclusions from the Prince Charles Mountains, East Antarctica in Recent Progress in Antarctic Earth Science Tokyo pp163-171; S. F. Foley, A. V. Andronikov, S. Melzer (2002) Petrology of ultramafic lamprophyres from the Beaver Lake area of Eastern Antarctica and their relation to the breakup of Gondwanaland. Mineralogy and Petrology 74:361-384
β“˜ Talc
Formula: Mg3Si4O10(OH)2
Reference: Walker, K. R., & Mond, A. (1971). Mica lamprophyre (alnΓΆite) from Radok Lake, Prince Charles Mountains, Antarctica. Australia. Department of National Development. Bureau of Mineral Resources, Geology and Geophysics, Record No. 1971/108
β“˜ Violarite
Formula: Fe2+Ni3+2S4
Reference: Andronikov, Alexandre V., Irina E. Andronikova, and Tamara Sidorinova. (2021) "Trace-Element Geochemistry of Sulfides in Upper Mantle Lherzolite Xenoliths from East Antarctica" Minerals 11, no. 7: 773. https://doi.org/10.3390/min11070773
β“˜ Zircon
Formula: Zr(SiO4)
Reference: Grew, E.S.; Manton, W.I. (1979) Geochronologic studies in East Antarctica: age of a pegmatite in Mawson charnockite. Antarctic Journal of the U.S., 14(5), 2-3.

Gallery:

List of minerals arranged by Strunz 10th Edition classification

Group 2 - Sulphides and Sulfosalts
β“˜Bornite2.BA.15Cu5FeS4
β“˜Chalcopyrite2.CB.10aCuFeS2
β“˜Millerite2.CC.20NiS
β“˜Pentlandite2.BB.15(NixFey)Ξ£9S8
β“˜Polydymite2.DA.05Ni2+Ni3+2S4
β“˜Pyrite2.EB.05aFeS2
β“˜Pyrrhotite2.CC.10Fe1-xS
β“˜Siegenite2.DA.05CoNi2S4
β“˜Violarite2.DA.05Fe2+Ni3+2S4
Group 4 - Oxides and Hydroxides
β“˜Anatase4.DD.05TiO2
β“˜Baddeleyite4.DE.35ZrO2
β“˜Henrymeyerite4.DK.05bBa(Ti4+7Fe2+)O16
β“˜Hercynite4.BB.05Fe2+Al2O4
β“˜Ilmenite4.CB.05Fe2+TiO3
β“˜Magnetite4.BB.05Fe2+Fe3+2O4
β“˜var. Titanium-bearing Magnetite4.BB.05Fe2+(Fe3+,Ti)2O4
β“˜Perovskite4.CC.30CaTiO3
β“˜Priderite4.DK.05bK(Ti4+7Fe3+)O16
β“˜Quartz4.DA.05SiO2
β“˜Rutile4.DB.05TiO2
β“˜Spinel4.BB.05MgAl2O4
Group 5 - Nitrates and Carbonates
β“˜Calcite5.AB.05CaCO3
β“˜Dolomite5.AB.10CaMg(CO3)2
β“˜Magnesite5.AB.05MgCO3
β“˜var. Iron-bearing Magnesite5.AB.05(Mg,Fe)CO3
β“˜Siderite5.AB.05FeCO3
Group 8 - Phosphates, Arsenates and Vanadates
β“˜Chlorapatite8.BN.05Ca5(PO4)3Cl
Group 9 - Silicates
β“˜Almandine9.AD.25Fe2+3Al2(SiO4)3
β“˜Arfvedsonite9.DE.25[Na][Na2][Fe2+4Fe3+]Si8O22(OH)2
β“˜Clinohumite9.AF.55Mg9(SiO4)4F2
β“˜Cordierite9.CJ.10(Mg,Fe)2Al3(AlSi5O18)
β“˜Diopside9.DA.15CaMgSi2O6
β“˜var. Chromium-bearing Diopside9.DA.15Ca(Mg,Cr)Si2O6
β“˜Enstatite9.DA.05Mg2Si2O6
β“˜Forsterite9.AC.05Mg2SiO4
β“˜Humite9.AF.50(Mg,Fe2+)7(SiO4)3F2
β“˜Leucite9.GB.05K(AlSi2O6)
β“˜Magnesio-arfvedsonite9.DE.25{Na}{Na2}{Mg4Fe3+}(Si8O22)(OH)2
β“˜Microcline9.FA.30K(AlSi3O8)
β“˜Monticellite9.AC.10CaMgSiO4
β“˜Nepheline9.FA.05Na3K(Al4Si4O16)
β“˜Perrierite-(Ce)9.BE.70Ce4MgFe3+2Ti2(Si2O7)2O8
β“˜Phlogopite9.EC.20KMg3(AlSi3O10)(OH)2
β“˜Prehnite9.DP.20Ca2Al2Si3O10(OH)2
β“˜Richterite9.DE.20{Na}{NaCa}{Mg5}(Si8O22)(OH)2
β“˜Sapphirine9.DH.45Mg4(Mg3Al9)O4[Si3Al9O36]
β“˜Sillimanite9.AF.05Al2(SiO4)O
β“˜Talc9.EC.05Mg3Si4O10(OH)2
β“˜Zircon9.AD.30Zr(SiO4)
Unclassified Minerals, Rocks, etc.
β“˜'Alkali amphibole'-
β“˜'Amphibole Supergroup'-AB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
β“˜'Apatite'-Ca5(PO4)3(Cl/F/OH)
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“˜'Chrome-Spinel (of Dana)'-
β“˜'Clinopyroxene Subgroup'-
β“˜'Fayalite-Forsterite Series'-
β“˜'Feldspar Group'-
β“˜'Garnet Group'-X3Z2(SiO4)3
β“˜'Hornblende'-
β“˜'Humite Group'-
β“˜'K Feldspar'-KAlSi3O8
β“˜'Kelyphite'-
β“˜'Melilite Group'-Ca2M(XSiO7)
β“˜'Mica Group'-
β“˜'Monazite'-REE(PO4)
β“˜'Olivine Group'-M2SiO4
β“˜'Orthopyroxene Subgroup'-
β“˜'Plagioclase'-(Na,Ca)[(Si,Al)AlSi2]O8
β“˜'Serpentine Subgroup'-D3[Si2O5](OH)4

List of minerals for each chemical element

HHydrogen
Hβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Hβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)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“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Hβ“˜ Richterite{Na}{NaCa}{Mg5}(Si8O22)(OH)2
Hβ“˜ Magnesio-arfvedsonite{Na}{Na2}{Mg4Fe3+}(Si8O22)(OH)2
Hβ“˜ Arfvedsonite[Na][Na2][Fe42+Fe3+]Si8O22(OH)2
Hβ“˜ Serpentine SubgroupD3[Si2O5](OH)4
Hβ“˜ TalcMg3Si4O10(OH)2
Hβ“˜ PrehniteCa2Al2Si3O10(OH)2
CCarbon
Cβ“˜ MagnesiteMgCO3
Cβ“˜ DolomiteCaMg(CO3)2
Cβ“˜ CalciteCaCO3
Cβ“˜ Magnesite var. Iron-bearing Magnesite(Mg,Fe)CO3
Cβ“˜ SideriteFeCO3
OOxygen
Oβ“˜ EnstatiteMg2Si2O6
Oβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Oβ“˜ Melilite GroupCa2M(XSiO7)
Oβ“˜ MonticelliteCaMgSiO4
Oβ“˜ NephelineNa3K(Al4Si4O16)
Oβ“˜ PerovskiteCaTiO3
Oβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)2
Oβ“˜ SpinelMgAl2O4
Oβ“˜ Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
Oβ“˜ AlmandineFe32+Al2(SiO4)3
Oβ“˜ Cordierite(Mg,Fe)2Al3(AlSi5O18)
Oβ“˜ SillimaniteAl2(SiO4)O
Oβ“˜ QuartzSiO2
Oβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Oβ“˜ K FeldsparKAlSi3O8
Oβ“˜ IlmeniteFe2+TiO3
Oβ“˜ RutileTiO2
Oβ“˜ MagnetiteFe2+Fe23+O4
Oβ“˜ HercyniteFe2+Al2O4
Oβ“˜ SapphirineMg4(Mg3Al9)O4[Si3Al9O36]
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“˜ Garnet GroupX3Z2(SiO4)3
Oβ“˜ ZirconZr(SiO4)
Oβ“˜ Perrierite-(Ce)Ce4MgFe23+Ti2(Si2O7)2O8
Oβ“˜ HenrymeyeriteBa(Ti74+Fe2+)O16
Oβ“˜ ChlorapatiteCa5(PO4)3Cl
Oβ“˜ ClinohumiteMg9(SiO4)4F2
Oβ“˜ MagnesiteMgCO3
Oβ“˜ DolomiteCaMg(CO3)2
Oβ“˜ Diopside var. Chromium-bearing DiopsideCa(Mg,Cr)Si2O6
Oβ“˜ CalciteCaCO3
Oβ“˜ DiopsideCaMgSi2O6
Oβ“˜ MicroclineK(AlSi3O8)
Oβ“˜ AnataseTiO2
Oβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Oβ“˜ Richterite{Na}{NaCa}{Mg5}(Si8O22)(OH)2
Oβ“˜ Magnesio-arfvedsonite{Na}{Na2}{Mg4Fe3+}(Si8O22)(OH)2
Oβ“˜ LeuciteK(AlSi2O6)
Oβ“˜ Arfvedsonite[Na][Na2][Fe42+Fe3+]Si8O22(OH)2
Oβ“˜ Serpentine SubgroupD3[Si2O5](OH)4
Oβ“˜ TalcMg3Si4O10(OH)2
Oβ“˜ PrehniteCa2Al2Si3O10(OH)2
Oβ“˜ Humite(Mg,Fe2+)7(SiO4)3F2
Oβ“˜ Magnesite var. Iron-bearing Magnesite(Mg,Fe)CO3
Oβ“˜ BaddeleyiteZrO2
Oβ“˜ Olivine GroupM2SiO4
Oβ“˜ PrideriteK(Ti74+Fe3+)O16
Oβ“˜ SideriteFeCO3
Oβ“˜ ForsteriteMg2SiO4
Oβ“˜ MonaziteREE(PO4)
FFluorine
Fβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
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“˜ ClinohumiteMg9(SiO4)4F2
Fβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Fβ“˜ Humite(Mg,Fe2+)7(SiO4)3F2
NaSodium
Naβ“˜ NephelineNa3K(Al4Si4O16)
Naβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Naβ“˜ Richterite{Na}{NaCa}{Mg5}(Si8O22)(OH)2
Naβ“˜ Magnesio-arfvedsonite{Na}{Na2}{Mg4Fe3+}(Si8O22)(OH)2
Naβ“˜ Arfvedsonite[Na][Na2][Fe42+Fe3+]Si8O22(OH)2
MgMagnesium
Mgβ“˜ EnstatiteMg2Si2O6
Mgβ“˜ MonticelliteCaMgSiO4
Mgβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)2
Mgβ“˜ SpinelMgAl2O4
Mgβ“˜ Cordierite(Mg,Fe)2Al3(AlSi5O18)
Mgβ“˜ SapphirineMg4(Mg3Al9)O4[Si3Al9O36]
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“˜ Perrierite-(Ce)Ce4MgFe23+Ti2(Si2O7)2O8
Mgβ“˜ ClinohumiteMg9(SiO4)4F2
Mgβ“˜ MagnesiteMgCO3
Mgβ“˜ DolomiteCaMg(CO3)2
Mgβ“˜ Diopside var. Chromium-bearing DiopsideCa(Mg,Cr)Si2O6
Mgβ“˜ DiopsideCaMgSi2O6
Mgβ“˜ Richterite{Na}{NaCa}{Mg5}(Si8O22)(OH)2
Mgβ“˜ Magnesio-arfvedsonite{Na}{Na2}{Mg4Fe3+}(Si8O22)(OH)2
Mgβ“˜ TalcMg3Si4O10(OH)2
Mgβ“˜ Humite(Mg,Fe2+)7(SiO4)3F2
Mgβ“˜ Magnesite var. Iron-bearing Magnesite(Mg,Fe)CO3
Mgβ“˜ ForsteriteMg2SiO4
AlAluminium
Alβ“˜ NephelineNa3K(Al4Si4O16)
Alβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)2
Alβ“˜ SpinelMgAl2O4
Alβ“˜ AlmandineFe32+Al2(SiO4)3
Alβ“˜ Cordierite(Mg,Fe)2Al3(AlSi5O18)
Alβ“˜ SillimaniteAl2(SiO4)O
Alβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Alβ“˜ K FeldsparKAlSi3O8
Alβ“˜ HercyniteFe2+Al2O4
Alβ“˜ SapphirineMg4(Mg3Al9)O4[Si3Al9O36]
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“˜ MicroclineK(AlSi3O8)
Alβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Alβ“˜ LeuciteK(AlSi2O6)
Alβ“˜ PrehniteCa2Al2Si3O10(OH)2
SiSilicon
Siβ“˜ EnstatiteMg2Si2O6
Siβ“˜ Melilite GroupCa2M(XSiO7)
Siβ“˜ MonticelliteCaMgSiO4
Siβ“˜ NephelineNa3K(Al4Si4O16)
Siβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)2
Siβ“˜ AlmandineFe32+Al2(SiO4)3
Siβ“˜ Cordierite(Mg,Fe)2Al3(AlSi5O18)
Siβ“˜ SillimaniteAl2(SiO4)O
Siβ“˜ QuartzSiO2
Siβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Siβ“˜ K FeldsparKAlSi3O8
Siβ“˜ SapphirineMg4(Mg3Al9)O4[Si3Al9O36]
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“˜ Garnet GroupX3Z2(SiO4)3
Siβ“˜ ZirconZr(SiO4)
Siβ“˜ Perrierite-(Ce)Ce4MgFe23+Ti2(Si2O7)2O8
Siβ“˜ ClinohumiteMg9(SiO4)4F2
Siβ“˜ Diopside var. Chromium-bearing DiopsideCa(Mg,Cr)Si2O6
Siβ“˜ DiopsideCaMgSi2O6
Siβ“˜ MicroclineK(AlSi3O8)
Siβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Siβ“˜ Richterite{Na}{NaCa}{Mg5}(Si8O22)(OH)2
Siβ“˜ Magnesio-arfvedsonite{Na}{Na2}{Mg4Fe3+}(Si8O22)(OH)2
Siβ“˜ LeuciteK(AlSi2O6)
Siβ“˜ Arfvedsonite[Na][Na2][Fe42+Fe3+]Si8O22(OH)2
Siβ“˜ Serpentine SubgroupD3[Si2O5](OH)4
Siβ“˜ TalcMg3Si4O10(OH)2
Siβ“˜ PrehniteCa2Al2Si3O10(OH)2
Siβ“˜ Humite(Mg,Fe2+)7(SiO4)3F2
Siβ“˜ Olivine GroupM2SiO4
Siβ“˜ ForsteriteMg2SiO4
PPhosphorus
Pβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Pβ“˜ ChlorapatiteCa5(PO4)3Cl
Pβ“˜ MonaziteREE(PO4)
SSulfur
Sβ“˜ BorniteCu5FeS4
Sβ“˜ ChalcopyriteCuFeS2
Sβ“˜ MilleriteNiS
Sβ“˜ Pentlandite(NixFey)Ξ£9S8
Sβ“˜ PolydymiteNi2+Ni23+S4
Sβ“˜ PyriteFeS2
Sβ“˜ PyrrhotiteFe1-xS
Sβ“˜ SiegeniteCoNi2S4
Sβ“˜ ViolariteFe2+Ni23+S4
ClChlorine
Clβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Clβ“˜ ChlorapatiteCa5(PO4)3Cl
Clβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
KPotassium
Kβ“˜ NephelineNa3K(Al4Si4O16)
Kβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)2
Kβ“˜ K FeldsparKAlSi3O8
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“˜ LeuciteK(AlSi2O6)
Kβ“˜ PrideriteK(Ti74+Fe3+)O16
CaCalcium
Caβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Caβ“˜ Melilite GroupCa2M(XSiO7)
Caβ“˜ MonticelliteCaMgSiO4
Caβ“˜ PerovskiteCaTiO3
Caβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Caβ“˜ ChlorapatiteCa5(PO4)3Cl
Caβ“˜ DolomiteCaMg(CO3)2
Caβ“˜ Diopside var. Chromium-bearing DiopsideCa(Mg,Cr)Si2O6
Caβ“˜ CalciteCaCO3
Caβ“˜ DiopsideCaMgSi2O6
Caβ“˜ Richterite{Na}{NaCa}{Mg5}(Si8O22)(OH)2
Caβ“˜ PrehniteCa2Al2Si3O10(OH)2
TiTitanium
Tiβ“˜ PerovskiteCaTiO3
Tiβ“˜ Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
Tiβ“˜ IlmeniteFe2+TiO3
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
Tiβ“˜ Perrierite-(Ce)Ce4MgFe23+Ti2(Si2O7)2O8
Tiβ“˜ HenrymeyeriteBa(Ti74+Fe2+)O16
Tiβ“˜ AnataseTiO2
Tiβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Tiβ“˜ PrideriteK(Ti74+Fe3+)O16
CrChromium
Crβ“˜ Diopside var. Chromium-bearing DiopsideCa(Mg,Cr)Si2O6
FeIron
Feβ“˜ Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
Feβ“˜ AlmandineFe32+Al2(SiO4)3
Feβ“˜ Cordierite(Mg,Fe)2Al3(AlSi5O18)
Feβ“˜ IlmeniteFe2+TiO3
Feβ“˜ MagnetiteFe2+Fe23+O4
Feβ“˜ HercyniteFe2+Al2O4
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“˜ Perrierite-(Ce)Ce4MgFe23+Ti2(Si2O7)2O8
Feβ“˜ HenrymeyeriteBa(Ti74+Fe2+)O16
Feβ“˜ Magnesio-arfvedsonite{Na}{Na2}{Mg4Fe3+}(Si8O22)(OH)2
Feβ“˜ Arfvedsonite[Na][Na2][Fe42+Fe3+]Si8O22(OH)2
Feβ“˜ BorniteCu5FeS4
Feβ“˜ ChalcopyriteCuFeS2
Feβ“˜ Humite(Mg,Fe2+)7(SiO4)3F2
Feβ“˜ Magnesite var. Iron-bearing Magnesite(Mg,Fe)CO3
Feβ“˜ Pentlandite(NixFey)Ξ£9S8
Feβ“˜ PyriteFeS2
Feβ“˜ PyrrhotiteFe1-xS
Feβ“˜ ViolariteFe2+Ni23+S4
Feβ“˜ PrideriteK(Ti74+Fe3+)O16
Feβ“˜ SideriteFeCO3
CoCobalt
Coβ“˜ SiegeniteCoNi2S4
NiNickel
Niβ“˜ MilleriteNiS
Niβ“˜ Pentlandite(NixFey)Ξ£9S8
Niβ“˜ PolydymiteNi2+Ni23+S4
Niβ“˜ SiegeniteCoNi2S4
Niβ“˜ ViolariteFe2+Ni23+S4
CuCopper
Cuβ“˜ BorniteCu5FeS4
Cuβ“˜ ChalcopyriteCuFeS2
ZrZirconium
Zrβ“˜ ZirconZr(SiO4)
Zrβ“˜ BaddeleyiteZrO2
BaBarium
Baβ“˜ HenrymeyeriteBa(Ti74+Fe2+)O16
CeCerium
Ceβ“˜ Perrierite-(Ce)Ce4MgFe23+Ti2(Si2O7)2O8

Geochronology

Mineralization age: Phanerozoic : 430 Β± 12 Ma to 49.1 Β± 2.0 Ma

Important 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 TimeRocks, Minerals and Events
Phanerozoic
 Cenozoic
  Paleogene
   Eocene
β“˜ Leucite (youngest age)49.1 Β± 2.0 MaPrince Charles Mountains, Mac Robertson Land, Eastern Antarctica, Antarctica
β“˜ Leucite (oldest age)51.8 Β± 2.0 MaPrince Charles Mountains, Mac Robertson Land, Eastern Antarctica, Antarctica
    
  
 Mesozoic
  Cretaceous
   Early/Lower Cretaceous
β“˜ Lamprophyric-pyroxene-calcite-biotite olivine-melilitite (youngest age)108 Β± 3 MaPrince Charles Mountains, Mac Robertson Land, Eastern Antarctica, Antarctica
β“˜ Lamprophyric-pyroxene-calcite-biotite olivine-melilitite (oldest age)110 Β± 3 MaPrince Charles Mountains, Mac Robertson Land, Eastern Antarctica, Antarctica
β“˜ Mica Group110 Β± 3 MaPrince Charles Mountains, Mac Robertson Land, Eastern Antarctica, Antarctica
    
  
 Paleozoic
  Devonian
   Early/Lower Devonian
β“˜ Richterite414 Β± 10 MaMount Bayliss, Prince Charles Mountains, Mac Robertson Land, Eastern Antarctica, Antarctica
    
   
  Silurian
   Wenlock
β“˜ Arfvedsonite430 Β± 12 MaMount Bayliss, Prince Charles Mountains, Mac Robertson Land, Eastern Antarctica, Antarctica

Other Databases

Wikipedia:https://en.wikipedia.org/wiki/Mac._Robertson_Land
Wikidata ID:Q1389935

Localities in this Region

Other Regions, Features and Areas containing this locality

Antarctic MeteoritesGroup of Meteorite Fall Locations
Antarctic PlateTectonic Plate

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