Magnesite deposit, Sattlerkogel, Veitsch, Sankt Barbara im Mürztal, Bruck-Mürzzuschlag District, Styria, Austria (original) (raw)

Magnesite deposit, Sattlerkogel, Veitsch, Sankt Barbara im Mürztal, Bruck-Mürzzuschlag District, Styria, Austriai

Regional Level Types
Magnesite deposit Deposit (Active)
Sattlerkogel Mountain
Veitsch Town
Sankt Barbara im Mürztal Municipality
Bruck-Mürzzuschlag District District
Styria State
Austria Country

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Latitude & Longitude (WGS84):

47° 35' 9'' North , 15° 28' 48'' East

Latitude & Longitude (decimal):

Type:

Deposit (Active) - last checked 2020

Age:

358.9 ± 0.4 to 298.9 ± 0.15 Ma

Long-form identifier:

mindat:1:2:20193:0

Name(s) in local language(s):

Magnesitlagerstätte, Sattlerkogel, Veitsch, Mitterdorf, Steiermark, Österreich

Abandoned magnesite mine, working magnesite lenses of metasomatic origin included in Carboniferous dolomites. Magnesite and dolomite are crossscut by quartz veins carrying copper sulphides (fahlore, chalcopyrite).

Located near Veitsch in the Veitsch valley, a NNW branch of the upper Mürz valley.

Magnesite mining started here in 1881(?) and ceased in 1968. Today (2008), the Fe-rich magnesite is quarried for road gravel, landscaping boulders etc.

Select Mineral List Type

Standard Detailed Gallery Strunz

Chemical Elements

Commodity List

This is a list of exploitable or exploited mineral commodities recorded at this locality.

Mineral List

45 valid minerals.

Detailed Mineral List:

'Adamite-Olivenite Series'References: Post+Bojar (2003)
AnkeriteFormula: Ca(Fe2+,Mg)(CO3)2References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010)
AntleriteFormula: Cu3(SO4)(OH)4References: Gerald Gesselbauer (06.2010) Taucher, J. (1992) Exel, Reinhard (1993) Die Mineralien und Erzlagerstätten Österreichs. Eigenverlag R. Exel. p.1-447.
'Apatite'Formula: Ca5(PO4)3(Cl/F/OH)References: Gerald Gesselbauer (06.2010)
AragoniteFormula: CaCO3References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010)
Aragonite var. Flos FerriFormula: CaCO3References: Schweiger (1969)
ArsenopyriteFormula: FeAsSReferences: Gerald Gesselbauer (06.2010) Kucha, H., Prohaska, W., Stumpfl, E. F. (1995) Deposition and transport of gold by thiosulphates, Veitsch, Austria. Mineralogical Magazine, 59 (395) 253-258 doi:10.1180/minmag.1995.059.395.09
AurichalciteFormula: (Zn,Cu)5(CO3)2(OH)6References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010) Meixner, H. (1958): Neue Mineralfunde in den österreichischen Ostalpen XVI. Carinthia II, 148./68., 91-109.
AzuriteFormula: Cu3(CO3)2(OH)2References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010) Meixner, H. (1958): Neue Mineralfunde in den österreichischen Ostalpen XVI. Carinthia II, 148./68., 91-109.
BaryteFormula: BaSO4References: Gerald Gesselbauer (06.2010)
BrochantiteFormula: Cu4(SO4)(OH)6References: Gerald Gesselbauer (06.2010) Taucher, J. (1992)
CalciteFormula: CaCO3References: Schweiger (1969)
ChalcociteFormula: Cu2SReferences: Gerald Gesselbauer (06.2010) Kucha, H., Prohaska, W., Stumpfl, E. F. (1995) Deposition and transport of gold by thiosulphates, Veitsch, Austria. Mineralogical Magazine, 59 (395) 253-258 doi:10.1180/minmag.1995.059.395.09
ChalcopyriteFormula: CuFeS2References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010) Kucha, H., Prohaska, W., Stumpfl, E. F. (1995) Deposition and transport of gold by thiosulphates, Veitsch, Austria. Mineralogical Magazine, 59 (395) 253-258 doi:10.1180/minmag.1995.059.395.09
ChrysocollaFormula: Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010) Kucha, H., Prohaska, W., Stumpfl, E. F. (1995) Deposition and transport of gold by thiosulphates, Veitsch, Austria. Mineralogical Magazine, 59 (395) 253-258 doi:10.1180/minmag.1995.059.395.09
CinnabarFormula: HgSReferences: Auer, Ch. (2019): 2145) Über aktuelle Funde sowie den Neufund von Cinnabarit vom Magnesitbruch am Sattlerkogel in der Veitsch, Steiermark. P. 306 in Walter, F. et al. (2019): Neue Mineralfunde aus Österreich LXVIII. Carinthia II, 209./129., 237-326.
ClinochloreFormula: Mg5Al(AlSi3O10)(OH)8References: Gerald Gesselbauer (06.2010) Exel, Reinhard (1993) Die Mineralien und Erzlagerstätten Österreichs. Eigenverlag R. Exel. p.1-447.
Clinochlore var. LeuchtenbergiteFormula: Mg5Al(AlSi3O10)(OH)8References: Gerald Gesselbauer (06.2010) Exel, Reinhard (1993) Die Mineralien und Erzlagerstätten Österreichs. Eigenverlag R. Exel. p.1-447.
CovelliteFormula: CuSReferences: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010) Meixner, H. (1958): Neue Mineralfunde in den österreichischen Ostalpen XVI. Carinthia II, 148./68., 91-109.
CupriteFormula: Cu2OReferences: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010) Meixner, H. (1958): Neue Mineralfunde in den österreichischen Ostalpen XVI. Carinthia II, 148./68., 91-109.
'Cuproroméite'Formula: Cu2Sb2(O,OH)7References: Gerald Gesselbauer (06.2010) Ertl, A., Brandstätter, F. (2000): Über den „Protopartzit" bzw. „Thrombolith" aus dem Magnesitsteinbruch Veitsch, Sattlerkogel, Steiermark, Österreich. Joannea - Mineralogie: 1: 27-30 (in German). www.franzbernhard.x10hosting.com (n.d.) http://www.franzbernhard.x10hosting.com/polishedslabs.html
CyanotrichiteFormula: Cu4Al2(SO4)(OH)12 · 2H2OReferences: Gerald Gesselbauer (06.2010) Blaß, Günter; Graf, Hans Werner; Pichler, Alfred (2001) Neue Mineralienfunde in Österreich [New Mineral Discoveries in Austria]. Mineralien-Welt, 12 (4). 34-37
DevillineFormula: CaCu4(SO4)2(OH)6 · 3H2OReferences: C.Auer (2019)
DigeniteFormula: Cu9S5References: Gerald Gesselbauer (06.2010) Kucha, H., Prohaska, W., Stumpfl, E. F. (1995) Deposition and transport of gold by thiosulphates, Veitsch, Austria. Mineralogical Magazine, 59 (395) 253-258 doi:10.1180/minmag.1995.059.395.09
DolomiteFormula: CaMg(CO3)2References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010) MEIXNER, H. (1955): Neue Mineralfunde in den österreichischen Ostalpen XIV. Carinthia II, 145./65., 10-25
EpsomiteFormula: MgSO4 · 7H2OReferences: Gerald Gesselbauer (06.2010) Exel, Reinhard (1993) Die Mineralien und Erzlagerstätten Österreichs. Eigenverlag R. Exel. p.1-447.
GoethiteFormula: Fe3+O(OH)References: Gerald Gesselbauer (06.2010)
GraphiteFormula: CReferences: Gerald Gesselbauer (06.2010)
GypsumFormula: CaSO4 · 2H2OReferences: C.Auer (2015)
HemimorphiteFormula: Zn4Si2O7(OH)2 · H2OReferences: Gerald Gesselbauer (06.2010) Taucher, J. (1992)
HydroniumjarositeFormula: (H3O)Fe3+3(SO4)2(OH)6References: Taucher, J. (2012): Hydroniumjarosit, Jarosit, Rozenit und Pickeringit vom Tagbau des aufgelassenen Magnesitbergbaues am Sattlerkogel, Veitsch, Steiermark. Der Steirische Mineralog 26, 59.
JarositeFormula: KFe3+3(SO4)2(OH)6References: Taucher, J. (2012): Hydroniumjarosit, Jarosit, Rozenit und Pickeringit vom Tagbau des aufgelassenen Magnesitbergbaues am Sattlerkogel, Veitsch, Steiermark. Der Steirische Mineralog 26, 59.
'Kupferpecherz'References: Schweiger (1969)
LangiteFormula: Cu4(SO4)(OH)6 · 2H2OReferences: C.Auer (2019)
LepidocrociteFormula: Fe3+O(OH)References: Meixner, H. (1958): Neue Mineralfunde in den österreichischen Ostalpen XVI. Carinthia II, 148./68., 91-109.
'Limonite'References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010)
MagnesiteFormula: MgCO3References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010)
MalachiteFormula: Cu2(CO3)(OH)2References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010) Meixner, H. (1958): Neue Mineralfunde in den österreichischen Ostalpen XVI. Carinthia II, 148./68., 91-109.
Native CopperFormula: CuReferences: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010) Meixner, H. (1958): Neue Mineralfunde in den österreichischen Ostalpen XVI. Carinthia II, 148./68., 91-109.
Native GoldFormula: AuDescription: up to 0.2 mm large grains in cracks in tetrahedriteReferences: Gerald Gesselbauer (06.2010) Kucha, H., Prohaska, W., Stumpfl, E. F. (1995) Deposition and transport of gold by thiosulphates, Veitsch, Austria. Mineralogical Magazine, 59 (395) 253-258 doi:10.1180/minmag.1995.059.395.09 Kucha, Henryk; Raith, Johann G. (2009) Gold-oxysulphides in copper deposits of the Greywacke Zone, Austria: A mineral chemical and infrared fluid inclusion study. Ore Geology Reviews, 35 (1). 87-100 doi:10.1016/j.oregeorev.2008.10.004
Native SulphurFormula: S8References: Gerald Gesselbauer (06.2010) Exel, Reinhard (1993) Die Mineralien und Erzlagerstätten Österreichs. Eigenverlag R. Exel. p.1-447.
PalygorskiteFormula: ◻Al2Mg2◻2Si8O20(OH)2(H2O)4 · 4H2OReferences: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010)
PickeringiteFormula: MgAl2(SO4)4 · 22H2OReferences: Taucher, J. (2012): Hydroniumjarosit, Jarosit, Rozenit und Pickeringit vom Tagbau des aufgelassenen Magnesitbergbaues am Sattlerkogel, Veitsch, Steiermark. Der Steirische Mineralog 26, 59.
'Pinolite'References: Gerald Gesselbauer (06.2010) www.franzbernhard.x10hosting.com (2016) http://www.franzbernhard.x10hosting.com/polishedslabs.html
'Protopartzite'Formula: Cu(Sb,As,Fe,Zn)1.3(O,OH)6.8References: Gerald Gesselbauer (06.2010) S. Koritnig: Min. Mittbl. Joanneum, Graz 1/2:51-56 (1967)
PyriteFormula: FeS2References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010)
PyrolusiteFormula: Mn4+O2References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010)
QuartzFormula: SiO2References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010) Offenbacher, H. (2010).
Quartz var. Rock CrystalFormula: SiO2References: Gerald Gesselbauer (06.2010) Exel, Reinhard (1993) Die Mineralien und Erzlagerstätten Österreichs. Eigenverlag R. Exel. p.1-447.
RozeniteFormula: FeSO4 · 4H2OReferences: Taucher, J. (2012): Hydroniumjarosit, Jarosit, Rozenit und Pickeringit vom Tagbau des aufgelassenen Magnesitbergbaues am Sattlerkogel, Veitsch, Steiermark. Der Steirische Mineralog 26, 59.
RutileFormula: TiO2References: Gerald Gesselbauer (06.2010)
StibiconiteFormula: Sb3+Sb5+2O6(OH) References: Gerald Gesselbauer (06.2010) Postl, W. & Bojar, H.-P. (2003)
TalcFormula: Mg3Si4O10(OH)2References: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010)
'Tennantite Subgroup'Formula: Cu6(Cu4C2+2)As4S12SReferences: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010)
TenoriteFormula: CuOReferences: Gerald Gesselbauer (06.2010) Meixner, H. (1958): Neue Mineralfunde in den österreichischen Ostalpen XVI. Carinthia II, 148./68., 91-109. Exel, Reinhard (1993) Die Mineralien und Erzlagerstätten Österreichs. Eigenverlag R. Exel. p.1-447.
Tetrahedrite-(Fe)Formula: Cu6(Cu4Fe2+2)Sb4S12SReferences: Ibrahim, Nazmy Azer (1957) Beitrag zur Kenntnis ostalpiner Fahlerze. Teil II. Chemische Untersuchungen von Fahlerzen. Tschermaks Mineralogische und Petrographische Mitteilungen, 6 (3). 238-245 doi:10.1007/bf01128126
'Tetrahedrite Subgroup'Formula: Cu6(Cu4C2+2)Sb4S12SReferences: Aufschluss 1972(SB), 48-50 Gerald Gesselbauer (06.2010) Kucha, H., Prohaska, W., Stumpfl, E. F. (1995) Deposition and transport of gold by thiosulphates, Veitsch, Austria. Mineralogical Magazine, 59 (395) 253-258 doi:10.1180/minmag.1995.059.395.09 Kharbish, S., Götzinger, M. & Beran, A. (2007): Contribution to the chemical composition and homogeneity of some Austrian fahlores. Mitt. Österreich. Mineral. Ges. 153, 60. (Abs.) Kharbish, S., Götzinger, M. & Beran, A. (2007): Compositional variations of fahlore group minerals from Austria. Austr. J. Earth Sci. 100, 44-52. Kucha, Henryk; Raith, Johann G. (2009) Gold-oxysulphides in copper deposits of the Greywacke Zone, Austria: A mineral chemical and infrared fluid inclusion study. Ore Geology Reviews, 35 (1). 87-100 doi:10.1016/j.oregeorev.2008.10.004
'Thrombolite (of Breithaupt)'References: Gerald Gesselbauer (06.2010) Koritnig, S. (1967): Der Thrombolith von der Veitsch, Steiermark. Mitt. Abt. Mineral. Landesmuseum Joanneum H. 1/2, 51–56. Exel, Reinhard (1993) Die Mineralien und Erzlagerstätten Österreichs. Eigenverlag R. Exel. p.1-447.
'Wad'References: Schweiger (1969)

List of minerals arranged by Strunz 10th Edition classification

Group 1 - Elements
Native Copper 1.AA.05 Cu
Native Gold 1.AA.05 Au
Graphite 1.CB.05a C
Native Sulphur 1.CC.05 S8
Group 2 - Sulphides and Sulfosalts
Chalcocite 2.BA.05 Cu2S
Digenite 2.BA.10 Cu9S5
Covellite 2.CA.05a CuS
Chalcopyrite 2.CB.10a CuFeS2
Cinnabar 2.CD.15a HgS
Pyrite 2.EB.05a FeS2
Arsenopyrite 2.EB.20 FeAsS
'Tennantite Subgroup' 2.GB.05 Cu6(Cu4C2+2)As4S12S
'Tetrahedrite Subgroup' 2.GB.05 Cu6(Cu4C2+2)Sb4S12S
Tetrahedrite-(Fe) 2.GB.05 Cu6(Cu4Fe2+2)Sb4S12S
Group 4 - Oxides and Hydroxides
Goethite 4.00. Fe3+O(OH)
Cuprite 4.AA.10 Cu2O
Tenorite 4.AB.10 CuO
Quartz 4.DA.05 SiO2
var. Rock Crystal 4.DA.05 SiO2
Pyrolusite 4.DB.05 Mn4+O2
Rutile 4.DB.05 TiO2
'Cuproroméite' 4.DH.20 Cu2Sb2(O,OH)7
Stibiconite 4.DH.20 Sb3+Sb5+2O6(OH)
Lepidocrocite 4.FE.15 Fe3+O(OH)
Group 5 - Nitrates and Carbonates
Calcite 5.AB.05 CaCO3
Magnesite 5.AB.05 MgCO3
Ankerite 5.AB.10 Ca(Fe2+,Mg)(CO3)2
Dolomite 5.AB.10 CaMg(CO3)2
Aragonite 5.AB.15 CaCO3
var. Flos Ferri 5.AB.15 CaCO3
Azurite 5.BA.05 Cu3(CO3)2(OH)2
Malachite 5.BA.10 Cu2(CO3)(OH)2
Aurichalcite 5.BA.15 (Zn,Cu)5(CO3)2(OH)6
Group 7 - Sulphates, Chromates, Molybdates and Tungstates
Baryte 7.AD.35 BaSO4
Antlerite 7.BB.15 Cu3(SO4)(OH)4
Brochantite 7.BB.25 Cu4(SO4)(OH)6
Hydroniumjarosite 7.BC.10 (H3O)Fe3+3(SO4)2(OH)6
Jarosite 7.BC.10 KFe3+3(SO4)2(OH)6
Rozenite 7.CB.15 FeSO4 · 4H2O
Epsomite 7.CB.40 MgSO4 · 7H2O
Pickeringite 7.CB.85 MgAl2(SO4)4 · 22H2O
Gypsum 7.CD.40 CaSO4 · 2H2O
Langite 7.DD.10 Cu4(SO4)(OH)6 · 2H2O
Devilline 7.DD.30 CaCu4(SO4)2(OH)6 · 3H2O
Cyanotrichite 7.DE.10 Cu4Al2(SO4)(OH)12 · 2H2O
Group 9 - Silicates
Hemimorphite 9.BD.10 Zn4Si2O7(OH)2 · H2O
Talc 9.EC.05 Mg3Si4O10(OH)2
Clinochlore 9.EC.55 Mg5Al(AlSi3O10)(OH)8
var. Leuchtenbergite 9.EC.55 Mg5Al(AlSi3O10)(OH)8
Chrysocolla 9.ED.20 Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
Palygorskite 9.EE.20 ◻Al2Mg2◻2Si8O20(OH)2(H2O)4 · 4H2O
Unclassified
'Limonite' -
'Protopartzite' - Cu(Sb,As,Fe,Zn)1.3(O,OH)6.8
'Thrombolite (of Breithaupt)' -
'Wad' -
'Kupferpecherz' -
'Adamite-Olivenite Series' -
'Pinolite' -
'Apatite' - Ca5(PO4)3(Cl/F/OH)

List of minerals for each chemical element

H Hydrogen
H Antlerite Cu3(SO4)(OH)4
H Aurichalcite (Zn,Cu)5(CO3)2(OH)6
H Azurite Cu3(CO3)2(OH)2
H Brochantite Cu4(SO4)(OH)6
H Chrysocolla Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
H Clinochlore Mg5Al(AlSi3O10)(OH)8
H Cyanotrichite Cu4Al2(SO4)(OH)12 · 2H2O
H Devilline CaCu4(SO4)2(OH)6 · 3H2O
H Epsomite MgSO4 · 7H2O
H Goethite Fe3+O(OH)
H Gypsum CaSO4 · 2H2O
H Hemimorphite Zn4Si2O7(OH)2 · H2O
H Hydroniumjarosite (H3O)Fe33+(SO4)2(OH)6
H Jarosite KFe33+(SO4)2(OH)6
H Langite Cu4(SO4)(OH)6 · 2H2O
H Lepidocrocite Fe3+O(OH)
H Malachite Cu2(CO3)(OH)2
H Palygorskite ◻Al2Mg2◻2Si8O20(OH)2(H2O)4 · 4H2O
H Cuproroméite Cu2Sb2(O,OH)7
H Pickeringite MgAl2(SO4)4 · 22H2O
H Protopartzite Cu(Sb,As,Fe,Zn)1.3(O,OH)6.8
H Rozenite FeSO4 · 4H2O
H Stibiconite Sb3+Sb25+O6(OH)
H Talc Mg3Si4O10(OH)2
H Adamite-Olivenite Series
H Clinochlore var. Leuchtenbergite Mg5Al(AlSi3O10)(OH)8
H Apatite Ca5(PO4)3(Cl/F/OH)
C Carbon
C Ankerite Ca(Fe2+,Mg)(CO3)2
C Aragonite CaCO3
C Aurichalcite (Zn,Cu)5(CO3)2(OH)6
C Azurite Cu3(CO3)2(OH)2
C Calcite CaCO3
C Dolomite CaMg(CO3)2
C Graphite C
C Magnesite MgCO3
C Malachite Cu2(CO3)(OH)2
C Aragonite var. Flos Ferri CaCO3
O Oxygen
O Ankerite Ca(Fe2+,Mg)(CO3)2
O Antlerite Cu3(SO4)(OH)4
O Aragonite CaCO3
O Aurichalcite (Zn,Cu)5(CO3)2(OH)6
O Azurite Cu3(CO3)2(OH)2
O Baryte BaSO4
O Brochantite Cu4(SO4)(OH)6
O Calcite CaCO3
O Chrysocolla Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
O Clinochlore Mg5Al(AlSi3O10)(OH)8
O Cuprite Cu2O
O Cyanotrichite Cu4Al2(SO4)(OH)12 · 2H2O
O Devilline CaCu4(SO4)2(OH)6 · 3H2O
O Dolomite CaMg(CO3)2
O Epsomite MgSO4 · 7H2O
O Goethite Fe3+O(OH)
O Gypsum CaSO4 · 2H2O
O Hemimorphite Zn4Si2O7(OH)2 · H2O
O Hydroniumjarosite (H3O)Fe33+(SO4)2(OH)6
O Jarosite KFe33+(SO4)2(OH)6
O Langite Cu4(SO4)(OH)6 · 2H2O
O Lepidocrocite Fe3+O(OH)
O Magnesite MgCO3
O Malachite Cu2(CO3)(OH)2
O Palygorskite ◻Al2Mg2◻2Si8O20(OH)2(H2O)4 · 4H2O
O Cuproroméite Cu2Sb2(O,OH)7
O Pickeringite MgAl2(SO4)4 · 22H2O
O Protopartzite Cu(Sb,As,Fe,Zn)1.3(O,OH)6.8
O Pyrolusite Mn4+O2
O Quartz SiO2
O Rozenite FeSO4 · 4H2O
O Rutile TiO2
O Stibiconite Sb3+Sb25+O6(OH)
O Talc Mg3Si4O10(OH)2
O Tenorite CuO
O Quartz var. Rock Crystal SiO2
O Aragonite var. Flos Ferri CaCO3
O Adamite-Olivenite Series
O Clinochlore var. Leuchtenbergite Mg5Al(AlSi3O10)(OH)8
O Apatite Ca5(PO4)3(Cl/F/OH)
F Fluorine
F Apatite Ca5(PO4)3(Cl/F/OH)
Mg Magnesium
Mg Ankerite Ca(Fe2+,Mg)(CO3)2
Mg Clinochlore Mg5Al(AlSi3O10)(OH)8
Mg Dolomite CaMg(CO3)2
Mg Epsomite MgSO4 · 7H2O
Mg Magnesite MgCO3
Mg Palygorskite ◻Al2Mg2◻2Si8O20(OH)2(H2O)4 · 4H2O
Mg Pickeringite MgAl2(SO4)4 · 22H2O
Mg Talc Mg3Si4O10(OH)2
Mg Clinochlore var. Leuchtenbergite Mg5Al(AlSi3O10)(OH)8
Al Aluminium
Al Chrysocolla Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
Al Clinochlore Mg5Al(AlSi3O10)(OH)8
Al Cyanotrichite Cu4Al2(SO4)(OH)12 · 2H2O
Al Palygorskite ◻Al2Mg2◻2Si8O20(OH)2(H2O)4 · 4H2O
Al Pickeringite MgAl2(SO4)4 · 22H2O
Al Clinochlore var. Leuchtenbergite Mg5Al(AlSi3O10)(OH)8
Si Silicon
Si Chrysocolla Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
Si Clinochlore Mg5Al(AlSi3O10)(OH)8
Si Hemimorphite Zn4Si2O7(OH)2 · H2O
Si Palygorskite ◻Al2Mg2◻2Si8O20(OH)2(H2O)4 · 4H2O
Si Quartz SiO2
Si Talc Mg3Si4O10(OH)2
Si Quartz var. Rock Crystal SiO2
Si Clinochlore var. Leuchtenbergite Mg5Al(AlSi3O10)(OH)8
P Phosphorus
P Apatite Ca5(PO4)3(Cl/F/OH)
S Sulfur
S Antlerite Cu3(SO4)(OH)4
S Arsenopyrite FeAsS
S Baryte BaSO4
S Brochantite Cu4(SO4)(OH)6
S Chalcopyrite CuFeS2
S Chalcocite Cu2S
S Cinnabar HgS
S Covellite CuS
S Cyanotrichite Cu4Al2(SO4)(OH)12 · 2H2O
S Devilline CaCu4(SO4)2(OH)6 · 3H2O
S Digenite Cu9S5
S Epsomite MgSO4 · 7H2O
S Gypsum CaSO4 · 2H2O
S Hydroniumjarosite (H3O)Fe33+(SO4)2(OH)6
S Jarosite KFe33+(SO4)2(OH)6
S Langite Cu4(SO4)(OH)6 · 2H2O
S Pickeringite MgAl2(SO4)4 · 22H2O
S Pyrite FeS2
S Rozenite FeSO4 · 4H2O
S Native Sulphur S8
S Tennantite Subgroup Cu6(Cu4C22+)As4S12S
S Tetrahedrite Subgroup Cu6(Cu4C22+)Sb4S12S
S Tetrahedrite-(Fe) Cu6(Cu4Fe22+)Sb4S12S
Cl Chlorine
Cl Apatite Ca5(PO4)3(Cl/F/OH)
K Potassium
K Jarosite KFe33+(SO4)2(OH)6
Ca Calcium
Ca Ankerite Ca(Fe2+,Mg)(CO3)2
Ca Aragonite CaCO3
Ca Calcite CaCO3
Ca Devilline CaCu4(SO4)2(OH)6 · 3H2O
Ca Dolomite CaMg(CO3)2
Ca Gypsum CaSO4 · 2H2O
Ca Aragonite var. Flos Ferri CaCO3
Ca Apatite Ca5(PO4)3(Cl/F/OH)
Ti Titanium
Ti Rutile TiO2
Mn Manganese
Mn Pyrolusite Mn4+O2
Fe Iron
Fe Ankerite Ca(Fe2+,Mg)(CO3)2
Fe Arsenopyrite FeAsS
Fe Chalcopyrite CuFeS2
Fe Goethite Fe3+O(OH)
Fe Hydroniumjarosite (H3O)Fe33+(SO4)2(OH)6
Fe Jarosite KFe33+(SO4)2(OH)6
Fe Lepidocrocite Fe3+O(OH)
Fe Protopartzite Cu(Sb,As,Fe,Zn)1.3(O,OH)6.8
Fe Pyrite FeS2
Fe Rozenite FeSO4 · 4H2O
Fe Tetrahedrite-(Fe) Cu6(Cu4Fe22+)Sb4S12S
Cu Copper
Cu Antlerite Cu3(SO4)(OH)4
Cu Aurichalcite (Zn,Cu)5(CO3)2(OH)6
Cu Azurite Cu3(CO3)2(OH)2
Cu Brochantite Cu4(SO4)(OH)6
Cu Chalcopyrite CuFeS2
Cu Chalcocite Cu2S
Cu Chrysocolla Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1
Cu Covellite CuS
Cu Cuprite Cu2O
Cu Cyanotrichite Cu4Al2(SO4)(OH)12 · 2H2O
Cu Native Copper Cu
Cu Devilline CaCu4(SO4)2(OH)6 · 3H2O
Cu Digenite Cu9S5
Cu Langite Cu4(SO4)(OH)6 · 2H2O
Cu Malachite Cu2(CO3)(OH)2
Cu Cuproroméite Cu2Sb2(O,OH)7
Cu Protopartzite Cu(Sb,As,Fe,Zn)1.3(O,OH)6.8
Cu Tennantite Subgroup Cu6(Cu4C22+)As4S12S
Cu Tenorite CuO
Cu Tetrahedrite Subgroup Cu6(Cu4C22+)Sb4S12S
Cu Adamite-Olivenite Series
Cu Tetrahedrite-(Fe) Cu6(Cu4Fe22+)Sb4S12S
Zn Zinc
Zn Aurichalcite (Zn,Cu)5(CO3)2(OH)6
Zn Hemimorphite Zn4Si2O7(OH)2 · H2O
Zn Protopartzite Cu(Sb,As,Fe,Zn)1.3(O,OH)6.8
Zn Adamite-Olivenite Series
As Arsenic
As Arsenopyrite FeAsS
As Protopartzite Cu(Sb,As,Fe,Zn)1.3(O,OH)6.8
As Tennantite Subgroup Cu6(Cu4C22+)As4S12S
As Adamite-Olivenite Series
Sb Antimony
Sb Cuproroméite Cu2Sb2(O,OH)7
Sb Protopartzite Cu(Sb,As,Fe,Zn)1.3(O,OH)6.8
Sb Stibiconite Sb3+Sb25+O6(OH)
Sb Tetrahedrite Subgroup Cu6(Cu4C22+)Sb4S12S
Sb Tetrahedrite-(Fe) Cu6(Cu4Fe22+)Sb4S12S
Ba Barium
Ba Baryte BaSO4
Au Gold
Au Native Gold Au
Hg Mercury
Hg Cinnabar HgS

Other Regions, Features and Areas containing this locality

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References