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Kockbulak mine (Kochbulak Au-Ag-Te deposit), Ohangaron District, Tashkent Region, Uzbekistani
Regional Level Types
Kockbulak mine (Kochbulak Au-Ag-Te deposit)Deposit (Active)
Ohangaron DistrictDistrict
Tashkent RegionRegion
UzbekistanCountry

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Latitude & Longitude (WGS84):
40° 56' 30'' North , 70° 7' 0'' East
Latitude & Longitude (decimal):
Type:
Deposit (Active) - last checked 2019
Age:
358.9 ± 0.4 to 298.9 ± 0.15 Ma
Geologic Time:
Nearest Settlements:
PlacePopulationDistance
Angren126,957 (2012)8.6km
Yangiobod24,900 (2010)19.8km
Navgarzan877 (2012)26.8km
Adrasmon13,372 (2012)34.3km
Shaydon11,705 (2012)36.0km
Mindat Locality ID:
9897
Long-form identifier:
mindat:1:2:9897:0
GUID (UUID V4):
0


Epithermal ore deposit.
Located 10 km east of Angren (location of coordinates) 3.5 km SW of Kairagach.
Reserves of 120 t of Au and 400 t of Ag.

The Kochbulak meso- to epithermal Au-Ag deposit is located in Uzbekistan, 30 km northeast of the Kalmakyr-Dalnee porphyry copper deposits and 55 km southeast of the capital, Tashkent. It was emplaced within the Carboniferous Valerianov-Beltau-Kurama magmatic arc at approximately 290 to 280 Ma, and prior to mining contained approximately 135 tonnes of gold at an average grade of 12 g/t Au, 120 g/t Ag.

Kochbulak is hosted by the same magmatic arc that has produced the giant Kal'makyr and Dalnee deposits a few tens of kilometres to the southwest in the Almalyk district, and is less than 20 M.y. younger than the 315 to 290 Ma age of mineralisation at Kal'makyr (Seltmann et al., 2004, Golovanov et al., 2005).

Geology

The Kochbulak gold deposit is located within the Karatash caldera at the intersection of the South Angren and Lashkerek-Dukent fault zones. The caldera is filled by:
i). The Middle to Upper Carboniferous Akcha Formation which comprises more than 1000 m of andesitic and dacitic lavas, and pyroclastic rocks.
ii). The unconformably overlying Nadak Formation, which has been divided into ten units and commences with a basal volcani-mictic conglomerate and sandstone, overlain by andesitic and dacitic lavas and tuffs. The relatively thick units of lava and tuff are separated by thin interlayers of tuffite, sandstone and siltstone.
iii). The Upper Carboniferous Oyasai and Upper Permian to Lower Triassic Kyzylnura formations which comprise rhyolitic lava and pyroclastics confined to the southern part of the caldera (Islamov et al., 1999).

The volcanic succession of the caldera, which represents a calc-alkaline to sub-alkaline, high potassic latite series, is cut by dykes, sub-volcanic intrusions and associated extrusives. The sequence is also cut by Middle Carboniferous pre-mineral granodiorite and monzodiorite porphyry which are comagmatic with the Akcha Formation at the base of the caldera, and by minor rhyolite intrusions related to the Oyasai Formation. Pre-mineral basic dykes of Early Permian age are widespread, while rhyolite, granosyenite, syenite, monzodiorite porphyry and late basic dykes are post-mineral (Islamov et al., 1999).

The deposit area is cut by four large, near north-south trending faults which dip steeply to the west and southwest. Further sets of intervening fractures parallel to the main trend are found in the deposit area, as are intra-formational detachments along the contacts between massive lava units (Islamov et al., 1999).

The Kochbulak mineralisation is restricted to volcanics of the Middle to Upper Carboniferous Nadak Formation on the northern flank of the caldera, close to the Shaugaz Fault. The setting corresponds to the near vent facies of a strato-volcano which was rimmed by sub-volcanic intrusives. Approximately 120 orebodies have been tested, controlled by 32 mineralised structures within a volume of some 4500 x 3000 x 550 m (Kovalenker et al., 1997; Islamov et al., 1999; Yakubchuk et al., 2002).

Alteration and Mineralisation

Three types of orebody are recognised, as follows:
i). Steeply dipping, north to northeast aligned veins (40% of the reserve) controlled by the major and intervening faults described above. Some 45 of these steep veins are recognised;
ii). Moderately dipping, (20 to 40°) near east-west veins (20% of reserves) which are concentrated where the north-south fault set intersects the intraformational detachments, also mentioned above, and
iii). Pipe-like orebodies (40% of the reserves), which are composed of mineralised explosion breccia and which terminate the steeply dipping vein set. There are some 14 pipes, each with a small diameter, but high grade (Islamov et al., 1999).

Mineralisation occurs as massive, banded, brecciated and breccia like textures, with festoon and incrustate structures. Quartz is the dominant gangue mineral, varying from coarse-grained to meta-colloidal to drusy, chalcedonic and amethyst, accompanied by subordinate carbonates and barite. The sulphide content of the two vein types is generally <10%, while in the breccia pipes it may reach 20%. Gold is mainly present as microscopic inclusions, occurring as sheeted, dendritic and cloddy grains in the upper levels and as spongy and drusy gold lower in the deposit. The finest gold is within meta-colloidal quartz, calaverite, sylvanite and altaite, while that in goldfieldite, chalcopyrite and galena is of lower fineness. Electrum accompanies sulphosalts and sulphostannites (Islamov et al., 1999).

The gold mineralisation is present in three associations, namely:
i). Gold-telluride, which occurs as calaverite, petzite, sylvanite, hessite, stutzite, empessite, goldfieldite and a wide range of other tellurides, and is particularly well developed in the upper level veins and in shallow-formed breccia pipes.
ii). Gold polysulphide comprises the association of native gold with sulphides of Cu, Pb, Zn, Bi and Sb, and is most frequently found in the upper levels of both the steep and flat veins.
iii). Gold-pyrite, which is found to varying degrees throughout the system, but is best developed and mineralised with increasing depth. It predominantly occurs as disseminated, uneconomic mineralisation with finely dispersed gold in pyrite, generally only averaging 4 g/t Au (Islamov et al., 1999). In general, the explosive breccia pipes are found in the upper levels of the deposit, passing through a transition zone to steeply dipping mesothermal veins at depth. Mineralisation is known to extend a depth of more than 2000 m.

The pattern of development of the three gold mineralisation associations is zoned both vertically (as described above), and laterally, with the gold-telluride association being the most proximal, within and immediately adjacent to the veins, flanked by the gold-polysulphides, passing out into the lower grade quartz-sulphide association. The distribution is also complicated by the telescoping and resultant superposition of the three zones from different episodes of mineralisation as the deposit evolved (Islamov et al., 1999).

The host volcanics underwent a mild propylitic alteration forming chlorite-carbonate and epidote prior to mineralisation. Alteration related to mineralisation within both the steeply dipping and shallow veins is evident as a regular zonation, with a progressive outward gradation from the ore vein to: i). hydrosericite; ii). adularia-sericite; and iii). chlorite-carbonate, to iv). the 'unaltered' country rock. All of the altered rock contains pyrite, which decreases from around 30% in the hydrosericite to 10% in the chlorite-carbonate zone. Pervasive sericite-hydromica dominates in the exploited parts of the deposit, while the chlorite facies was only penetrated in drilling at depths of >1200 m. The breccia-pipe bodies are accompanied by an intense silicification of the hosts, accompanied by variable amounts of sericite, alunite and diaspore (Islamov et al., 1999).

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


97 valid minerals. 3 (TL) - type locality of valid minerals.

Rock Types Recorded


Select Rock List Type

Alphabetical List Tree Diagram

Detailed Mineral List:

Aikinite
Formula: CuPbBiS3
Altaite
Formula: PbTe
References:
'Alum Group'
Formula: XAl(SO4)2 · 12H2O
Alunite
Formula: KAl3(SO4)2(OH)6
References:
Andalusite
Formula: Al2(SiO4)O
Anilite
Formula: Cu7S4
Ankerite
Formula: Ca(Fe2+,Mg)(CO3)2
Baryte
Formula: BaSO4
References:
Benjaminite
Formula: Ag3Bi7S12
Berryite
Formula: Cu3Ag2Pb3Bi7S16
Bismuthinite
Formula: Bi2S3
Bournonite
Formula: PbCuSbS3
Calaverite
Formula: AuTe2
References:
Calcite
Formula: CaCO3
Canfieldite
Formula: Ag8SnS6
Cassiterite
Formula: SnO2
Chalcocite
Formula: Cu2S
Chalcopyrite
Formula: CuFeS2
References:
Chalcostibite
Formula: CuSbS2
Chatkalite (TL)
Formula: Cu6FeSn2S8
Type Locality:
'Chlorite Group'
Cinnabar
Formula: HgS
Clausthalite
Formula: PbSe
Coloradoite
Formula: HgTe
References:
Covellite
Formula: CuS
Cupropavonite
Formula: Cu0.9Ag0.5Pb0.6Bi2.5S5
Dadsonite
Formula: Pb23Sb25S60Cl
Diaspore
Formula: AlO(OH)
Digenite
Formula: Cu9S5
Djurleite
Formula: Cu31S16
Dolomite
Formula: CaMg(CO3)2
Emplectite
Formula: CuBiS2
Empressite
Formula: AgTe
References:
Enargite
Formula: Cu3AsS4
Eskimoite
Formula: Ag7Pb10Bi15S36
Famatinite
Formula: Cu3SbS4
'Feldspar Group'
Fluorite
Formula: CaF2
Friedrichite
Formula: Cu5Pb5Bi7S18
Frohbergite
Formula: FeTe2
References:
Galena
Formula: PbS
References:
Gladite
Formula: CuPbBi5S9
Goldfieldite
Formula: (Cu42)(Cu4Cu+2)Te4S12S
References:
Gustavite
Formula: AgPbBi3S6
Hammarite
Formula: Cu2Pb2Bi4S9
Hemusite
Formula: Cu6SnMoS8
Hessite
Formula: Ag2Te
References:
Heteromorphite
Formula: Pb7Sb8S19
Hinsdalite
Formula: PbAl3(PO4)(SO4)(OH)6
'Joséite'
Formula: Bi4TeS2
Junoite
Formula: Cu2Pb3Bi8(S,Se)16
Kaolinite
Formula: Al2(Si2O5)(OH)4
Kësterite
Formula: Cu2ZnSnS4
'K Feldspar'
'K Feldspar var. Adularia'
Formula: KAlSi3O8
Kostovite
Formula: CuAuTe4
References:
Krennerite
Formula: Au3AgTe8
References:
Kuramite (TL)
Formula: Cu3SnS4
Type Locality:
Lillianite
Formula: Pb3-2xAgxBi2+xS6
Lindströmite
Formula: Cu3Pb3Bi7S15
Luzonite
Formula: Cu3AsS4
Maldonite
Formula: Au2Bi
Mawsonite
Formula: Cu6Fe2SnS8
Melonite
Formula: NiTe2
Mohite (TL)
Formula: Cu2SnS3
Type Locality:
Montbrayite
Formula: (Au,Ag,Sb,Bi,Pb)23(Te,Sb,Bi,Pb)38
Muscovite
Formula: KAl2(AlSi3O10)(OH)2
Muscovite var. Sericite
Formula: KAl2(AlSi3O10)(OH)2
Nagyágite
Formula: [Pb3(Pb,Sb)3S6](Au,Te)3
Native Arsenic
Formula: As
Native Gold
Formula: Au
References:
Native Gold var. Electrum
Formula: (Au,Ag)
Native Silver
Formula: Ag
Native Silver var. Küstelite
Formula: Ag
Native Tellurium
Formula: Te
Habit: Crystal fragments to 8cm
Colour: gray
References:
Nekoite
Formula: Ca3Si6O15 · 7H2O
Nekrasovite
Formula: Cu26V2(Sn,As,Sb)6S32
Pavonite
Formula: AgBi3S5
Pekoite
Formula: CuPbBi11S18
Petzite
Formula: Ag3AuTe2
References:
Plagionite
Formula: Pb5Sb8S17
Pyrite
Formula: FeS2
References:
Pyrophyllite
Formula: Al2Si4O10(OH)2
Quartz
Formula: SiO2
References:
Quartz var. Amethyst
Formula: SiO2
Quartz var. Chalcedony
Formula: SiO2
Rickardite
Formula: Cu7Te5
Rucklidgeite
Formula: PbBi2Te4
'Schirmerite'
Formula: PbAgBi3S6 - Pb3Ag1.5Bi3.5S9
Sphalerite
Formula: ZnS
References:
Stannoidite
Formula: Cu+6Cu2+2(Fe2+,Zn)3Sn2S12
Stibnite
Formula: Sb2S3
Stützite
Formula: Ag5-xTe3, x = 0.24-0.36
References:
Sulphotsumoite
Formula: Bi3Te2S
Svanbergite
Formula: SrAl3(PO4)(SO4)(OH)6
Sylvanite
Formula: AgAuTe4
References:
Tellurantimony
Formula: Sb2Te3
References:
Tellurite
Formula: TeO2
Tellurobismuthite
Formula: Bi2Te3
References:
Tetradymite
Formula: Bi2Te2S
References:
'Tetrahedrite Group'
Formula: M2(A6)M1(B4 C2)X3(D4)S1(Y12)S2(Z)
'Tetrahedrite Subgroup'
Formula: Cu6(Cu4C2+2)Sb4S12S
References:
Treasurite
Formula: Ag7Pb6Bi15S32
Tsumoite
Formula: BiTe
References:
Uytenbogaardtite
Formula: Ag3AuS2
Vikingite
Formula: Ag5Pb8Bi13S30
Volynskite
Formula: AgBiTe2
References:
Vulcanite
Formula: CuTe
Weissite
Formula: Cu2-xTe
References:
Woodhouseite
Formula: CaAl3(PO4)(SO4)(OH)6
Yuanjiangite
Formula: AuSn

List of minerals arranged by Strunz 10th Edition classification

Group 1 - Elements
Native Gold
var. Electrum
1.AA.05(Au,Ag)
1.AA.05Au
Native Silver1.AA.05Ag
var. Küstelite1.AA.05Ag
Yuanjiangite1.AC.15AuSn
Native Arsenic1.CA.05As
Native Tellurium1.CC.10Te
Group 2 - Sulphides and Sulfosalts
Maldonite2.AA.40Au2Bi
Chalcocite2.BA.05Cu2S
Djurleite2.BA.05Cu31S16
Anilite2.BA.10Cu7S4
Digenite2.BA.10Cu9S5
Rickardite2.BA.30Cu7Te5
Weissite2.BA.30Cu2-xTe
Hessite2.BA.60Ag2Te
Stützite2.BA.65Ag5-xTe3, x = 0.24-0.36
Canfieldite2.BA.70Ag8SnS6
Petzite2.BA.75Ag3AuTe2
Uytenbogaardtite2.BA.75Ag3AuS2
Covellite2.CA.05aCuS
Coloradoite2.CB.05aHgTe
Sphalerite2.CB.05aZnS
Chalcopyrite2.CB.10aCuFeS2
Kësterite2.CB.15aCu2ZnSnS4
Kuramite (TL)2.CB.15aCu3SnS4
Mohite (TL)2.CB.15bCu2SnS3
Stannoidite2.CB.15cCu+6Cu2+2(Fe2+,Zn)3Sn2S12
Chatkalite (TL)2.CB.20Cu6FeSn2S8
Mawsonite2.CB.20Cu6Fe2SnS8
Nekrasovite2.CB.30Cu26V2(Sn,As,Sb)6S32
Hemusite2.CB.35aCu6SnMoS8
Vulcanite2.CB.75CuTe
Empressite2.CB.80AgTe
Altaite2.CD.10PbTe
Clausthalite2.CD.10PbSe
Galena2.CD.10PbS
Cinnabar2.CD.15aHgS
Bismuthinite2.DB.05Bi2S3
Stibnite2.DB.05Sb2S3
Montbrayite2.DB.20(Au,Ag,Sb,Bi,Pb)23(Te,Sb,Bi,Pb)38
'Joséite'2.DC.05Bi4TeS2
Sulphotsumoite2.DC.05Bi3Te2S
Tellurantimony2.DC.05Sb2Te3
Tellurobismuthite2.DC.05Bi2Te3
Tetradymite2.DC.05Bi2Te2S
Tsumoite2.DC.05BiTe
Sylvanite2.EA.05AgAuTe4
Calaverite2.EA.10AuTe2
Kostovite2.EA.15CuAuTe4
Krennerite2.EA.15Au3AgTe8
Melonite2.EA.20NiTe2
Pyrite2.EB.05aFeS2
Frohbergite2.EB.10aFeTe2
Bournonite2.GA.50PbCuSbS3
Goldfieldite2.GB.05(Cu42)(Cu4Cu+2)Te4S12S
'Tetrahedrite Subgroup'2.GB.05Cu6(Cu4C2+2)Sb4S12S
Rucklidgeite2.GC.40cPbBi2Te4
Chalcostibite2.HA.05CuSbS2
Emplectite2.HA.05CuBiS2
Aikinite2.HB.05aCuPbBiS3
Friedrichite2.HB.05aCu5Pb5Bi7S18
Gladite2.HB.05aCuPbBi5S9
Hammarite2.HB.05aCu2Pb2Bi4S9
Lindströmite2.HB.05aCu3Pb3Bi7S15
Pekoite2.HB.05aCuPbBi11S18
Nagyágite2.HB.20a[Pb3(Pb,Sb)3S6](Au,Te)3
Berryite2.HB.20dCu3Ag2Pb3Bi7S16
Plagionite2.HC.10bPb5Sb8S17
Heteromorphite2.HC.10cPb7Sb8S19
Dadsonite2.HC.30Pb23Sb25S60Cl
Cupropavonite2.JA.05aCu0.9Ag0.5Pb0.6Bi2.5S5
Pavonite2.JA.05aAgBi3S5
Benjaminite2.JA.05eAg3Bi7S12
Volynskite2.JA.20AgBiTe2
Junoite2.JB.25aCu2Pb3Bi8(S,Se)16
Gustavite2.JB.40aAgPbBi3S6
Lillianite2.JB.40aPb3-2xAgxBi2+xS6
Treasurite2.JB.40aAg7Pb6Bi15S32
Vikingite2.JB.40aAg5Pb8Bi13S30
Eskimoite2.JB.40bAg7Pb10Bi15S36
'Schirmerite'2.JB.40dPbAgBi3S6 - Pb3Ag1.5Bi3.5S9
Enargite2.KA.05Cu3AsS4
Famatinite2.KA.10Cu3SbS4
Luzonite2.KA.10Cu3AsS4
Group 3 - Halides
Fluorite3.AB.25CaF2
Group 4 - Oxides and Hydroxides
Quartz
var. Amethyst
4.DA.05SiO2
var. Chalcedony4.DA.05SiO2
4.DA.05SiO2
Cassiterite4.DB.05SnO2
Tellurite4.DE.20TeO2
Diaspore4.FD.10AlO(OH)
Group 5 - Nitrates and Carbonates
Calcite5.AB.05CaCO3
Ankerite5.AB.10Ca(Fe2+,Mg)(CO3)2
Dolomite5.AB.10CaMg(CO3)2
Group 7 - Sulphates, Chromates, Molybdates and Tungstates
Baryte7.AD.35BaSO4
Alunite7.BC.10KAl3(SO4)2(OH)6
Group 8 - Phosphates, Arsenates and Vanadates
Hinsdalite8.BL.05PbAl3(PO4)(SO4)(OH)6
Svanbergite8.BL.05SrAl3(PO4)(SO4)(OH)6
Woodhouseite8.BL.05CaAl3(PO4)(SO4)(OH)6
Group 9 - Silicates
Andalusite9.AF.10Al2(SiO4)O
Nekoite9.EA.45Ca3Si6O15 · 7H2O
Pyrophyllite9.EC.10Al2Si4O10(OH)2
Muscovite9.EC.15KAl2(AlSi3O10)(OH)2
var. Sericite9.EC.15KAl2(AlSi3O10)(OH)2
Kaolinite9.ED.05Al2(Si2O5)(OH)4
Unclassified
'K Feldspar
var. Adularia'
-KAlSi3O8
'Alum Group'-XAl(SO4)2 · 12H2O
'Chlorite Group'-
'Feldspar Group'-
'K Feldspar'-
'Tetrahedrite Group'-M2(A6)M1(B4 C2)X3(D4)S1(Y12)S2(Z)

List of minerals for each chemical element

HHydrogen
H Alum GroupXAl(SO4)2 · 12H2O
H AluniteKAl3(SO4)2(OH)6
H DiasporeAlO(OH)
H HinsdalitePbAl3(PO4)(SO4)(OH)6
H KaoliniteAl2(Si2O5)(OH)4
H MuscoviteKAl2(AlSi3O10)(OH)2
H NekoiteCa3Si6O15 · 7H2O
H PyrophylliteAl2Si4O10(OH)2
H SvanbergiteSrAl3(PO4)(SO4)(OH)6
H WoodhouseiteCaAl3(PO4)(SO4)(OH)6
H Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
CCarbon
C AnkeriteCa(Fe2+,Mg)(CO3)2
C CalciteCaCO3
C DolomiteCaMg(CO3)2
OOxygen
O K Feldspar var. AdulariaKAlSi3O8
O Alum GroupXAl(SO4)2 · 12H2O
O AluniteKAl3(SO4)2(OH)6
O Quartz var. AmethystSiO2
O AndalusiteAl2(SiO4)O
O AnkeriteCa(Fe2+,Mg)(CO3)2
O BaryteBaSO4
O CalciteCaCO3
O CassiteriteSnO2
O Quartz var. ChalcedonySiO2
O DiasporeAlO(OH)
O DolomiteCaMg(CO3)2
O HinsdalitePbAl3(PO4)(SO4)(OH)6
O KaoliniteAl2(Si2O5)(OH)4
O MuscoviteKAl2(AlSi3O10)(OH)2
O NekoiteCa3Si6O15 · 7H2O
O PyrophylliteAl2Si4O10(OH)2
O QuartzSiO2
O SvanbergiteSrAl3(PO4)(SO4)(OH)6
O TelluriteTeO2
O WoodhouseiteCaAl3(PO4)(SO4)(OH)6
O Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
FFluorine
F FluoriteCaF2
MgMagnesium
Mg AnkeriteCa(Fe2+,Mg)(CO3)2
Mg DolomiteCaMg(CO3)2
AlAluminium
Al K Feldspar var. AdulariaKAlSi3O8
Al Alum GroupXAl(SO4)2 · 12H2O
Al AluniteKAl3(SO4)2(OH)6
Al AndalusiteAl2(SiO4)O
Al DiasporeAlO(OH)
Al HinsdalitePbAl3(PO4)(SO4)(OH)6
Al KaoliniteAl2(Si2O5)(OH)4
Al MuscoviteKAl2(AlSi3O10)(OH)2
Al PyrophylliteAl2Si4O10(OH)2
Al SvanbergiteSrAl3(PO4)(SO4)(OH)6
Al WoodhouseiteCaAl3(PO4)(SO4)(OH)6
Al Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
SiSilicon
Si K Feldspar var. AdulariaKAlSi3O8
Si Quartz var. AmethystSiO2
Si AndalusiteAl2(SiO4)O
Si Quartz var. ChalcedonySiO2
Si KaoliniteAl2(Si2O5)(OH)4
Si MuscoviteKAl2(AlSi3O10)(OH)2
Si NekoiteCa3Si6O15 · 7H2O
Si PyrophylliteAl2Si4O10(OH)2
Si QuartzSiO2
Si Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
PPhosphorus
P HinsdalitePbAl3(PO4)(SO4)(OH)6
P SvanbergiteSrAl3(PO4)(SO4)(OH)6
P WoodhouseiteCaAl3(PO4)(SO4)(OH)6
SSulfur
S AikiniteCuPbBiS3
S Alum GroupXAl(SO4)2 · 12H2O
S AluniteKAl3(SO4)2(OH)6
S AniliteCu7S4
S BaryteBaSO4
S BenjaminiteAg3Bi7S12
S BerryiteCu3Ag2Pb3Bi7S16
S BismuthiniteBi2S3
S BournonitePbCuSbS3
S CanfielditeAg8SnS6
S ChalcopyriteCuFeS2
S ChalcociteCu2S
S ChatkaliteCu6FeSn2S8
S ChalcostibiteCuSbS2
S CinnabarHgS
S CovelliteCuS
S CupropavoniteCu0.9Ag0.5Pb0.6Bi2.5S5
S DadsonitePb23Sb25S60Cl
S DigeniteCu9S5
S DjurleiteCu31S16
S EmplectiteCuBiS2
S EnargiteCu3AsS4
S EskimoiteAg7Pb10Bi15S36
S FamatiniteCu3SbS4
S FriedrichiteCu5Pb5Bi7S18
S GalenaPbS
S GladiteCuPbBi5S9
S Goldfieldite(Cu42)(Cu4Cu2+)Te4S12S
S GustaviteAgPbBi3S6
S HammariteCu2Pb2Bi4S9
S HemusiteCu6SnMoS8
S HeteromorphitePb7Sb8S19
S HinsdalitePbAl3(PO4)(SO4)(OH)6
S JoséiteBi4TeS2
S JunoiteCu2Pb3Bi8(S,Se)16
S KësteriteCu2ZnSnS4
S KuramiteCu3SnS4
S LillianitePb3-2xAgxBi2+xS6
S LindströmiteCu3Pb3Bi7S15
S LuzoniteCu3AsS4
S MawsoniteCu6Fe2SnS8
S MohiteCu2SnS3
S Nagyágite[Pb3(Pb,Sb)3S6](Au,Te)3
S NekrasoviteCu26V2(Sn,As,Sb)6S32
S PavoniteAgBi3S5
S PekoiteCuPbBi11S18
S PlagionitePb5Sb8S17
S PyriteFeS2
S SchirmeritePbAgBi3S6 - Pb3Ag1.5Bi3.5S9
S SphaleriteZnS
S StannoiditeCu6+Cu22+(Fe2+,Zn)3Sn2S12
S StibniteSb2S3
S SulphotsumoiteBi3Te2S
S SvanbergiteSrAl3(PO4)(SO4)(OH)6
S TetradymiteBi2Te2S
S Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
S TreasuriteAg7Pb6Bi15S32
S UytenbogaardtiteAg3AuS2
S VikingiteAg5Pb8Bi13S30
S WoodhouseiteCaAl3(PO4)(SO4)(OH)6
S Tetrahedrite GroupM2(A6)M1(B4 C2)X3(D4)S1(Y12)S2(Z)
ClChlorine
Cl DadsonitePb23Sb25S60Cl
KPotassium
K K Feldspar var. AdulariaKAlSi3O8
K AluniteKAl3(SO4)2(OH)6
K MuscoviteKAl2(AlSi3O10)(OH)2
K Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
CaCalcium
Ca AnkeriteCa(Fe2+,Mg)(CO3)2
Ca CalciteCaCO3
Ca DolomiteCaMg(CO3)2
Ca FluoriteCaF2
Ca NekoiteCa3Si6O15 · 7H2O
Ca WoodhouseiteCaAl3(PO4)(SO4)(OH)6
VVanadium
V NekrasoviteCu26V2(Sn,As,Sb)6S32
FeIron
Fe AnkeriteCa(Fe2+,Mg)(CO3)2
Fe ChalcopyriteCuFeS2
Fe ChatkaliteCu6FeSn2S8
Fe FrohbergiteFeTe2
Fe MawsoniteCu6Fe2SnS8
Fe PyriteFeS2
Fe StannoiditeCu6+Cu22+(Fe2+,Zn)3Sn2S12
NiNickel
Ni MeloniteNiTe2
CuCopper
Cu AikiniteCuPbBiS3
Cu AniliteCu7S4
Cu BerryiteCu3Ag2Pb3Bi7S16
Cu BournonitePbCuSbS3
Cu ChalcopyriteCuFeS2
Cu ChalcociteCu2S
Cu ChatkaliteCu6FeSn2S8
Cu ChalcostibiteCuSbS2
Cu CovelliteCuS
Cu CupropavoniteCu0.9Ag0.5Pb0.6Bi2.5S5
Cu DigeniteCu9S5
Cu DjurleiteCu31S16
Cu EmplectiteCuBiS2
Cu EnargiteCu3AsS4
Cu FamatiniteCu3SbS4
Cu FriedrichiteCu5Pb5Bi7S18
Cu GladiteCuPbBi5S9
Cu Goldfieldite(Cu42)(Cu4Cu2+)Te4S12S
Cu HammariteCu2Pb2Bi4S9
Cu HemusiteCu6SnMoS8
Cu JunoiteCu2Pb3Bi8(S,Se)16
Cu KësteriteCu2ZnSnS4
Cu KostoviteCuAuTe4
Cu KuramiteCu3SnS4
Cu LindströmiteCu3Pb3Bi7S15
Cu LuzoniteCu3AsS4
Cu MawsoniteCu6Fe2SnS8
Cu MohiteCu2SnS3
Cu NekrasoviteCu26V2(Sn,As,Sb)6S32
Cu PekoiteCuPbBi11S18
Cu RickarditeCu7Te5
Cu StannoiditeCu6+Cu22+(Fe2+,Zn)3Sn2S12
Cu Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
Cu VulcaniteCuTe
Cu WeissiteCu2-xTe
ZnZinc
Zn KësteriteCu2ZnSnS4
Zn SphaleriteZnS
Zn StannoiditeCu6+Cu22+(Fe2+,Zn)3Sn2S12
AsArsenic
As Native ArsenicAs
As EnargiteCu3AsS4
As LuzoniteCu3AsS4
As NekrasoviteCu26V2(Sn,As,Sb)6S32
SeSelenium
Se ClausthalitePbSe
Se JunoiteCu2Pb3Bi8(S,Se)16
SrStrontium
Sr SvanbergiteSrAl3(PO4)(SO4)(OH)6
MoMolybdenum
Mo HemusiteCu6SnMoS8
AgSilver
Ag BenjaminiteAg3Bi7S12
Ag BerryiteCu3Ag2Pb3Bi7S16
Ag CanfielditeAg8SnS6
Ag CupropavoniteCu0.9Ag0.5Pb0.6Bi2.5S5
Ag Native Gold var. Electrum(Au,Ag)
Ag EmpressiteAgTe
Ag EskimoiteAg7Pb10Bi15S36
Ag GustaviteAgPbBi3S6
Ag HessiteAg2Te
Ag KrenneriteAu3AgTe8
Ag LillianitePb3-2xAgxBi2+xS6
Ag Montbrayite(Au,Ag,Sb,Bi,Pb)23(Te,Sb,Bi,Pb)38
Ag PavoniteAgBi3S5
Ag PetziteAg3AuTe2
Ag SchirmeritePbAgBi3S6 - Pb3Ag1.5Bi3.5S9
Ag Native SilverAg
Ag StütziteAg5-xTe3, x = 0.24-0.36
Ag SylvaniteAgAuTe4
Ag TreasuriteAg7Pb6Bi15S32
Ag UytenbogaardtiteAg3AuS2
Ag VikingiteAg5Pb8Bi13S30
Ag VolynskiteAgBiTe2
Ag Native Silver var. KüsteliteAg
SnTin
Sn CanfielditeAg8SnS6
Sn CassiteriteSnO2
Sn ChatkaliteCu6FeSn2S8
Sn HemusiteCu6SnMoS8
Sn KësteriteCu2ZnSnS4
Sn KuramiteCu3SnS4
Sn MawsoniteCu6Fe2SnS8
Sn MohiteCu2SnS3
Sn NekrasoviteCu26V2(Sn,As,Sb)6S32
Sn StannoiditeCu6+Cu22+(Fe2+,Zn)3Sn2S12
Sn YuanjiangiteAuSn
SbAntimony
Sb BournonitePbCuSbS3
Sb ChalcostibiteCuSbS2
Sb DadsonitePb23Sb25S60Cl
Sb FamatiniteCu3SbS4
Sb HeteromorphitePb7Sb8S19
Sb Montbrayite(Au,Ag,Sb,Bi,Pb)23(Te,Sb,Bi,Pb)38
Sb Nagyágite[Pb3(Pb,Sb)3S6](Au,Te)3
Sb NekrasoviteCu26V2(Sn,As,Sb)6S32
Sb PlagionitePb5Sb8S17
Sb StibniteSb2S3
Sb TellurantimonySb2Te3
Sb Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
TeTellurium
Te AltaitePbTe
Te CalaveriteAuTe2
Te ColoradoiteHgTe
Te EmpressiteAgTe
Te FrohbergiteFeTe2
Te Goldfieldite(Cu42)(Cu4Cu2+)Te4S12S
Te HessiteAg2Te
Te JoséiteBi4TeS2
Te KostoviteCuAuTe4
Te KrenneriteAu3AgTe8
Te MeloniteNiTe2
Te Montbrayite(Au,Ag,Sb,Bi,Pb)23(Te,Sb,Bi,Pb)38
Te Nagyágite[Pb3(Pb,Sb)3S6](Au,Te)3
Te PetziteAg3AuTe2
Te RickarditeCu7Te5
Te RucklidgeitePbBi2Te4
Te StütziteAg5-xTe3, x = 0.24-0.36
Te SulphotsumoiteBi3Te2S
Te SylvaniteAgAuTe4
Te TellurantimonySb2Te3
Te TelluriteTeO2
Te Native TelluriumTe
Te TellurobismuthiteBi2Te3
Te TetradymiteBi2Te2S
Te TsumoiteBiTe
Te VolynskiteAgBiTe2
Te VulcaniteCuTe
Te WeissiteCu2-xTe
BaBarium
Ba BaryteBaSO4
AuGold
Au CalaveriteAuTe2
Au Native Gold var. Electrum(Au,Ag)
Au Native GoldAu
Au KostoviteCuAuTe4
Au KrenneriteAu3AgTe8
Au MaldoniteAu2Bi
Au Montbrayite(Au,Ag,Sb,Bi,Pb)23(Te,Sb,Bi,Pb)38
Au Nagyágite[Pb3(Pb,Sb)3S6](Au,Te)3
Au PetziteAg3AuTe2
Au SylvaniteAgAuTe4
Au UytenbogaardtiteAg3AuS2
Au YuanjiangiteAuSn
HgMercury
Hg CinnabarHgS
Hg ColoradoiteHgTe
PbLead
Pb AikiniteCuPbBiS3
Pb AltaitePbTe
Pb BerryiteCu3Ag2Pb3Bi7S16
Pb BournonitePbCuSbS3
Pb ClausthalitePbSe
Pb CupropavoniteCu0.9Ag0.5Pb0.6Bi2.5S5
Pb DadsonitePb23Sb25S60Cl
Pb EskimoiteAg7Pb10Bi15S36
Pb FriedrichiteCu5Pb5Bi7S18
Pb GalenaPbS
Pb GladiteCuPbBi5S9
Pb GustaviteAgPbBi3S6
Pb HammariteCu2Pb2Bi4S9
Pb HeteromorphitePb7Sb8S19
Pb HinsdalitePbAl3(PO4)(SO4)(OH)6
Pb JunoiteCu2Pb3Bi8(S,Se)16
Pb LillianitePb3-2xAgxBi2+xS6
Pb LindströmiteCu3Pb3Bi7S15
Pb Montbrayite(Au,Ag,Sb,Bi,Pb)23(Te,Sb,Bi,Pb)38
Pb Nagyágite[Pb3(Pb,Sb)3S6](Au,Te)3
Pb PekoiteCuPbBi11S18
Pb PlagionitePb5Sb8S17
Pb RucklidgeitePbBi2Te4
Pb SchirmeritePbAgBi3S6 - Pb3Ag1.5Bi3.5S9
Pb TreasuriteAg7Pb6Bi15S32
Pb VikingiteAg5Pb8Bi13S30
BiBismuth
Bi AikiniteCuPbBiS3
Bi BenjaminiteAg3Bi7S12
Bi BerryiteCu3Ag2Pb3Bi7S16
Bi BismuthiniteBi2S3
Bi CupropavoniteCu0.9Ag0.5Pb0.6Bi2.5S5
Bi EmplectiteCuBiS2
Bi EskimoiteAg7Pb10Bi15S36
Bi FriedrichiteCu5Pb5Bi7S18
Bi GladiteCuPbBi5S9
Bi GustaviteAgPbBi3S6
Bi HammariteCu2Pb2Bi4S9
Bi JoséiteBi4TeS2
Bi JunoiteCu2Pb3Bi8(S,Se)16
Bi LillianitePb3-2xAgxBi2+xS6
Bi LindströmiteCu3Pb3Bi7S15
Bi MaldoniteAu2Bi
Bi Montbrayite(Au,Ag,Sb,Bi,Pb)23(Te,Sb,Bi,Pb)38
Bi PavoniteAgBi3S5
Bi PekoiteCuPbBi11S18
Bi RucklidgeitePbBi2Te4
Bi SchirmeritePbAgBi3S6 - Pb3Ag1.5Bi3.5S9
Bi SulphotsumoiteBi3Te2S
Bi TellurobismuthiteBi2Te3
Bi TetradymiteBi2Te2S
Bi TreasuriteAg7Pb6Bi15S32
Bi TsumoiteBiTe
Bi VikingiteAg5Pb8Bi13S30
Bi VolynskiteAgBiTe2

Geochronology

Mineralization age: Permian : 272 Ma to 262 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
 Paleozoic
  Permian
   Guadalupian
ⓘ Sericite (youngest age)262 Ma
ⓘ Sericite (oldest age)272 Ma

Other Regions, Features and Areas containing this locality


This page contains all mineral locality references listed on mindat.org. This does not claim to be a complete list. If you know of more minerals from this site, please register so you can add to our database. This locality information is for reference purposes only. You should never attempt to visit any sites listed in mindat.org without first ensuring that you have the permission of the land and/or mineral rights holders for access and that you are aware of all safety precautions necessary.

References

 
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