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Stará Vožice - Ratibořské Hory mining district, Tábor District, South Bohemian Region, Czech Republici
Regional Level Types
Stará Vožice - Ratibořské Hory mining districtMining District (Inactive)
Tábor DistrictDistrict
South Bohemian RegionRegion
Czech RepublicCountry

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PhotosSearchMineralogy
Area:
100 km2
Type:
Mining District (Inactive) - last checked 2020
Mindat Locality ID:
337612
Long-form identifier:
mindat:1:2:337612:9
GUID (UUID V4):
0



A polymetallic Ag-Pb-Zn deposit.

Written records show that the ore here was mined for four centuries, between 1526 and 1927, but it is probable that mining began much earlier. The village of Vřesce is mentioned as the site of silver mining in Vita Caroli, the record Karel IV. (Charles IV.) (1316–78), King of Bohemia and Holy Roman Emperor, made of his life.

Silver mining in the area around Ratibořice began in the 1550s under the Měděnec family of Sezimovo Ústí. Sixty years later, Emperor Rudolf II (1552–1612) leased the mines to the Lords of Rosenberg for a period of thirty years. By 1602, the mines, by then under the management of Petr Vok, were very active. It was during this time that the famous “Rosenberg fortune” grew up.
After Petr Vok’s death in 1611, the mines for a time passed back into the emperor’s keeping. After 1622, they were transferred to Jan Oldřich von Eggenberg, owner of the Chýnov estate, who in 1623 acquired the right to mint his own silver coin.
During the Thirty Years War, the Ratibořské Hory mines went into decline, only some maintenance work was done on the Jan Gallery. On 18 July 1654, Nové Ratibořice was renamed to Ratibořské Hory and elevated to the status of a mining town. Its first inhabitants were German miners professing the Protestant faith.
In 1719, the Eggenberg estate was inherited by the Schwarzenberg family, which brought silver mining in the Stará Vožice-Ratibořské Hory area to its zenith. The mines here were most productive in the 1770s, although even during this period of relatively high production mining was not especially profitable. Between 1721 and 1850, a total of 70,643 kg of silver was mined here.
After 1844, mining activity was increasingly limited. The slag that was processed in the 1850s did not bring much in the way of silver. During this period, the Schwarzenbergs sold the Stará Vožice mines, while at Ratibořské Hory only maintenance work was performed while the family attempted to sell off the mines.
At the end of the nineteenth century, a British mining company tried its luck at the “Všech svatých” (All Saints) mines near Vřesce, but it soon abandoned the place. After the First World War, mining was revived for a time at the new “Hloubení” (Excavation) mine. In 1927, the last maintenance work was carried out on the Josef Gallery and the area was offered to the state. The state authorities, however, declined the offer and, since that time, the mines have remained abandoned – flooded and inaccessible.

A well-preserved mining monument
It is interesting to note that the Stará Vožice-Ratibořské Hory area was one of the few historical mining areas in the country to be run by members of the high Bohemian nobility and that only a small role was played here by the monarch or by townspeople.
Before high explosives came into use, the ore was first hewn out by hand using simple tools and then drawn out in buckets with primitive winches. This method of working, used in the more than 150, mostly rather shallow mines, is the origin of the mounds and other features that characterize the landscape. Preserved under the earth are miles of tunnels, which from time to time cave in. Stories are told in these parts about larders that have disappeared with all their contents into the depths.
The Stará Vožice-Ratibořské Hory area is one of the best-preserved mining monuments of its kind in the Czech Republic. The region’s mining past is evident in the form of reservoirs, gullies, mine buildings, and ruins, which remain distinctive features of the landscape to this day.

Select Mineral List Type

Standard Detailed Gallery Strunz Chemical Elements

Commodity List

This is a list of exploitable or exploited mineral commodities recorded from this region.


Mineral List

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

36 valid minerals.

Rock Types Recorded


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

Select Rock List Type

Alphabetical List Tree Diagram

Detailed Mineral List:

Acanthite
Formula: Ag2S
Anglesite
Formula: PbSO4
Argentotetrahedrite-(Fe)
Formula: Ag6(Cu4Fe2)Sb4S12S
Arsenopyrite
Formula: FeAsS
Azurite
Formula: Cu3(CO3)2(OH)2
Baryte
Formula: BaSO4
'Biotite'
Formula: K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
Calcite
Formula: CaCO3
'Calcium Amphibole Subgroup'
Formula: AnCa2(C2+5-mC3+m)(Si8-(n+m)Al(n+m))W2
'Calcium Amphibole Subgroup var. Hornblende'
Formula: AnCa2(Z2+5-mZ3+m)(Si8-(n+m)Al(n+m))(OH,F,Cl)2
Cerussite
Formula: PbCO3
Chalcopyrite
Formula: CuFeS2
Coronadite
Formula: Pb(Mn4+6Mn3+2)O16
Cuprite
Formula: Cu2O
Dolomite
Formula: CaMg(CO3)2
Localities: Reported from at least 7 localities in this region.
Erythrite
Formula: Co3(AsO4)2 · 8H2O
'Freibergite Subgroup'
Formula: (Ag6,[Ag6]4+)(Cu4 C2+2)Sb4S12S0-1
Galena
Formula: PbS
Localities: Reported from at least 9 localities in this region.
Greenockite
Formula: CdS
Hydrozincite
Formula: Zn5(CO3)2(OH)6
Imiterite
Formula: Ag2HgS2
Iodargyrite
Formula: AgI
Kintoreite
Formula: PbFe3(PO4)(PO3OH)(OH)6
Malachite
Formula: Cu2(CO3)(OH)2
Mimetite
Formula: Pb5(AsO4)3Cl
Muscovite
Formula: KAl2(AlSi3O10)(OH)2
Native Silver
Formula: Ag
Opal
Formula: SiO2 · nH2O
Opal var. White Opal
Parasymplesite
Formula: Fe2+3(AsO4)2 · 8H2O
Plumbogummite
Formula: PbAl3(PO4)(PO3OH)(OH)6
Polybasite
Formula: [Ag6Sb2S7][Ag9CuS4]
Proustite
Formula: Ag3AsS3
Pyrargyrite
Formula: Ag3SbS3
Localities: Reported from at least 8 localities in this region.
Pyrite
Formula: FeS2
Pyromorphite
Formula: Pb5(PO4)3Cl
Pyrostilpnite
Formula: Ag3SbS3
Quartz
Formula: SiO2
Localities: Reported from at least 10 localities in this region.
Siderite
Formula: FeCO3
Sphalerite
Formula: ZnS
Localities: Reported from at least 10 localities in this region.
Stephanite
Formula: Ag5SbS4
'Tetrahedrite Subgroup'
Formula: Cu6(Cu4C2+2)Sb4S12S

Gallery:

List of minerals arranged by Strunz 10th Edition classification

Group 1 - Elements
Native Silver1.AA.05Ag
Group 2 - Sulphides and Sulfosalts
Acanthite2.BA.35Ag2S
Imiterite2.BD.05Ag2HgS2
Sphalerite2.CB.05aZnS
Chalcopyrite2.CB.10aCuFeS2
Greenockite2.CB.45CdS
Galena2.CD.10PbS
Pyrite2.EB.05aFeS2
Arsenopyrite2.EB.20FeAsS
Proustite2.GA.05Ag3AsS3
Pyrargyrite2.GA.05Ag3SbS3
Pyrostilpnite2.GA.10Ag3SbS3
'Freibergite Subgroup'2.GB.05(Ag6,[Ag6]4+)(Cu4 C2+2)Sb4S12S0-1
'Tetrahedrite Subgroup'2.GB.05Cu6(Cu4C2+2)Sb4S12S
Argentotetrahedrite-(Fe)2.GB.05Ag6(Cu4Fe2)Sb4S12S
Stephanite2.GB.10Ag5SbS4
Polybasite2.GB.15[Ag6Sb2S7][Ag9CuS4]
Group 3 - Halides
Iodargyrite3.AA.10AgI
Group 4 - Oxides and Hydroxides
Cuprite4.AA.10Cu2O
Quartz4.DA.05SiO2
Opal4.DA.10SiO2 · nH2O
var. White Opal4.DA.10SiO2 · nH2O
Coronadite4.DK.05aPb(Mn4+6Mn3+2)O16
Group 5 - Nitrates and Carbonates
Calcite5.AB.05CaCO3
Siderite5.AB.05FeCO3
Dolomite5.AB.10CaMg(CO3)2
Cerussite5.AB.15PbCO3
Azurite5.BA.05Cu3(CO3)2(OH)2
Malachite5.BA.10Cu2(CO3)(OH)2
Hydrozincite5.BA.15Zn5(CO3)2(OH)6
Group 7 - Sulphates, Chromates, Molybdates and Tungstates
Anglesite7.AD.35PbSO4
Baryte7.AD.35BaSO4
Group 8 - Phosphates, Arsenates and Vanadates
Kintoreite8.BL.10PbFe3(PO4)(PO3OH)(OH)6
Plumbogummite8.BL.10PbAl3(PO4)(PO3OH)(OH)6
Mimetite8.BN.05Pb5(AsO4)3Cl
Pyromorphite8.BN.05Pb5(PO4)3Cl
Erythrite8.CE.40Co3(AsO4)2 · 8H2O
Parasymplesite8.CE.40Fe2+3(AsO4)2 · 8H2O
Group 9 - Silicates
Muscovite9.EC.15KAl2(AlSi3O10)(OH)2
Unclassified
'Biotite'-K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
'Calcium Amphibole Subgroup
var. Hornblende'
-AnCa2(Z2+5-mZ3+m)(Si8-(n+m)Al(n+m))(OH,F,Cl)2
''-AnCa2(C2+5-mC3+m)(Si8-(n+m)Al(n+m))W2

List of minerals for each chemical element

HHydrogen
H AzuriteCu3(CO3)2(OH)2
H BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
H ErythriteCo3(AsO4)2 · 8H2O
H Calcium Amphibole Subgroup var. HornblendeAnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2
H HydrozinciteZn5(CO3)2(OH)6
H KintoreitePbFe3(PO4)(PO3OH)(OH)6
H MalachiteCu2(CO3)(OH)2
H MuscoviteKAl2(AlSi3O10)(OH)2
H OpalSiO2 · nH2O
H ParasymplesiteFe32+(AsO4)2 · 8H2O
H PlumbogummitePbAl3(PO4)(PO3OH)(OH)6
CCarbon
C AzuriteCu3(CO3)2(OH)2
C CalciteCaCO3
C CerussitePbCO3
C DolomiteCaMg(CO3)2
C HydrozinciteZn5(CO3)2(OH)6
C MalachiteCu2(CO3)(OH)2
C SideriteFeCO3
OOxygen
O AnglesitePbSO4
O AzuriteCu3(CO3)2(OH)2
O BaryteBaSO4
O BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
O CalciteCaCO3
O CerussitePbCO3
O CoronaditePb(Mn64+Mn23+)O16
O CupriteCu2O
O DolomiteCaMg(CO3)2
O ErythriteCo3(AsO4)2 · 8H2O
O Calcium Amphibole Subgroup var. HornblendeAnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2
O HydrozinciteZn5(CO3)2(OH)6
O KintoreitePbFe3(PO4)(PO3OH)(OH)6
O MalachiteCu2(CO3)(OH)2
O MimetitePb5(AsO4)3Cl
O MuscoviteKAl2(AlSi3O10)(OH)2
O OpalSiO2 · nH2O
O ParasymplesiteFe32+(AsO4)2 · 8H2O
O PlumbogummitePbAl3(PO4)(PO3OH)(OH)6
O PyromorphitePb5(PO4)3Cl
O QuartzSiO2
O SideriteFeCO3
FFluorine
F BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
F Calcium Amphibole Subgroup var. HornblendeAnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2
MgMagnesium
Mg BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
Mg DolomiteCaMg(CO3)2
AlAluminium
Al BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
Al Calcium Amphibole Subgroup var. HornblendeAnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2
Al MuscoviteKAl2(AlSi3O10)(OH)2
Al PlumbogummitePbAl3(PO4)(PO3OH)(OH)6
Al Calcium Amphibole SubgroupAnCa2(C2+5-mCm3+)(Si8-(n+m)Al(n+m))W2
SiSilicon
Si BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
Si Calcium Amphibole Subgroup var. HornblendeAnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2
Si MuscoviteKAl2(AlSi3O10)(OH)2
Si OpalSiO2 · nH2O
Si QuartzSiO2
Si Calcium Amphibole SubgroupAnCa2(C2+5-mCm3+)(Si8-(n+m)Al(n+m))W2
PPhosphorus
P KintoreitePbFe3(PO4)(PO3OH)(OH)6
P PlumbogummitePbAl3(PO4)(PO3OH)(OH)6
P PyromorphitePb5(PO4)3Cl
SSulfur
S AcanthiteAg2S
S AnglesitePbSO4
S ArsenopyriteFeAsS
S BaryteBaSO4
S ChalcopyriteCuFeS2
S Freibergite Subgroup(Ag6,[Ag6]4+)(Cu4 C22+)Sb4S12S0-1
S GalenaPbS
S GreenockiteCdS
S ImiteriteAg2HgS2
S Polybasite[Ag6Sb2S7][Ag9CuS4]
S ProustiteAg3AsS3
S PyrargyriteAg3SbS3
S PyriteFeS2
S PyrostilpniteAg3SbS3
S SphaleriteZnS
S StephaniteAg5SbS4
S Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
S Argentotetrahedrite-(Fe)Ag6(Cu4Fe2)Sb4S12S
ClChlorine
Cl Calcium Amphibole Subgroup var. HornblendeAnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2
Cl MimetitePb5(AsO4)3Cl
Cl PyromorphitePb5(PO4)3Cl
KPotassium
K BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
K MuscoviteKAl2(AlSi3O10)(OH)2
CaCalcium
Ca CalciteCaCO3
Ca DolomiteCaMg(CO3)2
Ca Calcium Amphibole Subgroup var. HornblendeAnCa2(Z2+5-mZm3+)(Si8-(n+m)Al(n+m))(OH,F,Cl)2
Ca Calcium Amphibole SubgroupAnCa2(C2+5-mCm3+)(Si8-(n+m)Al(n+m))W2
TiTitanium
Ti BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
MnManganese
Mn CoronaditePb(Mn64+Mn23+)O16
FeIron
Fe ArsenopyriteFeAsS
Fe BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
Fe ChalcopyriteCuFeS2
Fe KintoreitePbFe3(PO4)(PO3OH)(OH)6
Fe ParasymplesiteFe32+(AsO4)2 · 8H2O
Fe PyriteFeS2
Fe SideriteFeCO3
Fe Argentotetrahedrite-(Fe)Ag6(Cu4Fe2)Sb4S12S
CoCobalt
Co ErythriteCo3(AsO4)2 · 8H2O
CuCopper
Cu AzuriteCu3(CO3)2(OH)2
Cu ChalcopyriteCuFeS2
Cu CupriteCu2O
Cu Freibergite Subgroup(Ag6,[Ag6]4+)(Cu4 C22+)Sb4S12S0-1
Cu MalachiteCu2(CO3)(OH)2
Cu Polybasite[Ag6Sb2S7][Ag9CuS4]
Cu Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
Cu Argentotetrahedrite-(Fe)Ag6(Cu4Fe2)Sb4S12S
ZnZinc
Zn HydrozinciteZn5(CO3)2(OH)6
Zn SphaleriteZnS
AsArsenic
As ArsenopyriteFeAsS
As ErythriteCo3(AsO4)2 · 8H2O
As MimetitePb5(AsO4)3Cl
As ParasymplesiteFe32+(AsO4)2 · 8H2O
As ProustiteAg3AsS3
AgSilver
Ag AcanthiteAg2S
Ag Freibergite Subgroup(Ag6,[Ag6]4+)(Cu4 C22+)Sb4S12S0-1
Ag ImiteriteAg2HgS2
Ag IodargyriteAgI
Ag Polybasite[Ag6Sb2S7][Ag9CuS4]
Ag ProustiteAg3AsS3
Ag PyrargyriteAg3SbS3
Ag PyrostilpniteAg3SbS3
Ag Native SilverAg
Ag StephaniteAg5SbS4
Ag Argentotetrahedrite-(Fe)Ag6(Cu4Fe2)Sb4S12S
CdCadmium
Cd GreenockiteCdS
SbAntimony
Sb Freibergite Subgroup(Ag6,[Ag6]4+)(Cu4 C22+)Sb4S12S0-1
Sb Polybasite[Ag6Sb2S7][Ag9CuS4]
Sb PyrargyriteAg3SbS3
Sb PyrostilpniteAg3SbS3
Sb StephaniteAg5SbS4
Sb Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
Sb Argentotetrahedrite-(Fe)Ag6(Cu4Fe2)Sb4S12S
IIodine
I IodargyriteAgI
BaBarium
Ba BaryteBaSO4
HgMercury
Hg ImiteriteAg2HgS2
PbLead
Pb AnglesitePbSO4
Pb CerussitePbCO3
Pb CoronaditePb(Mn64+Mn23+)O16
Pb GalenaPbS
Pb KintoreitePbFe3(PO4)(PO3OH)(OH)6
Pb MimetitePb5(AsO4)3Cl
Pb PlumbogummitePbAl3(PO4)(PO3OH)(OH)6
Pb PyromorphitePb5(PO4)3Cl

Localities in this Region

Other Regions, Features and Areas that Intersect

Eurasian PlateTectonic Plate
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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.

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