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Diepenlinchen Mine, Mausbach, Stolberg, Aachen, Cologne, North Rhine-Westphalia, Germanyi
Regional Level Types
Diepenlinchen MineMine
Mausbach- not defined -
StolbergCity
AachenDistrict
CologneAdministrative District
North Rhine-WestphaliaState
GermanyCountry

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Latitude & Longitude (WGS84):
50° 45' 55'' North , 6° 16' 27'' East
Latitude & Longitude (decimal):
Type:
Köppen climate type:
Nearest Settlements:
PlacePopulationDistance
Stolberg58,874 (2018)3.5km
Breinigerberg971 (2015)4.0km
Eschweiler55,778 (2015)5.9km
Langerwehe14,027 (2011)7.8km
Hürtgenwald8,876 (2015)8.5km
Nearest Clubs:
Local clubs are the best way to get access to collecting localities
ClubLocationDistance
Vieille Montagne HeritageKelmis / La Calamine, Belgium20km
Mindat Locality ID:
13832
Long-form identifier:
mindat:1:2:13832:4
GUID (UUID V4):
0
Name(s) in local language(s):
Grube Diepenlinchen, Mausbach, Stolberg, Aachen, Nordrhein-Westfalen, Deutschland


The Diepenlinchen mine was one of the most important mines of the Aachen-Stolberg Zn-Pb ore district. The occurrences are hosted by Devonian and Carboniferous sediments - mostly limestones, sand-, silt- and mudstones. Mineralization is structurally controlled and of low-temperature hydrothermal origin. It is considered to be of post-Variscan age and similar to the Mississipi Valley Type deposits. The ore occurs as fissure veins and vein or veinlet boxworks (called 'stockworks'). Besides the vein-type deposits also concordant orebodies are known which occur in fracture zones along bedding or longitudinal faults particularly where these are intersected by cross-faults. Mineralized karst-sinks have been described as 'ore-pipes' or 'ore-caves'.

The mineralization of the Aachen-Stolberg Zn-Pb ore district consists in the upper levels - down to around 60 m, maximum 100 m - predominantly of Calamine, Limonite, and relics of primary sulphide ore towards depth. As a particularity at Diepenlinchen calamine was mined down to 300 m depth. The primary sulphide paragenesis is dominated by Schalenblende with a variable content of Galena and Marcasite. The pale layers of the Schalenblende only contain Sphalerite, in the dark layers also Wurtzite may be present. Some veins carry silver-rich galena as main ore mineral. Between the compact schalenblende and the wallrock often an impregnation zone can be observed with idiomorphic crystals of Sphalerite, Pyrite crystals, Tetrahedrite, Chalcopyrite, and Quartz. Marcasite generally was precipitated at the final stage of the ore mineralization and hence forms the outermost layers of the schalenblende. Bravoite is a characteristic mineral of the paragenesis.

Mining in the area of the Diepenlinchen concession goes back to the 2nd and 3rd centuries when the Romans extracted calamine for brass manufacturing. Also, galena was mined at that time. From the 16th to the 19th century, small-scale calamine mining operations were carried out.

The Diepenlinchen concession is geologically positioned at the NE-end of the Werth syncline, SE of the city of Stolberg. The syncline is formed by sedimentary rocks of Couvinean to Visean age. The strata strike SW-NE with a steep dip at the Southern flank and a flat at the Northern flank. The concession covers a size of 8 km2. Commodities were Pb, Zn, Fe, Cu, the concession was still owned by Metallgesellschaft (Stolberger Zink) in 1990. The concession was created in the first quarter of the 19th century by the consolidation of numerous small claims.

In 1809 Bäumer, Buchacker & Cie. were granted a concession on Pb ore, Calamine and 'Ironstone'. An underground mining operation was established reaching 80 m depth. Water problems caused the early installation of steam machines but nevertheless, mining wasn´t successful. In 1820 the works were stopped and the concession was leased to miners from the nearby village Mausbach.

The industrial mining period started in 1838. The Diepenlinchen mine was operated by the METALLURGISCHE GESELLSCHAFT and their followers KOMMANDITGESELLSCHAFT DE SASSENAY & CIE. and STOLBERGER GESELLSCHAFT. Exploitation at the Diepenlinchen mine lasted until 1919 with the deepest level reaching 376 m. From 1855 to 1919 450,000 t of Zn concentrate and 150,000 t of Pb concentrates have been produced. The ore grade was 14% ZnS and 3% PbS on average. The closure of the mine was related to the impact of World War I. The extraction tonnage decreased during WW I and severe problems of coal transport for the power plants supply led to a critical situation at the mine. The actual inducement of the closure was a general strike in 1919. Estimated remaining reserves are > 1 million tonnes of ore. In 1927/28 a flotation processing plant with a capacity of 5 tons per hour was built in order to recover the base metal content of the older tailings. In 1933 more than 4,000 t of ore concentrate could be extracted. The flotation plant was finally closed in 1942 and the last chapter of ore mining in Stolberg came to an end.

The Diepenlinchen concession comprised the following sites/occurrences:
Deposits in Devonian reef limestone: Doerrenberg, 'Lichtloch VII' of Dohm gallery, Theuerkauf, Scheidt, Mausbacher Hecken.
Deposits in Carboniferous limestone (from SW to NE): Henriette site with 2 veins and nests. Diepenlinchen site with nest no. II with 'Gang IV', nest no. I with 'Gang III', 'Schwefelkies' stockwork, 'Brennessel' stockwork, Brennesselgang, 'Weissbleierz' stockwork, 'Andreasgang', 'Leongang', nest at main shaft, 'Gang V', 'Gang III', 'Heinrich stockwork' with 'Gang I' and 'II'.'Ludwiggang','neuer Franzgang','alter Franzgang','Johanngang', 2 nameless veins, 'Gang VI', 'Weissenberg' stockwork, 'Schwarzgruben' nest. Neuer Simon site with 5 small veins (Streifen I to V). Alter Simon site with 2 nests. Hitzberg site with only some small nests and veinlets. Alter Ravelsberg site with small unnamed veins and 'Gang I and II'.

The Diepenlinchen mine produced quite a few good mineral specimens. From the main site, beautiful Calcite crystals on colloform Schalenblende are noticeable. The most known specimens are beautifully banded Schalenblende samples. The best ones were found at the Henriette shaft site.

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

32 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:

ⓘ Anglesite
Formula: PbSO4
ⓘ Ankerite
Formula: Ca(Fe2+,Mg)(CO3)2
ⓘ Calcite
Formula: CaCO3
ⓘ Calcite var. Zinc-bearing Calcite
Formula: (Ca,Zn)CO3
References:
ⓘ Cattierite
Formula: CoS2
ⓘ Cerussite
Formula: PbCO3
ⓘ Chalcocite
Formula: Cu2S
ⓘ Chalcopyrite
Formula: CuFeS2
ⓘ Covellite
Formula: CuS
ⓘ Digenite
Formula: Cu9S5
ⓘ Dolomite
Formula: CaMg(CO3)2
ⓘ Galena
Formula: PbS
ⓘ Goslarite
Formula: ZnSO4 · 7H2O
ⓘ Greenockite
Formula: CdS
ⓘ Gypsum
Formula: CaSO4 · 2H2O
ⓘ Gypsum var. Selenite
Formula: CaSO4 · 2H2O
ⓘ Hemimorphite
Formula: Zn4Si2O7(OH)2 · H2O
ⓘ Hydrozincite
Formula: Zn5(CO3)2(OH)6
ⓘ Jamesonite
Formula: Pb4FeSb6S14
ⓘ Jordanite
Formula: Pb14As6S23
ⓘ 'Limonite'
ⓘ Malachite
Formula: Cu2(CO3)(OH)2
ⓘ Marcasite
Formula: FeS2
ⓘ Pyrite
Formula: FeS2
ⓘ Pyrite var. Bravoite
Formula: (Fe,Ni)S2
ⓘ Pyrolusite
Formula: Mn4+O2
ⓘ Pyromorphite
Formula: Pb5(PO4)3Cl
ⓘ Quartz
Formula: SiO2
ⓘ Siderite
Formula: FeCO3
ⓘ Smithsonite
Formula: ZnCO3
ⓘ Sphalerite
Formula: ZnS
ⓘ Stibnite
Formula: Sb2S3
ⓘ Sulphur
Formula: S8
ⓘ 'Tennantite Subgroup'
Formula: Cu6(Cu4C2+2)As4S12S
ⓘ Vaesite
Formula: NiS2
ⓘ Willemite
Formula: Zn2SiO4
ⓘ Wurtzite
Formula: (Zn,Fe)S

Gallery:

List of minerals arranged by Strunz 10th Edition classification

Group 1 - Elements
ⓘSulphur1.CC.05S8
Group 2 - Sulphides and Sulfosalts
ⓘChalcocite2.BA.05Cu2S
ⓘDigenite2.BA.10Cu9S5
ⓘCovellite2.CA.05aCuS
ⓘSphalerite2.CB.05aZnS
ⓘChalcopyrite2.CB.10aCuFeS2
ⓘGreenockite2.CB.45CdS
ⓘWurtzite2.CB.45(Zn,Fe)S
ⓘGalena2.CD.10PbS
ⓘStibnite2.DB.05Sb2S3
ⓘPyrite
var. Bravoite
2.EB.05a(Fe,Ni)S2
ⓘCattierite2.EB.05aCoS2
ⓘPyrite2.EB.05aFeS2
ⓘVaesite2.EB.05aNiS2
ⓘMarcasite2.EB.10aFeS2
ⓘ'Tennantite Subgroup'2.GB.05Cu6(Cu4C2+2)As4S12S
ⓘJamesonite2.HB.15Pb4FeSb6S14
ⓘJordanite2.JB.30aPb14As6S23
Group 4 - Oxides and Hydroxides
ⓘQuartz4.DA.05SiO2
ⓘPyrolusite4.DB.05Mn4+O2
Group 5 - Nitrates and Carbonates
ⓘCalcite5.AB.05CaCO3
ⓘSiderite5.AB.05FeCO3
ⓘSmithsonite5.AB.05ZnCO3
ⓘCalcite
var. Zinc-bearing Calcite
5.AB.05(Ca,Zn)CO3
ⓘAnkerite5.AB.10Ca(Fe2+,Mg)(CO3)2
ⓘDolomite5.AB.10CaMg(CO3)2
ⓘCerussite5.AB.15PbCO3
ⓘMalachite5.BA.10Cu2(CO3)(OH)2
ⓘHydrozincite5.BA.15Zn5(CO3)2(OH)6
Group 7 - Sulphates, Chromates, Molybdates and Tungstates
ⓘAnglesite7.AD.35PbSO4
ⓘGoslarite7.CB.40ZnSO4 · 7H2O
ⓘGypsum7.CD.40CaSO4 · 2H2O
ⓘvar. Selenite7.CD.40CaSO4 · 2H2O
Group 8 - Phosphates, Arsenates and Vanadates
ⓘPyromorphite8.BN.05Pb5(PO4)3Cl
Group 9 - Silicates
ⓘWillemite9.AA.05Zn2SiO4
ⓘHemimorphite9.BD.10Zn4Si2O7(OH)2 · H2O
Unclassified
ⓘ'Limonite'-

List of minerals for each chemical element

HHydrogen
Hⓘ GoslariteZnSO4 · 7H2O
Hⓘ GypsumCaSO4 · 2H2O
Hⓘ HemimorphiteZn4Si2O7(OH)2 · H2O
Hⓘ HydrozinciteZn5(CO3)2(OH)6
Hⓘ MalachiteCu2(CO3)(OH)2
Hⓘ Gypsum var. SeleniteCaSO4 · 2H2O
CCarbon
Cⓘ AnkeriteCa(Fe2+,Mg)(CO3)2
Cⓘ CalciteCaCO3
Cⓘ CerussitePbCO3
Cⓘ DolomiteCaMg(CO3)2
Cⓘ HydrozinciteZn5(CO3)2(OH)6
Cⓘ MalachiteCu2(CO3)(OH)2
Cⓘ SideriteFeCO3
Cⓘ SmithsoniteZnCO3
Cⓘ Calcite var. Zinc-bearing Calcite(Ca,Zn)CO3
OOxygen
Oⓘ AnglesitePbSO4
Oⓘ AnkeriteCa(Fe2+,Mg)(CO3)2
Oⓘ CalciteCaCO3
Oⓘ CerussitePbCO3
Oⓘ DolomiteCaMg(CO3)2
Oⓘ GoslariteZnSO4 · 7H2O
Oⓘ GypsumCaSO4 · 2H2O
Oⓘ HemimorphiteZn4Si2O7(OH)2 · H2O
Oⓘ HydrozinciteZn5(CO3)2(OH)6
Oⓘ MalachiteCu2(CO3)(OH)2
Oⓘ PyrolusiteMn4+O2
Oⓘ PyromorphitePb5(PO4)3Cl
Oⓘ QuartzSiO2
Oⓘ SideriteFeCO3
Oⓘ SmithsoniteZnCO3
Oⓘ WillemiteZn2SiO4
Oⓘ Gypsum var. SeleniteCaSO4 · 2H2O
Oⓘ Calcite var. Zinc-bearing Calcite(Ca,Zn)CO3
MgMagnesium
Mgⓘ AnkeriteCa(Fe2+,Mg)(CO3)2
Mgⓘ DolomiteCaMg(CO3)2
SiSilicon
Siⓘ HemimorphiteZn4Si2O7(OH)2 · H2O
Siⓘ QuartzSiO2
Siⓘ WillemiteZn2SiO4
PPhosphorus
Pⓘ PyromorphitePb5(PO4)3Cl
SSulfur
Sⓘ AnglesitePbSO4
Sⓘ Pyrite var. Bravoite(Fe,Ni)S2
Sⓘ CattieriteCoS2
Sⓘ ChalcopyriteCuFeS2
Sⓘ ChalcociteCu2S
Sⓘ CovelliteCuS
Sⓘ DigeniteCu9S5
Sⓘ GalenaPbS
Sⓘ GoslariteZnSO4 · 7H2O
Sⓘ GreenockiteCdS
Sⓘ GypsumCaSO4 · 2H2O
Sⓘ JamesonitePb4FeSb6S14
Sⓘ JordanitePb14As6S23
Sⓘ MarcasiteFeS2
Sⓘ PyriteFeS2
Sⓘ SphaleriteZnS
Sⓘ StibniteSb2S3
Sⓘ SulphurS8
Sⓘ Tennantite SubgroupCu6(Cu4C22+)As4S12S
Sⓘ VaesiteNiS2
Sⓘ Wurtzite(Zn,Fe)S
Sⓘ Gypsum var. SeleniteCaSO4 · 2H2O
ClChlorine
Clⓘ PyromorphitePb5(PO4)3Cl
CaCalcium
Caⓘ AnkeriteCa(Fe2+,Mg)(CO3)2
Caⓘ CalciteCaCO3
Caⓘ DolomiteCaMg(CO3)2
Caⓘ GypsumCaSO4 · 2H2O
Caⓘ Gypsum var. SeleniteCaSO4 · 2H2O
Caⓘ Calcite var. Zinc-bearing Calcite(Ca,Zn)CO3
MnManganese
Mnⓘ PyrolusiteMn4+O2
FeIron
Feⓘ AnkeriteCa(Fe2+,Mg)(CO3)2
Feⓘ Pyrite var. Bravoite(Fe,Ni)S2
Feⓘ ChalcopyriteCuFeS2
Feⓘ JamesonitePb4FeSb6S14
Feⓘ MarcasiteFeS2
Feⓘ PyriteFeS2
Feⓘ SideriteFeCO3
Feⓘ Wurtzite(Zn,Fe)S
CoCobalt
Coⓘ CattieriteCoS2
NiNickel
Niⓘ Pyrite var. Bravoite(Fe,Ni)S2
Niⓘ VaesiteNiS2
CuCopper
Cuⓘ ChalcopyriteCuFeS2
Cuⓘ ChalcociteCu2S
Cuⓘ CovelliteCuS
Cuⓘ DigeniteCu9S5
Cuⓘ MalachiteCu2(CO3)(OH)2
Cuⓘ Tennantite SubgroupCu6(Cu4C22+)As4S12S
ZnZinc
Znⓘ GoslariteZnSO4 · 7H2O
Znⓘ HemimorphiteZn4Si2O7(OH)2 · H2O
Znⓘ HydrozinciteZn5(CO3)2(OH)6
Znⓘ SmithsoniteZnCO3
Znⓘ SphaleriteZnS
Znⓘ WillemiteZn2SiO4
Znⓘ Wurtzite(Zn,Fe)S
Znⓘ Calcite var. Zinc-bearing Calcite(Ca,Zn)CO3
AsArsenic
Asⓘ JordanitePb14As6S23
Asⓘ Tennantite SubgroupCu6(Cu4C22+)As4S12S
CdCadmium
Cdⓘ GreenockiteCdS
SbAntimony
Sbⓘ JamesonitePb4FeSb6S14
Sbⓘ StibniteSb2S3
PbLead
Pbⓘ AnglesitePbSO4
Pbⓘ CerussitePbCO3
Pbⓘ GalenaPbS
Pbⓘ JamesonitePb4FeSb6S14
Pbⓘ JordanitePb14As6S23
Pbⓘ PyromorphitePb5(PO4)3Cl

Localities in this Region

Other Regions, Features and Areas containing this locality

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