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Georgsmarienhütte, Osnabrück District, Lower Saxony, Germanyi
Regional Level Types
GeorgsmarienhütteCity
Osnabrück DistrictDistrict
Lower SaxonyState
GermanyCountry

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PhotosMapsSearch
07230620015883570003122.jpg
View of the Osnabrück iron mining area, in 1912.

Georgsmarienhütte, Osnabrück District, Lower Saxony, Germany
05096750016745034053821.jpg
View of the Osnabrück mining and metallurgy area, in 1939.

Georgsmarienhütte, Osnabrück District, Lower Saxony, Germany
09897930016745034052500.jpg
Aerial view of the Osnabrück mining and metallurgy area, ca. 1965.

Georgsmarienhütte, Osnabrück District, Lower Saxony, Germany
00321530015550152905811.jpg
View of the Osnabrück iron mining area, in 1912.

Georgsmarienhütte, Osnabrück District, Lower Saxony, Germany
08124500016571848023074.jpg
View of the Osnabrück mining and metallurgy area, in 1939.

Georgsmarienhütte, Osnabrück District, Lower Saxony, Germany
09053190016571851552090.jpg
Aerial view of the Osnabrück mining and metallurgy area, ca. 1965.

Georgsmarienhütte, Osnabrück District, Lower Saxony, Germany
05351240015550154564189.jpg
View of the Osnabrück iron mining area, in 1912.

Georgsmarienhütte, Osnabrück District, Lower Saxony, Germany
05096750016745034053821.jpg
View of the Osnabrück mining and metallurgy area, in 1939.

Georgsmarienhütte, Osnabrück District, Lower Saxony, Germany
Locality type:
Largest Settlements:
PlacePopulation
Georgsmarienhütte32,580 (2015)
Other Languages:
German:
Georgsmarienhütte, Landkreis Osnabrück, Niedersachsen, Deutschland


City that is named after its smelter ('Hütte').

Select Mineral List Type

Standard Detailed Gallery Strunz Chemical Elements

Mineral List

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

25 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:

Ammoniojarosite
Formula: (NH4)Fe3+3(SO4)2(OH)6
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Aragonite
Formula: CaCO3
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Baryte
Formula: BaSO4
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Brochantite
Formula: Cu4(SO4)(OH)6
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Calcite
Formula: CaCO3
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Chromite
Formula: Fe2+Cr3+2O4
Reference: Bartoschewitz, R., Appel, P. & Mader, B. (2009) Mineralogy and Petrology of two German H5 Chondrites - Oesede and Wernigerode: Meteoritics & Planetary Science 44 (Supplement): page A29, pdf#5099. (Sept 2009).
Diopside
Formula: CaMgSi2O6
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Ettringite
Formula: Ca6Al2(SO4)3(OH)12 · 26H2O
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
'Fayalite-Forsterite Series'
Description: Composition Fa19 following Graham, et al. (1985) or Fa18.5 following Bartoschewitz et al. (2009)
Reference: Graham, A. L., Bevan, A. W. R. & Hutchison, B. (1985) Catalogue of Meteorites (4/e). University of Arizona Press: Tucson.; Bartoschewitz, R., Appel, P. & Mader, B. (2009) Mineralogy and Petrology of two German H5 Chondrites - Oesede and Wernigerode: Meteoritics & Planetary Science 44 (Supplement): page A29, pdf#5099. (Sept 2009).
'Feldspar Group'
Description: Albitic composition (oligoclase) is similar to most H chondrites, but w. perhaps a slightly larger K-component [An10–16,Or9–5]
Reference: Bartoschewitz, R., Appel, P. & Mader, B. (2009) Mineralogy and Petrology of two German H5 Chondrites - Oesede and Wernigerode: Meteoritics & Planetary Science 44 (Supplement): page A29, pdf#5099. (Sept 2009).
Goethite
Formula: α-Fe3+O(OH)
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Gypsum
Formula: CaSO4 · 2H2O
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Hydrocalumite
Formula: Ca4Al2(OH)12(Cl,CO3,OH)2 · 4H2O
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Iron
Formula: Fe
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Iron var. Kamacite
Formula: (Fe,Ni)
Reference: Bartoschewitz, R., Appel, P. & Mader, B. (2009) Mineralogy and Petrology of two German H5 Chondrites - Oesede and Wernigerode: Meteoritics & Planetary Science 44 (Supplement): page A29, pdf#5099. (Sept 2009).
Lepidocrocite
Formula: γ-Fe3+O(OH)
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
'Limonite'
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Malachite
Formula: Cu2(CO3)(OH)2
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Merrillite
Formula: Ca9NaMg(PO4)7
Reference: Bartoschewitz, R., Appel, P. & Mader, B. (2009) Mineralogy and Petrology of two German H5 Chondrites - Oesede and Wernigerode: Meteoritics & Planetary Science 44 (Supplement): page A29, pdf#5099. (Sept 2009).
Merwinite
Formula: Ca3Mg(SiO4)2
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Mullite
Formula: Al4+2xSi2-2xO10-x
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Norsethite
Formula: BaMg(CO3)2
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Pyrochroite
Formula: Mn(OH)2
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
'Pyroxene Group'
Formula: ADSi2O6
Reference: Graham, A. L., Bevan, A. W. R. & Hutchison, B. (1985) Catalogue of Meteorites (4/e). University of Arizona Press: Tucson.; Bartoschewitz, R., Appel, P. & Mader, B. (2009) Mineralogy and Petrology of two German H5 Chondrites - Oesede and Wernigerode: Meteoritics & Planetary Science 44 (Supplement): page A29, pdf#5099. (Sept 2009).
Quartz
Formula: SiO2
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Riversideite
Formula: Ca5(HSi3O9)2 · 2H2O
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Sulphur
Formula: S8
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Taenite
Formula: (Fe,Ni)
Reference: Bartoschewitz, R., Appel, P. & Mader, B. (2009) Mineralogy and Petrology of two German H5 Chondrites - Oesede and Wernigerode: Meteoritics & Planetary Science 44 (Supplement): page A29, pdf#5099. (Sept 2009).
Thaumasite
Formula: Ca3(SO4)[Si(OH)6](CO3) · 12H2O
Reference: Schnorrer, G., Stahlmann, W., Mollenkamp, A. (2001): Sekundärmineralisation in den Hochofenschlacken des Hüttenwerkes in Georgsmarienhütte, heutige Georgsmarienhütte GmbH. Aufschluss 52, 99-108.
Troilite
Formula: FeS
Reference: Bartoschewitz, R., Appel, P. & Mader, B. (2009) Mineralogy and Petrology of two German H5 Chondrites - Oesede and Wernigerode: Meteoritics & Planetary Science 44 (Supplement): page A29, pdf#5099. (Sept 2009).

Gallery:

List of minerals arranged by Strunz 10th Edition classification

Group 1 - Elements
Iron1.AE.05Fe
var. Kamacite1.AE.05(Fe,Ni)
Sulphur1.CC.05S8
Taenite1.AE.10(Fe,Ni)
Group 2 - Sulphides and Sulfosalts
Troilite2.CC.10FeS
Group 4 - Oxides and Hydroxides
Chromite4.BB.05Fe2+Cr3+2O4
Goethite4.00.α-Fe3+O(OH)
Hydrocalumite4.FL.10Ca4Al2(OH)12(Cl,CO3,OH)2 · 4H2O
Lepidocrocite4.FE.15γ-Fe3+O(OH)
Pyrochroite4.FE.05Mn(OH)2
Quartz4.DA.05SiO2
Group 5 - Nitrates and Carbonates
Aragonite5.AB.15CaCO3
Calcite5.AB.05CaCO3
Malachite5.BA.10Cu2(CO3)(OH)2
Norsethite5.AB.30BaMg(CO3)2
Group 7 - Sulphates, Chromates, Molybdates and Tungstates
Ammoniojarosite7.BC.10(NH4)Fe3+3(SO4)2(OH)6
Baryte7.AD.35BaSO4
Brochantite7.BB.25Cu4(SO4)(OH)6
Ettringite7.DG.15Ca6Al2(SO4)3(OH)12 · 26H2O
Gypsum7.CD.40CaSO4 · 2H2O
Thaumasite7.DG.15Ca3(SO4)[Si(OH)6](CO3) · 12H2O
Group 8 - Phosphates, Arsenates and Vanadates
Merrillite8.AC.45Ca9NaMg(PO4)7
Group 9 - Silicates
Diopside9.DA.15CaMgSi2O6
Merwinite9.AD.15Ca3Mg(SiO4)2
Mullite9.AF.20Al4+2xSi2-2xO10-x
Riversideite9.DG.10Ca5(HSi3O9)2 · 2H2O
Unclassified Minerals, Rocks, etc.
'Fayalite-Forsterite Series'-
'Feldspar Group'-
'Limonite'-
'Pyroxene Group'-ADSi2O6

List of minerals for each chemical element

HHydrogen
H Goethiteα-Fe3+O(OH)
H Lepidocrociteγ-Fe3+O(OH)
H PyrochroiteMn(OH)2
H HydrocalumiteCa4Al2(OH)12(Cl,CO3,OH)2 · 4H2O
H MalachiteCu2(CO3)(OH)2
H BrochantiteCu4(SO4)(OH)6
H Ammoniojarosite(NH4)Fe33+(SO4)2(OH)6
H GypsumCaSO4 · 2H2O
H EttringiteCa6Al2(SO4)3(OH)12 · 26H2O
H ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
H RiversideiteCa5(HSi3O9)2 · 2H2O
CCarbon
C HydrocalumiteCa4Al2(OH)12(Cl,CO3,OH)2 · 4H2O
C CalciteCaCO3
C AragoniteCaCO3
C MalachiteCu2(CO3)(OH)2
C NorsethiteBaMg(CO3)2
C ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
NNitrogen
N Ammoniojarosite(NH4)Fe33+(SO4)2(OH)6
OOxygen
O QuartzSiO2
O Goethiteα-Fe3+O(OH)
O Lepidocrociteγ-Fe3+O(OH)
O PyrochroiteMn(OH)2
O HydrocalumiteCa4Al2(OH)12(Cl,CO3,OH)2 · 4H2O
O CalciteCaCO3
O AragoniteCaCO3
O MalachiteCu2(CO3)(OH)2
O NorsethiteBaMg(CO3)2
O BaryteBaSO4
O BrochantiteCu4(SO4)(OH)6
O Ammoniojarosite(NH4)Fe33+(SO4)2(OH)6
O GypsumCaSO4 · 2H2O
O EttringiteCa6Al2(SO4)3(OH)12 · 26H2O
O MulliteAl4+2xSi2-2xO10-x
O ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
O MerwiniteCa3Mg(SiO4)2
O DiopsideCaMgSi2O6
O RiversideiteCa5(HSi3O9)2 · 2H2O
O Pyroxene GroupADSi2O6
O ChromiteFe2+Cr23+O4
O MerrilliteCa9NaMg(PO4)7
NaSodium
Na MerrilliteCa9NaMg(PO4)7
MgMagnesium
Mg NorsethiteBaMg(CO3)2
Mg MerwiniteCa3Mg(SiO4)2
Mg DiopsideCaMgSi2O6
Mg MerrilliteCa9NaMg(PO4)7
AlAluminium
Al HydrocalumiteCa4Al2(OH)12(Cl,CO3,OH)2 · 4H2O
Al EttringiteCa6Al2(SO4)3(OH)12 · 26H2O
Al MulliteAl4+2xSi2-2xO10-x
SiSilicon
Si QuartzSiO2
Si MulliteAl4+2xSi2-2xO10-x
Si ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
Si MerwiniteCa3Mg(SiO4)2
Si DiopsideCaMgSi2O6
Si RiversideiteCa5(HSi3O9)2 · 2H2O
Si Pyroxene GroupADSi2O6
PPhosphorus
P MerrilliteCa9NaMg(PO4)7
SSulfur
S SulphurS8
S BaryteBaSO4
S BrochantiteCu4(SO4)(OH)6
S Ammoniojarosite(NH4)Fe33+(SO4)2(OH)6
S GypsumCaSO4 · 2H2O
S EttringiteCa6Al2(SO4)3(OH)12 · 26H2O
S ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
S TroiliteFeS
ClChlorine
Cl HydrocalumiteCa4Al2(OH)12(Cl,CO3,OH)2 · 4H2O
CaCalcium
Ca HydrocalumiteCa4Al2(OH)12(Cl,CO3,OH)2 · 4H2O
Ca CalciteCaCO3
Ca AragoniteCaCO3
Ca GypsumCaSO4 · 2H2O
Ca EttringiteCa6Al2(SO4)3(OH)12 · 26H2O
Ca ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
Ca MerwiniteCa3Mg(SiO4)2
Ca DiopsideCaMgSi2O6
Ca RiversideiteCa5(HSi3O9)2 · 2H2O
Ca MerrilliteCa9NaMg(PO4)7
CrChromium
Cr ChromiteFe2+Cr23+O4
MnManganese
Mn PyrochroiteMn(OH)2
FeIron
Fe IronFe
Fe Goethiteα-Fe3+O(OH)
Fe Lepidocrociteγ-Fe3+O(OH)
Fe Ammoniojarosite(NH4)Fe33+(SO4)2(OH)6
Fe ChromiteFe2+Cr23+O4
Fe Iron var. Kamacite(Fe,Ni)
Fe Taenite(Fe,Ni)
Fe TroiliteFeS
NiNickel
Ni Iron var. Kamacite(Fe,Ni)
Ni Taenite(Fe,Ni)
CuCopper
Cu MalachiteCu2(CO3)(OH)2
Cu BrochantiteCu4(SO4)(OH)6
BaBarium
Ba NorsethiteBaMg(CO3)2
Ba BaryteBaSO4

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Other Regions, Features and Areas that Intersect

Eurasian PlateTectonic Plate

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