Steenstrupine-(Ce)
A valid IMA mineral species - grandfathered
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About Steenstrupine-(Ce)
Formula:
Na14Mn2+2Fe3+2Ce6Zr(Si6O18)2(PO4)6(PO3OH)(OH)2 ¡ 2H2O
Colour:
black, dark brown, red-brown
Lustre:
Vitreous, Greasy
Hardness:
4 - 5
Specific Gravity:
3.38 - 3.47
Crystal System:
Trigonal
Member of:
Name:
Named in honor of Knud Johannes Vogelius Steenstrup (7 September 1842, Høstemark Mill, Mou, Northern Jutland, Denmark â 6 May 1913, Frederiksberg, Denmark), geologist and explorer of Greenland, who discovered the mineral. He worked at the University of Copenhagen Geological Museum from 1866 to 1889, making nine journeys to Greenland, one of which lasted 2.5 years. He proved that the iron at Disko was from native extrusions and not from meteorites. From 1889 until his death, he was state geologist at the Geological Survey of Denmark.
Originally named simply steenstrupine. The suffix was added in 1987 (Nickel and Mandarino) to denote the dominant rare earth element, according to the Levinson rule.
Originally named simply steenstrupine. The suffix was added in 1987 (Nickel and Mandarino) to denote the dominant rare earth element, according to the Levinson rule.
This page provides mineralogical data about Steenstrupine-(Ce).
Unique Identifiers
Mindat ID:
3756
Long-form identifier:
mindat:1:1:3756:9
IMA Classification of Steenstrupine-(Ce)
Approved, 'Grandfathered' (first described prior to 1959)
IMA Formula:
Na14Ce3+6Mn2+Mn3+Fe3+2Zr4+(PO4)7Si12O36(OH)2¡3H2O
Classification of Steenstrupine-(Ce)
9.CK.20
9 : SILICATES (Germanates)
C : Cyclosilicates
K : [Si6O18]12- 6-membered single rings, with insular complex anions
9 : SILICATES (Germanates)
C : Cyclosilicates
K : [Si6O18]12- 6-membered single rings, with insular complex anions
61.4.2.1
61 : CYCLOSILICATES Six-Membered Rings
4 : Six-Membered Rings with other anions
61 : CYCLOSILICATES Six-Membered Rings
4 : Six-Membered Rings with other anions
17.6.13
17 : Silicates Containing other Anions
6 : Silicates with phosphate
17 : Silicates Containing other Anions
6 : Silicates with phosphate
Mineral Symbols
As of 2021 there are now IMAâCNMNC approved mineral symbols (abbreviations) for each mineral species, useful for tables and diagrams.
| Symbol | Source | Reference for Standard |
|---|---|---|
| Ssp-Ce | IMAâCNMNC | Warr, L.N. (2021). IMAâCNMNC approved mineral symbols. Mineralogical Magazine, 85(3), 291-320. doi:10.1180/mgm.2021.43 |
Physical Properties of Steenstrupine-(Ce)
Vitreous, Greasy
Transparency:
Opaque
Colour:
Black, dark brown, red-brown
Streak:
White, brownish white
Hardness:
4 - 5 on Mohs scale
Cleavage:
None Observed
Fracture:
Conchoidal
Density:
3.38 - 3.47 g/cm3 (Measured) 3.63 g/cm3 (Calculated)
Optical Data of Steenstrupine-(Ce)
Type:
Uniaxial (-)
RI values:
nω = 1.665 - 1.667 nε = 1.662 - 1.663
Max. Birefringence:
δ = 0.003 - 0.004
Based on recorded range of RI values above.
Based on recorded range of RI values above.
Interference Colours:
The colours simulate birefringence patterns seen in thin section under crossed polars. They do not take into account mineral colouration or opacity.
Michel-Levy Bar The default colours simulate the birefringence range for a 30 Âľm thin-section thickness. Adjust the slider to simulate a different thickness.
Grain Simulation You can rotate the grain simulation to show how this range might look as you rotated a sample under crossed polars. Each grain retains its interference colour (retardation) while its brightness falls to black at extinction and reaches a maximum between extinction positions.
The colours simulate birefringence patterns seen in thin section under crossed polars. They do not take into account mineral colouration or opacity.
Michel-Levy Bar The default colours simulate the birefringence range for a 30 Âľm thin-section thickness. Adjust the slider to simulate a different thickness.
Grain Simulation You can rotate the grain simulation to show how this range might look as you rotated a sample under crossed polars. Each grain retains its interference colour (retardation) while its brightness falls to black at extinction and reaches a maximum between extinction positions.
Surface Relief:
Very High (positive)
Relative to Canada balsam mounting medium (n ≈ 1.537).
Relative to Canada balsam mounting medium (n ≈ 1.537).
This shows the grain boundary and Becke line effect under plane-polarised
light, based on the contrast between this mineral's average refractive
index and the mounting medium. It does not take into account mineral
colouration.
In focus
Interference Figure:
This shows the idealized uniaxial interference figure - the conoscopic
(convergent-light, Bertrand-lens-in) view, for a grain cut with the optic axis
centred and vertical. The coloured rings are isochromatics, computed with the
same physics as the Michel-Lévy bar above; the dark cross is the isogyre.
For a genuinely uniaxial mineral viewed this way, that cross stays perfectly stationary if you rotate the stage - unlike a biaxial mineral, where it splits apart on rotation. That invariance is itself the standard diagnostic test for telling uniaxial and biaxial minerals apart at the microscope.
For a genuinely uniaxial mineral viewed this way, that cross stays perfectly stationary if you rotate the stage - unlike a biaxial mineral, where it splits apart on rotation. That invariance is itself the standard diagnostic test for telling uniaxial and biaxial minerals apart at the microscope.
Pleochroism:
Weak
Comments:
brown and yellow tints.
Chemistry of Steenstrupine-(Ce)
Mindat Formula:
Na14Mn2+2Fe3+2Ce6Zr(Si6O18)2(PO4)6(PO3OH)(OH)2 ¡ 2H2O
Element Weights:
Common Impurities:
Th
Crystallography of Steenstrupine-(Ce)
Crystal System:
Trigonal
Class (H-M):
3m(32/m) - Hexagonal Scalenohedral
Space Group:
R3m
Setting:
R3m
Cell Parameters:
a = 10.460(4) Å, c = 45.479(15) Å
Ratio:
a:c = 1 : 4.348
Unit Cell V:
4,309.28 Ă
Âł (Calculated from Unit Cell)
Z:
3
Morphology:
Rhombohedral crystals, rounded and rough, to 10 cm; massive.
Comment:
commonly metamict.
Crystal Structure
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Data courtesy of the American Mineralogist Crystal Structure Database. Click on an AMCSD ID to view structure
| ID | Species | Reference | Link | Year | Locality | Pressure (GPa) | Temp (K) |
|---|---|---|---|---|---|---|---|
| 0015693 | Steenstrupine-(Ce) | Moore P B, Shen J (1983) Crystal structure of steenstrupine: A rod structure of unusual complexity Tschermaks Mineralogische und Petrographische Mitteilungen 31 47-67 | 1983 | Tunugdliarfik, South Greenland | 0 | 293 |
CIF Raw Data - click here to close
X-Ray Powder Diffraction
Powder Diffraction Data:
| d-spacing | Intensity |
|---|---|
| 3.27 Ă | (10) |
| 2.60 Ă | (9) |
| 3.17 Ă | (8) |
| 2.74 Ă | (8) |
| 15.14 Ă | (6) |
| 3.04 Ă | (5) |
| 2.88 Ă | (5) |
Geological Environment
Paragenetic Mode(s):
| Paragenetic Mode | Earliest Age (Ga) |
|---|---|
| Stage 4b: Highly evolved igneous rocks | >3.0 |
| 35 : Ultra-alkali and agpaitic igneous rocks |
Type Occurrence of Steenstrupine-(Ce)
Place of Conservation of Type Material:
University of Copenhagen, Copenhagen, Denmark, 1881.1070.
Associated Minerals at Type Locality:
Synonyms of Steenstrupine-(Ce)
Other Language Names for Steenstrupine-(Ce)
German:Steenstrupin-(Ce)
Russian:ĐĄŃонŃŃŃŃпин-(Ce)
Simplified Chinese:čąéťç¨ĺçż
Traditional Chinese:čąéťç¨ĺ礌
Relationship of Steenstrupine-(Ce) to other Species
Member of:
Other Members of Steenstrupine Group:
| Thorosteenstrupine | (Ca,Th,Mn)3Si4O11F ¡ 6H2O |
Structurally related to group(s):
Common Associates
Associations Based on Photo Data:
| 36 photos of Steenstrupine-(Ce) associated with Sodalite | Na4(Si3Al3)O12Cl |
| 27 photos of Steenstrupine-(Ce) associated with Ussingite | Na2AlSi3O8OH |
| 16 photos of Steenstrupine-(Ce) associated with Serandite | NaMn2+2Si3O8(OH) |
| 14 photos of Steenstrupine-(Ce) associated with Aegirine | NaFe3+Si2O6 |
| 8 photos of Steenstrupine-(Ce) associated with Vuonnemite | Na11Ti4+Nb2(Si2O7)2(PO4)2O3(F,OH) |
| 7 photos of Steenstrupine-(Ce) associated with Chkalovite | Na2BeSi2O6 |
| 6 photos of Steenstrupine-(Ce) associated with Natrolite | Na2Al2Si3O10 ¡ 2H2O |
| 6 photos of Steenstrupine-(Ce) associated with Manganoneptunite | KNa2Li(Mn2+)2Ti2[Si4O12]2 |
| 5 photos of Steenstrupine-(Ce) associated with Epistolite | (Naâť)Nb2Na3Ti(Si2O7)2O2(OH)2(H2O)4 |
| 4 photos of Steenstrupine-(Ce) associated with Mountainite | KNa2Ca2[Si8O19(OH)] ¡ 6H2O |
Related Minerals - Strunz-mindat Grouping
| 9.CK. | Adachiite | CaFe3Al6(Si5AlO18)(BO3)3(OH)3(OH) |
| 9.CK. | Magnesio-dutrowite | Na(Mg2.5Ti0.5)Al6(Si6O18)(BO3)3(OH)3O |
| 9.CK. | Darrellhenryite | Na(Al2Li)Al6(Si6O18)(BO3)3(OH)3O |
| 9.CK. | Fluor-schorl | NaFe2+3Al6(Si6O18)(BO3)3(OH)3F |
| 9.CK. | Princivalleite | Na(Mn2Al)Al6(Si6O18)(BO3)3(OH)3O |
| 9.CK. | Alumino-oxy-rossmanite | âťAl3Al6(Si5AlO18)(BO3)3(OH)3O |
| 9.CK. | Dutrowite | Na(Fe2+2.5Ti0.5)Al6(Si6O18)(BO3)3(OH)3O |
| 9.CK. | Ferro-bosiite | NaFe3+3(Al4Fe2+2)(Si6O18)(BO3)3(OH)3O |
| 9.CK. | Bosiite | NaFe3+3(Al4Mg2)(Si6O18)(BO3)3(OH)3O |
| 9.CK. | Celleriite | âť(Mn2+2Al)Al6(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Feruvite | CaFe2+3(Al5Mg)(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Chromium-dravite | NaMg3Cr3+6(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Fluor-rossmanite | âť(Al2Li)Al6(Si6O18)(BO3)3(OH)3F |
| 9.CK.05 | Oxy-schorl | Na(Fe2+2Al)Al6(Si6O18)(BO3)3(OH)3O |
| 9.CK.05 | Fluor-elbaite | Na(Li1.5Al1.5)Al6(Si6O18)(BO3)3(OH)3F |
| 9.CK.05 | Dravite | NaMg3Al6(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Fluor-uvite | CaMg3(Al5Mg)(Si6O18)(BO3)3(OH)3F |
| 9.CK.05 | Foitite | âť(Fe2+2Al)Al6(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Vanadio-oxy-dravite | NaV3(Al4Mg2)(Si6O18)(BO3)3(OH)3O |
| 9.CK.05 | Fluor-buergerite | NaFe3+3Al6(Si6O18)(BO3)3O3F |
| 9.CK.05 | 'Unnamed (F analogue of feruvite)' | CaFe2+3(Al5Mg)(Si6O18)(BO3)3(OH)3F |
| 9.CK.05 | Ertlite | NaAl3Al6(Si4B2O18)(BO3)3(OH)3O |
| 9.CK.05 | Tsilaisite | NaMn2+3Al6(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Fluor-liddicoatite | Ca(Li2Al)Al6(Si6O18)(BO3)3(OH)3F |
| 9.CK.05 | Uvite | CaMg3(Al5Mg)(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Elbaite | Na(Li1.5Al1.5)Al6(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Fluor-tsilaisite | NaMn2+3Al6(Si6O18)(BO3)3(OH)3F |
| 9.CK.05 | Oxy-foitite | âť(Fe2+Al2)Al6(Si6O18)(BO3)3(OH)3O |
| 9.CK.05 | Liddicoatite | Ca(Li2Al)Al6(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Vanadio-oxy-chromium-dravite | NaV3(Cr4Mg2)(Si6O18)(BO3)3(OH)3O |
| 9.CK.05 | Rossmanite | âť(LiAl2)Al6(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Oxy-vanadium-dravite | NaV3(V4Mg2)(Si6O18)(BO3)3(OH)3O |
| 9.CK.05 | Olenite | NaAl3Al6(Si6O18)(BO3)3O3(OH) |
| 9.CK.05 | 'UM2000-64-SiO:BFeHKMg' | (K,Na)Fe3+3(Mg2Fe3+4)Si6O18(BO3)3(OH)3O |
| 9.CK.05 | Magnesio-lucchesiite | CaMg3Al6(Si6O18)(BO3)3(OH)3O |
| 9.CK.05 | Povondraite | NaFe3+3(Mg2Fe3+4)(Si6O18)(BO3)3(OH)3O |
| 9.CK.05 | Lucchesiite | CaFe2+3 Al6(Si6O18)(BO3)3(OH)3O |
| 9.CK.05 | Chromo-alumino-povondraite | NaCr3(Al4Mg2)(Si6O18)(BO3)3(OH)3O |
| 9.CK.05 | Fluor-dravite | NaMg3Al6(Si6O18)(BO3)3(OH)3F |
| 9.CK.05 | Oxy-dravite | Na(Al2Mg)(Al5Mg)(Si6O18)(BO3)3(OH)3O |
| 9.CK.05 | Oxy-chromium-dravite | NaCr3(Cr4Mg2)(Si6O18)(BO3)3(OH)3O |
| 9.CK.05 | 'Luinaite-(OH)' | NaFe2+3Al6(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Schorl | NaFe2+3Al6(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Magnesio-foitite | âť(Mg2Al)Al6(Si6O18)(BO3)3(OH)3(OH) |
| 9.CK.05 | Maruyamaite | K(Al2Mg)(Al5Mg)(Si6O18)(BO3)3(OH)3O |
| 9.CK.10 | Abenakiite-(Ce) | Na26Ce6(Si6O18)(PO4)6(CO3)6(SO2)O |
| 9.CK.15 | Scawtite | Ca7(Si3O9)2CO3 ¡ 2H2O |
| 9.CK.20 | Thorosteenstrupine | (Ca,Th,Mn)3Si4O11F ¡ 6H2O |
Other Information
Health Risks:
No information on health risks for this material has been entered into the database. You should always treat mineral specimens with care.
Internet Links for Steenstrupine-(Ce)
mindat.org URL:
https://www.mindat.org/min-3756.html
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References for Steenstrupine-(Ce)
Reference List:
Lorenzen, Joh. (1882) On some Minerals from the Sodalite-Syenite in Juliane-haab district, south Greenland. Mineralogical Magazine and Journal of the Mineralogical Society, 5 (23) 49-70 doi:10.1180/minmag.1882.005.023.02
IMA (1967) International Mineralogical Association: Commission on New Minerals and Mineral Names. Mineralogical Magazine and Journal of the Mineralogical Society, 36 (277) 131-136 doi:10.1180/minmag.1967.036.277.20
Dunn, Pete J., Grice, Joel D. Fleischer, Michael, Pabst, Adolf (1984) New mineral names. American Mineralogist, 69 (1-2) 210-215
Nickel, Ernest H., Mandarino, Joseph A. (1987) Procedures involving the IMA Commission on New Minerals and Mineral Names and guidelines on mineral nomenclature. American Mineralogist, 72 (9-10) 1031-1042
Jambor, John L., Grew, Edward S., Roberts, Andrew C. (1998) New mineral names. American Mineralogist, 83 (11) 1347-1352
Localities for Steenstrupine-(Ce)
Showing 42 localities.
Locality List
- This locality has map coordinates listed.
- This locality has estimated coordinates.
â - Click for references and further information on this occurrence.
? - Indicates mineral may be doubtful at this locality.
- Good crystals or important locality for species.
- World class for species or very significant.
(TL) - Type Locality for a valid mineral species.
(FRL) - First Recorded Locality for everything else (eg varieties).
All localities listed without proper references should be considered as questionable.
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The
Nunarssuatsiaq, Tunulliarfik Fjord, IlĂmaussaq complex, Kujalleq, Greenland