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Bredigite

A valid IMA mineral species - grandfathered
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About BredigiteHide

Formula:
Ca7Mg(SiO4)4
Colour:
Colorless, grey
Lustre:
Vitreous
Specific Gravity:
3.42
Crystal System:
Orthorhombic
Name:
Named in honor of Dr. Max Albrecht Bredig (20 June 1902 - 21 November 1977), physical chemist, who studied the polymorphism of Ca2SiO4. Dr. Bredig was former Associate Director of the Chemistry Division Oak Ridge National Laboratory, and expert in the chemistry of molten salts and chemistry of the solid state, especially high temperature and crystal chemistry.
Anthropogenic "Ca7MgSi4O16" is described by Žáček et al. (2005).


Unique IdentifiersHide

Mindat ID:
762
Long-form identifier:
mindat:1:1:762:9
GUID
(UUID V4):
eae67ac7-9ef6-454f-aa1b-b86358da0271

IMA Classification of BredigiteHide

Classification of BredigiteHide

9.AD.20

9 : SILICATES (Germanates)
A : Nesosilicates
D : Nesosilicates without additional anions; cations in [6] and/or greater coordination
51.4.1.1

51 : NESOSILICATES Insular SiO4 Groups Only
4 : Insular SiO4 Groups Only with cations in [6] and >[6] coordination
14.5.7

14 : Silicates not Containing Aluminum
5 : Silicates of Ca

Mineral SymbolsHide

As of 2021 there are now IMA–CNMNC approved mineral symbols (abbreviations) for each mineral species, useful for tables and diagrams.

SymbolSourceReference
BdiIMA–CNMNCWarr, L.N. (2021). IMA–CNMNC approved mineral symbols. Mineralogical Magazine, 85(3), 291-320. doi:10.1180/mgm.2021.43

Physical Properties of BredigiteHide

Vitreous
Transparency:
Transparent
Colour:
Colorless, grey
Streak:
White
Cleavage:
Distinct/Good
Distinct on {130}
Density:
3.42 g/cm3 (Measured)    3.32 g/cm3 (Calculated)

Optical Data of BredigiteHide

Type:
Biaxial (+)
RI values:
nα = 1.712 nβ = 1.716 nγ = 1.725
2V:
Measured: 30° , Calculated: 68°
Max Birefringence:
δ = 0.013
Image shows birefringence interference colour range (at 30µm thickness)
and does not take into account mineral colouration.
Surface Relief:
High
Dispersion:
relatively strong
Pleochroism:
Visible
Comments:
In thick sections, X = pale violet; Y = Z = colorless to pale green. X=b, Y=a, Z=c.

Chemistry of BredigiteHide

Mindat Formula:
Ca7Mg(SiO4)4
Common Impurities:
Ti,Fe,Mn,Ba,F

Crystallography of BredigiteHide

Crystal System:
Orthorhombic
Class (H-M):
mm2 - Pyramidal
Space Group:
Pnn2
Cell Parameters:
a = 10.909(9) Å, b = 18.34(1) Å, c = 6.739(9) Å
Ratio:
a:b:c = 0.595 : 1 : 0.367
Unit Cell V:
1,348.28 ų (Calculated from Unit Cell)
Z:
4
Twinning:
Simple contact and cyclical on {110}.

Crystal StructureHide

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IDSpeciesReferenceLinkYearLocalityPressure (GPa)Temp (K)
0000494BredigiteMoore P B, Araki T (1976) The crystal structure of bredigite and the genealogy of some alkaline earth orthosilicates American Mineralogist 61 74-8719760293
CIF Raw Data - click here to close

X-Ray Powder DiffractionHide

Powder Diffraction Data:
d-spacingIntensity
2.730 Å(100)
2.663 Å(100)
2.259 Å(80)
1.923 Å(80)
2.067 Å(60)
1.574 Å(60)
1.554 Å(60)

Geological EnvironmentHide

Paragenetic Mode(s):
Paragenetic ModeEarliest Age (Ga)
Stage 3a: Earth’s earliest Hadean crust>4.50
9 : Lava/xenolith minerals (hornfels, sanidinite facies)
High-𝑇 alteration and/or metamorphism
31 : Thermally altered carbonate, phosphate, and iron formations
Stage 5: Initiation of plate tectonics<3.5-2.5
40 : Regional metamorphism (greenschist, amphibolite, granulite facies)
Stage 10a: Neoproterozoic oxygenation/terrestrial biosphere<0.6
50 : Coal and/or oil shale minerals<0.36
51 : Pyrometamorphic minerals (see also #54 and #56)<0.36
Stage 10b: Anthropogenic minerals<10 Ka
54 : Coal and other mine fire minerals (see also #51 and #56)
56 : Slag and smelter minerals (see also #51 and #55)

Type Occurrence of BredigiteHide

General Appearance of Type Material:
Crystals are squat, barrel- or boat-shaped, with pseudohexagonal cross sections, or as slender prismatic crystals, to 2mm
Place of Conservation of Type Material:
The Natural History Museum, London, England, 1956, 385.
Geological Setting of Type Material:
Type specimen was from slag (Middlesbrough type specimen of Tilley and Vincent)
Associated Minerals at Type Locality:
Reference:
Tilley, C.E., Vincent, C.G. (1948) The occurrence of an orthorhombic high temperature form of Ca2SiO4 (bredigite) in the Scawt Hill contact-zone and as a constituent of slags. Mineralogical Magazine: 28: 255-271.

Other Language Names for BredigiteHide

German:Bredigit
Spanish:Bredigita

Related Minerals - Strunz-mindat GroupingHide

9.AD.AdrianiteCa12(Al4Mg3Si7)O32Cl6Iso. 4 3m : I4 3d
9.AD.05LarniteCa2SiO4Mon. 2/m
9.AD.10Calcio-olivineCa2SiO4Orth. mmm (2/m 2/m 2/m)
9.AD.15MerwiniteCa3Mg(SiO4)2Mon. 2/m : P21/b
9.AD.25AndraditeCa3Fe3+2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25AlmandineFe2+3Al2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25CalderiteMn2+3Fe3+2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25GoldmaniteCa3V3+2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25GrossularCa3Al2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25HenritermieriteCa3Mn3+2(SiO4)2[◻(OH)4]Tet. 4/mmm (4/m 2/m 2/m) : I41/acd
9.AD.25KimzeyiteCa3Zr2(SiO4)(AlO4)2Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25KnorringiteMg3Cr2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25MajoriteMg3(MgSi)(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25MorimotoiteCa3(TiFe2+)(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25PyropeMg3Al2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25SchorlomiteCa3Ti2(SiO4)(Fe3+O4)2Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25SpessartineMn2+3Al2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25UvaroviteCa3Cr2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25Wadalite(Ca,Mg)6(Al,Fe3+)4((Si,Al)O4)3O4Cl3Iso. 4 3m : I4 3d
9.AD.25 vaHydrougrandite(Ca,Mg,Fe2+)3(Fe3+,Al)2[(OH)4(SiO4)2]Iso.
9.AD.25 vaYamatoite(Mn2+,Ca)3(V3+,Al)2(SiO4)3Iso.
9.AD.25HoltstamiteCa3Al2(SiO4)2[◻(OH)4]Tet. 4/mmm (4/m 2/m 2/m) : I41/acd
9.AD.25KhohariteMg3Fe3+2(SiO4)3
9.AD.25KerimasiteCa3Zr2(SiO4)(Fe3+O4)2Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25ToturiteCa3Sn2(SiO4)(Fe3+O4)2Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25MomoiiteMn2+3V3+2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25EringaiteCa3Sc2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25IrinarassiteCa3Sn2(SiO4)(AlO4)2Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25Menzerite-(Y)(Y2Ca)Mg2(SiO4)3Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25EltyubyuiteCa12Fe3+10Si4O32Cl6Iso. 4 3m : I4 3d
9.AD.25BlythiteMn2+3Mn3+2[SiO4]3
9.AD.25SkiagiteFe2+3Fe3+2[SiO4]3
9.AD.25HutcheoniteCa3Ti2(SiO4)(AlO4)2Iso. m3m (4/m 3 2/m) : Ia3d
9.AD.25UM1984-37-SiO:CrMnMn2+3Cr3+2(SiO4)3
9.AD.25RubiniteCa3Ti3+2Si3O12Iso.
9.AD.25NikmelnikoviteCa12(Fe2+Fe3+3Al3◻)[SiO4]6[◻(OH)4]54Trig. 3 : R3
9.AD.30 vaAuerlitenear Th(Si,P)O4
9.AD.30CoffiniteU(SiO4) · nH2OTet. 4/mmm (4/m 2/m 2/m) : I41/amd
9.AD.30HafnonHfSiO4Tet. 4/mmm (4/m 2/m 2/m) : I41/amd
9.AD.30ThoriteTh(SiO4)Tet. 4/mmm (4/m 2/m 2/m) : I41/amd
9.AD.30ZirconZr(SiO4)Tet. 4/mmm (4/m 2/m 2/m) : I41/amd
9.AD.30Stetindite-(Ce)Ce(SiO4)Tet. 4/mmm (4/m 2/m 2/m) : I41/amd
9.AD.35HuttoniteThSiO4Mon. 2/m
9.AD.35Tombarthite-(Y)Y4(Si,H4)4O12-x(OH)4+2xMon.
9.AD.40EulytineBi4(SiO4)3Iso. 4 3m : I4 3d
9.AD.45ReiditeZrSiO4Tet. 4/m : I41/a
9.AD.55JeffbeniteMg3Al2Si3O12Tet. 4 2m : I4 2d

Other InformationHide

Notes:
Dissolves readily in the weakest acids, leaving a silica pseudomorph, gives no effervescence, and yields abundant evidence of calcium.
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 BredigiteHide

References for BredigiteHide

Reference List:

Localities for BredigiteHide

This map shows a selection of localities that have latitude and longitude coordinates recorded. Click on the symbol to view information about a locality. The symbol next to localities in the list can be used to jump to that position on the map.

Locality ListHide

- This locality has map coordinates listed. - This locality has estimated coordinates. ⓘ - 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). Struck out - Mineral was erroneously reported from this locality. Faded * - Never found at this locality but inferred to have existed at some point in the past (e.g. from pseudomorphs).

All localities listed without proper references should be considered as questionable.
Czech Republic
 
  • Ústí nad Labem Region
    • Teplice District
      • Zabrušany
Žáček et al. (2011)
Georgia
 
  • South Ossetia
    • Greater Caucasus Mountain Range
      • Kel’ volcanic area
        • Shadil-Khokh volcano
Galuskina et al. (2015) +1 other reference
Germany
 
  • Rhineland-Palatinate
    • Mayen-Koblenz
      • Mayen
        • Seekante
Skrzyńska et al. (2023)
      • Vordereifel
        • Ettringen
Blass et al. (1998)
Sharygin (2012)
in the collection of Christof Schäfer
    • Vulkaneifel
      • Daun
        • Üdersdorf
Blaß et al. (2014)
Israel
 
  • Southern District (HaDarom District)
Kahlenberg et al. (2019)
    • Tamar Regional Council
Sharygin et al. (2008)
Jordan
 
  • Amman Governorate
    • Transjordan Plateau
      • Daba-Siwaqa complex
        • Hashem region
          • Lisdan-Siwaga Fault
            • Siwaga
              • Tulul al Hammam
Sokol +9 other references
Middle East
 
Gross (1977)
Russia
 
  • Irkutsk Oblast
    • Narin-Kunta
Armbruster et al. (2011) +1 other reference
  • Krasnoyarsk Krai
    • Evenkiysky District
Sokol et al. (2019) +2 other references
UK
 
  • Northern Ireland
    • Co. Antrim
Mineralogical Society of America - ...
      • Larne
        • Glenoe
P. A. Sabine (1985)
Tilley et al. (1948) +2 other references
Tindle (2008)
    • Highland
      • Caol and Mallaig
        • Isle of Muck
American Mineralogist: 33: 786
      • Fort William and Ardnamurchan
        • Ardnamurchan
Tony Nikischer +1 other reference
USA
 
  • Texas
    • Brewster County
      • Christmas Mountains
Rocks & Minerals (1991)
    • Culberson County
      • Apache Peak area
Rocks & Minerals: 66 (3) +1 other reference
 
Mineral and/or Locality  
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