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Pyroaurite-2H

A structural variant of Pyroaurite
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About Pyroaurite-2HHide

Formula:
Mg6Fe3+2(OH)16(CO3) · 4H2O
Colour:
White, yellowish green, brownish green, yellowish white, brownish white
Lustre:
Vitreous, Waxy, Pearly
Hardness:
Specific Gravity:
2.08 - 2.14
Crystal System:
Hexagonal
Name:
Named for the structural relationship to pyroaurite. Originally named sjögrenite by Clifford Frondel in 1940 in honor of Stens Anders Hjalmar Sjögren (1856-1922), Professor of Mineralogy, University of Stockholm, Sweden.
A polytype of Pyroaurite

Originally named sjögrenite. Subsequently recognised as a polytype of pyroaurite and accordingly discredited as a species (Mills et al., 2012).


Unique IdentifiersHide

Mindat ID:
3678
Long-form identifier:
mindat:1:1:3678:4

Classification of Pyroaurite-2HHide

5.DA.45

5 : CARBONATES (NITRATES)
D : Carbonates with additional anions, with H2O
A : With medium-sized cations
16b.6.1.3

16b : HYDRATED CARBONATES CONTAINING HYDROXYL OR HALOGEN
6 : AmBn(XO3)pZqxH2O & with (m+n):p = 8:1
11.13.3

11 : Carbonates
13 : Carbonates of Fe

Physical Properties of Pyroaurite-2HHide

Vitreous, Waxy, Pearly
Transparency:
Transparent
Colour:
White, yellowish green, brownish green, yellowish white, brownish white
Hardness:
2½ on Mohs scale
Cleavage:
Perfect
{0001}
Density:
2.08 - 2.14 g/cm3 (Measured)    2.11 g/cm3 (Calculated)

Optical Data of Pyroaurite-2HHide

Type:
Uniaxial (-)
RI values:
nω = 1.573 nε = 1.55
Max. Birefringence:
δ = 0.023
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 µm 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.

Surface Relief:
Moderate

Chemistry of Pyroaurite-2HHide

Mindat Formula:
Mg6Fe3+2(OH)16(CO3) · 4H2O
Element Weights:
Element% weight
O55.612 %
Mg22.038 %
Fe16.879 %
H3.656 %
C1.815 %

Calculated from ideal end-member formula.

Crystallography of Pyroaurite-2HHide

Crystal System:
Hexagonal
Class (H-M):
6/mmm(6/m2/m2/m) - Dihexagonal Dipyramidal
Space Group:
P63/mmc
Cell Parameters:
a = 3.113(3) Å, c = 15.61(1) Å
Ratio:
a:c = 1 : 5.014
Unit Cell V:
131.01 ų (Calculated from Unit Cell)
Morphology:
Thin plates {0001}, with a hexagonal outline and striated and indistinct lateral faces.
Comment:
Z = 1/4

X-Ray Powder DiffractionHide

Powder Diffraction Data:
d-spacingIntensity
7.78 Å(10)
3.90 Å(6)
2.65 Å(4)
2.54 Å(5)
2.39 Å(3)
2.21 Å(5)
1.87 Å(5)

First Recorded Occurrence of Pyroaurite-2HHide

Synonyms of Pyroaurite-2HHide

Other Language Names for Pyroaurite-2HHide

German:Sjögrenit
Simplified Chinese:水碳铁镁石
Spanish:Sjögrenita
Traditional Chinese:水碳鐵鎂石

Common AssociatesHide

Associations Based on Photo Data:
6 photos of Pyroaurite-2H associated with HydromagnesiteMg5(CO3)4(OH)2 · 4H2O
6 photos of Pyroaurite-2H associated with MagnesiteMgCO3
5 photos of Pyroaurite-2H associated with TetraferriphlogopiteKMg3(Si3Fe3+)O10(OH)2
5 photos of Pyroaurite-2H associated with PyroauriteMg6Fe3+2(OH)16[CO3] · 4H2O
5 photos of Pyroaurite-2H associated with PokrovskiteMg2(CO3)(OH)2
3 photos of Pyroaurite-2H associated with CalciteCaCO3
2 photos of Pyroaurite-2H associated with MagnetiteFe2+Fe3+2O4
2 photos of Pyroaurite-2H associated with HeazlewooditeNi3S2
2 photos of Pyroaurite-2H associated with DesautelsiteMg6Mn3+2(OH)16[CO3] · 4H2O
2 photos of Pyroaurite-2H associated with KassiteCaTi2O4(OH)2

Related Minerals - Strunz-mindat GroupingHide

5.DA.AlexkhomyakoviteK6(Ca2Na)(CO3)5Cl · 6H2OHex. 6/mmm(6/m2/m2/m) : P63/mcm
5.DA.AmoraiteCa12Al6(OH)36(CO3)2(SO3) · 15H2O Tric. 1 : P1
5.DA.05DypingiteMg5(CO3)4(OH)2 · 5H2OMon. 2 : P21
5.DA.05'UM1986-10-CO:ClHMgMnZn (also called Mineral F, Dunn, 1995)'Mg5(Zn,Mn)3(CO3)2(OH,Cl)12 · H2O
5.DA.05'UM1987-01-CO:HMgS'Mg4(CO3)2(OH)4 · 6H2O ?Mon.
5.DA.05GiorgiositeMg5(CO3)4(OH)2 · 5-6H2O
5.DA.05HydromagnesiteMg5(CO3)4(OH)2 · 4H2OMon. 2/m : P21/b
5.DA.05WidgiemoolthaliteNi5(CO3)4(OH)2 · 5H2OMon. 2/m : P21/b
5.DA.10ArtiniteMg2(CO3)(OH)2 · 3H2OMon. 2/m : B2/m
5.DA.10ChlorartiniteMg2(CO3)(OH)Cl · 2H2OTrig. 3m : R3c
5.DA.10IndigiriteMg2Al2(CO3)4(OH)2 · 15H2O
5.DA.15ZaratiteNi3(CO3)(OH)4 · 4H2O ?Iso.
5.DA.15OtwayiteNi2(CO3)(OH)2 · H2OOrth.
5.DA.20KambaldaiteNaNi4(CO3)3(OH)3 · 3H2OHex. 6 : P63
5.DA.25CallaghaniteCu2Mg2(CO3)(OH)6 · 2H2OMon. 2/m : B2/b
5.DA.30Claraite(Cu,Zn)15(CO3)4(AsO4)2(SO4)(OH)14 · 7H2OTric. 1 : P1
5.DA.35HydroscarbroiteAl14(CO3)3(OH)36 · nH2OTric.
5.DA.35ScarbroiteAl5(CO3)(OH)13 · 5H2OTric.
5.DA.40KarchevskyiteMg18Al9(OH)54Sr2(CO3)9(H2O)6(H3O)5Trig.
5.DA.40'UM1987-05-OH:AlCMg'Mg4Al2(OH)12(CO3,SO4) · 3H2O
5.DA.40QuintiniteMg4Al2(OH)12(CO3) · 3H2OHex. 622 : P6322
5.DA.40CharmariteMn2+4Al2(OH)12[CO3] · 3H2OHex.
5.DA.40CaresiteFe2+4Al2(OH)12[CO3] · 3H2OTrig. 32 : P3112
5.DA.45'Hydrotalcite-2H'Mg6Al2(CO3)(OH)16 · 4H2OHex. 6/mmm(6/m2/m2/m) : P63/mmc
5.DA.45'Stichtite-2H'Mg6(Cr,Al)2(CO3)(OH)16 · 4H2OHex. 6/mmm(6/m2/m2/m) : P63/mmc
5.DA.45BrugnatelliteMg6Fe3+(CO3)(OH)13 · 4H2OHex.
5.DA.45ZaccagnaiteZn4Al2(OH)12[CO3] · 3H2OHex.
5.DA.45LiudongshengiteZn4Cr2(OH)12(CO3) · 3H2OTrig. 3m(32/m) : R3m
5.DA.45ChlormagaluminiteMg4Al2(OH)12Cl2 · 3H2OHex. 6/mmm(6/m2/m2/m) : P63/mcm
5.DA.50PyroauriteMg6Fe3+2(OH)16[CO3] · 4H2OTrig. 3m(32/m) : R3m
5.DA.50TakoviteNi6Al2(OH)16[CO3] · 4H2OTrig. 3m(32/m) : R3m
5.DA.50ReevesiteNi6Fe3+2(OH)16(CO3) · 4H2OTrig. 3m(32/m) : R3m
5.DA.50KaznakhtiteNi6Co3+2(CO3)(OH)16 · 4H2OTrig. 3 : R3
5.DA.50ComblainiteNi4Co2(OH)12[CO3] · 3H2OTrig.
5.DA.50Marioantofilliite[Cu4Al2(OH)12](CO3) · 3H2OMon. 2/m : B2/m
5.DA.50HydrotalciteMg6Al2(CO3)(OH)16 · 4H2OTrig. 3m(32/m) : R3m
5.DA.50StichtiteMg6Cr3+2(OH)16[CO3] · 4H2OTrig. 3m(32/m) : R3m
5.DA.50DesautelsiteMg6Mn3+2(OH)16[CO3] · 4H2OTrig. 3m(32/m)
5.DA.55CoalingiteMg10Fe3+2(OH)24[CO3] · 2H2OTrig. 3m(32/m) : R3m
5.DA.55Akopovaite Al4Li2(OH)12(CO3)(H2O)3Mon. 2/m : B2/m
5.DA.60ŠlikiteZn2Mg(CO3)2(OH)2 · 4H2OTric. 1 : P1
5.DA.65MarkliteCu5(CO3)2(OH)6 · 6H2OMon. 2/m : P21/b

Other InformationHide

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 Pyroaurite-2HHide

References for Pyroaurite-2HHide

Reference List:

Localities for Pyroaurite-2HHide

Showing 32 localities.

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.
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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.
Australia
 
  • Tasmania
    • Huon Valley municipality
      • Huon-Channel region
        • Weld river district
Bottrill R.S. & Baker (2008)
    • Waratah-Wynyard municipality
      • Corinna-Savage River district
Bottrill & Taheri +1 other reference
    • West Coast municipality
      • Trial Harbour district
Bottrill et al. (2008)
      • Zeehan mining district
        • Mt Heemskirk mineral field
Bottrill R.S. & Baker (2008)
Austria
 
  • Lower Austria
    • Melk District
      • Persenbeug-Gottsdorf
        • Loja
Löffler et al. (2011)
Canada
 
  • Québec
    • Chaudière-Appalaches
      • Les Appalaches RCM
        • Saint-Julien
Sabina (1967)
Germany
 
  • Bavaria
    • Upper Palatinate
      • Schwandorf District
        • Winklarn
Blaß et al. (1994) +1 other reference
  • Lower Saxony
    • Goslar District
      • Langelsheim
        • Grane Reservoir
Schnorrer-Köhler (1991)
Italy
 
  • Sardinia
    • South Sardinia Province
      • Teulada
        • Monte Corilla
Conti et al. (1970)
  • Trentino-Alto Adige/Südtirol
    • Trento Province
      • Ala
        • Pilcante
Bortolozzi et al. (2013)
  • Veneto
    • Vicenza Province
      • Cogollo del Cengio
Boscardin et al. (2011)
      • Laghi
Antonio Zordan collection
      • Posina
        • Borcola Pass
Boscardin et al. (2011)
        • Punta della Lucche
Boscardin et al. (2011)
Japan
 
  • Aichi Prefecture
    • Shinshiro city
Petrov (n.d.)
ITO et al. (1979) +1 other reference
Kazakhstan
 
  • North Kazakhstan Region
    • Aiyrtau District
      • Zlatogorsk
        • Zlatogorsk ultramafic intrusion
Pekov (1998)
Lebanon
 
  • South Governorate
    • Jezzine District
Kruszewski (2019)
Poland
 
  • Silesian Voivodeship
    • Wodzisław County
      • Wodzisław Śląski
Ł. Kruszewski (PXRD data)
Russia
 
  • Irkutsk Oblast
    • Nizhneilimsky District
      • Zheleznogorsk-Ilimsky
Mazurov et al. (2007)
  • Murmansk Oblast
    • Kovdorsky District
      • Kovdor Massif
maurice.strahlen.org (2003) +1 other reference
Sweden (FRL)
 
  • Värmland County
    • Filipstad
      • Långban Ore District
Aminoff (1931) +2 other references
Gatedal (n.d.)
      • Persberg ore district
Sandström et al. (2009)
Linden (2002)
Östra Värmlands Mineral Society
UK
 
  • Scotland
    • Shetland Islands
      • Unst
Dr Stephen Moreton collection.
USA
 
  • California
    • San Francisco County
      • San Francisco
Murdoch (1966) +2 other references
    • Sonoma County
      • Healdsburg
Pemberton (1983) +1 other reference
www.minresco.com/syst/s.htm
  • New Jersey
    • Sussex County
      • Ogdensburg
        • Sterling Hill
Leavens et al. (1981) +2 other references
 
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