Erzwiesite
A valid IMA mineral species
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About Erzwiesite
Formula:
Ag8Pb12Bi16S40
Colour:
black
Hardness:
3 - 3½
Specific Gravity:
7.075 (Calculated)
Crystal System:
Orthorhombic
Member of:
Name:
For the district in Austria where the studied samples were collected.
Lillianite homologous series
Unique Identifiers
Mindat ID:
43602
Long-form identifier:
mindat:1:1:43602:5
IMA Classification of Erzwiesite
Approved
IMA Formula:
Ag1+8Pb2+12Bi3+16S2-40
Approval year:
2012
Classification of Erzwiesite
2.JB.40a
2 : SULFIDES and SULFOSALTS (sulfides, selenides, tellurides; arsenides, antimonides, bismuthides; sulfarsenites, sulfantimonites, sulfbismuthites, etc.)
J : Sulfosalts of PbS archetype
B : Galena derivatives, with Pb
2 : SULFIDES and SULFOSALTS (sulfides, selenides, tellurides; arsenides, antimonides, bismuthides; sulfarsenites, sulfantimonites, sulfbismuthites, etc.)
J : Sulfosalts of PbS archetype
B : Galena derivatives, with Pb
Mineral Symbols
As of 2021 there are now IMA–CNMNC approved mineral symbols (abbreviations) for each mineral species, useful for tables and diagrams.
| Symbol | Source | Reference for Standard |
|---|---|---|
| Ezw | IMA–CNMNC | Warr, L.N. (2021). IMA–CNMNC approved mineral symbols. Mineralogical Magazine, 85(3), 291-320. doi:10.1180/mgm.2021.43 |
Physical Properties of Erzwiesite
Transparency:
Opaque
Colour:
Black
Streak:
Black
Hardness:
3 - 3½ on Mohs scale
Hardness:
VHN50=195 - 224 kg/mm2 - Vickers
Tenacity:
Brittle
Cleavage:
None Observed
Fracture:
Irregular/Uneven
Density:
7.075 g/cm3 (Calculated)
Optical Data of Erzwiesite
Anisotropism:
rotation tints change from pale brown to pale bluish grey to dark brown.
Bireflectance:
weak to distinct (in oil).
Reflectivity:
| Wavelength | R1 (%) | R2 (%) |
|---|---|---|
| 470nm | 44.5% | 47.6% |
| 546nm | 41.9% | 45.0% |
| 589nm | 41.5% | 44.5% |
| 650nm | 40.4% | 43.6% |
Graph shows reflectance levels at different wavelengths (in nm). Peak reflectance is 47.6%.
R1 shown in black, R2 shown in red
Colour in reflected light:
greyish white
Pleochroism:
Visible
Comments:
Pleochroism is distinct white to dark grey
Chemistry of Erzwiesite
Mindat Formula:
Ag8Pb12Bi16S40
Element Weights:
Elements listed:
Crystallography of Erzwiesite
Crystal System:
Orthorhombic
Class (H-M):
mmm(2/m2/m2/m) - Dipyramidal
Space Group:
Cmcm
Setting:
Cmcm
Cell Parameters:
a = 4.085(5) Å, b = 13.462(15) Å, c = 33.92(4) Å
Ratio:
a:b:c = 0.303 : 1 : 2.52
Unit Cell V:
1,865.34 ų (Calculated from Unit Cell)
Z:
4
Twinning:
not observed
X-Ray Powder Diffraction
Powder Diffraction Data:
| d-spacing | Intensity |
|---|---|
| 3.588 Å | (64) |
| 3.387 Å | (98) |
| 3.349 Å | (38) |
| 3.288 Å | (86) |
| 2.919 Å | (100) |
| 2.846 Å | (99) |
| 2.043 Å | (39) |
| 2.039 Å | (44) |
Reference:
Comments:
From Type Description.
Geological Environment
Paragenetic Mode(s):
| Paragenetic Mode | Earliest Age (Ga) |
|---|---|
| High-? alteration and/or metamorphism | |
| 33 : Minerals deposited by hydrothermal metal-rich fluids (see also [#12]) |
Type Occurrence of Erzwiesite
General Appearance of Type Material:
small black, irregular needle-like crystals mixed with galena and heyrovskýite in a quartz matrix
Place of Conservation of Type Material:
Department of Materials Engineering and Physics, University of Salzburg, Salzburg, Austria, specimen number 15009
Geological Setting of Type Material:
Unnamed prospect in the Erzwies mining district, Gastein Valley, Salzburg Province, Austria (47º5’40’’N 13º2’15’’E)
In hydrothermal vein type Ag-Pb-Zn deposits.
The vein type mineralisation of the epi- to meso-thermal type was formed at the retrograde stage of the Alpine metamorphism at temperatures at and below 300 °C.
In hydrothermal vein type Ag-Pb-Zn deposits.
The vein type mineralisation of the epi- to meso-thermal type was formed at the retrograde stage of the Alpine metamorphism at temperatures at and below 300 °C.
Associated Minerals at Type Locality:
Synonyms of Erzwiesite
Other Language Names for Erzwiesite
Dutch:Erzwiesiet
German:Erzwiesit
Relationship of Erzwiesite to other Species
Member of:
Other Members of Lillianite Homologous Series:
| Andreadiniite | CuHgAg7Pb7Sb24S48 | Mon. 2/m : P21/b |
| Arsenquatrandorite | Ag17.6Pb12.8Sb38.1As11.5S96 | Mon. 2/m : P21/b |
| Aschamalmite | Pb6-3xBi2+xS9 | Mon. 2/m : B2/m |
| Baiamareite | Ag4Pb12Fe4Sb20S48 | Mon. 2/m |
| Brusnitsynite | Mn3CuPbAs3Sb2S12 | Mon. 2/m : P21/b |
| Clino-oscarkempffite | Ag15Pb6Sb21Bi18S72 | Mon. 2/m : P21/b |
| Eskimoite | Ag7Pb10Bi15S36 | Mon. |
| Fizélyite | Ag5Pb14Sb21S48 | Mon. 2/m |
| Gustavite | AgPbBi3S6 | Orth. mmm(2/m2/m2/m) |
| Heyrovskýite | Pb6Bi2S9 | Orth. mmm(2/m2/m2/m) : Cccm |
| Holubite | Ag3Pb6(Sb8Bi3)S24 | Mon. 2/m |
| Jasrouxite | Ag16Pb4(Sb25As15)S72 | Tric. 1 : P1 |
| Lasmanisite | Ag12Pb13Mn11Sb44S96 | Orth. 222 : P212121 |
| Lazerckerite | Ag3.75Pb4.50(Sb7.75Bi4)S24 | Mon. 2/m : P21/b |
| Lillianite | Pb3-2xAgxBi2+xS6 | Orth. mmm(2/m2/m2/m) |
| Menchettiite | AgPb2.40Mn1.60Sb3As2S12 | Mon. 2/m : P21/b |
| Oscarkempffite | Ag10Pb4(Sb17Bi9)S48 | Orth. mm2 |
| Ourayite | Ag3Pb4Bi5S13 | Orth. |
| Oyonite | Ag3Mn2Pb4Sb7As4S24 | Mon. 2/m |
| Quatrandorite | AgPbSb3S6 | Mon. 2/m : P21/b |
| Ramdohrite | Pb5.9Fe0.1Mn0.1In0.1Cd0.2Ag2.8Sb10.8S24 | Mon. 2/m |
| Roshchinite | Ag19Pb10Sb51S96 | Orth. mmm(2/m2/m2/m) : Pnma |
| 'Schirmerite' | PbAgBi3S6 - Pb3Ag1.5Bi3.5S9 | Orth. |
| Senandorite | AgPbSb3S6 | Orth. mm2 : Pmn21 |
| Staročeskéite | Ag0.70Pb1.60(Bi1.35Sb1.35)Σ2.70S6 | Orth. mmm(2/m2/m2/m) : Cmcm |
| Tarutinoite | Ag3Pb7Bi7S19 | Mon. 2/m : B2/m |
| Terrywallaceite | AgPb(Sb,Bi)3S6 | Mon. 2/m : P21/b |
| Treasurite | Ag7Pb6Bi15S32 | Mon. |
| Uchucchacuaite | AgMnPb3Sb5S12 | Orth. mmm(2/m2/m2/m) : Pmmm |
| Ustarasite | Pb(Bi,Sb)6S10 (?) | |
| Vikingite | Ag5Pb8Bi13S30 | Mon. 2/m : B2/m |
| Xilingolite | Pb3Bi2S6 | Mon. |
Common Associates
Associations Based on Photo Data:
| 32 photos of Erzwiesite associated with Quartz | SiO2 |
| 29 photos of Erzwiesite associated with Stannite | Cu2FeSnS4 |
| 29 photos of Erzwiesite associated with Sphalerite | ZnS |
| 11 photos of Erzwiesite associated with Arsenopyrite | FeAsS |
| 6 photos of Erzwiesite associated with Covellite | CuS |
| 4 photos of Erzwiesite associated with Chalcopyrite | CuFeS2 |
| 4 photos of Erzwiesite associated with Cassiterite | SnO2 |
| 3 photos of Erzwiesite associated with Galena | PbS |
| 2 photos of Erzwiesite associated with Pyrrhotite | Fe1-xS |
Related Minerals - Strunz-mindat Grouping
| 2.JB. | Clino-oscarkempffite | Ag15Pb6Sb21Bi18S72 |
| 2.JB. | Arsenquatrandorite | Ag17.6Pb12.8Sb38.1As11.5S96 |
| 2.JB. | Ginelfite | Ag2(Ag0.5Fe)TlPb23.5(Sb,As)33.5S76 |
| 2.JB. | Andreadiniite | CuHgAg7Pb7Sb24S48 |
| 2.JB. | Chukotkaite | AgPb7Sb5S15 |
| 2.JB. | Selenojunoite | Cu2Pb3Bi8Se16 |
| 2.JB. | Lechnerite | Ag10Cu4HgPb33Sb58S128 |
| 2.JB. | Cuprosenandorite | Ag16Cu8Pb24Sb72S144 |
| 2.JB. | Morleyite | Ag2CuPb25Sb24As4S68.5 |
| 2.JB. | Lazerckerite | Ag3.75Pb4.50(Sb7.75Bi4)S24 |
| 2.JB. | Lasmanisite | Ag12Pb13Mn11Sb44S96 |
| 2.JB. | Montpelvouxite | AgPb16Sb27As18S84 |
| 2.JB. | Senandorite | AgPbSb3S6 |
| 2.JB. | Oscarkempffite | Ag10Pb4(Sb17Bi9)S48 |
| 2.JB.05 | Diaphorite | Ag3Pb2Sb3S8 |
| 2.JB.10 | Cosalite | Pb2Bi2S5 |
| 2.JB.15 | Marrite | AgPbAsS3 |
| 2.JB.15 | Freieslebenite | AgPbSbS3 |
| 2.JB.20 | Cannizzarite | Pb48Bi56S132 |
| 2.JB.20 | Wittite | Pb9Bi12(S,Se)27 |
| 2.JB.25j | Rouxelite | Cu2HgPb23Sb27S65.5 |
| 2.JB.25i | Neyite | Ag2Cu6Pb25Bi26S68 |
| 2.JB.25a | Junoite | Cu2Pb3Bi8(S,Se)16 |
| 2.JB.25f | Ángelaite | Cu2AgPbBiS4 |
| 2.JB.25e | Galenobismutite | PbBi2S4 |
| 2.JB.25c | Nordströmite | CuPb3Bi7(Se4S10) |
| 2.JB.25i | Cuproneyite | Cu7Pb27Bi25S68 |
| 2.JB.25g | Nuffieldite | Cu1.4Pb2.4Bi2.4Sb0.2S7 |
| 2.JB.25h | Weibullite | Pb5Bi8Se7S11 |
| 2.JB.25d | Proudite | CuPb7.5Bi9.33(S,Se)22 |
| 2.JB.25b | Felbertalite | Cu2Pb6Bi8S19 |
| 2.JB.30a | Jordanite | Pb14As6S23 |
| 2.JB.30a | Geocronite | Pb14Sb6S23 |
| 2.JB.30a | Arsenmarcobaldiite | Pb12(As3.2Sb2.8)Σ6S21 |
| 2.JB.30b | Kirkiite | Pb10Bi3As3S19 |
| 2.JB.30c | Tsugaruite | Pb28As15S50Cl |
| 2.JB.30a | Marcobaldiite | Pb12(Sb3As2Bi)Σ6S21 |
| 2.JB.35d | Pellouxite | (Cu,Ag)Pb10Sb12S27O(Cl,S)0.6 |
| 2.JB.35e | Chovanite | Pb15-2xSb14+2xS36Ox (x ~ 0.2) |
| 2.JB.35a | Zinkenite | Pb9Sb22S42 |
| 2.JB.35c | Pillaite | Pb9Sb10S23ClO0.5 |
| 2.JB.35b | Scainiite | Pb14Sb30S54O5 |
| 2.JB.35f | Tubulite | Ag2Pb22Sb20S53 |
| 2.JB.40a | Fizélyite | Ag5Pb14Sb21S48 |
| 2.JB.40a | Ramdohrite | Pb5.9Fe0.1Mn0.1In0.1Cd0.2Ag2.8Sb10.8S24 |
| 2.JB.40e | Ustarasite | Pb(Bi,Sb)6S10 (?) |
| 2.JB.40a | 'Bursaite' | Pb5Bi4S11 (?) |
| 2.JB.40 | 'UM1988-05-S:AgBiCuHgPb' | (Hg,Ag,Cu,Pb)5Pb5Bi11S27 |
| 2.JB.40 | 'UM1988-06-S:AgBiCuHgPb' | (Pb,Hg)12(Cu,Ag)3(Bi,Sb)10(S,Te)27 |
| 2.JB.40a | Terrywallaceite | AgPb(Sb,Bi)3S6 |
| 2.JB.40a | Jasrouxite | Ag16Pb4(Sb25As15)S72 |
| 2.JB.40a | Tarutinoite | Ag3Pb7Bi7S19 |
| 2.JB.40a | Oyonite | Ag3Mn2Pb4Sb7As4S24 |
| 2.JB.40b | Heyrovskýite | Pb6Bi2S9 |
| 2.JB.40a | Quatrandorite | AgPbSb3S6 |
| 2.JB.40a | Vikingite | Ag5Pb8Bi13S30 |
| 2.JB.40a | Lillianite | Pb3-2xAgxBi2+xS6 |
| 2.JB.40b | Baiamareite | Ag4Pb12Fe4Sb20S48 |
| 2.JB.40a | Staročeskéite | Ag0.70Pb1.60(Bi1.35Sb1.35)Σ2.70S6 |
| 2.JB.40a | Roshchinite | Ag19Pb10Sb51S96 |
| 2.JB.40b | Aschamalmite | Pb6-3xBi2+xS9 |
| 2.JB.40b | Eskimoite | Ag7Pb10Bi15S36 |
| 2.JB.40a | Menchettiite | AgPb2.40Mn1.60Sb3As2S12 |
| 2.JB.40a | Holubite | Ag3Pb6(Sb8Bi3)S24 |
| 2.JB.40a | Brusnitsynite | Mn3CuPbAs3Sb2S12 |
| 2.JB.40a | Treasurite | Ag7Pb6Bi15S32 |
| 2.JB.40c | Ourayite | Ag3Pb4Bi5S13 |
| 2.JB.40a | Uchucchacuaite | AgMnPb3Sb5S12 |
| 2.JB.40d | 'Schirmerite' | PbAgBi3S6 - Pb3Ag1.5Bi3.5S9 |
| 2.JB.40a | Xilingolite | Pb3Bi2S6 |
| 2.JB.40a | Gustavite | AgPbBi3S6 |
| 2.JB.55 | Gratonite | Pb9As4S15 |
| 2.JB.60 | Marrucciite | Hg3Pb16Sb18S46 |
| 2.JB.65 | Vurroite | Pb20Sn2(Bi,As)22S54Cl6 |
| 2.JB.65 | Tazieffite | Pb20Cd2(As,Bi)22S50Cl10 |
| 2.JB.70 | Daliranite | PbHgAs2S5 |
Fluorescence of Erzwiesite
none
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 Erzwiesite
mindat.org URL:
https://www.mindat.org/min-43602.html
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References for Erzwiesite
Reference List:
Topa, D., Makovicky, E., Schimper, H. J., Dittrich, H. (2010) THE CRYSTAL STRUCTURE OF A SYNTHETIC ORTHORHOMBIC N = 8 MEMBER OF THE LILLIANITE HOMOLOGOUS SERIES. The Canadian Mineralogist, 48 (5) 1127-1135 doi:10.3749/canmin.48.5.1127
Williams, P. A., Hatert, F., Pasero, M., Mills, S. J. (2013) IMA Commission on New Minerals, Nomenclature and Classification. CNMNC Newsletter No. 15. Mineralogical Magazine, 77 (1) 1-12 doi:10.1180/minmag.2013.077.1.01
Localities for Erzwiesite
Showing 5 localities.
Locality List
- 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).
All localities listed without proper references should be considered as questionable.
Austria (TL) | |
| Williams et al. (2013) +1 other reference |
| Topa et al. (2026) |
Czech Republic | |
| Pažout (2017) |
| Dr. Günter Grundmann collection |
Slovakia | |
| Mikuš et al. (2026) |
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Kaňk, Kutná Hora, Kutná Hora District, Central Bohemian Region, Czech Republic