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Metazellerite

A valid IMA mineral species
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About MetazelleriteHide

04499920017271925152377.jpg
Howard Davis Zeller
Formula:
Ca(UO2)(CO3)2 · 3H2O
Colour:
Pale yellow
Lustre:
Earthy
Hardness:
2
Specific Gravity:
3.414 (Calculated)
Crystal System:
Orthorhombic
Name:
Named for being dehydrated zellerite. The root name is for Howard Davis Zeller (24 December 1922, Warren, Ohio, USA - 14 April 2009, Denver, Colorado, USA), geologist with the United States Geological Survey who discovered zellerite.
This page provides mineralogical data about Metazellerite.


Unique IdentifiersHide

Mindat ID:
2697
Long-form identifier:
mindat:1:1:2697:6

IMA Classification of MetazelleriteHide

Approved
IMA Formula:
Ca(U6+O2)(CO3)2·3H2O
Approval year:
1965
First published:
1966

Classification of MetazelleriteHide

5.EC.10

5 : CARBONATES (NITRATES)
E : Uranyl Carbonates
C : UO2:CO3 < 1:1 - 1:2
15.3.1.2

15 : HYDRATED NORMAL CARBONATES
3 : AmBn(XO3)p·xH2O, with (m+n):p = 1:1
11.11.6

11 : Carbonates
11 : Carbonates of Cr and U

Mineral SymbolsHide

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

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

Physical Properties of MetazelleriteHide

Earthy
Transparency:
Translucent
Comment:
Luster: Chalky
Colour:
Pale yellow
Hardness:
Density:
3.414 g/cm3 (Calculated)

Optical Data of MetazelleriteHide

Type:
Biaxial (-)
Dispersion:
none

Chemistry of MetazelleriteHide

Mindat Formula:
Ca(UO2)(CO3)2 · 3H2O
Element Weights:
Element% weight
U49.162 %
O36.350 %
Ca8.278 %
C4.961 %
H1.249 %

Calculated from ideal end-member formula.

Crystallography of MetazelleriteHide

Crystal System:
Orthorhombic
Cell Parameters:
a = 9.718(5) Å, b = 18.226(9) Å, c = 4.965(4) Å
Ratio:
a:b:c = 0.533 : 1 : 0.272
Unit Cell V:
879.40 ų (Calculated from Unit Cell)
Z:
4
Comment:
Point Group: mm2 or 2/m 2/m 2/m.; Space Group: P bn21 or P bnm

X-Ray Powder DiffractionHide

Powder Diffraction Data:
d-spacingIntensity
9.10 Å(100)
3.794 Å(50)
4.695 Å(36)
4.296 Å(36)
4.552 Å(18)
4.412 Å(18)
3.978 Å(18)

Geological EnvironmentHide

Paragenetic Mode(s):

Type Occurrence of MetazelleriteHide

Synonyms of MetazelleriteHide

Other Language Names for MetazelleriteHide

Common AssociatesHide

Associations Based on Photo Data:
2 photos of Metazellerite associated with ZelleriteCa(UO2)(CO3)2 · 5H2O
2 photos of Metazellerite associated with GypsumCaSO4 · 2H2O
2 photos of Metazellerite associated with VogliteCa2Cu(UO2)(CO3)4 · 6H2O
1 photo of Metazellerite associated with GoethiteFe3+O(OH)

Related Minerals - Strunz-mindat GroupingHide

5.EC.05FontaniteCa(UO2)3(CO3)4 · 3H2OMon. 2/m
5.EC.10ZelleriteCa(UO2)(CO3)2 · 5H2OOrth.
5.EC.15EwingiteMg8Ca8(UO2)24(CO3)30O4(OH)12(H2O)138Tet. 4/mmm(4/m2/m2/m) : I41/acd
5.EC.20MeyrowitziteCa(UO2)(CO3)2 · 5H2OMon. 2/m

RadioactivityHide

Radioactivity:
Element % Content Activity (Bq/kg) Radiation Type
Uranium (U) 49.1623% 12,290,575 α, β, γ
Thorium (Th) 0.0000% 0 α, β, γ
Potassium (K) 0.0000% 0 β, γ

For comparison:

  • Banana: ~15 Bq per fruit
  • Granite: 1,000–3,000 Bq/kg
  • EU exemption limit: 10,000 Bq/kg

Note: Risk is shown relative to daily recommended maximum exposure to non-background radiation of 1000 µSv/year. Note that natural background radiation averages around 2400 µSv/year so in reality these risks are probably extremely overstated! With infrequent handling and safe storage natural radioactive minerals do not usually pose much risk.

Interactive Simulator:

Note: The mass selector refers to the mass of radioactive mineral present, not the full specimen, also be aware that the matrix may also be radioactive, possibly more radioactive than this mineral!

Activity:

DistanceDose rateRisk
1 cm
10 cm
1 m

The external dose rate (D) from a radioactive mineral is estimated by summing the gamma radiation contributions from its Uranium, Thorium, and Potassium content, disregarding daughter-product which may have a significant effect in some cases (eg 'pitchblende'). This involves multiplying the activity (A, in Bq) of each element by its specific gamma ray constant (Γ), which accounts for its unique gamma emissions. The total unshielded dose at 1 cm is then scaled by the square of the distance (r, in cm) and multiplied by a shielding factor (μshield). This calculation provides a 'worst-case' or 'maximum risk' estimate because it assumes the sample is a point source and entirely neglects any self-shielding where radiation is absorbed within the mineral itself, meaning actual doses will typically be lower. The resulting dose rate (D) is expressed in microsieverts per hour (μSv/h).

D = ((AU × ΓU) + (ATh × ΓTh) + (AK × ΓK)) / r2 × μshield

Other InformationHide

Notes:
radioactive
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 MetazelleriteHide

References for MetazelleriteHide

Localities for MetazelleriteHide

Showing 5 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.
Canada
 
  • Northwest Territories
    • North Slave Region
      • Great Bear Lake
        • Port Radium District
Analysis: XRD Thomas Witzke
Czech Republic
 
  • Karlovy Vary Region
    • Karlovy Vary District
      • Jáchymov
Hloušek et al. (2002)
Norway
 
  • Buskerud
    • Krødsherad
Collected by (Sigurd Stordal)
USA
 
  • Utah
    • San Juan County
      • White Canyon Mining District
        • Fry Mesa
  • Wyoming
    • Fremont County
Amer.Min. (1966)
 
and/or  
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