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Jerrygibbsite

A valid IMA mineral species
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About JerrygibbsiteHide

00219320017271924214051.jpg
Gerald V. Gibbs
Formula:
Mn2+9(SiO4)4(OH)2
Colour:
Violet pink to pinkish violet
Lustre:
Sub-Vitreous, Resinous
Hardness:
Specific Gravity:
4.00
Crystal System:
Orthorhombic
Name:
Named by Pete J. Dunn, Donald R. Peacor, William B. Simmons, and Eric J. Essene in 1984 in honor of Gerald "Jerry" V. Gibbs (28 June 1928. Hannover, New Hampshire, USA - ) mineralogist and professor at Virginia Polytechnic Institute, Blacksburg, Virginia, USA. He was awarded the Roebling Medal for 1987.
Dimorph of:
Light to medium pinkish violet massive mineral with franklinite, willemite, and zincite. Not found with any calcite at the type location. Physically resembles leucophoenicite, sonolite, and other members of its group. It is not possible to sight identify this species. Each specimen requires verification. Numerous fakes are known. At the type locality, the mineral was found in very few specimens. X-ray diffraction may be used to identify the species in conjunction with a chemical analysis. Caution: The powder XRD pattern of jerrygibbsite shares many of the same reflections (d-spacings) with those of other humite-group minerals, but the calculated unit-cell dimensions are based on a super-cell relationship.


Unique IdentifiersHide

Mindat ID:
2092
Long-form identifier:
mindat:1:1:2092:9

IMA Classification of JerrygibbsiteHide

Classification of JerrygibbsiteHide

9.AF.70

9 : SILICATES (Germanates)
A : Nesosilicates
F : Nesosilicates with additional anions; cations in [4], [5] and/or only [6] coordination
52.3.2d.2

52 : NESOSILICATES Insular SiO4 Groups and O,OH,F,H2O
3 : Insular SiO4 Groups and O, OH, F, and H2O with cations in [6] coordination only
14.17.7

14 : Silicates not Containing Aluminum
17 : Silicates of Mn

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

Physical Properties of JerrygibbsiteHide

Sub-Vitreous, Resinous
Transparency:
Translucent
Comment:
Said to be vitreous on cleavage surfaces, but usually dull resinous.
Colour:
Violet pink to pinkish violet
Comment:
Not rosey pink as in leucophoenicite
Streak:
Pale pink
Hardness:
5½ on Mohs scale
Tenacity:
Brittle
Cleavage:
Imperfect/Fair
Parallel to {001}
Fracture:
Irregular/Uneven
Comment:
Cleavage is not obvious
Density:
4.00 g/cm3 (Measured)    4.07 g/cm3 (Calculated)

Optical Data of JerrygibbsiteHide

Type:
Biaxial (-)
RI values:
nα = 1.772 nβ = 1.783 nγ = 1.789
2V:
Measured: 72° , Calculated: 72°
Birefringence:
0.027
Max. Birefringence:
δ = 0.017
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. 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).

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 biaxial acute bisectrix (Bxa) interference figure - the conoscopic view for a grain cut perpendicular to the acute bisectrix, using this mineral's 2V. The two small white dots mark the melatopes - the points where the two optic axes emerge - and are shown only when they fall within the field of view. The coloured bands are isochromatics, and the dark bands are isogyres.

Rotate the stage: at 0°/90° the isogyres form a cross through the melatopes; at 45° they pull apart into curved hyperbolas. That splitting on rotation - absent in a uniaxial figure - is the standard diagnostic test for telling biaxial minerals from uniaxial ones. If 2V is large, the melatopes may fall outside the field of view, as they often do at the microscope too.
Dispersion:
r > v moderate
Optical Extinction:
Parallel. abc = XYZ
Pleochroism:
Non-pleochroic

Chemistry of JerrygibbsiteHide

Mindat Formula:
Mn2+9(SiO4)4(OH)2
Element Weights:
Element% weight
Mn55.135 %
O32.113 %
Si12.527 %
H0.225 %

Calculated from ideal end-member formula.
Mn
O
Si
H
Common Impurities:
Fe,Zn,Mg,Ca,H2O

Crystallography of JerrygibbsiteHide

Crystal System:
Orthorhombic
Class (H-M):
mmm(2/m2/m2/m) - Dipyramidal
Space Group:
Pbcn
Cell Parameters:
a = 28.17 Å, b = 4.85 Å, c = 10.70 Å
Ratio:
a:b:c = 5.808 : 1 : 2.206
Unit Cell V:
1,461.88 ų (Calculated from Unit Cell)
Z:
4
Morphology:
Massive.
Comment:
Setting is P21cn

Crystal StructureHide

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IDSpeciesReferenceLinkYearLocalityPressure (GPa)Temp (K)
0014840JerrygibbsiteKato T, Ito Y, Hashimoto N (1989) The crystal structures of sonolite and jerrygibbsite Neues Jahrbuch fur Mineralogie, Monatshefte 1989 410-4301989Franklin, New Jersey0293
CIF Raw Data - click here to close

X-Ray Powder DiffractionHide

Powder Diffraction Data:
d-spacingIntensity
5.25 Å(9)
4.40 Å(11)
4.25 Å(9)
3.74 Å(24)
3.56 Å(5)
3.48 Å(29)
3.21 Å(14)
2.869 Å(78)
2.813 Å(9)
2.752 Å(49)
2.702 Å(46)
2.661 Å(34)
2.631 Å(3)
2.557 Å(100)
2.416 Å(16)
2.377 Å(11)
2.362 Å(39)
2.342 Å(28)
2.225 Å(4)
2.118 Å(5)
1.806 Å(100)
1.730 Å(18)
1.692 Å(11)
1.661 Å(9)
1.567 Å(26)
1.550 Å(34)
1.458 Å(18)
Comments:
American Mineralogist (1984): 69: 546-552.

Geological EnvironmentHide

Paragenetic Mode(s):
Paragenetic ModeEarliest Age (Ga)
High-? alteration and/or metamorphism
32 : Ba/Mn/Pb/Zn deposits, including metamorphic deposits
Geological Setting:
Manganese silicate deposit where it was originally found as an indistinguishable mixture of several humite group species.

Type Occurrence of JerrygibbsiteHide

General Appearance of Type Material:
Massive to granular-appearing light to medium pink violet mineral.
Place of Conservation of Type Material:
Harvard University, Cambridge, Massachusetts, USA, 125030.
National Museum of Natural History (Smithsonian), Washington, D.C., USA, C3209, R18772, 149037.
The Natural History Museum, London, England 1983,236.
Geological Setting of Type Material:
Metamorphosed manganese-bearing zinc silicate and zinc oxide ore deposit.
Associated Minerals at Type Locality:

Synonyms of JerrygibbsiteHide

Other Language Names for JerrygibbsiteHide

Relationship of Jerrygibbsite to other SpeciesHide

Other Members of Leucophoenicite Subgroup:
LeucophoeniciteMn2+7(SiO4)3(OH)2Mon. 2/m : P21/b
RibbeiteMn2+5(SiO4)2(OH)2Orth. mmm(2/m2/m2/m)

Common AssociatesHide

Associations Based on Photo Data:
7 photos of Jerrygibbsite associated with FrankliniteZn2+Fe3+2O4
7 photos of Jerrygibbsite associated with ZinciteZnO
4 photos of Jerrygibbsite associated with WillemiteZn2SiO4

Related Minerals - Strunz-mindat GroupingHide

9.AF.ChegemiteCa7(SiO4)3(OH)2Orth. mmm(2/m2/m2/m)
9.AF.Jingwenite-(Y)YAlV4+(SiO4)O2(OH)2Mon. 2/m
9.AF.BarwooditeMn2+6Nb5+(SiO4)2O3(OH)3Trig. 3 : P3
9.AF.05SillimaniteAl2(SiO4)OOrth. mmm(2/m2/m2/m)
9.AF.05'Xenolite'Al10Si8O31
9.AF.10KanonaiteMn3+Al(SiO4)OOrth. mmm(2/m2/m2/m) : Pnnm
9.AF.10AndalusiteAl2(SiO4)OOrth. mmm(2/m2/m2/m) : Pnnm
9.AF.15KyaniteAl2(SiO4)OTric. 1 : P1
9.AF.20KrieseliteAl2(GeO4)F2Orth. mmm(2/m2/m2/m) : Pnma
9.AF.20MulliteAl4+2xSi2-2xO10-xOrth. mmm(2/m2/m2/m) : Pbam
9.AF.23BoromulliteAl9BSi2O19Orth. mm2 : Cmc21
9.AF.25YoderiteMg(Al,Fe3+)3(SiO4)2O(OH)Mon. 2/m : P21/m
9.AF.30ZincostauroliteZn2Al9Si4O23(OH)Mon. 2/m : B2/m
9.AF.30StauroliteFe2+2Al9Si4O23(OH)Mon. 2/m : B2/m
9.AF.30MagnesiostauroliteMg(Mg,Li)3(Al,Mg)18Si8O44(OH)4Mon. 2/m : B2/m
9.AF.35TopazAl2(SiO4)(F,OH)2Orth. mmm(2/m2/m2/m)
9.AF.40NorbergiteMg3(SiO4)F2Orth. mmm(2/m2/m2/m)
9.AF.45ChondroditeMg5(SiO4)2F2Mon. 2/m : P21/b
9.AF.45KumtyubeiteCa5(SiO4)2F2Mon. 2/m : P21/b
9.AF.45ReinhardbraunsiteCa5(SiO4)2(OH,F)2Mon. 2/m : P21/b
9.AF.45HydroxylchondroditeMg5(SiO4)2(OH)2Mon. 2/m : P21/b
9.AF.45AlleghanyiteMn2+5(SiO4)2(OH)2Mon. 2/m : P21/b
9.AF.50'Unnamed (Ca-analogue of Humite)'Ca7(SiO4)4F2Orth. mmm(2/m2/m2/m)
9.AF.50HumiteMg7(SiO4)3F2Orth. mmm(2/m2/m2/m) : Pnma
9.AF.50ManganhumiteMn2+7(SiO4)3(OH)2Orth. mmm(2/m2/m2/m)
9.AF.50'Unnamed (OH-analogue of humite)'Mg7(SiO4)3(OH)2Orth.
9.AF.50FluorchegemiteCa7(SiO4)3F2 Orth. mmm(2/m2/m2/m)
9.AF.55HydroxylclinohumiteMg9(SiO4)4(OH)2Mon. 2/m : P21/b
9.AF.55ClinohumiteMg9(SiO4)4F2Mon. 2/m : P21/b
9.AF.55SonoliteMn2+9(SiO4)4(OH)2Mon. 2/m : P21/b
9.AF.60LeucophoeniciteMn2+7(SiO4)3(OH)2Mon. 2/m : P21/b
9.AF.65RibbeiteMn2+5(SiO4)2(OH)2Orth. mmm(2/m2/m2/m)
9.AF.75FranciscaniteMn2+6(V5+,◻)2(SiO4)2(O,OH)6Trig. 3 : P3
9.AF.75ScorticoiteMn6(Sb,◻)Σ2(SiO4)2O3(OH)3Trig. 3 : P3
9.AF.75WeliniteMn2+6(W6+,Mg)2(SiO4)2(O,OH)6Trig. 3 : P3
9.AF.75ÖrebroiteMn2+3(Sb5+,Fe3+)(SiO4)(O,OH)3Trig. 3 : P3
9.AF.80EllenbergeriteMg6(Mg,Ti,Zr,◻)2(Al,Mg)6Si8O28(OH)10Hex. 6 : P63
9.AF.85MagnesiochloritoidMgAl2O(SiO4)(OH)2Mon. 2/m : B2/b
9.AF.85OttréliteMn2+Al2O(SiO4)(OH)2Mon.
9.AF.85ChloritoidFe2+Al2O(SiO4)(OH)2Mon. 2/m : B2/b
9.AF.90OlmiiteCaMn2+[SiO3(OH)](OH)Orth. mmm(2/m2/m2/m) : Pbca
9.AF.90PoldervaartiteCaCa[SiO3(OH)](OH)Orth. mmm(2/m2/m2/m) : Pbca
9.AF.95Pilawite-(Y)Ca2Y2Al4(SiO4)4O2(OH)2Mon. 2/m : P21/b

Fluorescence of JerrygibbsiteHide

Not fluorescent in UV.

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 JerrygibbsiteHide

References for JerrygibbsiteHide

Localities for JerrygibbsiteHide

Showing 4 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.
Namibia
 
  • Otjozondjupa Region
    • Otavi Constituency
      • Kombat
Peacor et al. (1987)
Romania
 
Hîrtopanu et al. (2003)
  • Maramureș County
    • Târgu Lăpuș
Udubasa et al. (1996) +3 other references
USA (TL)
 
  • New Jersey
    • Sussex County
      • Franklin
Dunn et al. (1984) +2 other references
 
and/or  
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