Mangani-obertiite

NaNa2(Mg3Mn3+Ti4+)Si8O22O2
IMA status
  • Approved
IMA symbol
Mob
IMA approved
1998
Also known as
  • IMA1998-046
  • Mangani-obertiiet

Where it forms, where it's found

Geological setting

Cavities in basaltic flows.

Type locality
Caspar quarry
  1. Ettringen
  2. Vordereifel
  3. Mayen-Koblenz
  4. Rhineland-Palatinate
  5. Germany

50.3525°, 7.2335°

6recorded occurrences
Source · OpenStreetMap

Physical

Hardness
123456789105/ 10 MOHS
  1. 1Talc
  2. 2Gypsum
  3. 3Calcite
  4. 4Fluorite
  5. 5Apatite
  6. 6Orthoclase
  7. 7Quartz
  8. 8Topaz
  9. 9Corundum
  10. 10Diamond
Transparency
Transparent
Colour
Pale pink
Streak
White
Tenacity
brittle
Cleavage
Perfect

(110)

Fracture
Conchoidal
Density
3.16 g/cm³

Optical

Optical type
Biaxial (-) · 2V measured = 81° · 2V calc = 93°
Refractive index
1.643 – 1.67
Surface relief
High
Principal indices
nα 1.643 · nβ 1.657 · nγ 1.67
Pleochroism
Weak

Pink to red-orange.

Dispersion
None visible
Extinction
X ∧ a = 2° (in β obtuse), Y ∧ c = 12° (in β obtuse), Z = b.
UV response
Not fluorescent.
Notes

Absorption: X ~ Y ~ Z. Type material: Large crystals (up to 10×40× 200 μm) always taper along their length and show anomalous optical properties; smaller crystals (< 100 μm long) are not tapered and show normal optical properties in transmitted light.

Michel-Lévy diagramhighlighted lineδ = 0.0270
Attainable Michel-Lévy rangeΔ ∈ [0, t·δmax]270 nm1st order
Δ = 0Δmax
Thin-section mosaic70 grains · random 3D orientations
PPLpleochroism per grain
XPLindependent extinctions · rotate the stage
Interference simulatorsingle grain · PPL ↔ XPL
PPLpleochroism only · colour blends on rotation
XPLinterference colour · extinct every 90°
Retardation270 nm
Order1st order
XPL colour

Crystallography

Crystal system
Monoclinic
Space group
C2/m
Cell parameters
a = 9.776 Å · b = 17.919 Å · c = 5.292 Å
Cell angles
β = 104.05 °
Ratio a:b:c
1 : 1.833 : 0.541
Unit cell volume
899.3 ų
Z
2
Morphology

Elongated blades and divergent masses.

Type-locality form

Acicular crystals. Pale-pink elongated blades and divergent aggregates.

Crystal structure

Chemical composition

Constituent elements
Mass composition breakdown
ElementAtoms At. mass g/mol Mass g/molMass share
8OOxygenOxygen2415.999383.976
45.00%
14SiSiliconSilicon828.085224.680
26.33%
12MgMagnesiumMagnesium324.30572.915
8.54%
11NaSodiumSodium322.99068.970
8.08%
25MnManganeseManganese154.93854.938
6.44%
22TiTitaniumTitanium147.86747.867
5.61%
Total853.346100.00%

Mass share = atoms × atomic mass ÷ molar mass × 100

From IMA formula

Synonyms

  • IMA1998-046
  • Mangani-obertiiet

In other languages

German
IMA 1998-046 · Mangani-Obertiit
Italian
ferri-obertiite · mangani-obertiite · obertiite

Classification

Strunz
10th ed.

9.DE.25

  • 9SilicatesClass
  • 9.DInosilicatesDivision
  • 9.DEInosilicates with 2-periodic double chains, Si4O11; ClinoamphibolesGroup
  • 9.DE.25Mangani-obertiiteSpecies

Group, growth & confusion

In the same group
2 members

Literature, links & citation

Citations
  1. 1992Oberti, Roberta, Ungaretti, Luciano, Cannillo, Elio, Hawthorne, Frank C. (1992) The behaviour of Ti in amphiboles: I. Four- and six-coordinate Ti in richterite. European Journal of Mineralogy, 4 (3) 425-440 doi:10.1127/ejm/4/3/0425DOI: 10.1127/ejm/4/3/0425
  2. 2000Hawthorne, Frank C., Cooper, Mark A., Grice, Joel D., Ottolini, Luisa (2000) A new anhydrous amphibole from the Eifel region, Germany: Description and crystal structure of obertiite, NaNa2(Mg3Fe3+Ti4+)Si8O22O2. American Mineralogist, 85 (1) 236-241 doi:10.2138/am-2000-0124 DOI: 10.2138/am-2000-0124
  3. 2012Oberti, R., Cannillo, E., Toscani, G. (2012) How to name amphiboles after the IMA2012 report: rules of thumb and a new PC program for monoclinic amphiboles. Periodico di Mineralogia: 81: 257-267.
  4. 2012Hawthorne, F. C., Oberti, R., Harlow, G. E., Maresch, W. V., Martin, R. F., Schumacher, J. C., Welch, M. D. (2012) Nomenclature of the amphibole supergroup. American Mineralogist, 97 (11) 2031-2048 doi:10.2138/am.2012.4276 DOI: 10.2138/am.2012.4276
Cite this entry
@misc{mineral2026,
  author    = {Mineral Index editorial board},
  title     = {Mangani-obertiite — Mineral Index},
  year      = {2026},
  url       = {https://mineralindex.org/minerals/mangani-obertiite-27572},
  note      = {Accessed 2026-05-11}
}