Tainiolite

KLiMg2Si4O10F2
IMA status
  • Approved
  • Grandfathered
IMA symbol
Tai
Also known as
  • Glimmaraktiga Listor
  • Taeniolita
  • Taeniolite
  • +2 more

Where it forms, where it's found

Geological setting

nepheline syenite pegmatites.

Type locality
Narssârssuk pegmatite
  1. Narsaarsuk Plateau
  2. Igaliku
  3. Kujalleq
  4. Greenland

61.0331°, -45.3778°

46recorded occurrences
Source · OpenStreetMap

Physical

Hardness
123456789102.5 – 3.5/ 10 MOHS
  1. 1Talc
  2. 2Gypsum
  3. 3Calcite
  4. 4Fluorite
  5. 5Apatite
  6. 6Orthoclase
  7. 7Quartz
  8. 8Topaz
  9. 9Corundum
  10. 10Diamond
Lustre
Vitreous
Transparency
Transparent
Colour
Colourless · brownish green
Tenacity
flexible
Cleavage
Perfect

(001)

Density
2.83 g/cm³

Optical

Optical type
Biaxial (-) · 2V measured = 2 – 5°
Refractive index
1.522 – 1.57
Surface relief
Moderate
Principal indices
nα 1.522 – 1.541 · nβ 1.553 – 1.570 · nγ 1.553 – 1.570
Pleochroism
Visible

X = colorless to pale greenish brown; Y = Z = yellowish to reddish brown.

Dispersion
r > v or r < v
Michel-Lévy diagramhighlighted lineδ = 0.0300
Attainable Michel-Lévy rangeΔ ∈ [0, t·δmax]300 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°
Retardation300 nm
Order1st order
XPL colour

Crystallography

Crystal system
Monoclinic
Space group
C2/m
Cell parameters
a = 5.254(2) Å · b = 9.110(4) Å · c = 10.187(2) Å
Cell angles
β = 99.85(4) °
Ratio a:b:c
1 : 1.734 : 1.939
Z
2
Twinning

Penetration trillings rare

Crystal structure

Chemical composition

Constituent elements
Mass composition breakdown
ElementAtoms At. mass g/mol Mass g/molMass share
8OOxygenOxygen1015.999159.990
39.51%
14SiSiliconSilicon428.085112.340
27.74%
12MgMagnesiumMagnesium224.30548.610
12.00%
19KPotassiumPotassium139.09839.098
9.66%
9FFluorineFluorine218.99837.996
9.38%
3LiLithiumLithium16.9406.940
1.71%
Total404.974100.00%

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

From IMA formula

Synonyms

  • Glimmaraktiga Listor
  • Taeniolita
  • Taeniolite
  • Taeniolith
  • Tainiolit

In other languages

German
Taeniolith · Tainiolith
Italian
Tainiolite
Russian
тайниолит

Classification

Strunz
10th ed.

9.EC.15

  • 9SilicatesClass
  • 9.EPhyllosilicatesDivision
  • 9.ECPhyllosilicates with mica sheets, composed of tetrahedral and octahedral netsGroup
  • 9.EC.15TainioliteSpecies
Dana
8th ed.

71.02.2b.09

  • 71Phyllosilicates Sheets of Six-membered RingsClass
  • 71.02Sheets of 6-membered rings with 2:1 layersType
  • 71.02.2b— unnamed intermediate level —Group
  • 71.02.2b.09TainioliteSpecies

Group, growth & confusion

Literature, links & citation

Citations
  1. 1898Flink, Gust. (1898) Berättelse om en Mineralogsik Resa i Syd-Grönland sommaren 1897. [Narrative of a Mineralogical Journey in South Greenland in the summer of 1897]. Meddelelser om Grønland, 14. 221-262 doi:10.7146/mog.v14.139846DOI: 10.7146/mog.v14.139846
  2. 1901Flink, G. (1901) Part I: On the Minerals from Narsarsuk on the Firth of Tunugdliarfik in Southern Greenland. Meddelelser om Grønland, 24. 7-180
  3. 1938Miser, H. D., Stevens, R. E. (1938) Taeniolite from Magnet Cove, Arkansas. American Mineralogist, 23 (2) 104-110
  4. 1977Toraya, H.; Iwai, S.; Marumo, F.; Hirao, M. (1977) The crystal structure of taeniolite, KLiMg2Si4O10F2. Zeitschrift für Kristallographie, 146 (1-3). 73-83 doi:10.1524/zkri.1977.146.1-3.73 DOI: 10.1524/zkri.1977.146.1-3.73
  5. 1984Zapiski Vserossiyskogo Mineralogicheskogo Obshchestva (1984): 113: 72.
Cite this entry
@misc{mineral2026,
  author    = {Mineral Index editorial board},
  title     = {Tainiolite — Mineral Index},
  year      = {2026},
  url       = {https://mineralindex.org/minerals/tainiolite-7325},
  note      = {Accessed 2026-05-11}
}