Lópezite

K2Cr2O7
IMA status
  • Approved
  • Grandfathered
IMA symbol
Lpz
Discovered
1937

Where it forms, where it's found

Geological setting

nitrate rock

Type locality
Huara
  1. Tamarugal Province
  2. Tarapacá
  3. Chile

-20.0000°, -69.7500°

4recorded occurrences
Source · OpenStreetMap

Physical

Hardness
123456789102.5/ 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
Orange-red · red
Streak
light yellow
Tenacity
brittle
Cleavage
Perfect

[010] perfect, [100] distinct, [001] distinct

Density
2.69 g/cm³

Optical

Optical type
Biaxial (+) · 2V measured = 50° · 2V calc = 56°
Refractive index
1.714 – 1.805
Surface relief
High
Principal indices
nα 1.714 · nβ 1.732 · nγ 1.805
Pleochroism
Visible

X = reddish yellow Y = yellow Z = greenish yellow

Dispersion
r > v, medium
UV response
Not fluorescent in UV
Michel-Lévy diagramhighlighted lineδ = 0.0910
Attainable Michel-Lévy rangeΔ ∈ [0, t·δmax]910 nm2nd 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°
Retardation910 nm
Order2nd order
XPL colour

Crystallography

Crystal system
Triclinic
Space group
#2
Cell parameters
a = 7.46 Å · b = 13.4 Å · c = 7.38 Å
Cell angles
α = 90.75 ° · β = 96.21 ° · γ = 97.96 °
Ratio a:b:c
1 : 1.796 : 0.989
Unit cell volume
722.41 ų
Z
4
Morphology

Ball-like aggregates (~ 1 mm diameter). Artificial crystals are short prismatic [001].

Twinning

Observed on artificial crystals.

Type-locality form

ball-like aggregates, to 1 mm.

Crystal structure

Chemical composition

Constituent elements
Mass composition breakdown
ElementAtoms At. mass g/mol Mass g/molMass share
8OOxygenOxygen715.999111.993
38.07%
24CrChromiumChromium251.996103.992
35.35%
19KPotassiumPotassium239.09878.196
26.58%
Total294.181100.00%

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

From IMA formula

In other languages

French
lopézite
German
Lópezit
Spanish
Lopezita
Italian
lópezite
Chinese
鉻鉀礦

Classification

Strunz
10th ed.

7.FD.05

  • 7SulfatesClass
  • 7.FChromatesDivision
  • 7.FDDichromatesGroup
  • 7.FD.05LópeziteSpecies
Dana
8th ed.

35.02.01.01

  • 35Anhydrous ChromatesClass
  • 35.02A2X2O7Type
  • 35.02.01— unnamed intermediate level —Group
  • 35.02.01.01LópeziteSpecies
CIM

27.2.2

  • 27Sulphites, Chromates, Molybdates and TungstatesClass
  • 27.2ChromatesGroup
  • 27.2.2LópeziteSpecies

Literature, links & citation

Citations
  1. Mémoires du Bureau de Recherches Géologiques et Minières: 8: 271-274.
  2. 1850Schabus (1850) Königliche Akademie der Wissenschaften, Vienna, Ber.: 5: 369 [artificial material].
  3. 1890Dufet, H. (1890) Sur la détermination de l'orientation optique et de la dispersion des axes dans les cristaux tricliniques. Application au bichromate de potasse. Bulletin de la Société française de Minéralogie: 13: 341-353 (346).
  4. 1908Groth, P. (1908) Chemische Krystallographie Vol. 2. Wilhem Engelmann.
  5. 1930Goßner, B.; Mußgnug, F. (1930) Über kristallographische Beziehungen zwischen Kaliumdichromat und Ammoniumdichromat. Zeitschrift für Kristallographie, Mineralogie und Petrographie, 72 (1-6). 476-481 doi:10.1524/zkri.1930.72.1.476DOI: 10.1524/zkri.1930.72.1.476
Cite this entry
@misc{mineral2026,
  author    = {Mineral Index editorial board},
  title     = {Lópezite — Mineral Index},
  year      = {2026},
  url       = {https://mineralindex.org/minerals/lopezite-2433},
  note      = {Accessed 2026-05-11}
}