Trapiche garnet

Ca3Al2(SiO4)3

Where it forms, where it's found

Type locality
Unnamed Outcrop
  1. Hecun Village
  2. Weiping Township
  3. Chun'an County
  4. Hangzhou
  5. Zhejiang
  6. China

29.8283°, 118.8378°

1recorded occurrences
Source · OpenStreetMap

Physical

Transparency
Translucent
Colour
colorless
Density
3.59 g/cm³

Optical

Optical type
Isotropic
Surface relief
High
Principal indices
n 1.728
UV response
All garnet samples demonstrated inert behavior when exposed to both long-wave (LWUV, 365 nm) and short-wave (SWUV, 254 nm) ultraviolet irradiation.
Isotropy testPPL ↔ XPL diagnostic
PPL intrinsic colour; no change on stage rotation
XPL extinct at every orientation
Single index
n = 1.728

Chemical composition

Constituent elements
Mass composition breakdown
ElementAtoms At. mass g/mol Mass g/molMass share
8OOxygenOxygen1215.999191.988
42.62%
20CaCalciumCalcium340.078120.234
26.69%
14SiSiliconSilicon328.08584.255
18.71%
13AlAluminiumAluminium226.98253.964
11.98%
Total450.441100.00%

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

From Mindat formula

Literature, links & citation

Citations
  1. 2025Wang, Yingzhao; Zhao, Siyi; Zhao, Yi; Wang, Zisheng (2025) Trapiche Garnets in Chun’an, Zhejiang Province, China: New Constraints from Their Gemology, Geochemistry, and Geochronology. Crystals, 15 (3). 201 doi:10.3390/cryst15030201DOI: 10.3390/cryst15030201
Cite this entry
@misc{mineral2026,
  author    = {Mineral Index editorial board},
  title     = {Trapiche garnet — Mineral Index},
  year      = {2026},
  url       = {https://mineralindex.org/minerals/trapiche-garnet-471720},
  note      = {Accessed 2026-05-11}
}