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Dominant species
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Titanite
Titanite
Chemical
Formula
CaTiSiO5
Species
Silicates
Crystal
System
Monoclinic
Mohs
Scale
5
Specific
Gravity
3.48-3.60
Color
Colourless, brown, green, yellow, rose-red or black.
Streak
Reddish white
Luster
Adamantine, Resinous
Refractive
Index
n = 1.843 - 1.950 n = 1.870 - 2.034 n = 1.943 - 2.110
Diaphaneity
Transparent, Translucent
Cleavage
Distinct/GoodGood on
Fracture
Sub-conchoidal
Crystal Habit:Flattened wedge-shaped crystals, also massive
Geological Setting:Common accessory mineral in intermediate and felsic plutonic rocks, pegmatites, alpine veins. Also in some gneisses, schists and skarns.
Titanite, or sphene (from the Greek sphenos (σφην?), meaning wedge), is a calcium titanium nesosilicate mineral, CaTiSiO5. Trace impurities of iron and aluminium are typically present. Also commonly present are rare earth metals including cerium and yttrium; calcium may be partly replaced by thorium.

Nomenclature

The International Mineralogical Association Commission on New Minerals and Mineral Names (CNMMN) adopted the name titanite and 'discredited' the name sphene as of 1982, although commonly papers and books initially identify the mineral using both names. Sphene was the most commonly used name until the IMA decision,[citation needed] although both were well known. Some authorities think it is less confusing as the word is used to describe any chemical or crystal with oxidized titanium such as the rare earth titanate pyrochlores series and many of the minerals with the perovskite structure. The name sphene continues to be publishable in peer-reviewed scientific literature, e.g. a paper by Hayden et al. was published in early 2008 in the journal Contributions to Mineralogy and Petrology. Sphene persists as the informal name for titanite gemstones.

Physical properties

Titanite, which is named for its titanium content, occurs as translucent to transparent, reddish brown, gray, yellow, green, or red monoclinic crystals. These crystals are typically sphenoid in habit and are often twinned. Possessing a subadamantine tending to slightly resinous lustre, titanite has a hardness of 5.5 and a weak cleavage. Its specific gravity varies between 3.52 and 3.54. Titanite's refractive index is 1.885-1.990 to 1.915-2.050 with a strong birefringence of 0.105 to 0.135 (biaxial positive) ; under the microscope this leads to a distinctive high relief which combined with the common yellow-brown colour and lozenge-shape cross-section makes the mineral easy to identify. Transparent specimens are noted for their strong trichroism, the three colours presented being dependent on body colour. Owing to the quenching effect of iron, sphene exhibits no fluorescence under ultraviolet light. Some titanite has been found to be metamict, in consequence of structural damage due to radioactive decomposition of the often significant thorium content. Associated with this, under the petrological microscope one often sees pleochroic or metamict halos in minerals around a titanite crystal.

Occurrence

Titanite occurs as a common accessory mineral in intermediate and felsic igneous rocks and associated pegmatites. It also occurs in metamorphic rocks such as gneiss and schists and skarns. Source localities include: Pakistan; Italy; Russia; China; Brazil; Tujetsch, St. Gothard, Switzerland; Madagascar; Tyrol, Austria; Renfrew County, Ontario, Canada; Sanford, Maine, Gouverneur, Diana, Rossie, Fine, Pitcairn, Brewster, New York and California in the USA.

Uses

Titanite is a source of titanium dioxide, TiO2, used in pigments.

As a gemstone, titanite is usually some shade of chartreuse and is prized for its exceptional dispersive power (0.051, B to G interval) which exceeds that of diamond.[citation needed]