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Allophane is an amorphous to poorly crystalline hydrous aluminium silicate clay mineraloid. Its chemical formula is Al2O3·(SiO2)1.3-2·(2.5-3)H2O. Since it has short-range atomic order, it is a mineraloid, rather than a mineral, and can be identified by its distinctive infrared spectrum and its X-ray diffraction pattern. It was first described in 1816 in Gräfenthal, Thuringia, Germany. Allophane is a weathering or hydrothermal alteration product of volcanic glass and feldspars and sometimes has a composition similar to kaolinite but generally has a molar ratio of Al:Si = 2. It typically forms u

Key facts

Mineral.name
Allophane
Mineral.image
Allophane-352375.jpg
Mineral.category
Phyllosilicate minerals
Mineral.formula
Al2O3·(SiO2)1.3-2·(2.5-3)H2O
Mineral.IMAsymbol
Alp
Mineral.strunz
9.ED.20
Mineral.color
White, pale blue to sky-blue, green, brown, yellow
Mineral.habit
Crusts and masses
Mineral.system
Amorphous
Mineral.cleavage
None
Mineral.fracture
Conchoidal
Mineral.tenacity
Brittle
Mineral.mohs
3
Mineral.luster
Waxy to earthy
Mineral.streak
White
Mineral.diaphaneity
Transparent, translucent
Mineral.gravity
2.8

via Wikipedia infobox

Wikidata facts

Image
Allophane-277529.jpg
Show 6 more facts
Nickel-Strunz 9th edition (updated 2009)
9.ED.20
Commons category
Allophane
Nickel-Strunz '10th ed', review of (9th ed/ 2009 update)
9.ED.20
IMA Mineral Symbol
Alp
chemical formula
Al₂O₃(SiO₂)₁.₃-₂.₀·2.5-3.0H₂O
Strunz 8th edition (series ID, updated)
VIII/E.11 – Anhang
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Allophane is an amorphous to poorly crystalline hydrous aluminium silicate clay mineraloid. Its chemical formula is Al2O3·(SiO2)1.3-2·(2.5-3)H2O. Since it has short-range atomic order, it is a mineraloid, rather than a mineral, and can be identified by its distinctive infrared spectrum and its X-ray diffraction pattern. It was first described in 1816 in Gräfenthal, Thuringia, Germany. Allophane is a weathering or hydrothermal alteration product of volcanic glass and feldspars and sometimes has a composition similar to kaolinite but generally has a molar ratio of Al:Si = 2. It typically forms under mildly acidic to neutral pH (5–7). Its structure has been debated, but it is similar to clay minerals and is composed of curved alumina octahedral and silica tetrahedral layers. Transmission electron micrographs show that it is generally made up of aggregates of hollow spherules ~3–5 nm in diameter. Allophane can alter to form halloysite under resilicating aqueous conditions and can alter to form gibbsite under desilicating conditions. A copper-containing variety cupro-allophane has been reported.

It forms waxy botryoidal to crusty masses with color varying from white through green, blue, yellow, to brown. It has a Mohs hardness of 3 and a specific gravity of 1.0.

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