single ore fluorite fluorspar white background

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Single Ore fluorite or fluorspar on white background. Royalty Free Stock Photo
Raw fluorite mineral stone isolated on white background. fluorspar is the mineral form of calcium fluoride. Royalty Free Stock Photo
Fluorite mineral fluorspar isolated on white background. Royalty Free Stock Photo
Isolated fluorspar mineral stone on white background. fluorite felsic igneous rock. Royalty Free Stock Photo
Fluorite felsic igneous rock isolated on white background. fluorspar mineral stone. Royalty Free Stock Photo
Raw fluorite mineral stone isolated on white background. fluorspar is the mineral form of calcium fluoride. Royalty Free Stock Photo
Isolated Fluorite rock on white background. fluorspar is the mineral form of calcium fluoride. Royalty Free Stock Photo
Single Ore fluorite or fluorspar on white background.
Fluorite mineral fluorspar isolated on white background. Royalty Free Stock Photo
Fluorite mineral fluorspar isolated on white background. Royalty Free Stock Photo
Isolated Fluorite rock on white background. fluorspar is the mineral form of calcium fluoride. Royalty Free Stock Photo
Raw fluorite mineral rock isolated on white background. fluorspar is the mineral form of calcium fluoride. Royalty Free Stock Photo
Raw fluorite mineral rock isolated on white background. fluorspar is the mineral form of calcium fluoride. Royalty Free Stock Photo
Fluorite mineral fluorspar isolated on white background. Royalty Free Stock Photo
Fluorite mineral fluorspar isolated on white background. Royalty Free Stock Photo
Fluorite also called fluorspar is the mineral form of calcium fluoride, CaF2. It belongs to the halide minerals. It crystallizes in isometric cubic habit, although octahedral and more complex isometric forms are not uncommon. The Mohs scale of mineral hardness, based on scratch hardness comparison, defines value 4 as Fluorite. Fluorite is a colorful mineral, both in visible and ultraviolet light, and the stone has ornamental and lapidary uses. Industrially, fluorite is used as a flux for smelting, and in the production of certain glasses and enamels. The purest grades of fluorite are a source of fluoride for hydrofluoric acid manufacture, which is the intermediate source of most fluorine-containing fine chemicals. Optically clear transparent fluorite lenses have low dispersion, so lenses made from it exhibit less chromatic aberration, making them valuable in microscopes and telescopes. Fluorite optics are also usable in the far-ultraviolet and mid-infrared ranges, where conventional glasses are too absorbent for use. It is associated with other lithium-bearing minerals like spodumene in pegmatite bodies. It is one of the major sources of the rare alkali metals rubidium and caesium. In 1861 Robert Bunsen and Gustav Kirchhoff extracted 150 kg 330 lb of lepidolite and yielded a few grams of rubidium salts for analysis, and therefore discovered the new element rubidium.


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