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fluorspar mineral
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Premium Mongolian Fluorspar Lumps Product Overview Fluorspar lumps are natural fluorite ore products processed into specific particle sizes for metallurgical and industrial applications. Sourced from selected Mongolian deposits, our fluorspar offers stable chemical composition, controlled impurity levels, and reliable year-round availability. Widely used as a fluxing agent in steelmaking, ferroalloy production, and non-ferrous metal smelting, fluorspar helps improve slag
4N High Purity Optical Grade Fluorspar, CaF 99% | For Precision Optical Components Product Introduction This is high-purity optical grade fluorspar with 4N purity and calcium fluoride content above 99%. It serves as a core raw material for manufacturing high-end optical glass, lenses, prisms, optical windows and other precision optical parts. Produced via multi-stage purification and sophisticated processing, the material features extremely low impurity content and uniform
High-Purity Fluorspar (CaF 97%) | Premium Mongolian Fluorite Ore Supplier Product Overview Product Name: Metallurgical grade fluorspar / CaF 97% Chemical Composition: Calcium Fluoride (CaF) 97% Origin: Mongolia Sourced from premium Mongolian fluorspar deposits, our CaF 97% fluorspar combines exceptional purity, low impurity levels, and consistent quality to meet the requirements of demanding industrial applications. With excellent chemical stability and superior
Metallurgical Grade Fluorspar / CaF 95% Product Overview Product Name: Metallurgical grade fluorspar / CaF 95% Chemical Composition: Calcium Fluoride (CaF) 95% Origin: Mongolia Our high-purity fluorspar ore (CaF 95%) is sourced from selected Mongolian mines and shipped through Tianjin Port, China. Featuring excellent chemical stability, high fluxing efficiency, and low impurity levels, it is the preferred choice for special steelmaking and high-grade welding electrode
High-Grade Mongolian Fluorspar (Fluorite, CaF) Bulk Supply for Fluorochemical, Metallurgy, Glass & Ceramics Fluorite (industrially named fluorspar) is a vital halide mineral composed of calcium fluoride (CaF). It stands as the worlds dominant raw feedstock for fluorine-based manufacturing, widely applied in fluorochemical production, metallurgical smelting, glass melting and ceramic firing. Fluorite forms via magmatic hydrothermal mineralization: as magma cools, fluoride
Mongolia Sourced High Purity Fluorite Ore | Calcium Fluoride CaF Raw Mineral for Global Industrial Manufacturing Fluorite, also widely traded as fluorspar, is an essential halide mineral consisting of calcium fluoride (CaF). As the leading raw material for all fluorine-related industries, it underpins production in fluorochemical manufacturing, metal smelting, glass melting and ceramic fabrication. Geologically, fluorite originates from magmatic hydrothermal mineralization.
Fluorite (Calcium Fluoride / CaF) Core Fluorine Raw Mineral Fluorite, also widely traded as fluorspar, is a vital halide mineral and the worlds dominant raw material for all fluorine-based manufacturing. Key downstream industries relying on high-quality fluorspar include fluorochemical production, steel metallurgy, glass smelting, enamel and ceramic manufacturing. Fluorite deposits form via magmatic hydrothermal geological processes. Hydrothermal fluids rich in fluorides
1. Basic Information Product Name: 90% Calcium Fluoride Fluorspar Powder / Fluorspar Lump Chemical Formula: CaF CAS No.: 7789-75-5 EINECS: 232-188-7 Origin: Self-owned fluorspar mines in Mongolia Available Forms & Custom Specifications Lump: 05mm, 510mm, 1020mm, 2050mm adjustable Powder: 100mesh, 200mesh, 325mesh customizable fineness Appearance: Off-white crystalline solid; hard irregular lumps, free-flowing fine dry powder 2. Quality Index Standard Test Item Standard
Premium Acid-Grade Fluorite (CaF 98%) Mongolian High-Purity Fluorspar Supplier What Is Fluorite? Fluorite (calcium fluoride, CaF) is a natural halide mineral and the worlds leading raw material for fluorine production. It is essential for fluorochemicals, metallurgy, glass, and ceramics. Fluorite forms through magmatic-hydrothermal processes: fluoride-rich fluids from cooling magma react with calcium from surrounding rocks, crystallizing into high-purity deposits. Why