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fluorspar lumps
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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
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Metallurgical Grade Fluorspar Lump CaF 70%-95% | Steelmaking Flux Product Overview We supply high-quality Metallurgical Grade Fluorspar Lump with CaF content ranging from 70% to 95%, widely used as a fluxing material in steelmaking, foundry, and non-ferrous metal industries. Our fluorspar is sourced from Mongolia-origin mineral resources and exported through Tianjin Port, China. We provide stable supply, consistent quality, and flexible delivery solutions for global
4N Optical Grade Fluorspar | CaF 99% for Precision Optics Product Introduction Our high-purity optical grade fluorspar has CaF content 99% (4N). It is a core raw material for manufacturing high-end optical lenses, prisms and optical instruments. With extremely low impurity levels, it features excellent light transmittance, low dispersion and thermal stability, effectively eliminating chromatic aberration and improving imaging clarity. Core Advantages Ultra-High 4N
Ceramic Grade Fluorspar Powder, 80%-93% CaF | Low-Arsenic Flux & Clarifier for Glazes & Bodies Product Introduction This ceramic grade fluorspar powder is specially designed for the ceramic industry, with CaF content stably controlled between 80% and 93%. It is an essential functional raw material for daily-use ceramics, building tiles, sanitaryware, and art ceramics. Made from carefully selected low-arsenic fluorspar ore through crushing, grinding, classification and
Optical Grade High-Purity Fluorspar, CaF 99% (4N) | Ultra-Low Impurity for Precision Optics Product Introduction This is 4N high-purity optical grade fluorspar with CaF content stably above 99%. It is a core base material for manufacturing high-end optical lenses, IR/UV optical windows, prisms and special optical instruments. Produced via multi-stage purification and precision crystallization, with arsenic (As) strictly controlled at 0.01%, the material features
Medium-high grade natural fluorspar lump with CaF content 95% to 97% is a mainstream metallurgical flux widely adopted by steel mills, welding rod factories and ferroalloy smelters across Europe. It features stable calcium fluoride content, strictly controlled silicon dioxide and carbonate impurities, outstanding high-temperature fluxing capacity. When added into smelting furnaces, it lowers slag melting point, optimizes slag fluidity and efficiently removes sulfur and
Ceramic Grade Fluorspar 80%-93% CaF | Low-Arsenic Flux for Green & High-Quality Ceramics Product Introduction Our ceramic-grade fluorspar is purpose-built for the ceramics industry, with CaF content stably maintained between 80% and 93%. It is an essential functional auxiliary material for sintering ceramic bodies and melting glazes, widely used in daily-use ceramics, building tiles, sanitaryware, and art ceramics. Produced from carefully selected low-arsenic fluorspar ore
Fluorite CaF 90% Purity 05mm Ceramic Fluorspar Lump Mineral Material Product Overview Our 90% purity Fluorite (Fluorspar) is a cost-effective industrial-grade mineral material with steady CaF content reaching 90% and well-controlled harmful impurities. Processed through standardized crushing, washing and precise screening, this fluorite features uniform texture, low powder rate and stable chemical properties. It is a versatile bulk raw material, widely used in metallurgica
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.