Found 41 Results For "
fluorspar caf2
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1. Basic Product Information Product Name: 92% Calcium Fluoride Fluorspar Powder, 92% Fluorspar Lump Chemical Formula: CaF CAS Number: 7789-75-5 EINECS No.: 232-188-7 Source: Self-operated fluorspar mines in Mongolia Available Forms & Custom Sizes Lump: 38mm, 515mm, 1030mm, 2050mm,3080mm customizable Powder: 100 mesh, 200 mesh, 325 mesh adjustable fineness Appearance: Off-white crystalline solid; hard irregular lumps, free-flowing fine powder 2. Quality Specifications
Product Description High-purity acid-grade fluorspar powder (CaF 97%) is a premium industrial raw material widely applied in fluorochemical synthesis, steel metallurgy, aluminum smelting, optical glass production and advanced ceramic glazing. Refined through advanced flotation technology and sourced from high-purity Mongolian fluorite ore, this 97% CaF fluorspar powder features ultra-low impurity content, stable chemical properties and consistent batch quality, supporting
Product Overview Our 85% CaF Fluorite (Fluorspar) is a practical and cost-effective industrial-grade mineral material tailored for general industrial applications. With stable 85% calcium fluoride content and strictly managed impurity levels, this fluorite is processed through professional crushing, washing and precise screening. It features stable chemical properties, uniform grain shape and low dust volume, delivering consistent batch stability. Ideal for bulk industrial
Fluorite, chemically calcium fluoride (CaF), is a typical halide mineral and the primary global feedstock for fluorine supply across fluorochemical, metallurgical, glass and ceramic industries. It forms endogenously from magmatic hydrothermal activity. During magma cooling, magma-separated hydrothermal fluids are rich in fluoride constituents. As these fluids migrate upward through rock fractures, gradual drops in temperature and pressure trigger a chemical reaction:
Metallurgical Grade Fluorspar CaF 80% | Mongolia Origin Fluorite Ore Product Overview Product Name: Metallurgical grade fluorspar / CaF 80% Chemical Composition: Calcium Fluoride (CaF) 80% Origin: Mongolia Metallurgical Grade Fluorspar with a minimum CaF content of 80% is sourced from premium fluorite deposits in Mongolia and supplied through Tianjin Port, China. The product offers stable chemical composition, controlled impurity levels, and reliable long-term
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 metallurgical fluxing, ceramic manufacturing, cement production and general
Product Overview Our 85% CaF Fluorite (Fluorspar) is a practical and cost-effective industrial-grade mineral material tailored for general industrial applications. With stable 85% calcium fluoride content and strictly managed impurity levels, this fluorite is processed through professional crushing, washing and precise screening. It features stable chemical properties, uniform grain shape and low dust volume, delivering consistent batch stability. Ideal for bulk industrial
Our high-purity Fluorite (Fluorspar) boasts a minimum CaF content of 97%, featuring superior chemical stability, high purity and low impurity composition. Strictly processed and screened, this premium-grade fluorite eliminates excessive harmful impurities, delivering reliable and consistent performance for industrial manufacturing and chemical production. It serves as a premium core raw material for hydrofluoric acid production, fluorine chemical processing, refrigerant
Premium Mongolian Fluorite Ore (CaF) High-Grade Raw Material for Global Fluorspar Supply Product Overview Fluorite (Calcium Fluoride, CaF) is a critical industrial mineral and the primary global source of fluorine. Widely used in the fluorochemical, metallurgical, glass, and ceramic industries, it is formed through magmatic-hydrothermal processes where fluoride-rich fluids precipitate and crystallize within host rock structures. Our company operates exclusive, self-owned