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Metallurgical Grade Fluorspar CaF 70% Product Overview Product Name: Metallurgical grade fluorspar / CaF 70% Chemical Composition: Calcium Fluoride (CaF) 70% Origin: Mongolia Metallurgical Grade Fluorspar (CaF 70%) is sourced from selected fluorite deposits in Mongolia and supplied through Tianjin Port for international markets. This economical-grade fluorspar is widely used as a flux in steelmaking, ironmaking, and various metallurgical processes. With stable
Metallurgical Fluorspar Lump CaF 75% Fluorite Mineral Granules Product Overview Metallurgical Grade Fluorspar Lumps with CaF content 75%, carefully processed for optimal performance in industrial applications. Specifications Product Name Metallurgical Grade Fluorite / Fluorspar Lumps Grade Metallurgical Use Main Component CaF 75% Features Carefully selected raw ore, strictly screened, low moisture and impurities, stable physical & chemical indicators Applications
High-Quality Mongolia Fluorspar (Fluorite) Bulk Supply | CaF Ore & Powder Fluorspar (chemically known as Calcium Fluoride, CaF 2 ) is the primary global feedstock for the fluorine supply chain. It is widely used across the fluorochemical, metallurgical (steelmaking & aluminum smelting), glass, and ceramic industries . Our enterprise owns and operates exclusive, premium fluorite mining bases in Mongolia. We deliver stable, large-scale, and high-purity fluorspar products
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.
Detailed Specifications & Features High-purity acid-grade fluorspar lumps with minimum 97% CaF are professional-grade mineral materials specially developed for fluorochemical processing and steel metallurgy industries. Sourced from high-quality Mongolian fluorite ore fields, the lumps feature solid texture, high compactness, low harmful impurities and stable chemical stability. The finished products adopt strict particle size classification, with standard lump size ranging
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
High Purity Acid Grade Fluorspar Powder CaF97% In Stock Acid grade fluorspar powder is a widely used standard high-purity fluorite raw material for hydrofluoric acid and fluorochemical industries. Raw ore is mined from our self-owned fluorspar mines in Mongolia, processed via closed-circuit grinding and six-stage intensive flotation to fully separate fluorite from quartz, calcite and other gangue minerals. Each batch undergoes full element lab testing, with actual test data
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