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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 85% 85% Caf2 Fluoride Fluorite Lumps This medium-high grade natural fluorite comes in solid block form with calcium fluoride content no less than 85%. The product features complete crystal structure, uniform lump size, and reliable quality. Controlled content of silicon, carbonate, and other impurities makes it suitable for multiple industrial applications. Main Specifications Main Content: CaF 85% Form: Natural block / lump Common Size
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:
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:
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:
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 Fluorspar Lump & Powder, CaF 65% | Slag Conditioner for Smelting Product Introduction We supply metallurgical fluorspar with CaF content over 65%, available in lump and powder forms. It is widely used in steel casting and non-ferrous metal smelting. The raw materials go through multiple sorting and impurity removal processes to ensure even composition and controlled harmful substances. In high-temperature smelting, it effectively adjusts slag properties and
4N High-Purity Optical Grade Fluorspar, CaF 99% | Ultra-Low Impurity for High-End Optical Systems Product Introduction This is 4N high-purity optical grade fluorspar with CaF content 99%, serving as a core functional substrate for manufacturing high-end optical lenses, UV/IR optical windows, precision prisms and special optical instruments. Produced from high-purity fluorspar ore through multi-stage purification, directional crystallization and precision post-treatment,
4N High-Purity Optical Grade Fluorspar (CaF 99%) | Low-Arsenic for UV & IR Optics Product Introduction This is 4N high-purity optical grade fluorspar with CaF content stably above 99%. It is a core raw material for UV-IR broadband optical systems, special optical lenses, high-temperature optical windows and precision prisms. Produced from carefully selected high-purity fluorspar ore through wet purification, directional crystallization, high-temperature impurity removal