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کیفیت خالصیت بالا 99٪ + CaF2 فلورسپارت نوری توده های فوق العاده شفاف و نقص کم کارخانه
Optical Grade High-Purity Fluorspar, CaF₂ ≥ 99% (4N) | Ultra-Low Impurity for Precision Optics Product Introduction This is 4N high-purity optical grade fluorspar with CaF₂ 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
کیفیت معدن فلوراید سرامیک با کارایی بالا 80% تا 93% کلسیم فلورسپار کارخانه
Ceramic Grade Fluorspar 80%-93% CaF₂ | Low-Arsenic Flux for Green & High-Quality Ceramics Product Introduction Our ceramic-grade fluorspar is purpose-built for the ceramics industry, with CaF₂ 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
کیفیت فلوریت CaF2 90٪ خلوص 0-5 میلی متر سرامیک فلورسپار توده مواد معدنی کارخانه
Fluorite CaF₂ 90% Purity 0–5mm Ceramic Fluorspar Lump Mineral Material Product Overview Our 90% purity Fluorite (Fluorspar) is a cost-effective industrial-grade mineral material with steady CaF₂ 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
کیفیت فلوئور اسپار با درجه بالا CaF2 97٪ مواد معدنی خام برای صنعت جهانی کارخانه
Mongolia Sourced High Purity Fluorite Ore | Calcium Fluoride CaF₂ Raw Mineral for Global Industrial Manufacturing Fluorite, also widely traded as fluorspar, is an essential halide mineral consisting of calcium fluoride (CaF₂). 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.
کیفیت فلوراسپات درجه فلورولوژیک CaF2 80٪ تکه های فلوراسپات سفارشی کارخانه
فلورسپار متالورژیکی منشاء مغولستان با 80% CaF2. شار کارآمد فولادسازی، ناخالصی های کنترل شده و عرضه پایدار را تضمین می کند. در قالب های توده/پودر با بسته بندی انعطاف پذیر و شرایط صادرات موجود است.
کیفیت فلوئور اسپار درجه بالا CaF2 98٪ ماده معدنی هالیید طبیعی کارخانه
Premium Acid-Grade Fluorite (CaF₂ ≥98%) – Mongolian High-Purity Fluorspar Supplier What Is Fluorite? Fluorite (calcium fluoride, CaF₂) is a natural halide mineral and the world’s 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
کیفیت مواد خام فلوئور اسپار CaF2 90٪ 10 تا 20 میلی متر تکه های فلوئور اسپار CaF2 ≥ 90٪ کارخانه
Product Overview Our 90% purity Fluorite (Fluorspar) is a cost-effective industrial-grade mineral material with steady CaF₂ 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
کیفیت تکه های فلوراسپارت صنعتی با خالصیت بالا 97 درصد با ثبات شیمیایی عالی و ترکیب کم ناخالصی کارخانه
فلوریت با خلوص بالا (CaF2 ≥97%) با پایداری شیمیایی برتر و ناخالصی کم. موجود در اندازه های 5-10 میلی متر و 10-20 میلی متر برای پردازش صنعتی کارآمد در تولید، ذوب و ساخت مواد شیمیایی فلوئور.
کیفیت فلوئور اسپار با درجه نرمال CaF2 70٪ فلوریت معدنی کارخانه
Fluorite, chemically calcium fluoride (CaF₂), 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: