With fluorite prices rising amid growing industrial demand, its value now rivals scheelite—yet 43% of China’s fluorite reserves exist as associated minerals with low utilization rates. Scheelite and fluorite minerals share similar properties, making separation tricky. We understand your frustration—improper methods lead to poor recovery rates and wasted resources.
The most effective method involves a combination of gravity separation and flotation. Scheelite has higher specific gravity than fluorite, allowing initial separation through shaking tables or spirals. Then, selective flotation using fatty acid collectors and sodium silicate depressants targets scheelite while suppressing fluorite. Proper pH control (around 9-10) is critical for success.
Now that we’ve outlined the basic approach, we detail targeted methods for each mineral.
The Beneficiation Method of Scheelite
Kemampuan mengapung scheelite bagus, dan sering kali dirawat dengan metode gabungan pemisahan gravitasi dan flotasi.

Pemisahan flotasi scheelite terutama memecahkan masalah pemisahan dari bijih sulfida dan bijih non-logam, khususnya:
- Separation of scheelite from sulfide ore. Xanthate is used to capture sulfide minerals before flotation of scheelite. When floating scheelite, add a small amount of oxide and sodium sulfide to suppress a small amount of sulfide that has not been floated.
- Separation of scheelite from calcite and fluorite. Commonly used thick slurry high temperature method. First concentrate the pulp to a concentration of 60~70%, then add water glass, heat the pulp to above 80°C, stir for 30-60 minutes, then dilute with water, and float scheelite at room temperature. The product in the tank is Fluorite and calcite.
- Separation of scheelite from quartz-like silicates. Using oleic acid as a collector and water glass as an inhibitor can inhibit quartz and silicate gangue and float scheelite.
- Separation of scheelite and barite. Because water glass has similar inhibitory effects on scheelite and barite, it is difficult to separate water glass alone, and it is necessary to use alkyl sulfate or sulfonate as a collector to reverse-float barite under the condition of pH=1.5-3.0; scheelite is obtained in the tank.
- Pemisahan tungsten dan timah. Pemilihan dan pengapungan listrik juga dapat digunakan. Selama pemisahan flotasischeelite dikumpulkan dengan asam lemak, dan cassiterite ditekan dengan gelas air. Pemisahan tungsten dan molibdenum. Molibdenum diapungkan terlebih dahulu, kemudian scheelite diapungkan dengan asam oleat, dan sejumlah besar gelas air digunakan untuk memanaskan dan memilih scheelite.
Commonly used collectors for scheelite are oleic acid, oleic acid soap, and 731 oxide paraffin soap. There was once a beneficiation plant that used high-temperature beneficiation to select scheelite. The production technical indicators: the grade of scheelite concentrate was 67.03%, the tailings were 0.095%, and the recovery rate was 80.17%.
The Beneficiation Methods and Beneficiation Equipment of Fluorite Ore
Fluorite is mainly composed of calcium fluoride, which is an important metallurgical flux and chemical raw material. As a mineral resource, what are the beneficiation methods and beneficiation equipment of fluorite ore?
A. Fluorite Ore Beneficiation
Fluorite ore beneficiation mainly adopts the flotation method and gravity separation method. The flotation method is used to deal with fine-grained dissemination and low-grade fluorite ore. It is also one of the most important beneficiation methods for fluorite ore beneficiation. The only way to get fluorite ore powder. Gravity separation is used to process the beneficiation and purification of coarse-grained embedded high-grade fluorite ore to obtain coarse-grained metallurgical-grade fluorite lump ore, which is the main method for producing fluorite concentrate for the steelmaking industry.
- Metode flotasi: High-quality fluorite concentrate powder can be obtained by flotation treatment of fluorite ore, but the investment in peralatan flotasi is large, the operating cost is high, and it has certain pollution to the environment. Therefore, under the premise that environmental protection requirements are becoming more and more strict today, the application of fluorite ore flotation is more and more limited, which also promotes the improvement and application of fluorite ore gravity separation technology and equipment to some extent.
- Pemisahan gravitasi has a very good effect on the purification of coarse-grained embedded fluorite ore. Under normal circumstances, gravity separation can also be used for beneficiation and purification of fine-grained fluorite ore, which has the advantages of energy saving, high efficiency, and environmental protection. In the new type of fluorite beneficiation plant, the application of the gravity separation method has gradually surpassed the flotation method.
B. Mineral Processing Method
- Metode pemisahan gravitasi: Metode pemisahan gravitasi cocok untuk pengolahan bijih bongkahan fluorit berbutir kasar dan berkualitas tinggi, dan juga memiliki efek yang baik pada pemanfaatan beberapa bijih fluorit berbutir halus. Ada pabrik pemisahan gravitasi bijih fluorit di Xinyang, Henan, Zhenglanqi, Mongolia Dalam, Jinchang, Gansu, dan Wuchuan, Guizhou.
- Metode flotasi: Metode flotasi cocok untuk pemanfaatan bijih fluorit kadar rendah berbutir halus yang tersebar luas, dan konsentratnya terutama digunakan untuk produksi asam fluorida dalam industri kimia. Jumlah peralatan yang dipilih dalam peralatan flotasi batu meningkat, dan investasi peralatan meningkat. Metode flotasi memiliki pencemaran tertentu terhadap lingkungan, dan banyak daerah telah melarang penggunaan metode flotasi untuk memilih fluorit.
C. Gravity Beneficiation Equipment
The gravity separation method is mainly used for the beneficiation and purification of coarse-grained embedded fluorite ore. Therefore, the peralatan pemisahan gravitasi for fluorite ore is mostly jig konsentrator. Benefisiasi dan pemurnian bijih fluorit memiliki hasil yang baik dan kapasitas pemrosesan yang ideal, dan berbagai indikator benefisiasi telah mencapai tingkat yang memuaskan. Penerapan jig pemisahan gravitasi fluorit juga semakin luas.
Pemanfaatan scheelite didasarkan pada karakteristik penyebaran bijih, dan kombinasi pemisahan gravitasi dan flotasi sering digunakan. Menambahkan garam logam polivalen ke gelas air dapat secara signifikan meningkatkan efek flotasi scheelite. Kandungan logam sulfida dalam bijih fluorit relatif tinggi, dan terkadang kandungan timbal dan seng dapat mencapai kelas industri. Oleh karena itu, saat mengembangkan dan memanfaatkan, kita juga harus mempertimbangkan pemulihan bijih logam.
Key Takeaways for Maximizing Recovery
Effective separation of scheelite and fluorite relies on a well-designed multi-stage process that combines gravity concentration with selective flotation. By carefully controlling reagents (collectors, depressants, and pH modifiers) and leveraging the differences in specific gravity, operators can significantly improve resource utilization—especially critical for China’s large reserves of associated minerals. For best results, pilot testing is recommended to optimize conditions for specific ore compositions. As demand for these minerals grows, adopting advanced beneficiation techniques will be essential for both economic efficiency and sustainable resource management.
Need further guidance? Consult mineral processing experts to tailor these methods to your ore characteristics.
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