Environmentally friendly new materials

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Cryolite


Applied in industries such as electrolytic aluminum, abrasives, abrasive tools, sandpaper, abrasive belts, ceramics, enamel, glass, and casting.

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Remelting Particle Refiner


This refining agent not only improves the quality of aluminum by refining, removing impurities, and refining its structure, but also enhances the working environment while aligning with the nation's environmental protection policies.

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Sodium-free granular refining agent


Belonging to the magnesium-potassium series of refining agents, it is suitable for high-magnesium alloys.

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Granular Cryolite, 60-200 Mesh


1. Excellent flowability with a uniform particle size distribution; 2. Low moisture content ensures minimal water absorption during storage, resulting in little fluoride loss; 3. Does not cause contamination during use and boasts high utilization efficiency.

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A breakthrough in the application of specialty cryolite for lithium battery foil production, achieving a purity level of up to 99.9%.


Specialized cryolite has achieved a key breakthrough in the production of lithium battery foil, with its purity now stably optimized to 99.9% through advanced technological improvements, providing essential material support for the manufacturing of high-precision lithium battery foils.

The Role of Cryolite in Grinding Wheels


Cryolite (chemical formula Na₃AlF₆ or KAlF₄) serves as a key active filler in resin-bonded grinding wheels, significantly enhancing wheel performance through synergistic physical and chemical interactions.

How is cryolite used in casting?


Sprinkle it onto the surface of the molten iron at a dosage of 0.1%–0.3%. Its functions include slag removal and surface coverage. Cryolite helps dilute the molten slag, making it easier to collect and remove. When heated above 1011°C, cryolite decomposes, releasing AlF3 gas. This gas can protect the surface of the molten iron from oxidation—but unfortunately, it is harmful to humans.

Analysis issues regarding cryolite quality


Cryolite, as the primary solvent in aluminum smelting, plays a critically important role during the electrolytic production process. The quality of cryolite not only affects the purity of the electrolytically produced aluminum but also directly influences the efficiency and overall performance of the entire electrolysis process. Therefore, accurate analysis and inspection of cryolite are essential to ensure optimal production outcomes.

The Difference Between Polymer Cryolite and Regular Cryolite


High-molecular-ratio cryolite refers to cryolite where the molecular ratio of sodium to aluminum fluoride content falls between 2.8 and 3.0. This type of high-molecular-ratio cryolite contains fewer impurities, boasts a higher cryolite recovery rate, and is particularly favored by customers who rely on cryolite for their operations.

Eco-friendly cryolite successfully developed, reducing fluoride emissions by 40% and gaining industry-wide adoption.


Recently, the scientific research community received exciting news: an eco-friendly cryolite has successfully completed development and is now gaining widespread attention and promotion within the industry.

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