Products Parameters
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Model |
Flake Vanadium pentoxide |
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Material |
V2O5 |
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Function |
Alloy additive |
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Diameter size |
Width 20-80mm; Thickness 2-8mm |
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The Highest Grade Vanadium Pentoxide Flake |
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Packing: 250kg steel drum |
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Shape: Fused Flake Type |
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Sales Quantity: 500MT/month |
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* The above production quantity depends on the metal content of the waste catalyst. |
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Products Description
Vanadium pentoxide flakes, with the chemical formula V₂O₅, are an inorganic metal oxide with unique physical and chemical properties and are widely used in many fields. The modern "three-step" vanadium pentoxide tablet production process decomposes the traditional one-step production process of drying and dehydration, calcination and deamination, and melting and casting into three different process equipments, which has the advantages of high vanadium yield, good quality, low energy consumption, good environmental protection effect, high degree of automation, safe and stable equipment, etc.

Flake vanadium pentoxide is toxic and may cause harm to the human body and the environment. Long-term contact or inhalation may cause serious health problems. Strict environmental protection measures need to be taken during production and use to prevent environmental pollution. For the treatment of wastewater and waste gas, relevant environmental protection laws and regulations should be followed to ensure that emissions meet standards. When handling flake vanadium pentoxide, appropriate protective equipment should be worn, such as dust masks, gas suits and rubber gloves, to avoid direct contact and inhalation of harmful substances. When storing, it should be sealed and kept in a cool, ventilated warehouse, away from fire, heat sources and flammable and combustible materials.

The main application of flake vanadium pentoxide in the battery industry is as an electrode material, especially in lithium-ion batteries and vanadium batteries. Vanadium pentoxide is widely used in the positive electrode material of lithium-ion batteries due to its high specific capacity and long cycle life. In lithium-ion batteries, vanadium pentoxide can effectively transmit energy while maintaining high energy density and stability, which makes it have broad application prospects in electric vehicles, energy storage systems and other fields. Vanadium pentoxide is also an important component of all-vanadium liquid flow batteries (vanadium batteries). Vanadium batteries are a type of liquid flow battery with vanadium ions as active substances. They have the advantages of high energy density, long cycle life and good safety. They are widely used in large-scale energy storage, smart grids, renewable energy and other fields. Vanadium pentoxide plays a key role in all-vanadium liquid flow batteries and is one of the main raw materials for electrolytes. It is estimated that 9 kg of vanadium pentoxide is expected to be consumed per kilowatt-hour of vanadium battery electrolyte. With the continuous advancement of vanadium battery technology and the reduction of costs, its market demand will continue to grow, thereby driving the application of vanadium pentoxide in the battery industry.
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