Products Parameters
|
Model |
Flake Vanadium pentoxide |
|
Material |
V2O5 |
|
Function |
Alloy additive |
|
Diameter size |
Width 20-80mm; Thickness 2-8mm |
|
The Highest Grade Vanadium Pentoxide Flake |
|
|
Packing: 250kg steel drum |
|
|
Shape: Fused Flake Type |
|
|
Sales Quantity: 500MT/month |
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* The above production quantity depends on the metal content of the waste catalyst. |
|
| Grade | Chemical Composition % | |||||||
| V₂O₅ | Si | Fe | P | S | As | Na₂O+K₂O | V₂O4 | |
| ≥ | < | |||||||
| V₂O₅99 | 99.0 | 0.15 | 0.2 | 0.05 | 0.01 | 0.01 | 1 | – |
| V₂O₅98 | 98.0 | 0.25 | 0.3 | 0.05 | 0.03 | 0.02 | 1.5 | – |
| V₂O₅97 | 97.0 | 0.25 | 0.3o | 0.05 | 0.01 | 0.02 | 1.0 | 2.5 |

Products Description
Vanadium pentoxide flakes are usually black in color and have a shiny surface. Its morphology is flake, which is why it is called "flake vanadium pentoxide". Vanadium pentoxide flakes have a relatively high density, a property that gives it unique advantages in certain applications. Its melting point is 690°C and its boiling point is as high as 1750°C. These high-temperature characteristics allow vanadium pentoxide flakes to maintain stable performance in high-temperature environments. Flake vanadium pentoxide is soluble in concentrated acid and alkali, slightly soluble in water, and insoluble in anhydrous ethanol. This property gives it specific reactivity and selectivity in chemical reactions.

In iron and steel metallurgy, flake vanadium pentoxide is an important alloy additive that can significantly improve the strength, hardness, wear resistance and corrosion resistance of steel. It is widely used in the production of specialty steels such as high-strength low-alloy steels, tool steels, and stainless steels. Due to its unique catalytic properties, vanadium pentoxide flakes are commonly used as catalysts or catalyst supports in the chemical industry. It is involved in a variety of chemical reactions, such as the production of sulfuric acid, the hydrodesulfurization and denitrification processes of petroleum, and the synthesis of certain organic compounds. In the field of new energy, vanadium pentoxide is also used as a cathode material for lithium-ion batteries and vanadium redox flow batteries. In particular, vanadium redox flow batteries have potential application value in large-scale energy storage systems because of their high energy density, long life, and good safety. Vanadium pentoxide can also be used as a component of certain special pigments, as well as a colorant for glass and ceramics. It can provide products with unique yellow or brown hues. Due to its excellent electrical and optical properties, flake vanadium pentoxide is also used in certain electronic and optical devices, such as optoelectronic devices, sensors, and thin-film transistors. Vanadium pentoxide combined with other materials can form composite materials with special magnetic properties, which have potential applications in magnetic recording, magnetic sensors, and magnetic refrigeration.

The production method of flake vanadium pentoxide mainly includes the steps of roasting, leaching, precipitation, decomposition and melting. These steps usually involve complex chemical reactions and physical processes, and require strict control of production conditions and process parameters to ensure product quality and performance.

In summary, flaky vanadium pentoxide is a metal oxide with unique physical and chemical properties. It has broad application prospects and important economic value in the fields of metallurgy and chemical industry.
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