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VP

VANADIUM PENTOXIDE CATALYST

SKU: RXSOL-19-6605-211

Vanadium Pentoxide Catalyst (V₂O₅)

Vanadium Pentoxide (V₂O₅) is a widely used industrial catalyst and catalyst component due to its strong oxidation-reduction properties and ability to operate effectively at elevated temperatures. It is commonly used in catalytic oxidation processes and is often supported on materials such as titanium dioxide (TiO₂), silica, or alumina.

Unit: Ltr.
Quantity per unit: 210.00

Application

Major Applications

  • Sulfuric Acid Production: Used in vanadium-based catalysts for the oxidation of sulfur dioxide (SO₂) to sulfur trioxide (SO₃).

  • Selective Catalytic Reduction (SCR): Used in NOₓ emission control systems, commonly in combination with titanium and tungsten oxides.

  • Chemical Manufacturing: Used in various oxidation and dehydrogenation reactions.

  • Petroleum and Petrochemical Industries: Used in selected catalytic processes.

  • Specialty Catalysis: Used in oxidation-reduction and other high-temperature industrial reactions.

Technical Specifications

Typical Technical Data

Parameter Typical Value
Chemical Name Vanadium Pentoxide
Chemical Formula V₂O₅
CAS Number 1314-62-1
Molecular Weight 181.88 g/mol
Appearance Yellow to orange powder
Vanadium Oxide Content Typically 98–99.5% or as specified
Vanadium Content Approx. 56%
Melting Point Approx. 690°C
Density Approx. 3.35–3.36 g/cm³
Oxidation State +5

Useful Area

⚠️ Safety: Vanadium pentoxide is a hazardous industrial chemical. Handling, storage, dust control, and use must be carried out in accordance with the applicable SDS and local occupational safety regulations.

Precautions & Remarks

 

Key Features

  • Excellent oxidation catalyst

  • Strong redox properties

  • High-temperature stability

  • Suitable for industrial catalytic processes

  • Available in powder or supported catalyst form

  • Can be used as a catalyst or catalyst component

 

Note

Vanadium Pentoxide Catalyst is a high-performance vanadium-based catalytic material designed for industrial oxidation and emission-control applications. Its excellent redox properties and thermal stability make it an important catalyst component in sulfuric acid production, SCR systems, and other specialized chemical processes.