Plate-Type Denitration Catalyst

Plate-Type Denitration Catalyst utilizes a metal mesh substrate (e.g., stainless steel) coated with a TiO₂-V₂O₅-WO₃ active layer, and is designed for SCR denitration applications. Its plate-type structure features large channels and strong anti-clogging performance, making it particularly suitable for high-dust (e.g., waste incineration, coking industries) or corrosive flue gas environments. With high mechanical strength, resistance to impact and abrasion, and a service life of 4–6 years, it operates effectively across a broad temperature range (180–400°C) and can be deployed in low-dust configurations. The modular design facilitates maintenance, making it an ideal choice for high-dust industrial applications such as coal-fired power plants, steel, and glass manufacturing.
  • Detailed Introduction

Plate-Type Denitration Catalyst is a key material used in SCR (Selective Catalytic Reduction) denitration systems. It employs a metal mesh (typically stainless steel) as the substrate, coated with a TiO₂-V₂O₅-WO₃ active layer. Its core features include:

Structural Advantages:
The plate-type design features large channel spacing and strong anti-clogging performance, making it suitable for high-dust and high-viscosity flue gas environments (e.g., waste incineration and coking industries).

High Mechanical Strength:
The metal substrate offers excellent impact resistance and abrasion tolerance, making it ideal for complex operating conditions, with a service life of 4–6 years.

Broad Adaptability:
It operates effectively across a wide temperature range (180–400°C) and can be deployed in low-dust configurations (e.g., tail-end duct layouts).

Ease of Maintenance:
The modular design facilitates easy installation and ash cleaning, making it suitable for industrial scenarios with frequent start-stop operations.

Applications:
Widely used in coal-fired power plants, waste-to-energy facilities, steel sintering, glass kilns, and other industries, particularly suited for high-dust and highly corrosive flue gas environments.

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