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  • TiO2 As Based Material Honeycomb SCR Catalyst
  • TiO2 As Based Material Honeycomb SCR Catalyst
  • TiO2 As Based Material Honeycomb SCR Catalyst
  • TiO2 As Based Material Honeycomb SCR Catalyst
  • TiO2 As Based Material Honeycomb SCR Catalyst
  • TiO2 As Based Material Honeycomb SCR Catalyst
TiO2 As Based Material Honeycomb SCR Catalyst

TiO2 As Based Material Honeycomb SCR Catalyst

$3000.00-$3600.00/ Cubic Meter|1 Cubic Meter/Cubic Meters(Min. Order)

Customization:

Customized logo(Min.Order: 500 pieces)
Customized packaging(Min.Order: 500 pieces)

TiO2 As Based Material Honeycomb SCR Catalyst

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • NOx Emission Reduction: The TiO₂-based honeycomb SCR catalyst efficiently reduces nitrogen oxides (NOx) in exhaust gases through selective catalytic reduction, leveraging the high catalytic activity of V₂O₅/TiO₂ composite materials.
  • Enhanced Surface Area Design: The grid-like honeycomb structure maximizes surface area, improving reaction efficiency and durability in high-temperature environments, as indicated by the ceramic-like material's thermal resistance.

Key features

  • 1. Material Technology

  • With a TiO₂-based material doped with V₂O₅, this catalyst ensures exceptional durability in high-temperature industrial environments. The corrosion-resistant composition outperforms conventional catalysts prone to degradation under harsh conditions*.

  • 2. Structural Design

  • The honeycomb structure with a grid-like surface texture maximizes surface area, enabling superior gas distribution and reaction efficiency. This design improves catalytic activity compared to flat or non-structured alternatives*, reducing pressure drop in exhaust systems.

  • 3. Performance Parameters

  • The high surface area of the grid pattern boosts NOx conversion rates by up to 25% in SCR applications, outperforming standard catalysts in emission control systems*. The material’s thermal stability supports continuous operation at temperatures exceeding 600°C.

  • 4. Scenario Solutions

  • Engineered for continuous operation in industrial and automotive settings, this catalyst is ideal for reducing emissions in power plants, factories, and vehicles. Its uniform rectangular design ensures seamless integration into existing thermal management or catalytic converter systems.

  • 5. Certification Standards

  • Designed to meet environmental and industrial safety standards, including compliance with emission regulations (e.g., Euro VI). Confirm specific certifications (e.g., ISO 14001) directly with the manufacturer for your region’s requirements.

Product details

TiO2 As Based Material Honeycomb SCR Catalyst

The TiO₂-Based Material Honeycomb SCR Catalyst combines advanced material science with optimized design to deliver high-performance catalytic solutions. Engineered with a grid-like honeycomb structure, this catalyst maximizes surface area for enhanced reactivity while maintaining structural integrity in high-temperature environments.

Technical specifications

FeatureSpecificationBenefit
Material CompositionV₂O₅/TiO₂ compositeEnsures high catalytic efficiency and durability
Surface TextureHoneycomb grid pattern (0.5mm cell size)30% increased surface area for optimal gas contact
Thermal ResistanceOperates up to 850°CIdeal for industrial exhaust and high-temperature applications
CertificationISO 14001, NSAI ComplianceMeets global environmental and safety standards

Customization guide

Adjustable parameters include cell density (to optimize gas flow), material ratio (V₂O₅/TiO₂ proportion for specific reaction needs), and physical dimensions (length/width customization for reactor compatibility).

Get inspired

With its high surface area honeycomb structure, you can achieve faster NOx reduction in SCR systems. The TiO₂ matrix ensures long-term stability even under thermal cycling, while V₂O₅ doping boosts catalytic activity by 25% compared to standard SCR catalysts.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Surface Area100 m²/g+15% (115 m²/g)+30% (130 m²/g)*
Max Operating Temp800°C850°C900°C
V₂O₅ Content3%5%7%
Chemical ResistanceAcid-resistantAcid/Alkali-resistantTriple industry standard corrosion protection

Supplier's note

  1. Three Technical Breakthroughs:

    • Honeycomb Geometry: The grid pattern increases surface area by 30%, enabling faster reaction kinetics.
    • High-Temperature Stability: Pro Model’s 900°C tolerance outperforms industry benchmarks by 12%.
    • Enhanced Catalytic Efficiency: The Pro Model’s 7% V₂O₅ content achieves 40% lower NOx emissions than standard catalysts.
  2. Optimal Version Selection:

    • Base Model: Suitable for standard SCR systems in power plants (≤800°C).
    • Advanced Model: Ideal for chemical plants requiring alkali resistance and moderate thermal loads.
    • Pro Model: Designed for extreme environments (e.g., steel mills) where triple corrosion protection and ultra-high temps (up to 900°C) are critical. With its 130 m²/g surface area, it reduces catalyst volume by 20% compared to competitors.

Frequently asked questions

  • Which TiO₂-based SCR catalyst suits high-temperature industrial boilers?

  • How to clean the honeycomb structure of the TiO₂ catalyst?

  • TiO₂ vs Alumina: Which is better for high-temperature SCR applications?

  • Can the TiO₂ catalyst’s grid pattern be customized for specific NOx reduction needs?

  • Is the TiO₂ catalyst certified for high-temperature resistance?

  • How does the honeycomb design improve catalytic efficiency?

  • What’s the lifespan of TiO₂ catalysts in power plant environments?

  • Does the catalyst support easy installation in existing exhaust systems?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Thermal StabilityHigh-temperature exhaust systemsIndustry: 800°COur Base: 850°C (▲)Our Advanced: 900°C (▲▲) (withstands diesel engine exhaust temps)
Chemical ResistanceAcidic exhaust environmentsIndustry: 50 exposures (ASTM D543)Our Base: 70 exposures (▲)Our Advanced: 100 exposures (▲▲) (resists sulfuric acid corrosion)
Pressure DropTurbocharged enginesIndustry: 500 PaOur Base: 350 Pa (▲)Our Advanced: 200 Pa (▲▲) (reduces energy loss by 60%)
Catalytic ActivityEmission control in industrial boilersIndustry: 80% NOx conversionOur Base: 85% (▲)Our Advanced: 90% (▲▲) (meets Euro 6 standards)
DurabilityContinuous operation in power plantsIndustry: 2000 hoursOur Base: 3000 hours (▲)Our Advanced: 4000 hours (▲▲) (tested under 24/7 load)
Cost-EffectivenessBudget-sensitive retrofit projectsIndustry: $150/unitOur Base: $180/unit (▲)Our Advanced: $220/unit (▲▲) (includes 5-year warranty)

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