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  • MnO2 and CuO Hopcalite Oxidation Catalyst for Filtering Carbon Monoxide CO
  • MnO2 and CuO Hopcalite Oxidation Catalyst for Filtering Carbon Monoxide CO
  • MnO2 and CuO Hopcalite Oxidation Catalyst for Filtering Carbon Monoxide CO
  • MnO2 and CuO Hopcalite Oxidation Catalyst for Filtering Carbon Monoxide CO
  • MnO2 and CuO Hopcalite Oxidation Catalyst for Filtering Carbon Monoxide CO
  • MnO2 and CuO Hopcalite Oxidation Catalyst for Filtering Carbon Monoxide CO
MnO2 and CuO Hopcalite Oxidation Catalyst for Filtering Carbon Monoxide CO
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MnO2 and CuO Hopcalite Oxidation Catalyst for Filtering Carbon Monoxide CO

  • 1 - 5 Kilograms
    $35
  • 6 - 4999 Kilograms
    $25
  • >= 5000 Kilograms
    $18

Customization:

Customized logo(Min.Order: 1 pieces)
Customized packaging(Min.Order: 1 pieces)
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MnO2 and CuO Hopcalite Oxidation Catalyst for Filtering Carbon Monoxide CO

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • CO Oxidation Catalyst: Converts toxic carbon monoxide (CO) into non-toxic byproducts via the synergistic action of MnO₂ and CuO compounds.
  • Industrial Filtration Solution: Designed to purify air in high-emission environments, ensuring compliance with safety and environmental standards.

Key features

  • 1. Advanced Material Technology

  • With a CuO and MnO₂ composition, this Hopcalite catalyst achieves 95%+ CO oxidation efficiency, outperforming conventional catalysts in harsh industrial environments*. The durable oxide structure ensures long-term stability even under fluctuating temperatures.

  • 2. Optimized Granular Design

  • With its irregular granular form, the catalyst maximizes surface area for gas-catalyst contact, enabling ~30% faster CO conversion compared to compacted pellet alternatives*. The loose structure also simplifies replacement and maintenance in filtration systems.

  • 3. Industrial-Grade Performance

  • As a technical-grade product (CAS No. 1344-43-0), it maintains 99% CO conversion efficiency at temperatures up to 600°C, exceeding the thermal limits of standard oxidation catalysts*. This ensures reliability in high-heat industrial exhaust systems.

  • 4. Versatile Scenario Solutions

  • Designed for both continuous commercial use (e.g., power plants) and moderate residential applications (e.g., HVAC systems), the granular format adapts to diverse airflow volumes and operational demands*.

  • 5. EPR Germany Compliance

  • With EPR certification, it meets rigorous EU environmental and packaging standards, offering a 20% lower carbon footprint than non-certified competitors* while ensuring safe disposal and recycling.

  • Notes:

    • Material Technology: Highlights the catalyst’s composition and efficiency gains over traditional materials.

Product details

MnO2 and CuO Hopcalite Oxidation Catalyst for Filtering Carbon Monoxide CO

The MnO₂ and CuO Hopcalite Oxidation Catalyst is a high-performance industrial-grade catalyst designed to efficiently filter and oxidize carbon monoxide (CO). Its granular structure, composed of mixed metal oxides, ensures optimal surface area for chemical reactions, making it ideal for applications requiring precise CO removal.

Technical specifications

FeatureSpecificationBenefit
Material CompositionMnO₂ and CuO granules (industrial grade)High reactivity for CO oxidation
GradeTechnical/IndustrialMeets rigorous industrial performance needs
CertificationEPR_Germany_PackingEnsures compliance with EU packaging safety
Molecular FormulaCuO, MnO₂Optimized ratio for catalytic efficiency
ApplicationGas purification, industrial filtrationRemoves CO in exhaust streams or air systems

Customization guide

Adjustable parameters include:

  • Particle Size: Customize granule size (e.g., 2-5mm or 5-8mm) to match specific reactor designs or filtration systems.
  • Chemical Composition: Modify CuO/MnO₂ ratios to target varying CO concentrations or reaction conditions.
  • Purity Level: Enhance purity for high-sensitivity applications (e.g., medical gas purification).

Get inspired

With its granular structure, this catalyst maximizes contact efficiency in gas streams. For instance, in industrial boilers, the catalyst can reduce CO emissions by 95% while maintaining operational stability. With enhanced durability, you can achieve long-term performance without frequent replacements.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Particle Size2-5mm1-3mm (finer mesh)0.5-2mm (ultrafine)
CO Removal Efficiency85%92% (+8%)98% (+15%)*
Durability (Operating Hours)2,000 hrs3,000 hrs (+50%)5,000 hrs (+150%)
Operating Temp. Range150–450°C150–500°C150–600°C

Supplier's note

  1. Key Technical Breakthroughs:

    • Enhanced Efficiency: The Pro Model’s ultrafine granules boost surface area by 30%, enabling 98% CO removal—20% faster than traditional catalysts.
    • Extreme Durability: The Pro’s 5,000-hour lifespan (vs. industry average of 3,000 hrs) reduces replacement costs by 40%.
    • Wider Temp Range: The Advanced Model’s 500°C tolerance expands usability in high-temperature industrial furnaces.
  2. Optimal Version Selection:

    • Base Model: Ideal for small-scale applications (e.g., residential boilers) where cost-efficiency is prioritized.
    • Advanced Model: Suitable for medium-scale industries (e.g., steel plants) requiring higher efficiency and thermal resilience.
    • Pro Model: Best for heavy-duty environments (e.g., power plants) demanding extreme durability and purity. With its 600°C tolerance, the Pro ensures stable operation even in harsh conditions.

Frequently asked questions

  • Which MnO₂ and CuO Hopcalite catalyst suits industrial exhaust systems?

  • How should I store MnO₂ and CuO Hopcalite catalyst to maintain efficacy?

  • Why choose MnO₂/CuO Hopcalite over alumina-based catalysts for CO filtration?

  • Can MnO₂ and CuO Hopcalite be customized for specific particle sizes?

  • Is MnO₂ and CuO Hopcalite certified for EU environmental regulations?

  • What industries use MnO₂ and CuO Hopcalite for CO filtration?

  • Are safety protocols required when handling MnO₂ and CuO Hopcalite?

  • Does MnO₂ and CuO Hopcalite reduce maintenance in CO filtration systems?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Hopcalite Oxidation CatalystIndustrial exhaust systems, gas purificationCuO/MnO₂ composition (95% purity, ASTM C1044 compliant)▲
EPR-compliant packaging (Germany)
95% CO conversion efficiency (▲ vs Base: +5%)
Moisture-resistant coating
Requires controlled storage (moisture-sensitive)
Pelletized CatalystsChemical processing, automotive exhaustPellet form (ISO 5775 dimensions)
80% CO conversion efficiency
Easy installation
Affordable upfront cost
Lower efficiency (80%)
Bulkier storage requirements
Monolithic CatalystsHigh-temperature industrial processesHoneycomb structure (ISO 15607)
120°C operational range▲
High surface area for reactivity▲
Heat-resistant
Fragile design
Higher upfront cost
Unsupported Catalyst PowdersCustom blending, small-scale applicationsPowder form (200–300 mesh)
ASTM D543 chemical stability
Highly customizable
Low cost for small batches
Prone to dust emissions
Requires containment systems
Regenerative CatalystsWaste gas treatment plantsReusable (50+ cycles)
ASTM D543 permeation resistance▲
Long lifespan (reusable)
Cost-effective over time▲
Complex regeneration process
Higher maintenance costs
Ceramic-Based CatalystsHigh-temperature furnacesCeramic substrate (ISO 10428)
1,200°C thermal stability▲
Extreme heat resistance▲
Structural durability
Heavy weight
Brittle and prone to cracking

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.