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  • MnO2 and CuO Hopcalite Oxidation Catalyst Used for HCHO Removal
  • MnO2 and CuO Hopcalite Oxidation Catalyst Used for HCHO Removal
  • MnO2 and CuO Hopcalite Oxidation Catalyst Used for HCHO Removal
  • MnO2 and CuO Hopcalite Oxidation Catalyst Used for HCHO Removal
  • MnO2 and CuO Hopcalite Oxidation Catalyst Used for HCHO Removal
  • MnO2 and CuO Hopcalite Oxidation Catalyst Used for HCHO Removal
MnO2 and CuO Hopcalite Oxidation Catalyst Used for HCHO Removal
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MnO2 and CuO Hopcalite Oxidation Catalyst Used for HCHO Removal

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

Customization:

Customized logo(Min.Order: 1 pieces)
Customized packaging(Min.Order: 1 pieces)
Graphic customization(Min.Order: 1 pieces)

MnO2 and CuO Hopcalite Oxidation Catalyst Used for HCHO Removal

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • HCHO Removal Efficiency: The MnO2 and CuO Hopcalite catalyst effectively oxidizes formaldehyde (HCHO) into harmless byproducts, ensuring air purification in enclosed environments.
  • Granulated Design: Uniformly sized granules (as shown in the image) ensure consistent catalytic performance and easy integration into filtration systems or air treatment devices.

Key features

  • 1. Material Technology

  • With a MnO₂ and CuO-based Hopcalite composition, effectively oxidize formaldehyde (HCHO) into harmless byproducts, ensuring superior air purification. The uniform granule design (observed in the image) guarantees consistent catalytic performance across applications.

  • 2. Performance Parameters

  • With high HCHO conversion efficiency, achieve faster and more thorough purification compared to traditional catalysts*. The granules’ uniform size and texture (as shown) optimize reaction kinetics for reliable results.

  • 3. Scenario Solutions

  • With adaptability for residential and commercial use, address HCHO removal needs in diverse environments—from home air purifiers to large-scale industrial ventilation systems.

  • 4. Certification Standards

  • With EPR Germany Packing certification, ensure compliance with stringent environmental regulations, reflecting a commitment to sustainability and responsible waste management.

  • 5. Design for Integration

  • With uniform granule geometry, seamlessly integrate into filtration systems or reactors, enabling optimal flow dynamics and catalytic activity without clogging or inefficiency.

Product details

MnO2 and CuO Hopcalite Oxidation Catalyst Used for HCHO Removal

MINSTRONG's MnO₂ and CuO Hopcalite Oxidation Catalyst is a granulated industrial catalyst engineered for efficient formaldehyde (HCHO) removal in air purification systems. With uniform 2-4 mm granules and EPR Germany Packaging certification, this catalyst ensures consistent performance and compliance with EU safety standards.

Technical specifications

FeatureSpecificationApplication Scenario
Material CompositionMnO₂ and CuO Hopcalite blendOxidation of HCHO in industrial exhaust systems
CertificationEPR Germany Packaging (Compliance)Safe deployment in EU-regulated facilities
Particle SizeUniform 2-4 mm granulesOptimized flow dynamics in filtration beds
Operating Temperature50°C to 300°CHVAC systems and high-temperature exhaust treatment

Customization guide

Adjustable particle size (1-5 mm) and surface area to meet specific reactor design or HCHO concentration requirements.

Get inspired

With MINSTRONG’s Hopcalite catalyst, you can achieve up to 98% HCHO removal in industrial environments. Its uniform granules ensure stable performance, while the MnO₂/CuO blend accelerates oxidation efficiency compared to traditional catalysts.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Catalytic Efficiency85% HCHO removal+15% (98%)+30% (100%)*
Service Life12 monthsExtended 18 months24 months
Operating Temp Range50-250°CUp to 300°C-20°C to 350°C

Supplier's note

  1. Technical Breakthroughs:

    • The MnO₂/CuO blend delivers 20% faster HCHO degradation than standard catalysts.
    • Uniform granules (±0.5 mm tolerance) ensure consistent flow rates in reactors.
    • EPR certification guarantees compliance with EU packaging and waste regulations.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard HVAC systems with moderate HCHO levels.
    • Advanced Model: Suitable for high-temperature industrial exhaust (e.g., factories) due to its 300°C tolerance.
    • Pro Model: Designed for extreme environments (e.g., cold storage or high-concentration HCHO facilities), combining durability and broad temperature adaptability.

With the Pro version’s 100% HCHO removal efficiency, you can meet stringent air quality standards in healthcare or food processing facilities. Pair its expanded temperature range with its corrosion-resistant coating to ensure longevity in corrosive atmospheres.

Frequently asked questions

  • Which MnO₂ and CuO Hopcalite catalyst suits home or office HCHO removal?

  • How to store MnO₂ and CuO Hopcalite catalyst to maintain effectiveness?

  • MnO₂ vs CuO in Hopcalite: Which is better for formaldehyde oxidation?

  • Can MINSTRONG customize Hopcalite catalyst particle sizes for HVAC systems?

  • Is MINSTRONG’s Hopcalite catalyst EPR-certified for European projects?

  • Where is MnO₂/CuO Hopcalite catalyst best used for HCHO purification?

  • How effective is MINSTRONG’s Hopcalite catalyst compared to activated carbon?

  • Is MINSTRONG’s Hopcalite catalyst reusable for long-term HCHO reduction?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Catalytic EfficiencyIndustrial Air PurificationIndustry: 80% HCHO removal (ISO 16000-6)
Our Base: 85% (▲)
Our Advanced: 95% (▲▲)
Reduces residual HCHO levels, enhancing air quality.
Advanced meets strict regulatory standards.
Advanced may require specialized installation.
Service LifeLong-term Industrial ProcessesIndustry: 12 months (ASTM D5389)
Our Base: 18 months (▲)
Our Advanced: 24 months (▲▲)
Extended lifespan lowers replacement costs and downtime.
Advanced suits high-throughput systems.
Higher upfront cost for advanced versions.
Safety ComplianceRegulatory-Compliant EnvironmentsIndustry: Basic certs (e.g., RoHS)
Our Base: EPR Germany (▲)
Our Advanced: EPR + REACH (▲▲)
Advanced meets EU’s REACH and EPR, enabling broader market access.Compliance adds production complexity.
Particle Size UniformityPrecision Filtration SystemsIndustry: D50 ±15μm (ISO 13320)
Our Base: ±10μm (▲)
Our Advanced: ±5μm (▲▲)
Consistent flow rates and efficiency in filters.
Advanced minimizes dust emission.
Smaller particles may require finer handling.
Temperature ResistanceHigh-Temperature Industrial ProcessesIndustry: Up to 150°C (ASTM C697)
Our Base: 180°C (▲)
Our Advanced: 220°C (▲▲)
Advanced operates in harsh environments like kilns.
Base suits moderate-heat applications.
Higher temps may reduce material flexibility.
Cost-EffectivenessBudget-Sensitive ProjectsIndustry: Moderate cost with average performance
Base: 15% ↑ cost, 25% ↑ efficiency (▲)
Advanced: 30% ↑ cost, 50% ↑ lifespan (▲▲)
Base offers balanced cost-performance; Advanced lowers long-term TCO.Higher upfront costs may deter initial adoption.

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