Manganese Dioxide Supported Catalyst for CO Oxidation
Short Product Description
Manganese Dioxide Supported Catalyst for CO Oxidation is a high-activity MnO₂-based catalyst designed for efficient catalytic oxidation of carbon monoxide at low to moderate temperatures. The material typically contains 85–95% MnO₂ and provides strong redox activity and oxygen mobility. It is commonly used in air purification systems, industrial exhaust treatment, and catalytic oxidation research.

Technical Specifications
| Parameter | Typical Value |
|---|---|
| MnO₂ Purity | 85–95% |
| Particle Size | 1–10 μm |
| BET Surface Area | 60–150 m²/g |
| Moisture Content | ≤2.0% |
| Bulk Density | 0.45–0.75 g/cm³ |
| Crystal Phase | Mainly γ-MnO₂ / amorphous MnO₂ |
Key Features
High catalytic activity for low-temperature carbon monoxide oxidation
Large specific surface area enhances oxygen adsorption and reaction kinetics
Stable Mn⁴⁺/Mn³⁺ redox cycle improves oxidation efficiency
Consistent particle distribution ensures reliable catalytic performance
Manganese Dioxide Supported Catalyst for CO Oxidation provides strong surface oxygen mobility for continuous CO conversion
Good thermal stability under typical catalytic reaction conditions
Applications
Industrial exhaust gas treatment – Suitable for catalytic removal of carbon monoxide from combustion or process emissions.
Air purification catalysts – Used in catalytic filters and oxidation modules for indoor air purification systems.
Catalytic oxidation reactors – Provides stable catalytic activity in laboratory or pilot-scale oxidation studies.
Automotive or combustion gas research – Applied in catalyst screening for oxidation of CO in exhaust streams.
Gas purification systems using Manganese Dioxide Supported Catalyst for CO Oxidation – Supports efficient removal of trace CO in enclosed environments.
Problems This Product Solves
Low catalytic efficiency in CO oxidation → High MnO₂ surface activity improves oxidation rate at lower temperatures.
Inconsistent catalyst performance → Controlled particle size and MnO₂ phase composition improve reproducibility.
High energy consumption in oxidation processes → Active MnO₂ catalyst enables CO conversion at reduced operating temperatures.
Catalyst deactivation during continuous operation → Stable redox cycling of manganese oxides maintains catalytic activity.
Excessive catalyst consumption → Higher activity reduces dosage requirements in catalytic systems.
Packaging & Supply
Standard packaging: 25 kg fiber drums or 25 kg PE-lined kraft bags
Export-grade packaging suitable for international transport
Laboratory samples available for catalyst evaluation and testing
Customization & Technical Support
The manufacturer can provide technical adjustments according to application requirements:
Customized particle size distribution
MnO₂ purity optimization for catalytic applications
Bulk supply options for industrial catalyst production
Technical consultation for catalytic process optimization
FAQ
1. What is the typical purity of Manganese Dioxide Supported Catalyst for CO Oxidation?
The catalyst typically contains 85–95% MnO₂. This purity level provides strong redox activity while maintaining good structural stability for catalytic oxidation.
2. What operating temperature is suitable for CO oxidation using MnO₂ catalysts?
Many MnO₂-based catalysts begin showing activity at 80–150 °C, with higher conversion efficiency as temperature increases depending on reactor conditions.
3. Can this catalyst be used in laboratory catalytic research?
Yes. The material is commonly used in laboratory catalyst screening, reaction mechanism studies, and small-scale oxidation reactors due to its stable MnO₂ structure.
4. How should the catalyst be stored?
Store in a dry, sealed container away from moisture and strong reducing agents. Proper storage helps maintain surface activity and catalytic performance.
5. Is catalyst regeneration possible after use?
In many applications, thermal regeneration or oxidative treatment can partially restore catalytic activity, depending on contamination or deactivation mechanisms.
You can also check the specifications for these applications:
Active Manganese Dioxide for Selective Organic Oxidation – Efficient oxidation of alcohols, aldehydes, and fine chemical intermediates.
MnO₂ Catalyst for Formaldehyde Decomposition in Air Purifiers – Catalytic degradation of HCHO at ambient conditions.
Industrial Grade MnO₂ for Chemical Intermediate Synthesis – Oxidant in large-scale organic and inorganic synthesis.
Manganese Dioxide for VOCs Catalytic Combustion – Suitable for oxidation of toluene, xylene, and mixed VOC streams.
Reagent Grade MnO₂ for Laboratory Research Applications – High purity grade for analytical and small-batch synthesis.
MnO₂ Powder for Oxidizing Allylic and Benzylic Alcohols – Selective conversion with minimized over-oxidation.
High Surface Area Manganese Dioxide for Gas Phase Catalysis – Enhanced catalytic efficiency in fixed-bed reactors.
Manganese Dioxide for Producing Permanganates and Manganese Salts – Raw material for KMnO₄ and Mn salt production.
Chemical Grade MnO₂ for Polysulfide Sealant Curing – Oxidative curing agent in sealant systems.
Manganese Dioxide Supported Catalyst for CO Oxidation

High-activity MnO₂-based catalyst (85–95% purity) designed for efficient catalytic oxidation of carbon monoxide at low to moderate temperatures. Ideal for air purification, industrial exhaust treatment, and catalytic research.
Product SKU: MnO2-CO-CAT
Product Brand: BTL New Material
Product In-Stock: InStock
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