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Metal catalyst carrier
1. Supporting the Active Catalyst Components
• Providing a large surface area, enabling high dispersion of precious metals (such as Pt, Pd, and Rh) or other catalytic components, thereby improving reaction efficiency.
2. Enhancing Thermal Conductivity
catalyst carrier
catalyst carrier
gaslyst
carrier converter
Speciflcations
Main Functions of Metal Catalyst Supports
1. Supporting the Active Catalyst Components
• Providing a large surface area, enabling high dispersion of precious metals (such as Pt, Pd, and Rh) or other catalytic components, thereby improving reaction efficiency.
Item
Units
Technical Index
Unit density
CPSI
5-1200
Outer diameter range
mm
10-960
Inner core
1 core, 2 cores
3 cores
Conversion rate
%
request to the factory
Applications

1. Petrochemicals

• Hydrogenation reactions: such as hydrodesulfurization (using Ni, Co-Mo, or Ni-Mo catalysts) and hydrocracking.

• Catalytic reforming: Using platinum (Pt) catalysts to increase gasoline octane rating.

• Isomerization reactions: Improving fuel performance, such as using Pt or Pt-Sn catalysts to convert normal alkanes to isoalkanes.

2. Organic synthesis

• Coupling reactions: Pd and Ni catalysts are commonly used in reactions such as the Suzuki, Heck, and Sonogashira reactions.

• Selective oxidation: Such as the oxidation of alcohols to aldehydes/ketones (commonly using Ru, Pt, or Pd).

• Addition reactions: For example, hydrogenation reactions use Ni, Pd, or Pt catalysts (e.g., hydrogenation of olefins to alkanes).

3. Environmental protection

• Automobile exhaust treatment: Three-way catalysts (Pt, Pd, and Rh) are used to convert CO, NO, and hydrocarbons to CO, N, and HO. • Industrial waste gas treatment: For example, in the catalytic combustion of VOCs (volatile organic compounds), precious metal catalysts are often used.

4. Energy conversion and storage

• Fuel cells: For example, in proton exchange membrane fuel cells (PEMFCs), Pt is often used as anode and cathode catalysts.

• Hydrogen production from water electrolysis: Catalysts such as Ni, Pt, and Ir are used to promote hydrogen and oxygen evolution reactions.

• Battery technology: For example, oxygen reduction reaction catalysts (Mn, Fe, Co, Pt, etc.) in metal-air batteries.

5. Ammonia synthesis and other industrial catalytic processes

• Ammonia synthesis: Fe is used as the main catalyst (such as Fe-K-AlO) to catalyze the nitrogen-hydrogen reaction under high temperature and pressure.

• Methanol synthesis: Copper (Cu)-based catalysts are used to react CO or CO with H to produce methanol.

6. Green chemistry and sustainable development

• Renewable resource conversion: For example, in the conversion of biomass to fuels and chemicals, catalysts such as Ru, Pd, and Ni are used. • CO conversion: such as CO hydrogenation to produce methanol, hydrocarbons, etc. (using metal catalysts such as Cu, Ru, Ni, etc.).


FAQ

Main Functions of Metal Catalyst Supports

1. Supporting the Active Catalyst Components

• Providing a large surface area, enabling high dispersion of precious metals (such as Pt, Pd, and Rh) or other catalytic components, thereby improving reaction efficiency.

2. Enhancing Thermal Conductivity

• The high thermal conductivity of metals facilitates rapid heat transfer and uniform temperature distribution, reducing the risk of hotspot formation and making them particularly suitable for systems with rapid thermal response, such as cold-start catalysis.

3. Providing Mechanical Strength and Structural Stability

• Withstands high mechanical shock and vibration, making them suitable for high-stress environments such as automotive exhaust systems and industrial reactors.

4. Supporting Complex Structural Design

• Metal materials can be manufactured into complex structures such as honeycomb, foam, or mesh, optimizing airflow distribution and contact efficiency.

5. Strong Thermal Shock Resistance

• Particularly suitable for operating conditions with frequent startups or severe temperature fluctuations. Note: Mesh sizes are 50/100/200/300/400/500/600/700 CPSI.

Maximum temperature: 900°C

 


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