High-Activity Methanol Synthesis Catalyst
High-Activity Methanol Synthesis Catalyst
High-Activity Methanol Synthesis Catalyst
High-Activity Methanol Synthesis Catalyst

High-Activity Methanol Synthesis Catalyst

  • element:Copper (Cu), Zinc (Zn), Aluminum (Al), Additives
  • purity:Customized based on specific requirements
  • shape:Granular or cylindrical
  • specification:Customized according to customer needs
  • packaging:Plastic bag lining inside the drum, with a net weight of 30 kg per drum

High-activity methanol synthesis catalyst is a specialized catalytic material designed to efficiently convert synthesis gas (CO + H₂) into methanol with superior selectivity and stability. Engineered with advanced metal-supported formulations, it optimizes reaction kinetics, enhances conversion rates, and ensures prolonged operational lifespan for industrial applications. This catalyst is widely used in methanol production, chemical feedstock refinement, and large-scale petrochemical processing, providing reliable performance for continuous hydrogenation reactions.

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Product Overview

The high-activity methanol synthesis catalyst is specifically designed for low-pressure methanol synthesis units, suitable for feedstocks such as natural gas, coke oven gas, and coal-based syngas. This catalyst exhibits significant high activity at low temperatures, improving the space-time yield and CO conversion rate in methanol synthesis. It offers strong thermal stability and selectivity, helping to reduce organic by-products and increasing the methanol content in crude methanol. The catalyst has a long service life, low pressure drop, ease of operation, high strength, and minimal issues with caking, making it an ideal choice for increasing methanol plant productivity.

Key Features

  • High Activity: The catalyst demonstrates high activity at both low and high temperatures, with especially enhanced activity at lower temperatures, optimizing the methanol synthesis reaction.
  • Long Service Life: Enhanced thermal stability allows the catalyst to maintain its performance over a long period, extending its operational life.
  • Low Alcohol Content: The catalyst reduces organic by-products, ensuring higher purity methanol with lower alcohol content in the product.
  • Good Selectivity: Excellent selectivity ensures high methanol yield and minimizes the formation of other by-products.
  • Ease of Reduction and Operation: The catalyst has good reducibility, is easy to operate, has high strength, reduces caking issues, and maintains a low pressure drop.

Applications

  • Methanol Synthesis: Widely used in low-pressure methanol synthesis units, especially those processing natural gas, coke oven gas, and coal-based syngas.
  • Medium and Low-Pressure Methanol Processes: Suitable for medium and low-pressure methanol synthesis processes, including Lurgi and ICI processes, with activity levels comparable to international products.
  • Chemical Industry: Applied in large-scale industrial methanol synthesis, improving methanol yield and purity while reducing energy consumption.

 

Reference Operating Conditions
Process ConditionsValue
Pressure (MPa)3.0–15.0
Temperature (℃)200–300
Space Velocity (h⁻¹)7000–20000

 

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