Low-Temperature Ammonia Decomposition Catalyst
Low-Temperature Ammonia Decomposition Catalyst
Low-Temperature Ammonia Decomposition Catalyst
Low-Temperature Ammonia Decomposition Catalyst

Low-Temperature Ammonia Decomposition Catalyst

  • element:Nickel (Ni), Alumina (Al₂O₃)
  • purity:NiO ≥ 14%
  • shape:Granular or Cylindrical
  • specification:Customized as per specific requirements
  • packaging:Custom packaging as per customer request, with product name, specifications, manufacturer details, etc. marked on the packaging.

Low-temperature ammonia decomposition catalyst is an advanced catalytic material designed for efficient ammonia breakdown at reduced operating temperatures. Engineered using optimized metal-supported formulations, it ensures enhanced hydrogen yield, superior thermal stability, and minimized energy consumption in hydrogen production and ammonia purification applications. This catalyst is widely used in fuel processing, chemical manufacturing, and environmental treatment processes, providing reliable performance in controlled low-temperature reaction environments.

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Product Overview

Low-Temperature Ammonia Decomposition Catalyst uses nickel as the active component, alumina as the support, and special additives to enhance its performance. This catalyst is specifically designed for low-temperature ammonia decomposition hydrogen production processes. It can start the reaction at lower temperatures (activates at 600°C) and offers superior low-temperature activity and impurity tolerance compared to traditional catalysts. The catalyst ensures a high ammonia decomposition rate and significantly improves hydrogen production efficiency. It is available in reduced form, making it ideal for various ammonia decomposition hydrogen production systems.

Key Features

  • Excellent Low-Temperature Activity: Activates at 600°C, offering better low-temperature catalytic performance than traditional catalysts.
  • High Ammonia Decomposition Rate: Ensures a high ammonia decomposition rate even at lower temperatures, meeting the demand for efficient hydrogen production.
  • Strong Impurity Tolerance: Can tolerate higher levels of impurities in the feed, ensuring stable catalytic performance throughout the process.
  • High-Temperature Stability: Maintains stable performance even at high temperatures, ensuring long-term catalyst life.
  • Good Chemical Stability: Supplied in reduced form, suitable for a variety of process environments and ensuring optimal performance under different conditions.

Applications

  • Low-Temperature Ammonia Decomposition for Hydrogen Production: Widely used in low-temperature ammonia decomposition systems to generate high-purity hydrogen. Especially suitable for processes requiring low-temperature reactions.
  • Fertilizer Production: Used in ammonia decomposition processes to produce hydrogen, which is a critical raw material for fertilizer production.
  • Industrial Gas Preparation: Applied in hydrogen production processes, particularly in the petrochemical, chemical synthesis, and related industries.

 

Property NameValue
AppearanceBlack or dark gray, flake form
Bulk Density (kg/L)0.9-1.3
Size (mm)∮5.0×5.0
Radial Compressive Strength (Average) (N/CM) ≥130
Chemical CompositionNiO-Al₂O₃
Nickel Content (≥ %)42
Property NameValue
PressureAtmospheric pressure - 0.05 MPa
Temperature600℃ - 750℃
Space Velocity500 hr⁻¹
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Low-Temperature Ammonia Decomposition CatalystLow-Temperature Ammonia Decomposition Catalyst

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