Synthesis of ethylamine catalyst is a high-performance catalytic material designed for the selective conversion of ethanol or ethylene into ethylamine, ensuring superior efficiency and stability. Engineered with optimized metal-supported formulations, it enhances reaction kinetics, improves yield selectivity, and ensures prolonged operational lifespan for industrial applications. This catalyst is widely used in fine chemical synthesis, pharmaceutical intermediate production, and agricultural chemical manufacturing, delivering reliable performance for continuous catalytic amination.
Product Overview:
The Synthesis of Ethylamine Catalyst is a high-efficiency industrial catalyst used for synthesizing ethylamine, mainly through the reaction of ethanol, ammonia, and hydrogen. This catalyst can produce monoethylamine, diethylamine, and triethylamine depending on reaction conditions. It is widely used in chemical synthesis and pharmaceutical industries. Compared to similar foreign products, this catalyst generates less methane, has a lighter bulk density, and exhibits superior catalytic performance. Its lifespan typically exceeds 2 years, and it is pre-reduced and stabilized, although low-temperature activation is required before use.
Key Features:
- High Conversion Rate:The catalyst achieves a conversion rate of over 98% under appropriate conditions.
- Low Methane Production:Compared to similar products, it generates less methane, ensuring high product purity.
- Excellent Performance:Features a lighter bulk density and higher compressive strength, making it suitable for long-term industrial operations.
- Long Lifespan:The catalyst's life typically exceeds 2 years, reducing replacement frequency and production costs.
- Low-Temperature Activation:While pre-reduced and stabilized, the catalyst requires low-temperature activation before use to ensure optimal catalytic performance.
Applications:
- Chemical Synthesis:Widely used in the reaction between ethanol, ammonia, and hydrogen to synthesize ethylamine, particularly in industrial processes that require the production of monoethylamine, diethylamine, or triethylamine.
- Pharmaceutical Industry:Used in the synthesis of important organic intermediates in pharmaceutical production.
- Industrial Production:Suitable for various industrial synthesis processes of ethylamine, particularly in applications requiring high conversion rates and selectivity.
Physical and Chemical Properties | |
Property | Value |
Appearance | Black cylindrical |
Size (mm) | Φ3.5-4×4-5 |
Active Component | Cobalt |
Radial Crush Strength (N/cm) | ≥130 |
Bulk Density (kg/L) | 0.9±0.05 |
Process Conditions | Value |
Pressure (MPa) | 1.1-1.5 |
Reaction Temperature (℃) | 130-155 |
Space Velocity (hr⁻¹) | 0.7 |
Ethanol:Ammonia:Hydrogen (Molar Ratio) | Adjust based on product requirements |
Conversion Rate | ≥98% |