MCS hydrogenation refining catalyst is a high-performance catalytic material designed to facilitate selective hydrogenation in refining applications with superior efficiency. Engineered using advanced metal-supported formulations, it ensures optimized reaction kinetics, enhanced impurity removal, and prolonged operational stability in industrial fuel and petrochemical processing. This catalyst is widely used in fuel purification, lubricant refining, and large-scale hydrocarbon conversion, delivering reliable performance in controlled refining environments.
Product Overview:
The MCS hydrogenation refining catalyst uses modified alumina as the support, containing molybdenum and cobalt as the active components, along with effective additives. It is specially designed for the pre-hydrogenation refining of high-sulfur reforming feedstocks. This catalyst offers high desulfurization activity, high space velocity, good compressive strength and wear resistance, as well as low bulk density. It can be regenerated, significantly lowering catalyst usage costs. Its excellent performance makes it widely applied in the pre-hydrogenation refining of reforming feedstocks and in kerosene hydrogenation for aviation fuel production.
Key Features:
- High Desulfurization Activity:Effectively removes sulfur from high-sulfur feedstocks, improving oil quality.
- High Space Velocity & Excellent Compressive Strength:Stable operation at high space velocities, with good wear resistance.
- Low Bulk Density:Reduces catalyst filling costs, improving process economics.
- Regenerable:The catalyst can be regenerated, extending its service life and reducing replacement frequency.
Applications:
- Reforming Feedstock Pretreatment:Suitable for the pre-hydrogenation refining of high-sulfur reforming feedstocks.
- Kerosene Hydrogenation Refining:Widely used in kerosene hydrogenation refining, especially in the production of aviation kerosene.
Physical and Chemical Properties | |
Item | Specification |
Appearance | Clover-shaped strips |
Specific Surface Area | ≥200 m²/g |
Size | ∮1.5-2.5×2-10 mm |
Pore Volume | ≥0.40 mL/g |
Radial Crushing Strength | ≥150 N/cm |
Chemical Composition | Mo-Co-Additive-Al₂O₃ |
Bulk Density | 0.68-0.75 kg/L |
Active Component Content | ≥20% |
Hydrogen Partial Pressure | 1.6 Mpa |
Temperature | 270°C |
Space Velocity | 8.0 hr⁻¹ |
Hydrogen/Oil Volume Ratio | 80 V/V |