Catalog No. | CM4074 |
---|---|
Material | NiO, Al2O3, and other Auxiliaries |
Size | Φ12x12 |
Appearance | Gray-black four-hole cylinder |
Water vapor/Carbon | 2.5~5.0 |
Hydrocarbon Steam Reforming Catalyst for Heat Exchange Reformer has good low-temperature activity and has obvious activity and a high conversion rate at 400℃. Stanford Advanced Materials (SAM) has rich experience in manufacturing and supplying high-quality Catalysts.
Related products: High Pressure Methanol Synthesis Catalyst, Medium Pressure Methanol Synthesis Catalyst, Low Pressure Methanol Synthesis Catalyst
Hydrocarbon Steam Reforming Catalyst for Heat Exchange Reformer is suitable for the reforming section of synthetic ammonia, methanol, and hydrogen production units using natural gas and methane-rich gas as raw materials, and reacts to methane and water vapor to generate hydrogen, carbon monoxide, and carbon dioxide. It is a new type of energy-saving one-stage reforming catalyst. It is used in the heat exchange reformer with a smaller inner diameter of the reforming tube.
The catalyst has good low-temperature activity and has obvious activity and a high conversion rate at 400℃. The catalyst is added with anti-carbon additives, which have strong anti-carbon deposition ability, ensuring long-term stable operation under low water-carbon ratio conditions. Good anti-toxicity, stronger activity, and thermal stability. The catalyst has a reasonable shape and particle size is not easy to bridge during the filling process and has a better reaction effect.
Main Physical Properties |
|
Material |
NiO, Al2O3, and other Auxiliaries |
Size |
Φ12x12 |
Appearance |
Gray-black four-hole cylinder |
Reaction Conditions |
|
Transformer tube inlet temperature |
350-650℃ |
Transformer tube outlet temperature |
600-950℃ |
Recommended Airspeed (h-1) |
≤2300h-1 |
water vapor/Carbon |
2.5~5.0 |
Our Hydrocarbon Steam Reforming Catalyst for Heat Exchange Reformer is carefully handled during storage and transportation to preserve the quality of our product in its original condition.
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