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RK-11 Series Reforming Catalyst

Primary Reforming Catalyst


General Description


Dalian Reak RK-11 Series pre-reforming catalyst is used for primary reforming for CH4 steam reforming to CO an H2. We are able to provide following best match for various reforming furnaces based on actual operation conditions.

Technical Highlights


Low pressure drop

   RK-11 series catalysts are available in a range of different sizes. Combined with excellent activity, this allows optimized loading to  minimize pressure drop. Pressure drop can meet different kinds of design requirements.

High strength

   RK-11 series catalysts have stable strength under operation conditions and maintain more than 85% of initial strength after 5 years of operation.

High activity?

   Methane slip is guaranteed to lower than the design data under operation conditions for the whole lifespan of RK-11 series catalyst.

High stability

   RK-11 series catalysts show high stability under conditions of temperature variation gas fluctuation and occasional sulfur content shift.

Secondary Reforming Catalyst


General Description


Dalian Reak RK-12 series reforming catalyst is used for secondary reforming for CH4 steam reforming to CO and H2. We are able to provide following best match for various reforming furnaces based on actual operation conditions. 

Technical Highlights


Low pressure drop

RK-12 series catalysts are available in a range of different sizes. Combined with excellent activity, this allows optimized loading to minimize pressure drop. Pressure drop can meet different kinds of design requirements.

High strength

RK-12 series catalysts have stable strength under operation conditions and maintain more than 85% of initial strength after 5 years of operation.

High activity

Methane slip is guaranteed to lower than the design data under operation conditions for the whole lifespan of RK-12 series catalyst.

High stability

RK-12 series catalysts show high stability under conditions of temperature variation, gas fluctuation and occasional sulfur content shift.

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