506TCO Carbon Monoxide (CO) Removal Catalyst Description
506TCO Carbon Monoxide (CO) Removal Catalyst is a multimetal oxide system. It is mainly used to simultaneously remove carbon monoxide (CO) and oxygen from mixed gases containing both CO and oxygen (excluding olefins). When the O₂ chemical ratio is higher than CO, it is used to remove CO, and when the CO chemical ratio is higher than O₂, it is used to remove O₂.
This catalyst features high catalytic activity, deep purification, mild operating temperatures, energy savings in industry, safety, and ease of operation. It is widely used in the chemical industry and other industrial gases for CO and oxygen removal, with increasing applications in the environmental protection field.
506TCO Carbon Monoxide (CO) Removal Catalyst Specifications
Shape
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Cylindrical, Three-leaf shaped
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Bed Height-to-Diameter Ratio
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3-5
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Operating Temperature
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130–150°C
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Space Velocity
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≤5000 hr⁻¹
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Form
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∮2–10 mm
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Mechanical Strength
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40–60 N/particle
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Bulk Density
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1.0–1.2 g/ml
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CO Content in Gas Source
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≤3%
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Residual CO After Purification
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≤1 ppm
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Service Life
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≥3 years
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506TCO Carbon Monoxide (CO) Removal Catalyst Applications
- Simultaneously removes carbon monoxide (CO) and oxygen from mixed gases containing both CO and oxygen (excluding olefins).
- Removes CO when the O₂ chemical ratio is higher than CO.
- Removes O₂ when the CO chemical ratio is higher than O₂.
- Widely used in chemical and other industrial gases for CO and oxygen removal.
- Increasing applications in environmental protection.
506TCO Carbon Monoxide (CO) Removal Catalyst Packaging
Our 506TCO Carbon Monoxide (CO) Removal Catalyst is carefully handled during storage and transportation to preserve the quality of our product in its original condition.
Instruction For Use
Load the catalyst into the reactor with a space velocity of 1500–3000 hr⁻¹. At the same time, heat the reactor to allow the catalyst to gradually reach a uniform temperature of 130–150°C. Once the temperature is stabilized, the gas to be purified can be introduced at any time, and the catalyst will begin the CO removal (or oxygen removal) process.