High-Performance Hydrogenation Catalyst for Organic Sulfur Removal in Coke Oven Gas

Discover our advanced hydrogenation catalyst, engineered to efficiently remove organic sulfur and unsaturated hydrocarbons from coke oven gas. We are a leading manufacturer and supplier, offering competitive pricing and exceptional quality to meet your industrial gas purification needs. Get a quote and samples today!

Get a Quote & Sample

Key Advantages of Our Hydrogenation Catalyst

Exceptional Purity

Our JT-8 hydrogenation catalyst significantly reduces organic sulfur content in coke oven gas, ensuring compliance with stringent gas quality standards and improving downstream process efficiency. We are a dedicated supplier committed to purity.

Cost-Effective Solution

We offer competitive pricing for our high-performance hydrogenation catalyst, making it a cost-effective choice for industrial gas purification. Contact us for a quote and explore bulk purchase options.

Proven Performance

With a proven track record, our JT-8 catalyst delivers high conversion rates (up to 97%) under demanding operating conditions, making it a reliable solution for your coke oven gas treatment needs. We are a preferred manufacturer in China.

Applications in Gas Purification

Coke Oven Gas Treatment

Specifically designed for the removal of organic sulfur compounds and unsaturated hydrocarbons in coke oven gas streams, enhancing gas quality and preventing equipment damage.

Industrial Gas Purification

Ideal for various industrial gas purification processes where the removal of sulfur compounds is critical for downstream applications and environmental compliance. We are a trusted supplier for these needs.

Petrochemical Processing

Used to purify gas streams in petrochemical plants, ensuring the integrity of catalysts and processes by removing contaminants like organic sulfur.

Chemical Manufacturing

Applicable in chemical manufacturing processes that require high-purity feedstocks, particularly where sulfur content in input gases needs to be minimized.