Catalytic cracking catalyst

HBCH Heavy Oil Conversion Catalyst

The HBCH catalyst uses composite alumina as a binder and composite molecular sieves as the active component. It features moderate acidity, excellent abrasion resistance, strong resistance to heavy-metal contamination, and high capability for heavy-oil conversion. This catalyst is particularly suitable for catalytic cracking units processing heavy oils with relatively high residue content and inferior feedstock quality.

HBCL Low-Coke High-Yield Catalyst

The HBCL catalyst support is a modified acidic material. By tuning the acid strength and distribution of acidic sites in the support material, and using ultra-stable molecular sieves as the active component, this catalyst effectively reduces coking propensity while maintaining its cracking performance. As a result, it achieves high yields of target products such as liquefied petroleum gas, gasoline, and diesel, while minimizing the yields of byproducts like coke and dry gas.
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HBCH Heavy Oil Conversion Catalyst

The HBCH catalyst uses composite alumina as a binder and composite molecular sieves as the active component. It features moderate acidity, excellent abrasion resistance, strong resistance to heavy-metal contamination, and high capability for heavy-oil conversion. This catalyst is particularly suitable for catalytic cracking units processing heavy oils with relatively high residue content and inferior feedstock quality.

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HBCL Low-Coke High-Yield Catalyst

The HBCL catalyst support is a modified acidic material. By tuning the acid strength and distribution of acidic sites in the support material, and using ultra-stable molecular sieves as the active component, this catalyst effectively reduces coking propensity while maintaining its cracking performance. As a result, it achieves high yields of target products such as liquefied petroleum gas, gasoline, and diesel, while minimizing the yields of byproducts like coke and dry gas.

View More →

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