An innovative enterprise specializing in the R&D and production of acidic catalytic materials, catalysts, and molecular sieve products.
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.
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.