Core Technologies
PetroChina Liaoyang Petrochemical Company has deeply cultivated the R&D of complete technology sets for the aromatics industry chain. It has independently mastered high-value-added conversion technologies across the entire aromatics carbon chain and utilizes its proprietary LYPAT-1 catalyst to efficiently convert polycyclic aromatics into lighter fractions, thereby enhancing the utilization rate of heavy aromatics resources. Simultaneously, the company advances research into cutting-edge low-carbon technologies—such as the oxidative dehydrogenation of ethane to ethylene—and leverages industry-academia-research collaboration to overcome technical bottlenecks in the production of new materials like PETG copolyester, facilitating the stable, large-scale production of high-end polyester products.
Capability Matrix
Core technology platforms driving sustainable transformation
Synthesis Technology
Advanced organic synthesis capabilities enabling complex molecular construction with high selectivity and yield.
Process Engineering
Optimized reaction conditions and scalable manufacturing processes for consistent industrial output.
Analytical Methods
Comprehensive characterization using chromatography, spectroscopy, and advanced instrumentation.
Quality Assurance
Multi-dimensional quality control framework ensuring product consistency and regulatory compliance.
Technology Integration
The company employs digitalization to optimize production processes and has established an intelligent factory management and control system. By utilizing molecular-level simulation and optimization systems to adjust unit operating conditions in real-time, it achieves precise control over the entire production workflow. Building upon a mature integrated refining-chemical processing platform, the company continuously optimizes energy consumption and material recovery technologies; this approach balances stable product quality with energy conservation and carbon reduction goals, providing reliable technical support for a wide range of high-end new chemical materials.