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The research efforts of the Beijing Institute of Chemical Technology contribute to the advancement of synthetic resins. Its research team has improved HR catalysts, helping companies develop high-modulus polypropylene resins that find wide-ranging applications. The research team from the North China Institute of Chemical Technology has conducted in-depth studies on improving the performance of the spherical polypropylene HR catalyst they developed, in response to the needs of enterprises such as Zhenhai Refining & Chemical Co. for better product quality. This catalyst has helped companies develop a series of high-modulus polypropylene resins with excellent performance and environmental friendliness. These resins are now used in industries such as automobiles, heat-resistant home appliances, high-speed rail materials, and food packaging, serving as a breakthrough for the advancement of synthetic resins in Sinopec. The image shows the research team conducting polymerization evaluation tests on ultra-high hydrogen sensitivity catalysts on December 12. Since December, the research team from the North China Institute of Chemical Technology has been conducting in-depth studies on improving the performance of the spherical polypropylene HR catalyst they developed, in response to the needs of companies such as Zhenhai Refining & Chemical Co. for better product quality. This catalyst has helped companies develop a series of high-modulus polypropylene resins with excellent performance and environmental friendliness. These resins are now used in industries such as automobiles, heat-resistant home appliances, high-speed rail materials, and food packaging, serving as a breakthrough for the advancement of synthetic resins in Sinopec.