Abstract:
Olefins were polymd. by conveying an inactive high-yield Ti catalyst component to a vapor-phase polymn. reactor with a liq. comprising recycled quench liq., reactivating the Ti catalyst component inside the reactor with a metal alkyl reducing agent, and polymg. the olefin under gas-phase polymn. conditions with the reactivated catalyst to form a polyolefin having a low level of catalyst residue.
Abstract:
AN IMPROVED METHOD OF PREPARING A SUPPORTED CATAYST AND PROCESS FOR THE USE THEREOF FOR POLYMERIZATION OF ETHYLENE, TERMINAL OLEFINS OR A MIXTURE THEREOF THAT GIVES HIGH POLYMER YIELDS AND IMPROVED MOLECULAR WEIGHT CONTROL WHEN USED IN CONJUCTION WITH CHAIN TERMINATING AENTS WHICH COMPRISES CONTACTING SAID OLEFIN OR SAID MIXTURE WITH (A) A GROUP IV-B OR GROUP V-B TRANSITION METAL COMPOUND IN COMBINATION WITH A SUPPORT MATERIAL WHICH IS THE REACTION PRODUCT OF AN ALUMINUM HALIDE AND A GROUP II-1, II-B OR VII-B HYDROXYHAIDE, ALKOXIDE, HYDROXIDE-ALKOXIDE, HYDROUS OXIDE, HYDRATED OXIDE OR HYDROXIDE AND (B) A ORGANOALUMINUM COMPOUND.
Abstract:
Vapor phase polymerization of an olefin which comprises conveying inactive high yield titanium catalyst component to a vapor phase polymerization reactor with a liquid comprising recycled quench liquid, reactivating said inactive high yield titanium catalyst component inside the reactor with a metal alkyl reducing agent and polymerizing olefin under gas phase polymerization conditions with reactivated high yield catalyst to form a resinous polymer of an olefin having a low level of catalyst residues.
Abstract:
Vapor phase polymerization of an olefin which comprises conveying inactive high yield titanium catalyst component to a vapor phase polymerization reactor with a liquid comprising recycled quench liquid, reactivating said inactive high yield titanium catalyst component inside the reactor with a metal alkyl reducing agent and polymerizing olefin under gas phase polymerization conditions with reactivated high yield catalyst to form a resinous polymer of an olefin having a low level of catalyst residues.