Polyolefin product produced by liquid phase process
Abstract
Polyolefin product produced using process conducted in apparatus for olefin polymerization which includes one or more shell and tube olefin polymerization reactors, each of which has an olefin polymerization reaction mixture inlet connection and a crude polyolefin product outlet connection. Each reactor is equipped with a recirculation system including a pump arranged to circulate a reaction mixture through the tube side of the reactor independently of the introduction of olefin polymerization reaction mixture into the reactor. The apparatus may also include an inlet reaction mixture distribution manifold and an outlet polymerization reaction mixture collection manifold interconnecting the reactors for operation in parallel. The apparatus also includes catalyst composition and catalyst modifier inlets for each reactor arranged such that a catalyst modifier to may be introduced into each reactor at a rate which is independent of the introduction of catalyst composition.
Claims
exact text as granted — not AI-modified1 . A polyolefin product produced by a method for conducting an olefin polymerization reaction, said method comprising:
recirculating an olefin polymerization reaction mixture in a reaction zone of an olefin polymerization reactor; introducing an olefin containing feedstock into said recirculated olefin polymerization reaction mixture, said olefin polymerization reaction mixture being recirculated at a flow rate which is independent of the rate of introduction of said feedstock into said zone; introducing a catalyst composition comprising a catalyst and a catalyst modifier into said reaction mixture; subjecting said polymerization reaction mixture to exothermic olefin polymerization reaction conditions in said zone in the presence of said catalyst composition; and introducing a catalyst modifier into said recirculating olefin polymerization reaction mixture at a rate which is independent of the rate of introduction of said catalyst composition into said zone.
2 . A polyisobutylene product produced by a liquid phase polymerization process comprising:
providing a feedstock comprising isobutylene; providing a catalyst composition comprising a complex of BF 3 and a complexing agent; introducing said feedstock and said catalyst composition into a reaction mixture in a reaction zone; intimately intermixing said reaction mixture, said feedstock and said catalyst composition to present an intimately intermixed reaction admixture in said reaction zone; maintaining the intimately intermixed reaction admixture in its intimately intermixed condition while the same is in said reaction zone, to thereby cause the isobutylene therein to undergo polymerization to form polyisobutylene; introducing an additional amount of said complexing agent into said intimately intermixed reaction admixture at a rate which is independent of the rate of introduction of said catalyst composition; and withdrawing a product stream comprising polyisobutylene from said reaction zone.
3 . A polyisobutylene product as set forth in claim 2 , wherein said reaction zone comprises a loop reactor in which the reaction admixture is continuously recirculated at a first volumetric flow rate, wherein said feedstock and said catalyst composition are continuously introduced at a combined second volumetric flow rate, wherein said complexing agent comprises methanol, wherein the ratio of BF 3 to methanol in said catalyst composition is no less than about 0.59:1, and wherein said product is a highly reactive polyisobutylene
4 . A polyisobutylene product as set forth in claim 3 , wherein the ratio of BF 3 to methanol in said catalyst composition is in the range of from about 0.59:1 to about 0.62:1.
5 . A polyisobutylene product as set forth in claim 3 , wherein said additional amount is sufficient to cause the ratio of BF 3 to methanol in said intimately intermixed reaction admixture catalyst composition to be maintained in the range of from about 0.59:1 to about 0.60:1 during the course of the reaction.
6 . A polyisobutylene product as set forth in claim 4 , wherein said additional amount is sufficient to cause the ratio of BF 3 to methanol in said intimately intermixed reaction admixture catalyst composition to be maintained in said range during the course of the reaction.
7 . A polyisobutylene product as set forth in claim 2 , wherein said reaction zone comprises a loop reactor in which the reaction admixture is continuously recirculated at a first volumetric flow rate, wherein said feedstock and said catalyst composition are continuously introduced at a combined second volumetric flow rate, wherein said complexing agent comprises methanol, wherein the ratio of BF 3 to methanol in said catalyst composition is no less than about 1:1, and wherein said product is a mid-range vinylidene content polyisobutylene.
8 . A polyisobutylene product as set forth in claim 7 , wherein a sufficient amount of methanol is independently introduced to cause said ratio to be maintained during the course of the reaction.
9 . A polyisobutylene product produced by a single-stage liquid phase polymerization process, said process comprising:
providing a liquid feedstock comprising at least one olefinic component; providing a catalyst composition comprising a complex of BF 3 and a complexing agent therefor, said complexing agent comprising a glycol or an aliphatic alcohol having a primary hydroxyl group and no hydrogen on a beta carbon, said complex being stable at temperatures needed to produce said polyolefin product; introducing said feedstock and said catalyst composition into a residual reaction mixture in a loop reactor reaction zone; recirculating the residual reaction mixture with the feedstock and the catalyst composition therein in said zone at a recirculation rate sufficient to cause intimate intermixing of the residual reaction mixture, the feedstock and the catalyst composition to thereby present a recirculating, intimately intermixed reaction admixture of the residual reaction mixture, the feedstock and the catalyst composition in said reaction zone; maintaining the recirculating intimately intermixed reaction admixture in its intimately intermixed condition and removing heat of reaction from the reaction admixture at a rate calculated to provide a substantially constant reaction temperature in the reaction admixture while the same is recirculating in said reaction zone, said constant reaction temperature being at a level appropriate for causing olefinic components introduced in said feedstock to undergo polymerization to form said polyolefin product in the presence of said catalyst composition; providing a catalyst modifier and introducing the same into said residual reaction mixture separately from said catalyst composition; withdrawing a product stream comprising polyolefin product and catalyst composition from said reaction zone; and controlling the introduction of said feedstock into said reaction zone and the withdrawal of said product stream from the reaction zone such that the residence time of the olefinic components undergoing polymerization in the reaction zone is appropriate for production of said polyolefin product.
10 . A low molecular weight, highly reactive polyisobutylene produced by a liquid phase polymerization process, said process comprising: providing a feedstock comprising isobutylene; providing a catalyst composition comprising a complex of BF 3 and a complexing agent therefor; introducing said feedstock and said catalyst composition into a residual reaction mixture in a reaction zone; intimately intermixing said residual reaction mixture, said feedstock and said catalyst composition to present an intimately intermixed reaction admixture in said reaction zone; maintaining the intimately intermixed reaction admixture in its intimately intermixed condition and keeping it at a temperature of at least about 0° C. while the same is in said reaction zone, to thereby cause the isobutylene therein to undergo polymerization to form said polyisobutylene; providing a catalyst modifier and introducing the same into said residual reaction mixture separately from said catalyst composition; withdrawing a product stream comprising low molecular weight, highly reactive polyisobutylene from said reaction zone; and controlling the introduction of said feedstock into said reaction zone and the withdrawal of said product stream from the reaction zone such that the residence time of the isobutylene undergoing polymerization in the reaction zone is no greater than about 4 minutes.
11 . A low molecular weight, highly reactive polyisobutylene as set forth in claim 10 , wherein said polyisobutylene has an average molecular weight in the range of from about 500 to about 5000 and a vinylidene content of at least 70%, wherein said catalyst composition comprises a complex of BF 3 and a C 1 to C 8 primary alcohol, and wherein the amount of catalyst complex introduced into said reaction zone is controlled such that about 0.1 to about 10 millimoles of BF 3 are introduced for each mole of isobutylene introduced in said feedstock.
12 . A low molecular weight, highly reactive polyisobutylene as set forth in claim 11 , wherein said feedstock comprises at least about 40% by weight isobutylene, wherein said catalyst composition comprises a complex of BF 3 and methanol, wherein the amount of catalyst complex introduced into said reaction zone is controlled such that about 0.5 to about 2 millimoles of BF 3 are introduced for each mole of isobutylene introduced in said feedstock, and wherein the introduction of said feedstock into said reaction zone and the withdrawal of said product stream from the reaction zone are controlled such that the residence time of the isobutylene undergoing polymerization in the reaction zone is within the inclusive range of from about 45 to about 90 seconds, whereby said polyisobutylene has an average molecular weight in the range of from about 950 to about 1050, a polydispersity within the range of from about 1.3 to about 1.5 and a vinylidene content of at least about 80%.Join the waitlist — get patent alerts
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