Patents Assigned to Chevron Philips Chemical Company LP
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Patent number: 10544094Abstract: A process includes reacting, in a reactor having a fixed bed containing a solid catalyst which contains a heterogeneous ion exchange resin, hydrogen sulfide and ethylene oxide in the presence of the solid catalyst to yield a reaction product which contains beta-mercaptoethanol. A reactor system includes the reactor, an ethylene oxide stream, a hydrogen sulfide stream, a fixed bed containing the solid catalyst placed in the reactor, and an effluent stream containing the reaction product. During steady state operation of the reactor in the process and the reactor system, the hydrogen sulfide and the ethylene oxide are present in a mole ratio in a range of about 9:1 to about 20:1.Type: GrantFiled: June 26, 2017Date of Patent: January 28, 2020Assignee: Chevron Philips Chemical Company, LPInventors: Daniel M. Hasenberg, Alex Pauwels
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Patent number: 10501567Abstract: Methods for determining the concentration of transition metal compounds in a solution containing more than one transition metal compound are described. Polymerization reactor systems providing real-time monitoring and control of the concentrations of the transition metal components of a multicomponent catalyst system are disclosed, as well as methods for operating such polymerization reactor systems.Type: GrantFiled: June 5, 2018Date of Patent: December 10, 2019Assignee: Chevron Philips Chemical Company LPInventors: Qing Yang, Richard M. Buck
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Patent number: 10301404Abstract: The present embodiments provide a system and method for separation within a polymer production process. Specifically, a flashline heater configured according to present embodiments may provide more time than is required for complete vaporization of liquid hydrocarbons that are not entrained within a polymer fluff produced within a polymerization reactor. Such extra time may allow for liquid hydrocarbons that are entrained within the polymer fluff to be vaporized.Type: GrantFiled: March 1, 2018Date of Patent: May 28, 2019Assignee: Chevron Philips Chemical Company LPInventors: John D. Hottovy, Scott E. Kufeld
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Patent number: 9845369Abstract: In an embodiment, a polymerization process comprises circulating, with a pump, a reaction mixture slurry in a polymerization loop reactor during a polymerization process, detecting a pressure change in the reaction mixture slurry downstream of the pump, generating, by a pressure controller, a takeoff valve actuation signal for a takeoff valve based on the pressure change, generating, by the pressure controller, a correction to the takeoff valve actuation signal, generating, by the pressure controller, a time delay for the correction, applying the correction to the takeoff valve actuation signal to generate a corrected takeoff valve actuation signal, providing the corrected takeoff valve actuation signal to the takeoff valve after the time delay, and adjusting a position of the takeoff valve in response to providing the corrected takeoff valve actuation signal. The reactor pressure is based on the takeoff valve position.Type: GrantFiled: February 3, 2017Date of Patent: December 19, 2017Assignee: Chevron Philips Chemical Company LPInventors: John D. Hottovy, Scott E. Kufeld
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Patent number: 9670296Abstract: Silica-coated alumina activator-supports, and catalyst compositions containing these activator-supports, are disclosed. Methods also are provided for preparing silica-coated alumina activator-supports, for preparing catalyst compositions, and for using the catalyst compositions to polymerize olefins.Type: GrantFiled: April 13, 2016Date of Patent: June 6, 2017Assignee: Chevron Philips Chemical Company LPInventors: Max P. McDaniel, Qing Yang, Randy S. Muninger, Elizabeth A. Benham, Kathy S. Clear
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Patent number: 9663594Abstract: Disclosed herein are methods of making bis(phenol) ligand compounds and transition metal bis(phenolate) compounds. The transition metal bis(phenolate) compounds can be used as components in catalyst systems for the polymerization of olefins.Type: GrantFiled: June 8, 2016Date of Patent: May 30, 2017Assignee: Chevron Philips Chemical Company LPInventor: Mark L. Hlavinka
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Patent number: 9550173Abstract: A method for producing a selective hydrogenation catalyst for hydrogenating a highly unsaturated hydrocarbon to an unsaturated hydrocarbon comprising contacting an inorganic catalyst support with a chlorine-containing compound to form a chlorided catalyst support and adding palladium to the chlorided catalyst support to form a supported-palladium composition. A selective hydrogenation catalyst for hydrogenating a highly unsaturated hydrocarbon to an unsaturated hydrocarbon formed by the method comprising contacting an inorganic catalyst support with a chlorine-containing compound to form a chlorided catalyst support and adding palladium to the chlorided catalyst support to form a supported-palladium composition.Type: GrantFiled: April 9, 2014Date of Patent: January 24, 2017Assignee: Chevron Philips Chemical Company LPInventors: Tin-Tack Peter Cheung, Joseph Bergmeister, III, Zongxuan Hong
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Patent number: 9469707Abstract: Processes and systems for the production for pressure management of a polymerization product flowing from a loop polymerization reactor to a separation vessel in a slurry polymerization system are disclosed herein. For example, a process comprises withdrawing a polymerization product slurry from a loop polymerization reactor, conveying the polymerization product slurry through a first line comprising a continuous take-off valve to yield a mixture comprising a vapor phase, wherein the mixture exits the continuous take-off valve, and conveying the mixture through a second line comprising a flashline heater so that the mixture has a Froude number in a range from about 5 to about 100.Type: GrantFiled: December 8, 2015Date of Patent: October 18, 2016Assignee: Chevron Philips Chemical Company LPInventors: Scott E. Kufeld, Bruce E. Kreischer, John D. Hottovy
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Patent number: 9469752Abstract: Disclosed are cold flow resistant and dimensionally stable compositions containing a diene rubber and a conjugated diene monovinylarene block copolymer, and generally, these compositions have solutions viscosities and cold flows that are less than that of the diene rubber. Methods for reducing cold flow and for storage-stabilizing bales of diene rubbers also are disclosed.Type: GrantFiled: December 8, 2014Date of Patent: October 18, 2016Assignee: Chevron Philips Chemical Company LPInventors: Cliff C. Pettey, David L. Hartsock, Jinping Joe Zhou
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Patent number: 9441000Abstract: Metallocene compounds and pharmaceutical compositions containing these metallocene compounds are disclosed and described. Methods of treating cancer employing such metallocene compounds and pharmaceutical compositions also are provided.Type: GrantFiled: July 10, 2014Date of Patent: September 13, 2016Assignee: Chevron Philips Chemical Company, LPInventors: Mark L. Hlavinka, Qing Yang, Mandi Michelle Murph
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Patent number: 9421529Abstract: A method of reactivating a spent catalyst comprising a metal and a catalyst support, the method comprising redispersing the metal in the spent catalyst to produce a redispersed spent catalyst, contacting the redispersed spent catalyst with a reactivating composition to produce a redispersed, reactivated spent catalyst, and thermally treating the redispersed, reactivated spent catalyst to produce a reactivated catalyst.Type: GrantFiled: January 20, 2014Date of Patent: August 23, 2016Assignee: Chevron Philips Chemical Company LPInventor: An-Hsiang Wu
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Patent number: 9289739Abstract: The present invention discloses a continuous calcination vessel which can be used to prepare calcined chemically-treated solid oxides from solid oxides and chemically-treated solid oxides. A process for the continuous preparation of calcined chemically-treated solid oxides is also provided. Calcined chemically-treated solid oxides disclosed herein can be used in catalyst compositions for the polymerization of olefins.Type: GrantFiled: June 23, 2009Date of Patent: March 22, 2016Assignee: Chevron Philips Chemical Company LPInventors: Elizabeth A. Benham, Max P. McDaniel
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Patent number: 9221920Abstract: A manufacturing system for producing polyolefin includes a polymerization reactor, a flash chamber, and a purge column. In certain embodiments, the purge column may receive a solids stream directly from the flash chamber. Further, the purge column may function as a feed tank for an extruder within an extrusion/loadout system. According to certain embodiments, the manufacturing system may be configured to consume less than 445 kilowatt-hours of energy per metric ton of polyolefin produced based on consumption of electricity, steam, and fuel gas.Type: GrantFiled: May 23, 2014Date of Patent: December 29, 2015Assignee: Chevron Philips Chemical Company LPInventors: Robert R. McElvain, John D. Hottovy, Ralph W. Romig, Donald W. Verser, David H. Burns, John H. Tait, Richard Peacock, James E. Hein, Scott E. Kufeld, Carl W. Fenderson, Anurag Gupta, Dale A. Zellers
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Publication number: 20150175721Abstract: A system and method for a gas phase reactor to polymerize olefin into a polyolefin, and for a solids recovery system to separate solids from overhead gas discharged from the gas phase reactor and to return the solids to the gas phase reactor. A control system may perform a fluid flow calculation of the solids recovery system. The solids recovery system may employ a vertical motive device and/or horizontal motive device.Type: ApplicationFiled: December 20, 2013Publication date: June 25, 2015Applicant: Chevron Philips Chemical Company, LPInventor: Gregory G. Hendrickson
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Patent number: 8729277Abstract: The present invention discloses processes for producing ?-nitrocarbonyl and ?-dicarbonyl compounds, which can be precursors in the synthesis of pyrrole compounds. A process for producing pyrroles such as 2,5-dimethylpyrrole, and structurally similar pyrrole compounds, is also disclosed.Type: GrantFiled: February 28, 2012Date of Patent: May 20, 2014Assignee: Chevron Philips Chemical Company LPInventors: Hu Yang, Eduardo J. Baralt
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Patent number: 8637420Abstract: The present invention provides metal-containing sulfated activator-supports, and polymerization catalyst compositions employing these activator-supports. Methods for making these metal-containing sulfated activator-supports and for using such components in catalyst compositions for the polymerization of olefins are also provided.Type: GrantFiled: October 9, 2012Date of Patent: January 28, 2014Assignee: Chevron Philips Chemical Company LPInventors: Qing Yang, Max P. McDaniel, Tony R. Crain
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Patent number: 8637616Abstract: The present invention provides polymerization processes utilizing an ansa-metallocene catalyst system for the production of olefin polymers. Polymers produced from the polymerization processes have properties that vary based upon the presence or the absence of hydrogen and/or comonomer in the polymerization process.Type: GrantFiled: October 7, 2010Date of Patent: January 28, 2014Assignee: Chevron Philips Chemical Company LPInventors: Richard M. Buck, Qing Yang, Albert P. Masino, Christopher E. Wittner
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Publication number: 20130245210Abstract: The present invention provides dual catalyst systems and polymerization processes employing these dual catalyst systems. The disclosed polymerization processes can produce olefin polymers at higher production rates, and these olefin polymers may have a higher molecular weight and/or a lower melt index.Type: ApplicationFiled: May 7, 2013Publication date: September 19, 2013Applicant: Chevron Philips Chemical Company LPInventors: Albert P. Masino, Rex E. Murray, Qing Yang, Steve J. Secora, Kumudini C. Jayaratne, William B. Beaulieu, Errun Ding, Gary L. Glass, Alan L. Solenberger, Ted H. Cymbaluk
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Patent number: 8501654Abstract: The present invention provides dual catalyst systems containing a metallocene catalyst and a hydrogen scavenging catalyst, and polymerization processes employing these dual catalyst systems. Due to a reduction in hydrogen levels in the polymerization processes, olefin polymers produced from these polymerization processes may have a higher molecular weight, a lower melt index, and higher levels of unsaturation.Type: GrantFiled: June 5, 2012Date of Patent: August 6, 2013Assignee: Chevron Philips Chemical Company LPInventors: Rex E. Murray, William B. Beaulieu, Qing Yang, Errun Ding, Gary L. Glass, Alan L. Solenberger, Steven J. Secora
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Patent number: 8476394Abstract: A polymeric resin having a lower molecular weight (LMW) component and a higher molecular weight (HMW) component and the resin having a density of from about 0.955 g/cc to about 0.967 g/cc, a melt index of from about 0.5 dg/min to about 4.0 dg/min, and a zero shear viscosity of from about 3.0×103 Pa-s to about 4.0×104 Pa-s. A method comprising providing a catalyst system comprising at least one transition metal complex, an activator support, and a cocatalyst; contacting the catalyst system with an olefin under conditions suitable to form a polyolefin, wherein the polyolefin has a HMW component and a LMW component; and recovering the polyolefin, wherein the polyolefin has a melt index of from about 0.5 dg/min to about 4.0 dg/min, and a zero shear viscosity of from about 3.0×103 Pa-s to about 4.0×104 Pa-s.Type: GrantFiled: September 3, 2010Date of Patent: July 2, 2013Assignee: Chevron Philips Chemical Company LPInventors: Guylaine St. Jean, Qing Yang, Chung Tso, Max P. McDaniel