Patents by Inventor Gabor Kiss

Gabor Kiss has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20090292085
    Abstract: Provided are methods of producing polymers with broadened molecular weight and/or composition distribution in a continuous homogeneous polymerization system utilizing reactor temperature gradients, reactor polymer concentration gradients, monomer concentration gradients, catalyst concentration gradients, and combinations thereof in the polymerization reactor. Such methods are particularly suitable when utilizing metallocene catalysts and other single-site catalysts, which generally produce polymers with narrow molecular weight and composition distribution.
    Type: Application
    Filed: May 19, 2009
    Publication date: November 26, 2009
    Inventors: Gabor Kiss, Robert Patrick Reynolds, JR., John W. Chu, Patrick Brant, James Richardson Lattner
  • Publication number: 20090259005
    Abstract: Monomer/solvent separation and recycle processes for continuous supercritical, solution and advanced solution polymerization processes for propylene-containing polymers and their blends are provided. The advantageous monomer/solvent separation and recycle process includes heating a polymer-lean recycle stream coming from a gravimetric separator positioned downstream of the reactor to form a heated polymer-lean recycle stream, and subsequently combining the heated polymer-lean recycle stream with the one or more homogenous reactor effluent streams to form a heated reactor effluent mixed stream. The heated reactor effluent mixed stream may then be passed through a pressure let-down valve followed and a gravimetric separator, such as to provide for reduced fouling propensity of the polymer-rich phase and sufficient heating of the polymer-rich phase to be able to pass through the remainder of the processing steps to form a propylene based polymer product without additional heat.
    Type: Application
    Filed: April 3, 2009
    Publication date: October 15, 2009
    Inventors: Gabor Kiss, James Richardson Lattner
  • Patent number: 7585808
    Abstract: The present invention is directed to processes for preparing supported metal catalysts comprising one or more catalytically active metals applied to a porous catalyst support and to processes that use such catalysts. The process requires the formation of an organic complex during the manufacture of the catalyst which after its formation is either partially or fully decomposed before reduction if the metal to form the catalyst. The catalysts have high levels of metal dispersion and uniform distribution of catalytically active metals on the support. The catalysts obtained form the processes are particularly effective in catalysing Fischer-Tropsch reactions and as adsorbants for the removal or organosulfur compounds from hydrocarbons.
    Type: Grant
    Filed: November 18, 2003
    Date of Patent: September 8, 2009
    Assignee: ExxonMobil Research and Engineering Company
    Inventors: Andrzel Malek, James Clarke Vartuli, Stuart Leon Soled, Sabato Miseo, Jennifer Schaefer Feeley, Gary L. Casty, Gabor Kiss, Jeffrey M. Dysard, Joseph Ernest Baumgartner, Christine E. Kliewer, Steven T Ragomo
  • Publication number: 20090186995
    Abstract: In a process for producing a propylene-based olefin homopolymer or copolymer, a monomer composition comprising propylene is contacted with a polymerization catalyst system under homogeneous polymerization conditions (such as solution, supersolution or supercritical conditions), wherein the polymerization catalyst system includes an activator and a bridged bis-indenyl transition metal (group 4) compound substituted with a carbazole (unsubstituted or substituted) at the 4 position.
    Type: Application
    Filed: January 18, 2008
    Publication date: July 23, 2009
    Inventors: Jo Ann Canich, Peijun Jiang, Gary L. Casty, Gabor Kiss, Alexander Z. Voskoboynikov
  • Publication number: 20090163642
    Abstract: An in-line fluid phase process for blending low crystallinity polymer components (LCPCs) and high crystallinity polymer components (HCPCs) to form pellet-stable polyolefin pellets is provided. The in-line process for producing the blend includes providing two or more parallel reactor trains and one or more separators for product blending and product-feed separation; wherein the two or more reactor trains producting the LCPC and HCPC blend components operate under fluid phase bulk homogeneous conditions, and at least one of the reactor trains operates under supercritical conditions. The HCPC blend component is a high crystallinity polypropylene-based polymer. The LCPC blend component is a low crystallinity ethylene-based or propylene-based polymer. The resultant blend pellets exhibit a reduced tendency or an eliminated tendency to agglomerate during shipping, handling and storage.
    Type: Application
    Filed: December 18, 2008
    Publication date: June 25, 2009
    Inventors: Gabor Kiss, Alan Anthony Galuska
  • Publication number: 20090163678
    Abstract: Provided are bulk homogeneous polymerization processes for producing ethylene propylene random copolymers. The process includes contacting in a reactor or in a series of reactors propylene monomer, ethylene comonomer with one or more catalyst systems and optional solvent (present at less than 40 wt %), wherein the reactor train is at a temperature of between 65° C. and 180° C.
    Type: Application
    Filed: November 14, 2008
    Publication date: June 25, 2009
    Inventors: Gabor Kiss, Robert Patrick Reynolds, JR., John W. Chu, Steven P. Rucker, James Richardson Lattner
  • Publication number: 20090163643
    Abstract: Isotactic polypropylene ethylene-propylene copolymer blends and in-line processes for producing them. The blend of polypropylene and ethylene-propylene copolymer may have between 1 and 50 wt % of isotactic polypropylene with a melt flow rate of between 0.5 and 20,000 g/10 min and a melting peak temperature of 145° C. or higher, and wherein the difference between the DSC peak melting and the peak crystallization temperatures is less than or equal to 0.5333 times the melting peak temperature minus 41.333° C., and between 50 and 99 wt % of ethylene-propylene copolymer including between 10 wt % and 20 wt % randomly distributed ethylene with a melt flow rate of between 0.5 and 20,000 g/10 min, wherein the copolymer is polymerized by a bulk homogeneous polymerization process, and wherein the total regio defects in the continuous propylene segments of the copolymer is between 40 and 150% greater than a copolymer of equivalent melt flow rate and wt % ethylene polymerized by a solution polymerization process.
    Type: Application
    Filed: December 18, 2008
    Publication date: June 25, 2009
    Inventors: Gabor Kiss, Patrick Brant, Robert Partick Reynolds, JR., Aspy K. Mehta, Manika Varma-Nair, John W. Chu, Steven P. Rucker
  • Publication number: 20090127100
    Abstract: An FET-based gas sensor includes at least one field-effect transistor and at least one gas-sensitive layer and a reference layer. Any changes in work function occurring when materials of the layers are exposed to a gas are used to trigger the field-effect structures. The gas-sensitive layer includes a metal oxide having an oxidation catalyst on its surface and accessible to the measured gas.
    Type: Application
    Filed: December 9, 2008
    Publication date: May 21, 2009
    Inventors: Maximilian Fleischer, Gabor Kiss, Hans Meixner, Uwe Lampe
  • Publication number: 20090076216
    Abstract: A process for fluid phase in-line blending of plasticized polymers is provided.
    Type: Application
    Filed: September 9, 2008
    Publication date: March 19, 2009
    Inventors: Gabor Kiss, Alan Anthony Galuska, Robert Patrick Reynolds, JR., John W. Chu, Bryan R. Chapman, Patrick Brant, Sudhin Datta
  • Publication number: 20090076214
    Abstract: A process for in-line blending of plasticizers and polymers is provided.
    Type: Application
    Filed: September 9, 2008
    Publication date: March 19, 2009
    Inventors: Gabor Kiss, Alan Anthony Galuska
  • Publication number: 20090005520
    Abstract: Reactor designs and processes for operating such reactor designs to minimize or eliminate fouling in homogeneous polymerization processes (solution and supercritical). The process includes providing a reactor with one or more feed entry ports, wherein the reactor feed components are fed through each of the one or more feed entry ports at a linear velocity of greater than or equal to 0.3 m/min. The one or more feed entry ports may also be optionally extended beyond the interior reactor wall by greater than or equal to 2% of the internal radius of the reactor to further decrease the propensity for fouling. A stirred reactor may also include a stirrer feed port for purging the stirrer with a stirrer purge stream at a linear velocity of greater than or equal to 0.3 m/min to decrease stirrer fouling.
    Type: Application
    Filed: June 13, 2008
    Publication date: January 1, 2009
    Inventors: Gabor Kiss, Robert P. Reynolds, JR., Charles K. Morgan, John W. Chu, Megan Meier
  • Publication number: 20080281040
    Abstract: A monomer recycle process for fluid phase in-line blending of polymers is provided.
    Type: Application
    Filed: March 4, 2008
    Publication date: November 13, 2008
    Inventors: Gabor Kiss, Alan Anthony Galuska, James Richardson Lattner
  • Publication number: 20080242895
    Abstract: The invention relates to polyketone compounds and the at least partially hydrogenated products thereof, the use of said polyketone compounds and/or the at least partially hydrogenated products thereof as plasticizers, processes of making polyketone compounds and the at least partially hydrogenated products thereof, compositions comprising the polyketone compounds and/or the at least partially hydrogenated products thereof, and to articles formed from products of the invention.
    Type: Application
    Filed: March 28, 2008
    Publication date: October 2, 2008
    Inventors: Allen D. Godwin, Kenneth J. Buturla, Karla S. Colle, Gabor Kiss, Kirk C. Nadler, Abhimanyu O. Patil, Edris Eileen Pike, Ramzi Y. Saleh, Jon E. Stanat, Manika Varma-Nair, Stephen Zushma
  • Publication number: 20080234443
    Abstract: A process for fluid phase in-line blending of polymers.
    Type: Application
    Filed: December 17, 2007
    Publication date: September 25, 2008
    Inventors: Gabor Kiss, Patrick Brant, Robert Patrick Reynolds, Robert Charles Portnoy, David B. Dunaway
  • Publication number: 20080214767
    Abstract: This invention relates to an isotactic propylene homopolymer having: more than 15 and less than 100 regio defects (sum of 2,1-erythro and 2,1-threo insertions and 3,1-isomerizations) per 10,000 propylene units; an Mw of 35000 g/mol or more; a peak melting temperature of greater than 149° C.; an mmmm pentad fraction of 0.85 or more; a heat of fusion of 80 J/g or more; and a peak melting temperature minus peak crystallization temperature (Tmp?Tcp) of less than or equal to (0.907 times Tmp) minus 99.64 (Tmp?Tcp<(0.907×Tmp)?99.64), as measured in ° C. on the homopolymer having 0 wt % nucleating agent.
    Type: Application
    Filed: December 20, 2007
    Publication date: September 4, 2008
    Inventors: Aspy K. Mehta, Manika Varma-Nair, Gabor Kiss, Patrick Brant, Robert P. Reynolds, John W. Chu, Steven P. Rucker, Peijun Jiang
  • Publication number: 20080188635
    Abstract: Processes for polymerizing propylene. About 40 wt % to about 80 wt % propylene monomer, based on total weight of propylene monomer and diluent, and about 20 wt % to about 60 wt % diluent, based on total weight of propylene monomer and diluent, can be fed into a reactor. The propylene monomer can be polymerized in the presence of a metallocene catalyst and an activator within the reactor at a temperature of about 80° C. or more and a pressure of about 13 MPa or more to produce a polymer product in a homogenous system. About 20 wt % to about 76 wt % (preferably About 28 wt % to about 76 wt %) propylene monomer, based on total weight of the propylene monomer, diluent, and polymer product, can be present at the reactor exit at steady state conditions.
    Type: Application
    Filed: April 7, 2008
    Publication date: August 7, 2008
    Inventors: Patrick Brant, Gary L. Casty, Gabor kiss, Raymond A. Cook, James R. Lattner
  • Publication number: 20080153996
    Abstract: This invention relates to a process for polymerizing olefins, comprising the steps of: (a) contacting in one or more reactors, in a dense fluid homogeneous polymerization system, olefin monomers having three or more carbon atoms present at 30 weight % or more (based upon the weight of the monomers and comonomers entering the reactor), with: 1) one or more catalyst compounds, 2) one or more activators, 3) from 0 to 50 mole % comonomer (based upon the amount of the monomers and comonomers entering the reactor), and 4) 0 to 40 wt % diluent or solvent (based upon the weight of the polymerization system), at a temperature above the crystallization temperature of the polymerization system and a pressure no lower than 10 MPa below the cloud point pressure of the polymerization system and less than 200 MPa, where the polymerization system comprises the monomers, any comonomer present, any diluent or solvent present, any scavenger present, and the polymer product; (b) forming a reactor effluent comprising a polymer-mo
    Type: Application
    Filed: September 13, 2007
    Publication date: June 26, 2008
    Inventors: Chris B. Friedersdorf, Patrick Brant, Gabor Kiss
  • Publication number: 20080153997
    Abstract: This invention relates to a process to polymerize olefins comprising contacting, at a temperature of 60° C.
    Type: Application
    Filed: March 6, 2007
    Publication date: June 26, 2008
    Inventors: Gary L. Casty, Raymond A. Cook, Gabor Kiss, Patrick Brant
  • Patent number: 7279536
    Abstract: Process to polymerize olefins comprising contacting, in a polymerization system, olefins having three or more carbon atoms with a catalyst compound, activator, optionally comonomer, and optionally diluent or solvent, at a temperature above the cloud point temperature of the polymerization system and a pressure no lower than 10 MPa below the cloud point pressure of the polymerization system, where the polymerization system comprises any comonomer present, any diluent or solvent present, the polymer product, where the olefins having three or more carbon atoms are present at 40 weigh % or more.
    Type: Grant
    Filed: August 25, 2006
    Date of Patent: October 9, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Patrick Brant, Francis Charles Rix, Gabor Kiss, Robert P. Reynolds
  • Publication number: 20070181426
    Abstract: An FET-based gas sensor includes at least one field-effect transistor and at least one gas-sensitive layer and a reference layer. Any changes in work function occurring when materials of the layers are exposed to a gas are used to trigger the field-effect structures. The gas-sensitive layer includes a metal oxide having an oxidation catalyst on its surface and accessible to the measured gas.
    Type: Application
    Filed: April 21, 2005
    Publication date: August 9, 2007
    Inventors: Maximilian Fleischer, Gabor Kiss, Hans Meixner, Uwe Lampe