Patents Represented by Attorney Joseph DiSalvo
  • Patent number: 7838056
    Abstract: A method for replenishing carbon dioxide gas in a carbonated beverage container where a carbon dioxide regulator releases carbon dioxide at a rate approximately equal to the rate of carbon dioxide loss from said container. Also shown is a packaging system for maintaining a consistent pressure of a carbonated beverage having a closure, a plastic container, and a carbon dioxide regulator. Also shown is a method for making a packaging system for maintaining a consistent pressure in a carbonated beverage having overmolding a preform around an assembly for a carbon dioxide regulator, or blending a carbon dioxide regulator into the plastic material used to form the body of a container for said carbonated beverage. Also shown is a carbon dioxide regulator composition for replenishing carbon dioxide gas in a carbonated beverage container having polymeric carbonates, organic carbonates, or materials that absorb and subsequently release carbon dioxide.
    Type: Grant
    Filed: February 25, 2005
    Date of Patent: November 23, 2010
    Assignee: BP Corporation North America Inc.
    Inventors: John M. Forgac, Francis M. Schloss, Matthew A. Kulzick
  • Patent number: 7214415
    Abstract: Monolayer packages comprised of an oxygen scavenging composition suitable for direct contact with package contents and recycle with other polyester bottles are disclosed. The oxygen scavenging composition is comprised of a modified copolymer which is comprised of predominantly polyester segments and an oxygen scavenging amount of oxygen scavenging segments. The polyester segments comprise segments derived from typical bottling and packaging polyesters such as PET and PEN. Use of these oxygen scavenging copolymers in bottles provides a clear and rigid monolayer bottle similar in appearance to unmodified polyester bottles. In a series of preferred embodiments, bottles fabricated with the oxygen scavenging copolymers of this invention are over 99 wt % PET and contain less than 50 ppb of extractable components.
    Type: Grant
    Filed: February 8, 2005
    Date of Patent: May 8, 2007
    Assignee: BP Corporation North America Inc.
    Inventors: James M. Tibbitt, Paul J. Cahill, George E. Rotter, David P. Sinclair, Gary T. Brooks, Raymond T. Behrends
  • Patent number: 6844418
    Abstract: The present invention provides an improved polymer additive which may be used to increase the high temperature viscosity of an asphalt, without deleteriously affecting the low-temperature viscosity of the asphalt. The polymer additive may also be used to improve the stiffness of certain asphalts. The polymer additive is produced from readily available polymer blends by a thermal process. The invention additionally provides an improved polymer modified asphalt. In its preferred embodiments, the invention also provides an environmentally acceptable method for recycle of post consumer carpet and bottles.
    Type: Grant
    Filed: March 18, 2003
    Date of Patent: January 18, 2005
    Assignee: BP Corporation North America Inc.
    Inventors: John M. Forgac, Ashok S. Muzumdar, Arun K. Singhania, April J. Swanson
  • Patent number: 6558762
    Abstract: Multilayered plastic bottles are disclosed having oxygen scavenging capacity sufficient to maintain substantially zero or near zero (depending on product requirements) presence of oxygen in the bottle cavity for the planned shelf life of the bottled product under specified storage conditions. The bottles feature a layer comprised of oxygen scavenger copolyester and may be used for bottling beer and other products requiring nearly total absence of oxygen for the duration of the target product shelf life.
    Type: Grant
    Filed: March 28, 2002
    Date of Patent: May 6, 2003
    Assignee: BP Corporation North America Inc.
    Inventors: Paul J. Cahill, George E. Rotter, Stephen Y. Chen
  • Patent number: 6509436
    Abstract: Compositions for scavenging oxygen are disclosed. These compositions comprise condensation copolymers comprising predominantly polyester segments and an oxygen scavenging amount of polyolefin oligomer segments. The polyester segments comprise segments derived from typical bottling and packaging polyesters such as PET and PEN. The copolymers are preferably formed by transesterification during reactive extrusion and typically comprise about 0.5 to about 12 wt % of polyolefin oligomer segments. The copolycondensates are capable of absorbing at least 0.4 cc of oxygen per gram of copolymer in the solid state at ambient temperatures and are typically used as layers in films, liners, cups, wraps, bottles, etc. Use of these oxygen scavenging compositions in bottles provides a clear and rigid bottle similar in appearance to unmodified polyester bottles. In a series of preferred embodiments, bottles fabricated with the oxygen scavenging copolycondensates of this invention are over 99.
    Type: Grant
    Filed: June 29, 2000
    Date of Patent: January 21, 2003
    Assignee: BP Corporation North America Inc.
    Inventors: Paul J. Cahill, Stephen Y. Chen
  • Patent number: 6506463
    Abstract: Compositions for scavenging oxygen are disclosed. These compositions comprise copolyamides comprising over 50 weight percent polyamide segments and an active oxygen scavenging amount of polyolefin oligomer segments. The polyamide segments comprise segments derived from typical bottling and packaging polyamides such as polyhexamethyleneadipamide and polyphthalamides. The copolymers are preferably formed by transesterification during reactive extrusion and typically comprise about 0.5 to about 12 wt. % of polyolefin oligomer segments. The copolyamides provide enhanced active and passive oxygen barrier properties over similar polyester constructions and similar polyamide constructions, when used in a laminar construction. In a series of preferred embodiments, multi-layered bottles fabricated with the oxygen scavenging copolyatnides of this invention are about 99.8 wt. % polyamide and suitable for recycle with other polyamide bottles.
    Type: Grant
    Filed: February 11, 2000
    Date of Patent: January 14, 2003
    Assignee: BP Corporation North America Inc.
    Inventors: Paul J. Cahill, Joel Albert Richardson, Raymond V. Wass
  • Patent number: 6444867
    Abstract: Linear alpha olefins are typically produced by starting with a trialkylaluminum compound, such as triethylaluminum, and then subjecting the trialkylaluminum compound to alkyl chain growth conditions in the presence of ethylene and elevated temperature and pressure, frequently in the presence of a chain growth catalyst. Under such alkyl chain growth conditions, the alkyl groups attached to the aluminum may be extended by two carbon atoms per reaction with ethylene. The process is permitted to continue until the alkyl groups have reached the desired length at which point they are displaced from the trialkylaluminum compund as alpha olefins, usually in the presence of an excess of ethylene and a displacement catalyst. This invention discloses a new chain growth catalyst system comprising, in combination, non-bridged metallocenes and aluminum complexes having amidinate ligands and inert anions.
    Type: Grant
    Filed: May 17, 2001
    Date of Patent: September 3, 2002
    Assignee: BP Corporation North America Inc.
    Inventors: Edward G. Samsel, Franke N. Brooks
  • Patent number: 6406766
    Abstract: Improved active oxygen scavenging packaging articles optionally further comprising SiO2 and/or EAA coatings are disclosed. Also improved active oxygen scavenging copolycondensates and their use in packaging articles are disclosed. Specifically disclosed are (1) the use of an oxidation moderator or controller (anti-oxidant) along with the copolycondensate scavenger and (2) post polymerization treatment of the copolycondensate substantially in the absence of oxygen. The improvements lead to increased oxygen consumption by the active oxygen scavenger and improved packaging characteristics for the active oxygen scavenging copolycondensates.
    Type: Grant
    Filed: December 22, 1998
    Date of Patent: June 18, 2002
    Assignee: BP Corporation North America Inc.
    Inventors: George E. Rotter, Paul J. Cahill, Tamila J. Barnes, Charles W. Bauer, David C. Johnson, Matthew A. Kulzick, Tsuei-Yun Lynch, Walter M. Nyderek
  • Patent number: 6365247
    Abstract: Multilayered plastic bottles are disclosed having oxygen scavenging capacity sufficient to maintain substantially zero or near zero (depending on product requirements) presence of oxygen in the bottle cavity for the planned shelf life of the bottled product under specified storage conditions. The bottles feature a layer comprised of oxygen scavenger copolyester and may be used for bottling beer and other products requiring nearly total absence of oxygen for the duration of the target product shelf life.
    Type: Grant
    Filed: March 2, 1999
    Date of Patent: April 2, 2002
    Assignee: BP Corporation North America Inc.
    Inventors: Paul J. Cahill, Donald F. Ackerley, Roman F. Barski, Weilong Chiang Chiang, David C. Johnson, Walter M. Nyderek, George E. Rotter, Stephen Y. Chen
  • Patent number: 6346308
    Abstract: Active oxygen scavenging compositions and their use in packaging articles are disclosed. The compositions are all plastic materials and are typically deployed as at least one layer in a multi-layered wall of a packaging article such as a bottle, can or film. The compositions are usually used in conjunction with added transition metal catalyst to enhance the uptake of oxygen. Use of the compositions and package constructions disclosed serves to lengthen the shelf life of packaged oxygen sensitive substances and/or diminish the need for refrigeration of the packages.
    Type: Grant
    Filed: February 11, 2000
    Date of Patent: February 12, 2002
    Assignee: BP Corporation North America Inc.
    Inventors: Paul J. Cahill, Joel A. Richardson, George E. Rotter, Granville L. Smyser, Roman F. Barski, Jr., Raymond V. Wass, Walter M. Nyderek
  • Patent number: 6323157
    Abstract: Disclosed are compositions having utility as well fluid base oils. The base oils are comprised of a mixture of internal predominantly linear tetradecene (C14) isomers and internal predominantly linear hexadecene (C16) isomers. The base oils of this invention have pour point temperatures lower than −25° C. and are environmentally acceptable to marine life. The base oils disclosed are ideal candidates for use in cold climates and for offshore drilling.
    Type: Grant
    Filed: January 25, 2000
    Date of Patent: November 27, 2001
    Assignee: BP Corporation North America Inc.
    Inventors: Joel F. Carpenter, Jose Toye
  • Patent number: 6120896
    Abstract: A novel composite high-nitrile fiber in which the polymers are arranged in a sheath core type configuration. One polymer of the composite filament comprises a solventless, waterless, melt-processable acrylonitrile olefinically unsaturated polymer and the other polymer of the composite filament comprises an organic polymer. Either polymer can be employed as the sheath or the core component of the composite filament.
    Type: Grant
    Filed: December 17, 1998
    Date of Patent: September 19, 2000
    Assignee: The Standard Oil Company
    Inventors: Richard J. Jorkasky, George S. Li, Elena Simona Percec
  • Patent number: 6114034
    Abstract: A high nitrile fiber formed from an acrylonitrile olefinically unsaturated multipolymer which fiber is produced by a waterless, solventless melt spinning process.
    Type: Grant
    Filed: January 8, 1997
    Date of Patent: September 5, 2000
    Assignee: The Standard Oil Company
    Inventors: Richard J. Jorkasky, II, Lawrence E. Ball, Muyen M. Wu, Curtis E. Uebele
  • Patent number: 6083585
    Abstract: Compositions for scavenging oxygen are disclosed. These compositions comprise condensation copolymers comprising predominantly polyester segments and an oxygen scavenging amount of polyolefin oligomer segments. The polyester segments comprise segments derived from typical bottling and packaging polyesters such as PET and PEN. The copolymers are preferably formed by transesterification during reactive extrusion and typically comprise about 0.5 to about 12 wt % of polyolefin oligomer segments. The copolycondensates are capable of absorbing at least 0.4 cc of oxygen per gram of copolymer in the solid state at ambient temperatures and are typically used as layers in films, liners, cups, wraps, bottles, etc. Use of these oxygen scavenging compositions in bottles provides a clear and rigid bottle similar in appearance to unmodified polyester bottles. In a series of preferred embodiments, bottles fabricated with the oxygen scavenging copolycondensates of this invention are over 99.
    Type: Grant
    Filed: September 23, 1996
    Date of Patent: July 4, 2000
    Assignee: BP Amoco Corporation
    Inventors: Paul J. Cahill, Stephen Y. Chen
  • Patent number: 6075174
    Abstract: This invention concerns a process for recovering BF.sub.3 from a BF.sub.3 /promoter complex catalyzed .alpha.-olefin oligomerization product stream, which process comprises thermally cracking the complex in the product stream to yield BF.sub.3 gas, and contacting the BF.sub.3 gas with a cold .alpha.-olefin stream containing a promoter.
    Type: Grant
    Filed: May 8, 1995
    Date of Patent: June 13, 2000
    Assignee: BP Amoco Corporation
    Inventor: Hector Presedo
  • Patent number: 5968866
    Abstract: Ethylene is trimerized to form 1-hexene by using a catalyst comprising an aluminoxane and polydentate phosphine, arsine, and/or stibine coordination complex of a chromium salt. Catalysts, complexes, and ligands enabling production of 1-hexene in extremely high yields and purity are also described.
    Type: Grant
    Filed: May 1, 1998
    Date of Patent: October 19, 1999
    Assignee: BP Amoco Corporation
    Inventor: Feng-Jung Wu
  • Patent number: 5959134
    Abstract: A process for the enhanced recovery of waste organics, mainly hydrogen cyanide (HCN) and acrylonitrile, from the process flare material obtained from the reactor effluent of an ammoxidation reaction of propylene or isobutylene.
    Type: Grant
    Filed: May 20, 1998
    Date of Patent: September 28, 1999
    Assignee: The Standard Oil Company
    Inventors: Kenneth P. Keckler, Sanjay P. Godbole
  • Patent number: 5877375
    Abstract: A monoolefin oligomerization process which gives high yields of dimer and trimer at high monoolefin conversions in a single stage reaction is described. The process involves contacting a C.sub.6-20 vinyl olefin with a catalyst comprising boron trifluoride and from 0.075 to 0.5 mol %, based on the total quantity of monoolefin being used, of an alcohol catalyst promoter. The oligomerization is performed at a temperature below about 40.degree. C. and under a pressurized atmosphere of boron trifluoride in the range of 2 to 4 bars gauge until the monoolefin conversion is at least 95% and the combined total of dimer and trimer in the liquid reaction mixture is at least 60% by weight.
    Type: Grant
    Filed: June 6, 1996
    Date of Patent: March 2, 1999
    Assignee: Amoco Corporation
    Inventor: Michel Clarembeau
  • Patent number: 5780697
    Abstract: A process for deactivating a nickel, cobalt, or nickel and cobalt displacement catalyst during a reaction wherein an alkyl group is displaced from a trialkyl aluminum compound in a reaction mixture containing said catalyst is disclosed. The process involves adding a deactivating amount of a catalyst poison containing silver, silver compounds, silver complexes, thallium, thallium compounds, thallium complexes, or mixtures thereof to the reaction mixture after the displacement has proceeded to the desired extent.
    Type: Grant
    Filed: June 17, 1997
    Date of Patent: July 14, 1998
    Assignee: Amoco Corporation
    Inventors: Ronny Wen-Long Lin, Richard Andrew Holub, Richard Neil Hollenshead
  • Patent number: 5663469
    Abstract: Vinylidene olefin can be formed in good yield and high selectivity in much shorter reaction periods than found critical heretofore. The process involves dimerizing vinyl olefin with at least one trialkylaluminum compound as the catalyst component charged to the reaction vessel. These materials are charged to the reactor so that it contains in the range of 0.001 to 0.5 mol of trialkylaluminum per mol of the initial vinyl olefin. The reaction is performed at a temperature in the range of 100.degree. to 200.degree. C. for a period of time sufficient to convert 10 to 99% by weight of the initial vinyl olefin to a different product with at least 80 wt % vinylidene dimer selectivity. In conducting the process the liquid reaction mixture is in direct contact with a nickel-containing metal alloy surface for at least one hour at a temperature above about 50.degree. C.
    Type: Grant
    Filed: February 5, 1996
    Date of Patent: September 2, 1997
    Assignee: Amoco Corporation
    Inventors: Douglas H. Krzystowczyk, Kaung-Far Lin