Patents by Inventor Anthony Battista
Anthony Battista 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).
-
Patent number: 6521777Abstract: A process for catalytic production of diaryl carbonates by oxidative carbonylation of aromatic hydroxy compounds with carbon monoxide and oxygen achieves water removal during reaction by a process comprising the steps of: removing a liquid stream from an oxidative carbonylation reaction mixture in a reaction vessel and transferring the stream to a disengagement vessel, transferring a stream from the disengagement vessel to a flash vessel and subjecting the liquid stream to reduced pressure, and returning at least a portion of dried liquid stream to the reaction vessel. Typical catalyst systems for oxidative carbonylation contain (A) at least one Group 8, 9, or 10 metal having an atomic number of at least 44 or a compound thereof; (B) at least one guanidinium salt or onium salt; (C) at least one metal co-catalyst; and (D) at least one base.Type: GrantFiled: September 24, 2001Date of Patent: February 18, 2003Assignee: General Electric CompanyInventors: John Yaw Ofori, Eric James Pressman, Kirill Vladimirovich Shalyaev, Eric Douglas Williams, Richard Anthony Battista
-
Patent number: 6472551Abstract: A process for catalytic production of diaryl carbonates by oxidative carbonylation of aromatic hydroxy compounds with carbon monoxide and oxygen achieves water removal during reaction by a process comprising the steps of: removing a liquid stream from an oxidative carbonylation reaction mixture in a reaction vessel, subjecting the liquid stream to reduced pressure, and returning at least a portion of dried liquid stream to the reaction vessel. Typical catalyst systems for oxidative carbonylation contain (A) at least one Group 8, 9, or 10 metal having an atomic number of at least 44 or a compound thereof; (B) at least one alkali metal salt; (C) at least one metal co-catalyst; (D) at least one activating organic solvent; and (E) optionally, at least one base.Type: GrantFiled: April 11, 2002Date of Patent: October 29, 2002Assignee: General Electric CompanyInventors: John Yaw Ofori, Eric James Pressman, Kirill Vladimirovich Shalyaev, Eric Douglas Williams, Richard Anthony Battista
-
Publication number: 20020111507Abstract: A process for catalytic production of diaryl carbonates by oxidative carbonylation of aromatic hydroxy compounds with carbon monoxide and oxygen achieves water removal during reaction by a process comprising the steps of: removing a liquid stream from an oxidative carbonylation reaction mixture in a reaction vessel, subjecting the liquid stream to reduced pressure, and returning at least a portion of dried liquid stream to the reaction vessel. Typical catalyst systems for oxidative carbonylation contain (A) at least one Group 8, 9, or 10 metal having an atomic number of at least 44 or a compound thereof; (B) at least one alkali metal salt; (C) at least one metal co-catalyst; (D) at least one activating organic solvent; and (E) optionally, at least one base.Type: ApplicationFiled: April 11, 2002Publication date: August 15, 2002Inventors: John Yaw Ofori, Eric James Pressman, Kirill Vladimirovich Shalyaev, Eric Douglas Williams, Richard Anthony Battista
-
Patent number: 6420589Abstract: A process for catalytic production of diaryl carbonates by oxidative carbonylation of aromatic hydroxy compounds with carbon monoxide and oxygen achieves water removal during reaction by a process comprising the steps of: removing a liquid stream from an oxidative carbonylation reaction mixture in a reaction vessel, subjecting the liquid stream to reduced pressure, and returning at least a portion of dried liquid stream to the reaction vessel. Typical catalyst systems for oxidative carbonylation contain (A) at least one Group 8, 9, or 10 metal having an atomic number of at least 44 or a compound thereof; (B) at least one alkali metal salt; (C) at least one metal co-catalyst; (D) at least one activating organic solvent; and (E) optionally, at least one base.Type: GrantFiled: September 24, 2001Date of Patent: July 16, 2002Assignee: General Electric CompanyInventors: John Yaw Ofori, Eric James Pressman, Kirill Vladimirovich Shalyaev, Eric Douglas Williams, Richard Anthony Battista
-
Publication number: 20020077496Abstract: A process for catalytic production of diaryl carbonates by oxidative carbonylation of aromatic hydroxy compounds with carbon monoxide and oxygen achieves water removal during reaction by a process comprising the steps of: removing a liquid stream from an oxidative carbonylation reaction mixture in a reaction vessel and transferring the stream to a disengagement vessel, transferring a stream from the disengagement vessel to a flash vessel and subjecting the liquid stream to reduced pressure, and returning at least a portion of dried liquid stream to the reaction vessel. Typical catalyst systems for oxidative carbonylation contain (A) at least one Group 8, 9, or 10 metal having an atomic number of at least 44 or a compound thereof; (B) at least one guanidinium salt or onium salt; (C) at least one metal co-catalyst; and (D) at least one base.Type: ApplicationFiled: September 24, 2001Publication date: June 20, 2002Applicant: General Electric CompanyInventors: John Yaw Ofori, Eric James Pressman, Kirill Vladimirovich Shalyaev, Eric Douglas Williams, Richard Anthony Battista
-
Publication number: 20020077495Abstract: A process for catalytic production of diaryl carbonates by oxidative carbonylation of aromatic hydroxy compounds with carbon monoxide and oxygen achieves water removal during reaction by a process comprising the steps of: removing a liquid stream from a reaction vessel by transferring the stream to a disengagement vessel, transferring a stream from a disengagement vessel to a flash vessel and subjecting the liquid stream to reduced pressure, and returning at least a portion of dried liquid stream to a reaction vessel. Typical catalyst systems for oxidative carbonylation contain (A) at least one Group 8, 9, or 10 metal having an atomic number of at least 44 or a compound thereof; (B) at least one guanidinium salt or onium salt; (C) a metal co-catalyst comprising at least one copper source and at least one titanium source; and (D) at least one base.Type: ApplicationFiled: December 14, 2000Publication date: June 20, 2002Inventors: John Yaw Ofori, Eric James Pressman, Kirill Vladimirovich Shalyaev, Eric Douglas Williams, Richard Anthony Battista
-
Publication number: 20020077497Abstract: A process for catalytic production of diaryl carbonates by oxidative carbonylation of aromatic hydroxy compounds with carbon monoxide and oxygen achieves water removal during reaction by a process comprising the steps of: removing a liquid stream from an oxidative carbonylation reaction mixture in a reaction vessel, subjecting the liquid stream to reduced pressure, and returning at least a portion of dried liquid stream to the reaction vessel. Typical catalyst systems for oxidative carbonylation contain (A) at least one Group 8, 9, or 10 metal having an atomic number of at least 44 or a compound thereof; (B) at least one alkali metal salt; (C) at least one metal co-catalyst; (D) at least one activating organic solvent; and (E) optionally, at least one base.Type: ApplicationFiled: September 24, 2001Publication date: June 20, 2002Applicant: General Electric CompanyInventors: John Yaw Ofori, Eric James Pressman, Kirill Vladimirovich Shalyaev, Eric Douglas Williams, Richard Anthony Battista
-
Patent number: 6384262Abstract: A process for catalytic production of diaryl carbonates by oxidative carbonylation of aromatic hydroxy compounds with carbon monoxide and oxygen achieves water removal during reaction by a process comprising the steps of: removing a liquid stream from an oxidative carbonylation reaction mixture in a reaction vessel, subjecting the liquid stream to reduced pressure, and returning at least a portion of dried liquid stream to the reaction vessel. Typical catalyst systems for oxidative carbonylation contain (A) at least one Group 8, 9, or 10 metal having an atomic number of at least 44 or a compound thereof; (B) at least one guanidinium salt or onium salt; and (C) at least one metal co-catalyst.Type: GrantFiled: September 24, 2001Date of Patent: May 7, 2002Assignee: General Electric CompanyInventors: John Yaw Ofori, Eric James Pressman, Kirill Vladimirovich Shalyaev, Eric Douglas Williams, Richard Anthony Battista
-
Patent number: 6310232Abstract: Bromide source such as alkali metal bromide, alkaline earth metal bromide, or onium bromide, present as part of a catalyst mixture in an organic oxidative carbonylation mixture further comprising diaryl carbonate and a hydroxyaromatic compound, is often at least partially converted to organic bromide such as bromophenols. The bromide source can be recycled after reaction through treatment with an aqueous acidic bromide solution such as hydrogen bromide, preferably after removal of a major proportion of hydroxyaromatic compound such as phenol.Type: GrantFiled: November 10, 2000Date of Patent: October 30, 2001Assignee: General Electric CompanyInventors: John Yaw Ofori, Eric James Pressman, Ben Purushotam Patel, Phillip Oscar Moreno, Richard Anthony Battista
-
Patent number: 6191299Abstract: An improved method for producing an aromatic carbonate by reacting an aromatic hydroxy compound, carbon monoxide and oxygen in the presence of a catalyst system comprising at least one of palladium or a palladium compound; at least one lead compound; at least one halide source; and at least one desiccant, wherein the ratio of equivalents of lead co-catalyst relative to equivalents of palladium catalyst is optimized to increase reaction rate, as well as to allow production of aromatic carbonate in an economically feasible continuous process.Type: GrantFiled: December 31, 1998Date of Patent: February 20, 2001Assignee: General Electric CompanyInventors: Eric James Pressman, Bruce Fletcher Johnson, Phillip Oscar Moreno, Richard Anthony Battista
-
Patent number: 5127719Abstract: A combination dresser and concealed jewelry case comprised of an ordinary-looking dresser/mirror assembly combination wherein the front mirror panel of said mirror is hingedly connected to the mirror assembly. Swinging open said mirror panel reveals a jewelry cabinet of relatively shallow depth therewithin. Means for locking said mirror panel in the closed position is provided. The concealed jewelry case and mirror are shallow in depth so as to appear merely as a sturdy mirror support and not to appear to be a concealed jewelry case.Type: GrantFiled: December 20, 1990Date of Patent: July 7, 1992Inventor: Anthony Battista
-
Patent number: 5090784Abstract: A combination dresser and concealed jewelry case comprised of an ordinary-looking dresser/mirror assembly combination wherein the front mirror panel of said mirror is hingedly connected to the mirror assembly. Swinging open said mirror panel reveals a jewelry cabinet of relatively shallow depth therewith. Means for locking said mirror panel in the closed position is provided. The concealed jewelry case and mirror are shallow in depth so as to appear merely as a sturdy mirror support and not to appear to be a concealed jewelry case.Type: GrantFiled: October 25, 1989Date of Patent: February 25, 1992Inventor: Anthony Battista