Patents by Inventor Edwin Boldingh

Edwin Boldingh 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: 8022259
    Abstract: A method for hydroconversion of a combined feed of at least one low value petroleum derived hydrocarbon and at least one biorenewable feedstock in a hydroconversion reaction zone in the presence of a hydroconversion catalyst at hydroconversion reaction conditions for a period of time sufficient to form a hydroconversion reaction product.
    Type: Grant
    Filed: May 30, 2008
    Date of Patent: September 20, 2011
    Assignee: UOP LLC
    Inventors: Lorenz Bauer, Michael McCall, Edwin Boldingh
  • Publication number: 20080067053
    Abstract: Processes for making xylene isomer using integrated transalkylation and isomerization reaction zones to enhance xylene recovery and enable reduction in capital costs and energy consumption.
    Type: Application
    Filed: November 27, 2007
    Publication date: March 20, 2008
    Inventors: Antoine Negiz, James Rekoske, Edwin Boldingh
  • Publication number: 20080064910
    Abstract: Processes for making xylene employ catalysts containing rhenium and a molecular sieve component comprising an acidic MFI molecular sieve having a Si/Al2 molar ratio of less than about 80 and mordenite to provide a transalkylation product with a low content of benzene co-boilers. The invention encompasses the use of sulfided catalyst embodiments in xylene production processes.
    Type: Application
    Filed: August 23, 2007
    Publication date: March 13, 2008
    Inventors: Edwin Boldingh, Antoine Negiz, James Rekoske, Eric Baker, Robert Larson, Terrence Deak, Sergey Gurevich
  • Publication number: 20080064588
    Abstract: Transalkylation catalysts containing rhenium and a molecular sieve component comprising an acidic MFI molecular sieve having a Si/Al2 molar ratio of less than about 80 and mordenite provide a transalkylation product with a low content of benzene co-boilers. The invention encompasses sulfided catalyst embodiments and methods of making the catalysts.
    Type: Application
    Filed: August 23, 2007
    Publication date: March 13, 2008
    Inventors: Edwin Boldingh, Antoine Negiz, James Rekoske, Eric Baker, Robert Larson, Terrence Deak, Sergey Gurevich
  • Publication number: 20070203376
    Abstract: Processes for making xylene isomer use integrated transalkylation and isomerization reaction zones to enhance xylene recovery and enable reduction in capital costs and energy consumption.
    Type: Application
    Filed: January 31, 2006
    Publication date: August 30, 2007
    Inventors: Antoine Negiz, James Rekoske, Edwin Boldingh
  • Publication number: 20070185356
    Abstract: A process for preparing a transalkylation catalyst, the catalyst itself, and a transalkylation process for using the catalyst are herein disclosed. The catalyst comprises rhenium metal on a solid-acid support such as mordenite, which has been treated with a sulfur-based agent. Such treatment reduces the amount of methane produced by metal hydrogenolysis in a transalkylation process wherein heavy aromatics like A9+ are reacted with toluene to produce xylenes. Reduced methane production relative to total light ends gas production results in lower hydrogen consumption and lower reactor exotherms.
    Type: Application
    Filed: April 11, 2007
    Publication date: August 9, 2007
    Inventors: Edwin Boldingh, Antoine Negiz, Gregory Maher, Paula Bogdan, Dean Rende
  • Publication number: 20070142688
    Abstract: A catalyst, a process for using the catalyst whereby the catalyst effectively transalkylates C7, C9, and C10 aromatics to C8 aromatics are disclosed. The catalyst comprises a support such as mordenite plus a metal component. The catalyst provides an enhanced life and activity for carrying out the transalkylation reactions at relatively low temperatures. This is achieved by reducing the maximum particle diameter of cylindrical pellets to 1/32 inch (0.08 cm) or a trilobe to 1/16 inch (0.16 cm).
    Type: Application
    Filed: February 26, 2007
    Publication date: June 21, 2007
    Inventors: Antoine Negiz, Edwin Boldingh, Gregory Gajda, Sergey Gurevich
  • Publication number: 20070086933
    Abstract: A transalkylation process for reacting carbon number nine aromatics with toluene to form carbon number eight aromatics such as para-xylene is herein disclosed. The process is based on the discovery that deactivating contaminants present in typical hydrocarbon feeds, such as chlorides, can be removed with an alumina guard bed prior to contacting with a transalkylation catalyst. Effective transalkylation catalysts have a solid-acid component such as mordenite, and a metal component such as rhenium. The invention is embodied in a process, a catalyst system, and an apparatus. The invention provides for longer catalyst cycle life when processing aromatics under commercial transalkylation conditions.
    Type: Application
    Filed: October 19, 2006
    Publication date: April 19, 2007
    Inventors: Antoine Negiz, Edwin Boldingh, Sergio Pischek
  • Publication number: 20070042905
    Abstract: A transalkylation process for reacting carbon number nine aromatics with toluene to form carbon number eight aromatics such as para-xylene is herein disclosed. The process is based on the discovery that deactivating contaminants present in typical hydrocarbon feeds, such as chlorides, can be removed with an alumina guard bed prior to contacting with a transalkylation catalyst. Effective transalkylation catalysts have a solid-acid component such as mordenite, and a metal component such as rhenium. The invention is embodied in a process, a catalyst system, and an apparatus. The invention provides for longer catalyst cycle life when processing aromatics under commercial transalkylation conditions.
    Type: Application
    Filed: October 19, 2006
    Publication date: February 22, 2007
    Inventors: Antoine Negiz, Edwin Boldingh, Sergio Pischek
  • Publication number: 20050266979
    Abstract: A process for preparing a transalkylation catalyst, the catalyst itself, and a transalkylation process for using the catalyst are herein disclosed. The catalyst comprises rhenium metal on a solid-acid support such as mordenite, which has been treated with a sulfur-based agent. Such treatment reduces the amount of methane produced by metal hydrogenolysis in a transalkylation process wherein heavy aromatics like A9+ are reacted with toluene to produce xylenes. Reduced methane production relative to total light ends gas production results in lower hydrogen consumption and lower reactor exotherms.
    Type: Application
    Filed: May 27, 2004
    Publication date: December 1, 2005
    Inventors: Edwin Boldingh, Antoine Negiz, Gregory Maher, Paula Bogdan, Dean Rende
  • Publication number: 20050215838
    Abstract: A catalyst, and a process for using the catalyst, that effectively converts and transalkylates indane and C10 and heavier polycyclic aromatics into C8 aromatics is herein disclosed. The catalyst comprises a solid-acid support such as mordenite plus a metal component such as rhenium. The catalyst provides excellent conversion of such heavy aromatic species as naphthalene, which is also observed by a decrease in the ending-boiling-point of a hydrocarbon stream passed over the catalyst. The same catalyst is also effective for transalkylation of lighter aromatics, thus yielding a valuable xylenes product stream out of the process.
    Type: Application
    Filed: March 24, 2004
    Publication date: September 29, 2005
    Inventors: Antoine Negiz, Edwin Boldingh, Frank Modica, Gregory Maher
  • Publication number: 20050026771
    Abstract: A catalyst, a process for using the catalyst whereby the catalyst effectively transalkylates C7, C9, and C10 aromatics to C8 aromatics are disclosed. The catalyst comprises a support such as mordenite plus a metal component. The catalyst provides an enhanced life and activity for carrying out the transalkylation reactions at relatively low temperatures. This is achieved by reducing the maximum particle diameter of cylindrical pellets to {fraction (1/32)} inch (0.08 cm) or a trilobe to {fraction (1/16)} inch (0.16 cm).
    Type: Application
    Filed: August 24, 2004
    Publication date: February 3, 2005
    Inventors: Antoine Negiz, Edwin Boldingh, Gregory Gajda, Sergey Gurevich