Patents by Inventor Brian Nabozny

Brian Nabozny 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: 9006123
    Abstract: A catalytic reforming process including a reaction zone and a separate catalyst regeneration zone where catalyst is collected in a catalyst collector in the reaction zone and then directed to the catalyst regeneration zone wherein the catalyst collector is purged with a net gas stream.
    Type: Grant
    Filed: December 23, 2008
    Date of Patent: April 14, 2015
    Assignee: UOP LLC
    Inventor: Brian Nabozny
  • Patent number: 8865608
    Abstract: Systems and processes for regenerating catalyst are provided herein that include a catalyst regeneration tower having a cooling zone that receives a catalyst cooling stream generated by a cooling gas loop. The systems and processes include a first thermocompressor that utilizes a first motive vapor and a second thermocompressor that utilizes a second motive vapor in order to provide the catalyst cooling stream to the regeneration tower. The second thermocompressor operates in parallel with the first thermocompressor. The first thermocompressor can utilize combustion air as the motive vapor. The second thermocompressor can utilize nitrogen as the motive vapor.
    Type: Grant
    Filed: February 27, 2009
    Date of Patent: October 21, 2014
    Assignee: UOP LLC
    Inventors: Brian Nabozny, William D. Schlueter, Kate Tuson
  • Publication number: 20120093699
    Abstract: Systems and processes for regenerating catalyst are provided herein that include a catalyst regeneration tower having a cooling zone that receives a catalyst cooling stream generated by a cooling gas loop. The systems and processes include a first thermocompressor that utilizes a first motive vapor and a second thermocompressor that utilizes a second motive vapor in order to provide the catalyst cooling stream to the regeneration tower. The second thermocompressor operates in parallel with the first thermocompressor. The first thermocompressor can utilize combustion air as the motive vapor. The second thermocompressor can utilize nitrogen as the motive vapor.
    Type: Application
    Filed: December 19, 2011
    Publication date: April 19, 2012
    Applicant: UOP LLC
    Inventors: Brian Nabozny, William D. Schlueter, Kate Tuson
  • Publication number: 20100222202
    Abstract: Systems and processes for regenerating catalyst are provided herein that include a catalyst regeneration tower having a cooling zone that receives a catalyst cooling stream generated by a cooling gas loop. The systems and processes include a first thermocompressor that utilizes a first motive vapor and a second thermocompressor that utilizes a second motive vapor in order to provide the catalyst cooling stream to the regeneration tower. The second thermocompressor operates in parallel with the first thermocompressor. The first thermocompressor can utilize combustion air as the motive vapor. The second thermocompressor can utilize nitrogen as the motive vapor.
    Type: Application
    Filed: February 27, 2009
    Publication date: September 2, 2010
    Inventors: Brian Nabozny, William D. Schlueter, Kate Tuson
  • Publication number: 20100160148
    Abstract: A catalytic reforming process including a reaction zone and a separate catalyst regeneration zone where catalyst is collected in a catalyst collector in the reaction zone and then directed to the catalyst regeneration zone wherein the catalyst collector is purged with a net gas stream.
    Type: Application
    Filed: December 23, 2008
    Publication date: June 24, 2010
    Inventor: Brian Nabozny
  • Publication number: 20070217961
    Abstract: This invention relates to regeneration of coked catalyst by combustion so that the catalyst can be reused in a hydrocarbon conversion reaction. The completion of coke burn is generally measured with a combination of temperature or change in oxygen concentration. Dropping outlet temperatures require time to wait for increases in inlet temperature to correspondingly move down the regenerator. Faster response times might be expected from increasing oxygen concentration, but a small increase in concentration can lead to a significant increase in peak burn temperature which negatively impacts catalyst life. Controlled peak burning is difficult over the entire bed by merely controlling inlet and outlet oxygen concentrations. The invention accordingly combines a measured lag time for temperature travel with an inlet temperature ramping step to ensure complete coke combustion with high oxygen efficiency, thus providing a rapid regeneration that permits more time for operation at desired reaction conditions.
    Type: Application
    Filed: May 31, 2007
    Publication date: September 20, 2007
    Inventors: Leon Yuan, James Bixby, Kyle Austin, Brian Nabozny