Patents by Inventor Michael J Holme

Michael J Holme 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: 20180133646
    Abstract: Various embodiments disclosed relate to sorbents for the oxidation and removal of mercury. The present invention includes removing mercury from a mercury-containing gas using a halide-promoted and optionally ammonium-protected sorbent that can include carbon sorbent, non-carbon sorbent, or a combination thereof.
    Type: Application
    Filed: December 22, 2017
    Publication date: May 17, 2018
    Inventors: John H. Pavlish, Edwin S. Olson, Michael J. Holmes
  • Publication number: 20170266612
    Abstract: A system and method is provided for the removal of mercury from flue gas. Effective removal of mercury is obtained by oxidation of elemental mercury, with highly reactive halogen species derived from dissociation of halogen compounds at moderate temperatures brought into contact with the flue gas with or without the addition of carbon.
    Type: Application
    Filed: June 1, 2017
    Publication date: September 21, 2017
    Inventors: Michael J. Holmes, John H. Pavlish, Edwin S. Olson
  • Patent number: 9757689
    Abstract: A promoted activated carbon sorbent is described that is highly effective for the removal of mercury from flue gas streams. The sorbent comprises a new modified carbon form containing reactive forms of halogen and halides. Optional components may be added to increase reactivity and mercury capacity. These may be added directly with the sorbent, or to the flue gas to enhance sorbent performance and/or mercury capture. Mercury removal efficiencies obtained exceed conventional methods. The sorbent can be regenerated and reused. Sorbent treatment and preparation methods are also described. New methods for in-flight preparation, introduction, and control of the active sorbent into the mercury contaminated gas stream are described.
    Type: Grant
    Filed: June 27, 2014
    Date of Patent: September 12, 2017
    Assignee: Midwest Energy Emissions Corp.
    Inventors: Edwin S. Olson, Michael J. Holmes, John Henry Pavlish
  • Patent number: 9675931
    Abstract: A system and method is provided for the removal of mercury from flue gas. Effective removal of mercury is obtained by oxidation of elemental mercury, with highly reactive halogen species derived from dissociation of halogen compounds at moderate temperatures brought into contact with the flue gas with or without the addition of carbon.
    Type: Grant
    Filed: October 12, 2015
    Date of Patent: June 13, 2017
    Assignee: Energy & Environmental Research Center Foundation
    Inventors: Michael J. Holmes, John H. Pavlish, Edwin S. Olson
  • Publication number: 20170128908
    Abstract: A promoted carbon and/or non-carbon base sorbent are described that are highly effective for the removal of mercury from flue gas streams. The promoted sorbent comprises a carbon and/or non-carbon base sorbent that has reacted with and contains forms of halogen and halides. Optional components may be added to increase and/or preserve reactivity and mercury capacity. These may be added directly with the base sorbent, or in-flight within a gas stream (air, flue gas, etc.), to enhance base sorbent performance and/or mercury capture. Mercury removal efficiencies obtained exceed conventional methods. The promoted sorbent can be regenerated and reused. Base sorbent treatment and preparation methods are also described. New methods for in-flight preparation, introduction, and control of the active base sorbent into the mercury contaminated gas stream are described.
    Type: Application
    Filed: October 17, 2016
    Publication date: May 11, 2017
    Inventors: Edwin S. Olson, Michael J. Holmes, John H. Pavlish
  • Patent number: 9630840
    Abstract: Various embodiments disclosed relate to cooling shale gas via reaction of methane, light hydrocarbons, or a combination thereof, with water. In various embodiments, the present invention provides a method of cooling syngas. The method includes contacting the hot syngas with methane or light hydrocarbons. The hot syngas includes water and has a temperature of about 800° C. to about 3000° C. The contacting is effective to endothermically react the methane or light hydrocarbons with the water in the hot syngas to form carbon monoxide and hydrogen and to provide a cooled syngas having a lower temperature than the hot syngas.
    Type: Grant
    Filed: June 17, 2016
    Date of Patent: April 25, 2017
    Assignee: Energy & Environmental Research Center Foundation
    Inventors: Joshua J. Stanislowski, Michael J. Holmes, Michael L. Swanson
  • Publication number: 20170100692
    Abstract: Promoted ammonium salt-protected activated carbon sorbent particles for removal of mercury from gas streams. A method of separating mercury from a mercury-containing gas stream includes contacting a mercury-containing gas stream with an activated carbon sorbent including promoted ammonium salt-protected activated carbon sorbent particles, to form a mercury-sorbent composition. The method also includes separating at least some of the mercury-sorbent composition from the mercury-containing gas stream, to give a separated gas.
    Type: Application
    Filed: December 16, 2016
    Publication date: April 13, 2017
    Inventors: Edwin S. Olson, John Henry Pavlish, Michael J. Holmes
  • Publication number: 20160368766
    Abstract: Various embodiments disclosed relate to cooling shale gas via reaction of methane, light hydrocarbons, or a combination thereof, with water. In various embodiments, the present invention provides a method of cooling syngas. The method includes contacting the hot syngas with methane or light hydrocarbons. The hot syngas includes water and has a temperature of about 800° C. to about 3000° C. The contacting is effective to endothermically react the methane or light hydrocarbons with the water in the hot syngas to form carbon monoxide and hydrogen and to provide a cooled syngas having a lower temperature than the hot syngas.
    Type: Application
    Filed: June 17, 2016
    Publication date: December 22, 2016
    Inventors: Joshua J. Stanislowski, Michael J. Holmes, Michael L. Swanson
  • Patent number: 9468886
    Abstract: A promoted carbon and/or non-carbon base sorbent are described that are highly effective for the removal of mercury from flue gas streams. The promoted sorbent comprises a carbon and/or non-carbon base sorbent that has reacted with and contains forms of halogen and halides. Optional components may be added to increase and/or preserve reactivity and mercury capacity. These may be added directly with the base sorbent, or in-flight within a gas stream (air, flue gas, etc.), to enhance base sorbent performance and/or mercury capture. Mercury removal efficiencies obtained exceed conventional methods. The promoted sorbent can be regenerated and reused. Base sorbent treatment and preparation methods are also described. New methods for in-flight preparation, introduction, and control of the active base sorbent into the mercury contaminated gas stream are described.
    Type: Grant
    Filed: December 11, 2013
    Date of Patent: October 18, 2016
    Assignee: Energy & Environmental Research Center Foundation
    Inventors: Edwin S. Olson, Michael J. Holmes, John H. Pavlish
  • Publication number: 20160166982
    Abstract: A system and method is provided for the removal of mercury from flue gas. Effective removal of mercury is obtained by oxidation of elemental mercury, with highly reactive halogen species derived from dissociation of halogen compounds at moderate temperatures brought into contact with the flue gas with or without the addition of carbon.
    Type: Application
    Filed: October 12, 2015
    Publication date: June 16, 2016
    Inventors: Michael J. Holmes, John H. Pavlish, Edwin S. Olson
  • Patent number: 9155997
    Abstract: A system and method is provided for the removal of mercury from flue gas. Effective removal of mercury is obtained by oxidation of elemental mercury, with highly reactive halogen species derived from dissociation of halogen compounds at moderate temperatures brought into contact with the flue gas with or without the addition of carbon.
    Type: Grant
    Filed: July 30, 2014
    Date of Patent: October 13, 2015
    Assignee: ENERGY & ENVIRONMENTAL RESEARCH CENTER FOUNDATION
    Inventors: Michael J. Holmes, John H. Pavlish, Edwin S. Olson
  • Publication number: 20150246315
    Abstract: A promoted activated carbon sorbent is described that is highly effective for the removal of mercury from flue gas streams. The sorbent comprises a new modified carbon form containing reactive forms of halogen and halides. Optional components may be added to increase reactivity and mercury capacity. These may be added directly with the sorbent, or to the flue gas to enhance sorbent performance and/or mercury capture. Mercury removal efficiencies obtained exceed conventional methods. The sorbent can be regenerated and reused. Sorbent treatment and preparation methods are also described. New methods for in-flight preparation, introduction, and control of the active sorbent into the mercury contaminated gas stream are described.
    Type: Application
    Filed: May 14, 2015
    Publication date: September 3, 2015
    Inventors: Edwin S. Olson, Michael J. Holmes, John Henry Pavlish
  • Publication number: 20140341793
    Abstract: A system and method is provided for the removal of mercury from flue gas. Effective removal of mercury is obtained by oxidation of elemental mercury, with highly reactive halogen species derived from dissociation of halogen compounds at moderate temperatures brought into contact with the flue gas with or without the addition of carbon.
    Type: Application
    Filed: July 30, 2014
    Publication date: November 20, 2014
    Inventors: Michael J. Holmes, John H. Pavlish, Edwin S. Olson
  • Publication number: 20140308188
    Abstract: A promoted activated carbon sorbent is described that is highly effective for the removal of mercury from flue gas streams. The sorbent comprises a new modified carbon form containing reactive forms of halogen and halides. Optional components may be added to increase reactivity and mercury capacity. These may be added directly with the sorbent, or to the flue gas to enhance sorbent performance and/or mercury capture. Mercury removal efficiencies obtained exceed conventional methods. The sorbent can be regenerated and reused. Sorbent treatment and preparation methods are also described. New methods for in-flight preparation, introduction, and control of the active sorbent into the mercury contaminated gas stream are described.
    Type: Application
    Filed: June 27, 2014
    Publication date: October 16, 2014
    Inventors: Edwin S. Olson, Michael J. Holmes, John Henry Pavlish
  • Patent number: 8821819
    Abstract: A promoted activated carbon sorbent is described that is highly effective for the removal of mercury from flue gas streams. The sorbent comprises a new modified carbon form containing reactive forms of halogen and halides. Optional components may be added to increase reactivity and mercury capacity. These may be added directly with the sorbent, or to the flue gas to enhance sorbent performance and/or mercury capture. Mercury removal efficiencies obtained exceed conventional methods. The sorbent can be regenerated and reused. Sorbent treatment and preparation methods are also described. New methods for in-flight preparation, introduction, and control of the active sorbent into the mercury contaminated gas stream are described.
    Type: Grant
    Filed: August 14, 2013
    Date of Patent: September 2, 2014
    Assignee: Energy & Environmental Research Center Foundation
    Inventors: Edwin S. Olson, Michael J. Holmes, John Henry Pavlish
  • Patent number: 8807056
    Abstract: A system and method is provided for the removal of mercury from flue gas. Effective removal of mercury is obtained by oxidation of elemental mercury, with highly reactive halogen species derived from dissociation of halogen compounds at moderate temperatures brought into contact with the flue gas with or without the addition of carbon.
    Type: Grant
    Filed: July 9, 2012
    Date of Patent: August 19, 2014
    Assignee: Energy & Environmental Research Center Foundation
    Inventors: Michael J. Holmes, John H. Pavlish, Edwin S. Olson
  • Publication number: 20140099244
    Abstract: A promoted carbon and/or non-carbon base sorbent are described that are highly effective for the removal of mercury from flue gas streams. The promoted sorbent comprises a carbon and/or non-carbon base sorbent that has reacted with and contains forms of halogen and halides. Optional components may be added to increase and/or preserve reactivity and mercury capacity. These may be added directly with the base sorbent, or in-flight within a gas stream (air, flue gas, etc.), to enhance base sorbent performance and/or mercury capture. Mercury removal efficiencies obtained exceed conventional methods. The promoted sorbent can be regenerated and reused. Base sorbent treatment and preparation methods are also described. New methods for in-flight preparation, introduction, and control of the active base sorbent into the mercury contaminated gas stream are described.
    Type: Application
    Filed: December 11, 2013
    Publication date: April 10, 2014
    Applicant: Energy & Environmental Research Center Foundation
    Inventors: Edwin S. Olson, Michael J. Holmes, John H. Pavlish
  • Publication number: 20140056787
    Abstract: A promoted activated carbon sorbent is described that is highly effective for the removal of mercury from flue gas streams. The sorbent comprises a new modified carbon form containing reactive forms of halogen and halides. Optional components may be added to increase reactivity and mercury capacity. These may be added directly with the sorbent, or to the flue gas to enhance sorbent performance and/or mercury capture. Mercury removal efficiencies obtained exceed conventional methods. The sorbent can be regenerated and reused. Sorbent treatment and preparation methods are also described. New methods for in-flight preparation, introduction, and control of the active sorbent into the mercury contaminated gas stream are described.
    Type: Application
    Filed: August 14, 2013
    Publication date: February 27, 2014
    Applicant: Energy & Environmental Research Center Foundation
    Inventors: Edwin S. Olson, Michael J. Holmes, John Henry Pavlish
  • Patent number: 8652235
    Abstract: A promoted carbon and/or non-carbon base sorbent are described that are highly effective for the removal of mercury from flue gas streams. The promoted sorbent comprises a carbon and/or non-carbon base sorbent that has reacted with and contains forms of halogen and halides. Optional components may be added to increase and/or preserve reactivity and mercury capacity. These may be added directly with the base sorbent, or in-flight within a gas stream (air, flue gas, etc.), to enhance base sorbent performance and/or mercury capture. Mercury removal efficiencies obtained exceed conventional methods. The promoted sorbent can be regenerated and reused. Base sorbent treatment and preparation methods are also described. Methods for in-flight preparation, introduction, and control of the active base sorbent into the mercury contaminated gas stream are described.
    Type: Grant
    Filed: April 23, 2009
    Date of Patent: February 18, 2014
    Assignee: Energy & Environmental Research Center Foundation
    Inventors: Edwin S. Olson, Michael J. Holmes, John H. Pavlish
  • Patent number: 8512655
    Abstract: A promoted activated carbon sorbent is described that is highly effective for the removal of mercury from flue gas streams. The sorbent comprises a new modified carbon form containing reactive forms of halogen and halides. Optional components may be added to increase reactivity and mercury capacity. These may be added directly with the sorbent, or to the flue gas to enhance sorbent performance and/or mercury capture. Mercury removal efficiencies obtained exceed conventional methods. The sorbent can be regenerated and reused. Sorbent treatment and preparation methods are also described. New methods for in-flight preparation, introduction, and control of the active sorbent into the mercury contaminated gas stream are described.
    Type: Grant
    Filed: March 22, 2012
    Date of Patent: August 20, 2013
    Assignee: Energy & Environmental Research Center Foundation
    Inventors: Edwin S. Olson, Michael J. Holmes, John Henry Pavlish