Patents by Inventor James Strebe

James Strebe 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: 7727662
    Abstract: A low temperature alkaline fuel cell having a hydrogen electrode and an oxygen electrode, both of which are comprised of high performance non-precious metal catalytic materials providing high performance at low temperatures.
    Type: Grant
    Filed: September 27, 2004
    Date of Patent: June 1, 2010
    Assignee: Ovonic Battery Company, Inc.
    Inventors: Benjamin Reichman, Michael A. Fetcenko, Stanford R. Ovshinsky, Kwo Young, William Mays, James Strebe
  • Patent number: 7700071
    Abstract: A method of producing hydrogen gas from a reaction of carbon monoxide with a base. Hydrogen is produced in a reaction of a base with carbon monoxide that proceeds through the formation of a bicarbonate or carbonate compound as a by-product. In some embodiments, the reaction may occur in the presence of water and may produce carbon dioxide as a by-product. The instant base-facilitated hydrogen-producing reactions are thermodynamically more spontaneous than the water-gas shift reaction and are able to produce hydrogen gas from carbon monoxide at greater reaction rates than is possible with the water-gas shift reaction. Carbon monoxide in a purified or unpurified state or as a component within a mixture of gases is suitable for use in the instant invention. Metal hydroxides are the preferred base reactant. The base reactant can be in the solid phase, molten phase, liquid phase or solution phase.
    Type: Grant
    Filed: March 14, 2005
    Date of Patent: April 20, 2010
    Assignee: Ovonic Battery Company, Inc.
    Inventors: Benjamin Reichman, William Mays, James Strebe
  • Patent number: 7494581
    Abstract: A method of producing hydrogen gas from a reaction of an organic substance having multiple alcohol functionality with a base. Hydrogen can be produced in a reaction of a base with an organic substance having multiple alcohol functionality that may proceed through the formation of a bicarbonate or carbonate compound as a byproduct. In some embodiments, the reaction may occur in the presence of water. The preferred organic substances include diols, triols, and higher order alcohols. Non-cyclic (linear or branched) organic substances having multiple alcohol functionality are among the preferred reactants. The instant base-facilitated hydrogen-producing reactions are thermodynamically more spontaneous than the corresponding conventional reformation reactions of the organic substances and can produce hydrogen at less extreme reaction conditions. The preferred reactants further include low volatility organic substances having multiple alcohol functionality.
    Type: Grant
    Filed: September 21, 2005
    Date of Patent: February 24, 2009
    Assignee: Ovonic Battery Company, Inc.
    Inventors: Benjamin Reichman, William Mays, James Strebe
  • Publication number: 20070243128
    Abstract: A process for producing hydrogen gas is disclosed. In one embodiment, the process for produces hydrogen gas from biofuel reformation. The process includes the step of reacting a biofuel with a naturally occurring base.
    Type: Application
    Filed: April 18, 2007
    Publication date: October 18, 2007
    Inventors: Benjamin Reichman, William Mays, Michael Fetcenko, James Strebe
  • Publication number: 20060252635
    Abstract: A method for making a catalyst having catalytically active material supported on a carrier matrix. The catalytically active material may be a mixed-valence, nanoclustered oxide(s), an organometallic material or a combination thereof. In one method, a metal salt solution is combined with a metal complexing agent to form a metal complex. The metal complex is then combined with a suspension that includes a carrier matrix and the system is subjected to ultrasonic agitation. A base is then added to induce a controlled crystallization of a catalytic nanocluster metal material onto the carrier matrix. The supported catalytic material is particularly useful for catalyzing oxygen reduction in a fuel cell, such as an alkaline fuel cell.
    Type: Application
    Filed: July 10, 2006
    Publication date: November 9, 2006
    Inventors: Stanford Ovshinsky, Cristian Fierro, Benjamin Reichman, William Mays, James Strebe, Michael Fetcenko, Avram Zallen, Tim Hicks
  • Patent number: 7097933
    Abstract: A catalyst having catalytically active material supported on a carrier matrix. The catalytically active material may be a mixed-valence, nanoclustered oxide(s), an organometallic material or a combination thereof. The supported catalytic material is particularly useful for catalyzing oxygen reduction in a fuel cell, such as an alkaline fuel cell.
    Type: Grant
    Filed: June 9, 2003
    Date of Patent: August 29, 2006
    Assignee: Ovonic Battery Company, Inc.
    Inventors: Stanford R. Ovshinsky, Cristian Fierro, Benjamin Reichman, William Mays, James Strebe, Michael A. Fetcenko, Avram Zallen, Tim Hicks
  • Publication number: 20060018824
    Abstract: A method of producing hydrogen gas from a reaction of an organic substance having multiple alcohol functionality with a base. Hydrogen can be produced in a reaction of a base with an organic substance having multiple alcohol functionality that may proceed through the formation of a bicarbonate or carbonate compound as a byproduct. In some embodiments, the reaction may occur in the presence of water. The preferred organic substances include diols, triols, and higher order alcohols. Non-cyclic (linear or branched) organic substances having multiple alcohol functionality are among the preferred reactants. The instant base-facilitated hydrogen-producing reactions are thermodynamically more spontaneous than the corresponding conventional reformation reactions of the organic substances and can produce hydrogen at less extreme reaction conditions. The preferred reactants further include low volatility organic substances having multiple alcohol functionality.
    Type: Application
    Filed: September 21, 2005
    Publication date: January 26, 2006
    Inventors: Benjamin Reichman, William Mays, James Strebe
  • Patent number: 6964826
    Abstract: An industrial catalyst having: a support; a plurality of metallic particulates distributed throughout the support; and a metal at least partially covering the surface of the support. A method for making a catalyst including the steps of: forming a support with non-noble metal particulates distributed throughout the support; and at least partially covering the surface of the support with a metal.
    Type: Grant
    Filed: July 22, 2002
    Date of Patent: November 15, 2005
    Assignee: Ovonic Battery Company, Inc.
    Inventors: Stanford R. Ovshinsky, Benjamin Reichman, Michael A. Fetcenko, Kwo Young, William Mays, James Strebe
  • Publication number: 20050170946
    Abstract: An industrial catalyst having: a support; a plurality of metallic particulates distributed throughout the support; and a metal at least partially covering the surface of the support. A method for making a catalyst including the steps of: forming a support with non-noble metal particulates distributed throughout the support; and at least partially covering the surface of the support with a metal.
    Type: Application
    Filed: January 14, 2005
    Publication date: August 4, 2005
    Inventors: Stanford Ovshinsky, Benjamin Reichman, Michael Fetcenko, Kwo Young, Willaim Mays, James Strebe
  • Publication number: 20050163706
    Abstract: A method of producing hydrogen gas from a reaction of carbon monoxide with a base. Hydrogen is produced in a reaction of a base with carbon monoxide that proceeds through the formation of a bicarbonate or carbonate compound as a by-product. In some embodiments, the reaction may occur in the presence of water and may produce carbon dioxide as a by-product. The instant base-facilitated hydrogen-producing reactions are thermodynamically more spontaneous than the water-gas shift reaction and are able to produce hydrogen gas from carbon monoxide at greater reaction rates than is possible with the water-gas shift reaction. Carbon monoxide in a purified or unpurified state or as a component within a mixture of gases is suitable for use in the instant invention. Metal hydroxides are the preferred base reactant. The base reactant can be in the solid phase, molten phase, liquid phase or solution phase.
    Type: Application
    Filed: March 14, 2005
    Publication date: July 28, 2005
    Inventors: Benjamin Reichman, William Mays, James Strebe
  • Publication number: 20050064274
    Abstract: A low temperature alkaline fuel cell having a hydrogen electrode and an oxygen electrode, both of which are comprised of high performance non-precious metal catalytic materials providing high performance at low temperatures.
    Type: Application
    Filed: September 27, 2004
    Publication date: March 24, 2005
    Inventors: Benjamin Reichman, Michael Fetcenko, Stanford Ovshinsky, Kwo Young, William Mays, James Strebe
  • Publication number: 20040247988
    Abstract: A catalyst having catalytically active material supported on a carrier matrix. The catalytically active material may be a mixed-valence, nanoclustered oxide(s), an organometallic material or a combination thereof. The supported catalytic material is particularly useful for catalyzing oxygen reduction in a fuel cell, such as an alkaline fuel cell.
    Type: Application
    Filed: June 9, 2003
    Publication date: December 9, 2004
    Inventors: Stanford R. Ovshinsky, Cristian Fierro, Benjamin Reichman, William Mays, James Strebe, Michael A. Fetcenko, Avram Zallen, Tim Hicks
  • Publication number: 20030050188
    Abstract: An industrial catalyst having: a support; a plurality of metallic particulates distributed throughout the support; and a metal at least partially covering the surface of the support.
    Type: Application
    Filed: July 22, 2002
    Publication date: March 13, 2003
    Inventors: Stanford R. Ovshinsky, Benjamin Reichman, Michael A. Fetcenko, Kwo Young, William Mays, James Strebe