Patents by Inventor Yee Soong

Yee Soong 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: 10603654
    Abstract: The disclosure describes a pelletized sorbent comprising a first component comprising Basic Immobilized Amine Sorbent, a second component comprising inorganic strength additive, and a third component comprising polymer binder, where the Basic Immobilized Amine Sorbent and solid inorganic strength additive are interconnected by the polymer binder. The pelletized sorbent is useful for removing CO2 from a gaseous mixture such as a post combustion gas stream.
    Type: Grant
    Filed: August 7, 2018
    Date of Patent: March 31, 2020
    Assignee: U.S. Department of Energy
    Inventors: Walter C. Wilfong, McMahan L. Gray, Yee Soong, Brian W. Kail
  • Patent number: 10065174
    Abstract: The disclosure describes a pelletized sorbent comprising a first component comprising Basic Immobilized Amine Sorbent, a second component comprising inorganic strength additive, and a third component comprising polymer binder, where the Basic Immobilized Amine Sorbent and solid inorganic strength additive are interconnected by the polymer binder. The pelletized sorbent is useful for removing CO2 from a gaseous mixture such as a post combustion gas stream.
    Type: Grant
    Filed: May 17, 2016
    Date of Patent: September 4, 2018
    Assignee: U.S. Department of Energy
    Inventors: Walter C. Wifong, McMahan L. Gray, Yee Soong, Brian W. Kail
  • Publication number: 20120009657
    Abstract: The invention relates a novel hybrid carbonic anhydrase catalyst with the potential to contribute significantly to meeting targeted reductions in greenhouse gas emissions. In a preferred embodiment of the present invention at least a portion of a cellulose binding domain (CBD) of a protein is fused to another protein, carbonic anhydrase, (CA) to create a new multifunctional protein which can bind tightly to cellulose while maintaining its native catalytic ability to process CO2. The resulting CA-CBD hybrid polypeptide can be immobilized to a cellulose support and used to cost-effectively capture CO2 from gas streams and other CO2-rich environs.
    Type: Application
    Filed: July 27, 2011
    Publication date: January 12, 2012
    Inventors: Mohammed . Ataai, Robert Dilmore, Yee Soong, Richard Koepsel, Zhu Liu
  • Patent number: 7922792
    Abstract: A neutralization/sequestration process is provided for concomitantly addressing capture and sequestration of both CO2 and SO2 from industrial gas byproduct streams. The invented process concomitantly treats and minimizes bauxite residues from aluminum production processes and brine wastewater from oil/gas production processes.
    Type: Grant
    Filed: March 12, 2008
    Date of Patent: April 12, 2011
    Assignee: U.S. Department of Energy
    Inventors: Yee Soong, Douglas E. Allen, Chen Zhu
  • Publication number: 20110045557
    Abstract: The invention relates a novel hybrid carbonic anhydrase catalyst with the potential to contribute significantly to meeting targeted reductions in greenhouse gas emissions. In a preferred embodiment of the present invention at least a portion of a cellulose binding domain (CBD) of a protein is fused to another protein, carbonic anhydrase, (CA) to create a new multi-functional protein which can bind tightly to cellulose while maintaining its native catalytic ability to process CO2. The resulting CA-CBD hybrid polypeptide can be immobilized to a cellulose support and used to cost-effectively capture CO2 from gas streams and other CO2-rich environs.
    Type: Application
    Filed: July 27, 2007
    Publication date: February 24, 2011
    Inventors: Mohammed Ataai, Robert Dilmore, Yee Soong, Richard Koepsel, Zhu Liu
  • Patent number: 7842126
    Abstract: Two methods are provide for the separation of carbon dioxide from the flue gases. The first method utilizes a phase-separating moiety dissolved in an aqueous solution of a basic moiety to capture carbon dioxide. The second method utilizes a phase-separating moiety as a suspended solid in an aqueous solution of a basic moiety to capture carbon dioxide. The first method takes advantage of the surface-independent nature of the CO2 absorption reactions in a homogeneous aqueous system. The second method also provides permanent sequestration of the carbon dioxide. Both methods incorporate the kinetic rate enhancements of amine-based scrubbing while eliminating the need to heat the entire amine solution (80% water) in order to regenerate and release CO2. Both methods also take advantage of the low-regeneration temperatures of CO2-bearing mineral systems such as Na2CO3/NaHCO3 and K2CO3/KHCO3.
    Type: Grant
    Filed: September 30, 2008
    Date of Patent: November 30, 2010
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Robert Dilmore, Douglas Allen, Yee Soong, Sheila Hedges
  • Patent number: 7288136
    Abstract: A method is provided for making low-cost CO2 sorbents that can be used in large-scale gas-solid processes. The improved method entails treating an amine to increase the number of secondary amine groups and impregnating the amine in a porous solid support. The method increases the CO2 capture capacity and decreases the cost of utilizing an amine-enriched solid sorbent in CO2 capture systems.
    Type: Grant
    Filed: January 13, 2005
    Date of Patent: October 30, 2007
    Assignee: United States of America Department of Energy
    Inventors: McMahan L. Gray, Kenneth J. Champagne, Yee Soong, Thomas Filburn
  • Patent number: 6959589
    Abstract: An autoclave reactor allows for the ultrasonic analysis of slurry concentration and particle size distribution at elevated temperatures and pressures while maintaining the temperature- and pressure-sensitive ultrasonic transducers under ambient conditions. The reactor vessel is a hollow stainless steel cylinder containing the slurry which includes a stirrer and a N2 gas source for directing gas bubbles through the slurry. Input and output transducers are connected to opposed lateral portions of the hollow cylinder for respectively directing sound waves through the slurry and receiving these sound waves after transmission through the slurry, where changes in sound wave velocity and amplitude can be used to measure slurry parameters. Ultrasonic adapters connect the transducers to the reactor vessel in a sealed manner and isolate the transducers from the hostile conditions within the vessel without ultrasonic signal distortion or losses.
    Type: Grant
    Filed: October 3, 2003
    Date of Patent: November 1, 2005
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Yee Soong, Arthur G. Blackwell
  • Patent number: 6681938
    Abstract: A process for separating organic and inorganic particles from a dry mixture by sizing the particles into isolated fractions, contacting the sized particles to a charged substrate and subjecting the charged particles to an electric field to separate the particles.
    Type: Grant
    Filed: June 12, 2001
    Date of Patent: January 27, 2004
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Thomas A. Link, Micael R. Schoffstall, Yee Soong
  • Patent number: 6547854
    Abstract: A new method for making low-cost CO2 sorbents that can be used in large-scale gas-solid processes. The new method entails treating a solid substrate with acid or base and simultaneous or subsequent treatment with a substituted amine salt. The method eliminates the need for organic solvents and polymeric materials for the preparation of CO2 capture systems.
    Type: Grant
    Filed: September 25, 2001
    Date of Patent: April 15, 2003
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: McMahan L. Gray, Yee Soong, Kenneth J. Champagne