Patents by Inventor Kurt A. Dieker

Kurt A. Dieker 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: 20240067921
    Abstract: An apparatus and method of separating microalgae from a liquid source material, wherein the apparatus and method permit the efficient achievement of a high concentration of microalgae in a final solid-containing fraction.
    Type: Application
    Filed: August 29, 2023
    Publication date: February 29, 2024
    Inventors: Jason Bell, Kurt Dieker, Todd Benson, Marc Pugh
  • Publication number: 20230381750
    Abstract: Various aspects disclosed relate to a catalyst particle for catalyzing the production of syngas from carbon dioxide and methane. The catalyst particle includes a metal oxide substrate. The substrate includes a particulate nickel phase. An exposed surface of the catalyst particle includes at least some of the particulate nickel phase. Additionally, the exposed surface is substantially nonporous.
    Type: Application
    Filed: August 11, 2023
    Publication date: November 30, 2023
    Applicant: HYCO1, Inc.
    Inventors: Gregory Carr, David DeVilliers, Kurt A. Dieker
  • Publication number: 20230212471
    Abstract: This disclosure describes processes for using a single cellulosic feedstock or a combination of two or more different cellulosic feedstocks with a starch component to produce a fermented product. The process includes separating the components of the cellulosic feedstocks with fractionation, pretreating a component with wet fractionation with chemicals, hydrolysis and fermenta-tion of the pretreated feedstock(s) to produce cellulosic biofuel. The process may include combining the cellulosic feedstock(s) with other components to a cook and/or a fermentation process, distilling and dehydrating the combined components to produce the biofuel. The process may also include producing a whole stillage stream from the feedstock(s) and mechanically processing the whole stillage stream to produce a high-value protein animal feed.
    Type: Application
    Filed: March 10, 2023
    Publication date: July 6, 2023
    Applicant: ICM, Inc.
    Inventors: Jeremy Edward Javers, Christopher Riley William Gerken, Charles C. Gallop, Samuel Vander Griend, Jesse Spooner, Jonathan Phillip Licklider, Laercio Malburg, Ryan Edward Hoefling, Douglas Bernard Rivers, Kurt A. Dieker
  • Patent number: 11618861
    Abstract: This disclosure describes processes for using a single cellulosic feedstock or a combination of two or more different cellulosic feedstocks with a starch component to produce a fermented product. The process includes separating the components of the cellulosic feedstocks with fractionation, pretreating a component with wet fractionation with chemicals, hydrolysis and fermentation of the pretreated feedstock(s) to produce cellulosic biofuel. The process may include combining the cellulosic feedstock(s) with other components to a cook and/or a fermentation process, distilling and dehydrating the combined components to produce the bio fuel. The process may also include producing a whole stillage stream from the feedstock(s) and mechanically processing the whole stillage stream to produce a high-value protein animal feed.
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: April 4, 2023
    Assignee: ICM, Inc.
    Inventors: Jeremy Edward Javers, Christopher Riley William Gerken, Charles C. Gallop, Samuel Vander Griend, Jesse Spooner, Jonathon Phillip Licklider, Laercio Malburg, Ryan Edward Hoefling, Douglas Bernard Rivers, Kurt A. Dieker
  • Patent number: 11427781
    Abstract: Products produced from distillers corn oil include once refined corn oil product, food grade corn oil product, and free fatty acid product which may be used in a variety of applications. The products have varying specifications for free fatty acid content and moisture content. The applications include food, feed, additives, and manufacture of industrial products.
    Type: Grant
    Filed: December 7, 2016
    Date of Patent: August 30, 2022
    Assignee: Corn Oil One, LLC
    Inventors: Mohan Prasad Dasari, Kidron Joel Knox, Charles C Gallop, Kurt A Dieker, Hugh Tallant Warren, Shashank Ravi
  • Patent number: 11299697
    Abstract: This disclosure describes techniques to optimize dewatering process in a production facility. A process separates components in a mixture by using a separation device and a dewatering device. The process receives the mixture of liquids and solids, and separates out suspended solids from the mixture of liquids and solids by using the separation device, wherein a liquid with insoluble solids stream is created. The process dewaters the liquid with insoluble solids stream by using the dewatering device to produce a liquid with small particles stream and insoluble solids having particle sizes that are greater than about 20 microns to about 1000 microns.
    Type: Grant
    Filed: February 26, 2019
    Date of Patent: April 12, 2022
    Assignee: ICM, Inc.
    Inventors: Charles C. Gallop, Kurt A. Dieker
  • Patent number: 10774303
    Abstract: This disclosure describes techniques for using a single feedstock of barley to produce a fermented product and a method for filtering a large-particles stream from a liquid stream containing small particles of a process stream using a series of mechanical separation devices to increase yield.
    Type: Grant
    Filed: June 20, 2016
    Date of Patent: September 15, 2020
    Assignee: ICM, Inc.
    Inventors: Kurt A. Dieker, Charles C. Gallop, Scott D. Kohl, Keith Tjaden, Justin McMillen
  • Publication number: 20200113209
    Abstract: This disclosure describes methods to separate solids from liquids in a production facility. A process separates components in the process stream by applying non-condensable media to create density differences and then using a mechanical device to separate the solids from the liquids based on the density difference. The process produces the liquids and solids, which may be further processed to create valuable animal feed products.
    Type: Application
    Filed: June 19, 2018
    Publication date: April 16, 2020
    Inventors: Charles C. Gallop, Kurt A. Dieker, Christopher Riley William Gerken, John A. Pereira
  • Publication number: 20190264148
    Abstract: This disclosure describes techniques to optimize dewatering process in a production facility. A process separates components in a mixture by using a separation device and a dewatering device. The process receives the mixture of liquids and solids, and separates out suspended solids from the mixture of liquids and solids by using the separation device, wherein a liquid with insoluble solids stream is created. The process dewaters the liquid with insoluble solids stream by using the dewatering device to produce a liquid with small particles stream and insoluble solids having particle sizes that are greater than about 20 microns to about 1000 microns.
    Type: Application
    Filed: February 26, 2019
    Publication date: August 29, 2019
    Inventors: Charles C. Gallop, Kurt A. Dieker
  • Patent number: 10260031
    Abstract: This disclosure describes techniques to optimize dewatering process in a production facility. A process separates components in a mixture by using a separation device and a dewatering device. The process receives the mixture of liquids and solids, and separates out suspended solids from the mixture of liquids and solids by using the separation device, wherein a liquid with insoluble solids stream is created. The process dewaters the liquid with insoluble solids stream by using the dewatering device to produce a liquid with small particles stream and insoluble solids having particle sizes that are greater than about 20 microns to about 1000 microns.
    Type: Grant
    Filed: December 1, 2014
    Date of Patent: April 16, 2019
    Assignee: ICM, Inc.
    Inventors: Charles C. Gallop, Kurt A. Dieker
  • Patent number: 10093891
    Abstract: A method that includes clarifying a thin stillage product in a mechanical processor to produce a fine suspended solids stream and a clarified thin stillage is provided. The method further includes providing the thin stillage product and the clarified thin stillage, separately or in a combined stream, to one or more evaporators to produce one or more reduced suspended solids streams, each stream having a reduced amount of suspended solids and a lower viscosity as compared to process streams having a comparable total solids content but containing a higher amount of suspended solids. The method can further included further processing of one or more of the reduced suspended solids streams to produce a bio-oil product.
    Type: Grant
    Filed: February 11, 2015
    Date of Patent: October 9, 2018
    Assignee: ICM, Inc.
    Inventors: Scott D Kohl, Charles C Gallop, Kurt A Dieker
  • Publication number: 20170145377
    Abstract: This disclosure describes techniques for using a single feedstock of barley to produce a fermented product and a method for filtering a large-particles stream from a liquid stream containing small particles of a process stream using a series of mechanical separation devices to increase yield.
    Type: Application
    Filed: June 20, 2016
    Publication date: May 25, 2017
    Inventors: KURT A. DIEKER, CHARLES C. GALLOP, SCOTT D. KOHL, KEITH TJADEN, JUSTIN MCMILLEN
  • Publication number: 20170107452
    Abstract: Products produced from distillers corn oil include once refined corn oil product, food grade corn oil product, and free fatty acid product which may be used in a variety of applications. The products have varying specifications for free fatty acid content and moisture content. The applications include food, feed, additives, and manufacture of industrial products.
    Type: Application
    Filed: December 7, 2016
    Publication date: April 20, 2017
    Applicants: RRIP, LLC, ICM, Inc.
    Inventors: Mohan Prasad Dasari, Kidron Joel Knox, Charles C. Gallop, Kurt A. Dieker, Hugh Tallant Warren, Shashank Ravi
  • Patent number: 9375731
    Abstract: A process is disclosed which includes separating selected solids from a process stream with a selected solids mechanical processor containing a filter to produce a filtrate substantially free of selected solids and a retentate containing recovered selected solids. In one embodiment, the process stream contains an increased amount of liquid is provided to a downstream mechanical processor as compared to a process stream having no selected solids mechanical processor upstream. The selected solids mechanical processor can be a dynamic filtration device or a static separation device. Bio-oil recovery efficiency, quantity, and quality can be improved as a result.
    Type: Grant
    Filed: October 31, 2012
    Date of Patent: June 28, 2016
    Assignee: ICM, Inc.
    Inventors: Kurt A. Dieker, Charles C. Gallop
  • Patent number: 9376504
    Abstract: This disclosure describes techniques for using a single feedstock of barley to produce a fermented product and a method for filtering a large-particles stream from a liquid stream containing small particles of a process stream using a series of mechanical separation devices to increase yield.
    Type: Grant
    Filed: September 16, 2013
    Date of Patent: June 28, 2016
    Assignee: ICM, Inc.
    Inventors: Kurt A. Dieker, Charles C. Gallop, Scott D. Kohl, Keith Tjaden, Justin McMillen
  • Publication number: 20160024406
    Abstract: This disclosure describes processes for using a single cellulosic feedstock or a combination of two or more different cellulosic feedstocks with a starch component to produce a fermented product. The process includes separating the components of the cellulosic feedstocks with fractionation, pretreating a component with wet fractionation with chemicals, hydrolysis and fermentation of the pretreated feedstock(s) to produce cellulosic biofuel. The process may include combining the cellulosic feedstock(s) with other components to a cook and/or a fermentation process, distilling and dehydrating the combined components to produce the bio fuel. The process may also include producing a whole stillage stream from the feedstock(s) and mechanically processing the whole stillage stream to produce a high-value protein animal feed.
    Type: Application
    Filed: March 14, 2014
    Publication date: January 28, 2016
    Inventors: Jeremy Edward Javers, Christopher Riley William Gerken, Samuel Vander Griend, Jesse Spooner, Jonathon Phillip Licklider, Laercio Malburg, Ryan Edward Hoefling, Douglas Bernard Rivers, Scott Dennis Kohl, Kurt A. Dieker
  • Publication number: 20150152372
    Abstract: A method that includes clarifying a thin stillage product in a mechanical processor to produce a fine suspended solids stream and a clarified thin stillage is provided. The method further includes providing the thin stillage product and the clarified thin stillage, separately or in a combined stream, to one or more evaporators to produce one or more reduced suspended solids streams, each stream having a reduced amount of suspended solids and a lower viscosity as compared to process streams having a comparable total solids content but containing a higher amount of suspended solids. The method can further included further processing of one or more of the reduced suspended solids streams to produce a bio-oil product.
    Type: Application
    Filed: February 11, 2015
    Publication date: June 4, 2015
    Inventors: Scott D. Kohl, Charles C. Gallop, Kurt A. Dieker
  • Publication number: 20150152371
    Abstract: This disclosure describes techniques to optimize dewatering process in a production facility. A process separates components in a mixture by using a separation device and a dewatering device. The process receives the mixture of liquids and solids, and separates out suspended solids from the mixture of liquids and solids by using the separation device, wherein a liquid with insoluble solids stream is created. The process dewaters the liquid with insoluble solids stream by using the dewatering device to produce a liquid with small particles stream and insoluble solids having particle sizes that are greater than about 20 microns to about 1000 microns.
    Type: Application
    Filed: December 1, 2014
    Publication date: June 4, 2015
    Inventors: Charles C. Gallop, Kurt A. Dieker, Scott D. Kohl
  • Patent number: 8986551
    Abstract: A method that includes clarifying a thin stillage product in a mechanical processor to produce a fine suspended solids stream and a clarified thin stillage is provided. The method further includes providing the thin stillage product and the clarified thin stillage, separately or in a combined stream, to one or more evaporators to produce one or more reduced suspended solids streams, each stream having a reduced amount of suspended solids and a lower viscosity as compared to process streams having a comparable total solids content but containing a higher amount of suspended solids. The method can further included further processing of one or more of the reduced suspended solids streams to produce a bio-oil product.
    Type: Grant
    Filed: June 22, 2012
    Date of Patent: March 24, 2015
    Assignee: ICM, Inc.
    Inventors: Scott Kohl, Charles C. Gallop, Kurt A. Dieker
  • Publication number: 20140080183
    Abstract: This disclosure describes techniques for using a single feedstock of barley to produce a fermented product and a method for filtering a large-particles stream from a liquid stream containing small particles of a process stream using a series of mechanical separation devices to increase yield.
    Type: Application
    Filed: September 16, 2013
    Publication date: March 20, 2014
    Applicant: ICM, Inc.
    Inventors: Kurt A Dieker, Scott D. Kohl, Justin McMillen, Keith Tjaden