Patents by Inventor Christian G. Becker

Christian G. Becker 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: 20230165225
    Abstract: A beeswax and/or beehive or bee keeping equipment surface is treated with a composition containing at least one solvent, at least one surfactant and at least one oxidizing agent (e.g., peroxide), optionally also containing other components such as an oxidizing agent activator, a viscosifying agent, an enzyme and/or a pH control agent, to reduce the amount of pesticide residues on the beeswax surface and/or disinfect against any bacterial, viruses, and fungi infestation.
    Type: Application
    Filed: January 31, 2023
    Publication date: June 1, 2023
    Inventor: Christian G. Becker
  • Publication number: 20230146660
    Abstract: Devices and methods for provided both an antimicrobial vapor such as hydrogen peroxide and/or peracetic acid and water vapor in an enclosed or partially enclosed space are described. The device and method provided is for the reduction or elimination of microbes from air and surfaces in contact with air within an enclosed or partially enclosed space using hydrogen peroxide or peracetic acid in the vapor phase and also provide for humidity from water vapor. The device and method are directed towards a release of an antimicrobial vapor and water vapor through a permeable container/barrier containing a matrix into which water and an antimicrobial vapor producing material are absorbed.
    Type: Application
    Filed: March 4, 2021
    Publication date: May 11, 2023
    Inventor: Christian G. BECKER
  • Publication number: 20220323490
    Abstract: Feeding bees a composition containing at least one oxidizing agent (e.g., peroxide), optionally also containing other components such as an oxidizing agent activator or a viscosifying agent, to treat against, reduce and/or limit the spread of bacterial, virus, and fungi infestation in bees and/or beehives.
    Type: Application
    Filed: May 13, 2020
    Publication date: October 13, 2022
    Inventor: Christian G. Becker
  • Publication number: 20200000069
    Abstract: A beeswax and/or beehive or bee keeping equipment surface is treated with a composition containing at least one solvent, at least one surfactant and at least one oxidizing agent (e.g., peroxide), optionally also containing other components such as an oxidizing agent activator, a viscosifying agent, an enzyme and/or a pH control agent, to reduce the amount of pesticide residues on the beeswax surface and/or disinfect against any bacterial, viruses, and fungi infestation.
    Type: Application
    Filed: March 1, 2018
    Publication date: January 2, 2020
    Inventor: Christian G. Becker
  • Patent number: 7423068
    Abstract: The present invention is directed to methods and compositions for use to control parasitic mites of honey bees, particularly Varroa mites. In one aspect, the invention is directed to control of parasitic mites of honey bees wherein the active ingredient is a miticidally effective amount of a selected ketone or 1-heptanol, ethyl butyrate, benzaldehyde, heptaldehyde, or d-limonene. In a second aspect, the invention is directed to control of parasitic mites of honey bees wherein the active ingredient is an effective attractant amount of 2-heptanone. The attracted mites are then trapped or otherwise removed from the locus of the bees. The present invention is also directed to methods and compositions which include 2-heptanone to control hive invading pests of honey bees.
    Type: Grant
    Filed: September 17, 2004
    Date of Patent: September 9, 2008
    Assignees: The United States of America as represented by the Secretary of Agriculture, Cerexagri, Inc.
    Inventors: Eric H. Erickson, Jr., Gloria DeGrandi-Hoffman, Christian G. Becker, Roy S. Whitson, Thomas A. Deeby
  • Patent number: 6843985
    Abstract: The present invention is directed to methods and compositions for use to control parasitic mites of honey bees, particularly Varroa mites. In one aspect, the invention is directed to control of parasitic mites of honey bees wherein the active ingredient is a miticidally effective amount of a selected ketone or 1-heptanol, ethyl butyrate, benzaldehyde, heptaldehyde, or d-limonene. In a second aspect, the invention is directed to control of parasitic mites of honey bees wherein the active ingredient is an effective attractant amount of 2-heptanone. The attracted mites are then trapped or otherwise removed from the locus of the bees. The present invention is also directed to methods and compositions which include 2-heptanone to control hive invading pests of honey bees.
    Type: Grant
    Filed: February 27, 2002
    Date of Patent: January 18, 2005
    Assignees: The United States of America as represented by the Secretary of Agriculture, Cerexagri, Inc.
    Inventors: Eric H. Erickson, Jr., Gloria DeGrandi-Hoffman, Christian G. Becker, Roy S. Whitson, Thomas A. Deeby
  • Publication number: 20030044443
    Abstract: The present invention is directed to methods and compositions for use to control parasitic mites of honey bees, particularly Varroa mites. In one aspect, the invention is directed to control of parasitic mites of honey bees wherein the active ingredient is a miticidally effective amount of a selected ketone or 1-heptanol, ethyl butyrate, benzaldehyde, heptaldehyde, or d-limonene. In a second aspect, the invention is directed to control of parasitic mites of honey bees wherein the active ingredient is an effective attractant amount of 2-heptanone. The attracted mites are then trapped or otherwise removed from the locus of the bees. The present invention is also directed to methods and compositions which include 2-heptanone to control hive invading pests of honey bees.
    Type: Application
    Filed: February 27, 2002
    Publication date: March 6, 2003
    Inventors: Eric H. Erickson, Gloria De-Grandi-Hoffman, Christian G. Becker, Roy S. Whitson, Thomas A. Deeby