Patents by Inventor James Michael Halek

James Michael Halek 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: 20170190984
    Abstract: The invention relates generally to a method for cracking and/or demulsification of hydrocarbons and/or fatty acids in emulsions, wherein these hydrocarbons and/or fatty acids in emulsions are exposed to an electromagnetic field created by a microwave emitting process, whereas this electromagnetic field is correlated with the oscillation frequency of the longer chained molecules of these hydrocarbons and/or fatty acids, by either adapting the exact correlated frequency and/or by adjusting the electromagnetic field to the properties of the targeted hydrocarbon and/or fatty acid molecules and its emulsions by adding suitable catalysts and by applying the correlated microwave output power.
    Type: Application
    Filed: March 20, 2015
    Publication date: July 6, 2017
    Inventors: Karel KOHLIK, Karel KOHLIK, James Michael HALEK
  • Publication number: 20110128203
    Abstract: Recovery of hydrocarbons, such as petroleum products, from a liquid or solid substrate is facilitated by the use of microwave energy to energize and separate molecular bonds between the hydrocarbons and the substrate. A radio frequency (RF) applicator delivers microwave energy to a treatment volume containing an emulsion of a hydrocarbon and a substrate. Delivering the microwave energy to the emulsion facilitates separation of the hydrocarbon and substrate molecules into layers. Hydrocarbons and other products can then be recovered from their respective layers. The treatment volume may be located either above or below ground. The RF applicator may include an antenna body with slots formed substantially parallel to one another in a substantially horizontal orientation. The RF applicator efficiently delivers microwave energy into the treatment volume. Substantially all of the power supplied to the RF applicator is radiated, with very little power reflected internally within the RF applicator.
    Type: Application
    Filed: February 11, 2011
    Publication date: June 2, 2011
    Inventors: James Michael Halek, Philip Aaron Harris, Richard Thompson, Robert Ferri, Jonathan Squires
  • Patent number: 7889146
    Abstract: Recovery of hydrocarbons, such as petroleum products, from a liquid or solid substrate is facilitated by the use of microwave energy to energize and separate molecular bonds between the hydrocarbons and the substrate. A radio frequency (RF) applicator delivers microwave energy to a treatment volume containing an emulsion of a hydrocarbon and a substrate. Delivering the microwave energy to the emulsion facilitates separation of the hydrocarbon and substrate molecules into layers. Hydrocarbons and other products can then be recovered from their respective layers. The treatment volume may be located either above or below ground. The RF applicator may include an antenna body with slots formed substantially parallel to one another in a substantially horizontal orientation. The RF applicator efficiently delivers microwave energy into the treatment volume. Substantially all of the power supplied to the RF applicator is radiated, with very little power reflected internally within the RF applicator.
    Type: Grant
    Filed: December 29, 2008
    Date of Patent: February 15, 2011
    Assignee: Enhanced Energy, Inc.
    Inventors: James Michael Halek, Philip Aaron Harris, Richard Thompson, Robert Ferri, Jonathan Squires
  • Publication number: 20090146897
    Abstract: Recovery of hydrocarbons, such as petroleum products, from a liquid or solid substrate is facilitated by the use of microwave energy to energize and separate molecular bonds between the hydrocarbons and the substrate. A radio frequency (RF) applicator delivers microwave energy to a treatment volume containing an emulsion of a hydrocarbon and a substrate. Delivering the microwave energy to the emulsion facilitates separation of the hydrocarbon and substrate molecules into layers. Hydrocarbons and other products can then be recovered from their respective layers. The treatment volume may be located either above or below ground. The RF applicator may include an antenna body with slots formed substantially parallel to one another in a substantially horizontal orientation. The RF applicator efficiently delivers microwave energy into the treatment volume. Substantially all of the power supplied to the RF applicator is radiated, with very little power reflected internally within the RF applicator.
    Type: Application
    Filed: December 29, 2008
    Publication date: June 11, 2009
    Inventors: James Michael Halek, Philip Aaron Harris, Richard Thompson, Robert Ferri, Jonathan Squires
  • Patent number: 7486248
    Abstract: Recovery of hydrocarbons, such as petroleum products, from a liquid or solid substrate is facilitated by the use of microwave energy to energize and separate molecular bonds between the hydrocarbons and the substrate. A radio frequency (RF) applicator delivers microwave energy to a treatment volume containing an emulsion of a hydrocarbon and a substrate. Delivering the microwave energy to the emulsion facilitates separation of the hydrocarbon and substrate molecules into layers. Hydrocarbons and other products can then be recovered from their respective layers. The treatment volume may be located either above or below ground. The RF applicator may include an antenna body with slots formed substantially parallel to one another in a substantially horizontal orientation. The RF applicator efficiently delivers microwave energy into the treatment volume. Substantially all of the power supplied to the RF applicator is radiated, with very little power reflected internally within the RF applicator.
    Type: Grant
    Filed: July 14, 2003
    Date of Patent: February 3, 2009
    Assignee: Integrity Development, Inc.
    Inventors: James Michael Halek, Philip Aaron Harris, Richard Thompson, Robert Ferri, Jonathan Squires