Patents by Inventor Maksim Viktorovich Anigurkin

Maksim Viktorovich Anigurkin 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: 20160046868
    Abstract: Inventions can be used in the field of industrial, processing of combustible carbon-and/or hydrocarbon-containing products. Method for processing of carbon-and/or hydrocarbon-containing products includes layer-by-layer of raw materials in reactor in presence of catalyst. Raw materials pass through derivative product heating area (9), pyrolysis area (8), carbonization area (7), combustion area, (6) with conversion of solid, residual that is discharged from area for discharging of solid residuals (2) with discharging gate (3) from process area of reactor cyclically from top downward in reactor with maintaining of its leaktightness. Leak-proof process chamber (1) of reactor contains area for feeding of wet small particles of solid fuel waste, their pyrolysis and carbonization (14), connected to areas for feeding (4) and heating (5) of oxygen-containing agent.
    Type: Application
    Filed: January 30, 2015
    Publication date: February 18, 2016
    Inventors: Maksim Viktorovich ANIGURKIN, Aleksej Alekseevich VAZHNENKOV, Evgenij Trofimovich GOPONENKO, Aleksej Vasil`evich ERUSLANOV, Igor` Vasil`evich RASSOKHIN
  • Publication number: 20150144476
    Abstract: The inventions are related to industrial processing of combustible carbon- and hydrocarbon products. A method of processing combustible carbon- and hydrocarbon products is implemented using a reactor equipped with temperature sensors. The reactors comprise the phases of heating the charge (13), pyrolysis of combustible components and coking (12), combustion (11), and formation of a solid residue (4). At the phases of heating the charge (13) and coking and pyrolysis (12), an aerosol (i.e. dust particles and condensed liquid droplets carried away from the combustion zone (11) sorption zone (21) is formed by flushing the upper part of the charge by liquid hydrocarbonaceous products through the dispenser (22) and/or by adding to the batch the solid hydrocarbonaceous products having a softening point above 60° C. and the end boiling point above 300° C.
    Type: Application
    Filed: July 23, 2013
    Publication date: May 28, 2015
    Inventors: Maksim Viktorovich Anigurkin, Aleksey Alekseevich Vazhnenkov, Evgenij Trofimovich Goponenko, Aleksej Vasil'evich Eruslanov, Vyacheslav Aleksandrovich Panfilov, Igor' Vasil'evich Rassokhin