Patents by Inventor Elie Le Quemener

Elie Le Quemener 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: 11820686
    Abstract: A bioelectrochemical reactor (1) has an anode chamber (11) having at least two bioanodes (12, 13), and an anodic electrolyte (14) with an anodic electroactive microorganisms,—a cathode chamber (21) with at least one biocathode (22), and a cathodic electrolyte (24) with a cathodic electroactive microorganisms. The anode chamber (11) is separated from the cathode chamber (21) by, running from the anode chamber to the cathode chamber, a cation exchange membrane (31) and an anion exchange membrane (32). The cation and anion exchange membranes are separated from each other by an inter-membrane chamber (30), and means for applying a potential difference between the interconnected bioanodes and the biocathode/biocathodes. The bioanodes and biocathode/biocathodes have active surfaces such that the total active surface of the biocathode/biocathodes (22) is greater than the total active surface of the two bioanodes (12, 13).
    Type: Grant
    Filed: September 12, 2019
    Date of Patent: November 21, 2023
    Assignees: CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE, INSTITUT NATIONAL POLYTECHNIQUE DE TOULOUSE
    Inventors: Sylvain Moreau, Théodore Bouchez, Jianghao Tian, Elie Le Quemener, Alain Bergel, Elise Blanchet, Benjamin Erable, Luc Etcheverry, Alain Huyard, Pierre Mauricrace, Nicolas Bernet, Eric Trably
  • Publication number: 20210340039
    Abstract: A bioelectrochemical reactor (1) has an anode chamber (11) having at least two bioanodes (12, 13), and an anodic electrolyte (14) with an anodic electroactive microorganisms,—a cathode chamber (21) with at least one biocathode (22), and a cathodic electrolyte (24) with a cathodic electroactive microorganisms. The anode chamber (11) is separated from the cathode chamber (21) by, running from the anode chamber to the cathode chamber, a cation exchange membrane (31) and an anion exchange membrane (32). The cation and anion exchange membranes are separated from each other by an inter-membrane chamber (30), and means for applying a potential difference between the interconnected bioanodes and the biocathode/biocathodes. The bioanodes and biocathode/biocathodes have active surfaces such that the total active surface of the biocathode/biocathodes (22) is greater than the total active surface of the two bioanodes (12, 13).
    Type: Application
    Filed: September 12, 2019
    Publication date: November 4, 2021
    Inventors: Sylvain MOREAU, Théodore BOUCHEZ, Jianghao TIAN, Elie LE QUEMENER, Alain BERGEL, Elise BLANCHET, Benjamin ERABLE, Luc ETCHEVERRY, Alain HUYARD, Pierre MAURICRACE, Nicolas BERNET, Eric TRABLY
  • Patent number: 10329678
    Abstract: A method for controlling the activity of an electrochemical device (11) comprising a bioanode (3) and a biocathode (6) immersed in an electrolyte (10A, 10C) containing microorganisms, the anode compartment (8) and cathode compartment (9) being separated by at least one membrane (14), optionally a reference electrode, a difference in potential being applied between the bioanode (3) and the biocathode (6), or between the bioanode and the reference electrode, characterised in that the operation of the device is governed by a dual control: —a priority control of the difference in potential between the bioanode and the biocathode, or between the bioanode and the reference electrode, between a minimum limit value allowing the development of an electroactive biofilm at the bioanode and a maximum limit value lower than the oxidation potential of said biofilm, and—a secondary control, when the first control is in place, optimising the Faradaic efficiency of the biocathode.
    Type: Grant
    Filed: September 29, 2015
    Date of Patent: June 25, 2019
    Assignee: Institut national de Recherche en Sciences et Technologies pour I'Environnement et I'Agriculture (IRSTEA)
    Inventors: Théodore Bouchez, Arnaud Bridier, Elie Le Quemener
  • Publication number: 20170218530
    Abstract: A method for controlling the activity of an electrochemical device (11) comprising a bioanode (3) and a biocathode (6) immersed in an electrolyte (10A, 10C) containing microorganisms, the anode compartment (8) and cathode compartment (9) being separated by at least one membrane (14), optionally a reference electrode, a difference in potential being applied between the bioanode (3) and the biocathode (6), or between the bioanode and the reference electrode, characterised in that the operation of the device is governed by a dual control: —a priority control of the difference in potential between the bioanode and the biocathode, or between the bioanode and the reference electrode, between a minimum limit value allowing the development of an electroactive biofilm at the bioanode and a maximum limit value lower than the oxidation potential of said biofilm, and—a secondary control, when the first control is in place, optimising the Faradaic efficiency of the biocathode.
    Type: Application
    Filed: September 29, 2015
    Publication date: August 3, 2017
    Inventors: Théodore BOUCHEZ, Arnaud BRIDIER, Elie LE QUÉMÉNER