Patents by Inventor Stephane Bertholin

Stephane Bertholin 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: 11913640
    Abstract: The present invention relates to a device and a method for chemical looping combustion, for which the end of the intake duct (4) opening out within the chamber of the separator (1) is inclined with respect to a horizontal plane (H).
    Type: Grant
    Filed: September 13, 2019
    Date of Patent: February 27, 2024
    Assignees: IFP ENERGIES NOUVELLES, TOTAL RAFFINAGE CHIMIE
    Inventors: Airy Tilland, Benjamin Amblard, Sina Tebianian, Ann Cloupet, Florent Guillou, Stephane Bertholin, Mahdi Yazdanpanah
  • Patent number: 11885488
    Abstract: The invention relates to a CLC plant for the combustion of solid hydrocarbon feedstocks generating particles of unburnt residues, comprising a solid/solid separator above the combustion reactor in order to efficiently separate the particles of the oxygen-carrying solid from the particles of unburnt residues contained in the gas/solid mixture (14) exiting from the combustion reactor. The chamber (1) of the solid/solid separator, the combustion reactor and the inlet (2) for the gas/solid mixture (14) of the chamber have a parallelepiped shape. The inlet (2) is equipped at its top with means (3) for distribution of said gas/solid mixture in the chamber which extend over the entire length of the inlet, improving the solid/solid separation.
    Type: Grant
    Filed: July 18, 2019
    Date of Patent: January 30, 2024
    Assignees: IFP ENERGIES NOUVELLES, TOTAL RAFFINAGE CHIMIE
    Inventors: Stephane Bertholin, Ann Cloupet, Florent Guillou, Airy Tilland, Benjamin Amblard, Sina Tebianian, Mahdi Yazdanpanah
  • Publication number: 20220082249
    Abstract: The present invention concerns a combustion reactor (300) for chemical looping combustion (CLC) configured to operate in a fluidised bed, comprising: a lower chamber (320) forming a first reaction zone for the combustion of a hydrocarbon feedstock in the presence of particles of an oxidation-reduction active mass, comprising a first side wall and being configured to include a dense fluidised bed; an elongate upper chamber (340) with smaller passage cross-section than that of the lower chamber, forming a second reaction zone for the combustion of gaseous effluents originating from the combustion in the lower portion, comprising a second side wall and being configured to include a dilute fluidised bed; an intermediate portion (330) connecting the two chambers, and including an inner wall forming a right angle with the side walls of the two chambers. The invention also relates to the facility and the CLC process incorporating such a reactor (300).
    Type: Application
    Filed: December 10, 2019
    Publication date: March 17, 2022
    Inventors: Ann CLOUPET, Sina TEBIANIAN, Florent GUILLOU, Stephane BERTHOLIN, Airy TILLAND, Benjamin AMBLARD, Mahdi YAZDANPANAH, Surya REDDY KARRI, Tedd KNOWLTON
  • Publication number: 20210356120
    Abstract: The present invention relates to a device and a method for chemical looping combustion, for which the end of the intake duct (4) opening out within the chamber of the separator (1) is inclined with respect to a horizontal plane (H).
    Type: Application
    Filed: September 13, 2019
    Publication date: November 18, 2021
    Inventors: Airy TILLAND, Benjamin AMBLARD, Sina TEBIANIAN, Ann CLOUPET, Florent GUILLOU, Stephane BERTHOLIN, Mahdi YAZDANPANAH
  • Publication number: 20210293407
    Abstract: The invention relates to a CLC plant for the combustion of solid hydrocarbon feedstocks generating particles of unburnt residues, comprising a solid/solid separator above the combustion reactor in order to efficiently separate the particles of the oxygen-carrying solid from the particles of unburnt residues contained in the gas/solid mixture (14) exiting from the combustion reactor. The chamber (1) of the solid/solid separator, the combustion reactor and the inlet (2) for the gas/solid mixture (14) of the chamber have a parallelepiped shape. The inlet (2) is equipped at its top with means (3) for distribution of said gas/solid mixture in the chamber which extend over the entire length of the inlet, improving the solid/solid separation.
    Type: Application
    Filed: July 18, 2019
    Publication date: September 23, 2021
    Inventors: Stephane BERTHOLIN, Ann CLOUPET, Florent GUILLOU, Airy TILLAND, Benjamin AMBLARD, Sina TEBIANIAN, Mahdi YAZDANPANAH
  • Patent number: 10632440
    Abstract: The invention concerns a CLC process, and its installation, producing high purity dinitrogen, comprising: (a) the combustion of a hydrocarbon feed by reduction of a redox active mass brought into contact with the feed, (b) a first step for oxidation of the reduced active mass (25) obtained from step (a) in contact with a fraction of a depleted air stream (21b), in order to produce a high purity stream of dinitrogen (28) and a stream of partially re-oxidized active mass (26); (c) a second step for oxidation of the stream of active mass (26) in contact with air (20) in order to produce a stream of depleted air and a stream of re-oxidized active mass (24) for use in step (a); (d) dividing the stream of depleted air obtained at the end of step (c) in order to form the fraction of depleted air used in step (b) and a fraction complementary to the depleted air extracted from the CLC.
    Type: Grant
    Filed: July 15, 2016
    Date of Patent: April 28, 2020
    Assignees: IFP ENERGIES NOUVELLES, TOTAL RAFFINAGE CHIMIE
    Inventors: Florent Guillou, Stephane Bertholin, Mahdi Yazdanpanah
  • Patent number: 10494257
    Abstract: The invention relates to a method and to a plant for chemical looping oxidation-reduction combustion (CLC) of a gaseous hydrocarbon feed, for example natural gas essentially containing methane. According to the invention, catalytic steam reforming of the feed is performed between two successive feed combustion steps on contact with an oxidation-reduction active mass in form of particles. The reforming catalyst is arranged in a fixed bed in an intermediate reforming zone (130) between the two reduction zones (120, 140) where the two combustion steps are conducted.
    Type: Grant
    Filed: December 1, 2015
    Date of Patent: December 3, 2019
    Assignees: IFP ENERGIES NOUVELLES, TOTAL RAFFINAGE CHIME
    Inventors: Tiago Sozinho, Mahdi Yazdanpanah, Florent Guillou, Ann Cloupet, Stephane Bertholin, Hélène Stainton
  • Patent number: 10473326
    Abstract: In a method and a plant for chemical looping oxidation-reduction combustion (CLC) of a gaseous hydrocarbon feed, for example natural gas essentially containing methane, catalytic reforming of the feed is performed within the reduction zone where combustion of the feed is conducted on contact with an oxidation-reduction active mass in form of particles. The reforming catalyst comes in form of untransported fluidized particles within the reduction zone. The catalyst thus confined in the reduction zone does not circulate in the CLC loop.
    Type: Grant
    Filed: December 1, 2015
    Date of Patent: November 12, 2019
    Assignees: IFP ENERGIES NOUVELLES, TOTAL RAFFINAGE CHIMIE
    Inventors: Mahdi Yazdanpanah, William Pelletant, Tiago Sozinho, Stephane Bertholin, Hélène Stainton, Ann Cloupet, Florent Guillou
  • Patent number: 10473325
    Abstract: The invention relates to a plant and to a method for chemical looping oxidation-reduction combustion of a gaseous hydrocarbon feed, for example natural gas essentially containing methane. According to the invention, catalytic pre-reforming of the feed is performed in a pre-reforming zone comprising a fixed reforming catalyst, while benefiting from a heat transfer between the reduction or oxidation zone of the chemical loop and the pre-reforming zone adjoining the reduction or oxidation zone. Pre-reforming zone (130) and oxidation zone (110) or pre-reforming zone (130) and reduction zone (120) are thus thermally integrated within the same reactor (100) while being separated by at least one thermally conductive separation wall (140).
    Type: Grant
    Filed: December 1, 2015
    Date of Patent: November 12, 2019
    Assignees: IFP ENERGIES NOUVELLES, TOTAL RAFFINAGE CHIMIE
    Inventors: Florent Guillou, Beatrice Fischer, Tiago Sozinho, Ann Cloupet, Stephane Bertholin, Mahdi Yazdanpanah, Hélène Stainton
  • Publication number: 20180207601
    Abstract: The invention concerns a CLC process, and its installation, producing high purity dinitrogen, comprising: (a) the combustion of a hydrocarbon feed by reduction of a redox active mass brought into contact with the feed, (b) a first step for oxidation of the reduced active mass (25) obtained from step (a) in contact with a fraction of a depleted air stream (21b), in order to produce a high purity stream of dinitrogen (28) and a stream of partially re-oxidized active mass (26); (c) a second step for oxidation of the stream of active mass (26) in contact with air (20) in order to produce a stream of depleted air and a stream of re-oxidized active mass (24) for use in step (a); (d) dividing the stream of depleted air obtained at the end of step (c) in order to form the fraction of depleted air used in step (b) and a fraction complementary to the depleted air extracted from the CLC.
    Type: Application
    Filed: July 15, 2016
    Publication date: July 26, 2018
    Applicants: IFP Energies nouvelles, TOTAL RAFFINAGE CHIMIE
    Inventors: Florent GUILLOU, Stephane BERTHOLIN, Mahdi YAZDANPANAH
  • Publication number: 20170321887
    Abstract: The invention relates to a method and to a plant for chemical looping oxidation-reduction combustion (CLC) of a gaseous hydrocarbon feed, for example natural gas essentially containing methane. According to the invention, catalytic reforming of the feed is performed within the reduction zone where combustion of the feed is conducted on contact with an oxidation-reduction active mass in form of particles. The reforming catalyst comes in form of untransported fluidized particles within the reduction zone. The catalyst thus confined in the reduction zone does not circulate in the CLC loop.
    Type: Application
    Filed: December 1, 2015
    Publication date: November 9, 2017
    Inventors: Mahdi YAZDANPANAH, William PELLETANT, Tiago SOZINHO, Stephane BERTHOLIN, Hélène STAINTON, Ann CLOUPET, Florent GUILLOU
  • Publication number: 20170320731
    Abstract: The invention relates to a method and to a plant for chemical looping oxidation-reduction combustion (CLC) of a gaseous hydrocarbon feed, for example natural gas essentially containing methane. According to the invention, catalytic steam reforming of the feed is performed between two successive feed combustion steps on contact with an oxidation-reduction active mass in form of particles. The reforming catalyst is arranged in a fixed bed in an intermediate reforming zone (130) between the two reduction zones (120, 140) where the two combustion steps are conducted. FIG. 2 to be published.
    Type: Application
    Filed: December 1, 2015
    Publication date: November 9, 2017
    Inventors: Tiago SOZINHO, Mahdi YAZDANPANAH, Florent GUILLOU, Ann CLOUPET, Stephane BERTHOLIN, Hélène STAINTON
  • Publication number: 20170321886
    Abstract: The invention relates to a plant and to a method for chemical looping oxidation-reduction combustion of a gaseous hydrocarbon feed, for example natural gas essentially containing methane. According to the invention, catalytic pre-reforming of the feed is performed in a pre-reforming zone comprising a fixed reforming catalyst, while benefiting from a heat transfer between the reduction or oxidation zone of the chemical loop and the pre-reforming zone adjoining the reduction or oxidation zone. Pre-reforming zone (130) and oxidation zone (110) or pre-reforming zone (130) and reduction zone (120) are thus thermally integrated within the same reactor (100) while being separated by at least one thermally conductive separation wall (140).
    Type: Application
    Filed: December 1, 2015
    Publication date: November 9, 2017
    Inventors: Florent GUILLOU, Beatrice FISCHER, Tiago SOZINHO, Ann CLOUPET, Stephane BERTHOLIN, Mahdi YAZDANPANAH, Hélène STAINTON
  • Patent number: 8858221
    Abstract: The present invention describes a novel reactor adapted for carrying out chemical reactions at temperatures of up to 1600° C., and at pressures of up to 100 bars. The reactor of the invention has two vessels surrounding the reaction zone, an inner vessel constituted by a refractory material and an outer vessel surrounding the inner vessel and constituted by an insulating material.
    Type: Grant
    Filed: October 24, 2008
    Date of Patent: October 14, 2014
    Assignee: IFP Energies Nouvelles
    Inventors: Stephane Bertholin, Fabrice Giroudiere
  • Patent number: 8273314
    Abstract: The invention concerns an exchanger-reactor (1) comprising: a vessel (2); means for distributing a feed through a fixed bed catalytic zone (10); means (6) for collecting effluent from the catalytic zone (10); means for heating the catalytic zone (10); in which said collection means (6) comprise conduits passing right through the catalytic zone (10), said conduits being distributed in the catalytic zone and interposed between the heating means, and in which the heating means of the catalytic zone are contained in sheaths (8) which are partially immersed in the catalytic zone (10), the sheaths (8) being open at one of their ends and closed at the other, the open end being fixed to an upper tube plate (21) defining the collection chamber (19) which is located above the catalytic zone (10), said heating means comprising at least one combustion zone (13) located close to the catalytic zone, means for supplying said combustion zone (13) with an oxidizing gas mixture (15) and with a gaseous fuel (17), and means
    Type: Grant
    Filed: March 16, 2007
    Date of Patent: September 25, 2012
    Assignee: IFP Energies Nouvelles
    Inventors: Beatrice Fischer, Stephane Bertholin, Fabrice Giroudiere, Jerome Colin
  • Patent number: 8163046
    Abstract: The invention relates to a start-up process for a unit for producing highly thermally-integrated hydrogen by reforming a hydrocarbon feedstock that comprises a stage a wherein a burner whose purpose is to ensure start-up is supplied with a mixture of hydrocarbon feedstock and air, a stage b wherein a water stream is evaporated by indirect heat exchange with at least one of the hot streams of the process, a stage c wherein the hydrocarbon feedstock to be reformed is evaporated and heated and then introduced in gaseous form in a reforming reactor, and a stage d wherein the start-up burner is shut down, and a burner that is in permanent operation is lit.
    Type: Grant
    Filed: March 28, 2008
    Date of Patent: April 24, 2012
    Assignee: IFP Energies Nouvelles
    Inventors: Christophe Boyer, Fabrice Giroudiere, Stéphane Bertholin, Aziz Sattar
  • Patent number: 8025862
    Abstract: The invention concerns a process for producing synthesis gas, SG, from hydrocarbons and/or recycled compounds. In the process: a stream comprising a first feed F1 supplemented with steam undergoes steam reforming in a multi-tube reactor-exchanger R having a shell and reaction tubes containing a steam reforming catalyst within the shell; the reaction tubes are heated by convection by circulating in the shell, in overall counter-current mode, a heating fluid HF external to the tubes, which fluid comprises a first combustion gas stream of a second feed F2, then fluid HF is mixed, in 1 to 4 complementary combustion zones internal to the shell, with a third feed F3 and a gas comprising oxygen, to increase the temperature of the HF, and then the mixture obtained circulates in R to heat the reaction tubes in a complementary manner; and SG is produced from the steam reforming effluent from F1 and optionally part or all of the HF.
    Type: Grant
    Filed: September 20, 2006
    Date of Patent: September 27, 2011
    Assignee: IFP Energies Nouvelles
    Inventors: Alexandre Rojey, Stephane Bertholin, Fabrice Giroudiere, Eric Lenglet
  • Publication number: 20110020758
    Abstract: The present invention describes a novel reactor adapted for carrying out chemical reactions at temperatures of up to 1600° C., and at pressures of up to 100 bars. The reactor of the invention has two vessels surrounding the reaction zone, an inner vessel constituted by a refractory material and an outer vessel surrounding the inner vessel and constituted by an insulating material.
    Type: Application
    Filed: October 24, 2008
    Publication date: January 27, 2011
    Inventors: Stephane Bertholin, Fabrice Giroudiere
  • Patent number: 7687050
    Abstract: For producing synthesis gas, SG, from a hydrocarbon feed and optionally from recycled compounds, F, a first feed F1 supplemented with steam undergoes steam reforming in a multi-tube reactor-exchanger R comprising a plurality of reaction tubes (38) containing a steam reforming catalyst and a shell containing said tubes, to produce a first synthesis gas SG1; reaction tubes (38) are heated principally by convection by circulating a fluid HF in the shell external to said tubes, in which HF is a staged partial oxidation stream with oxygen of a second feed F2 at a pressure in the range 0.5 to 12 MPa, to produce a second synthesis gas SG2; and the synthesis gas SG is produced by mixing SG1 and SG2.
    Type: Grant
    Filed: September 20, 2006
    Date of Patent: March 30, 2010
    Assignee: Institut Francais du Petrole
    Inventors: Alexandre Rojey, Stephane Bertholin, Fabrice Giroudiere, Eric Lenglet
  • Patent number: 7625414
    Abstract: A reactor intended to carry out partial oxidation reactions starting from liquid feedstocks that can go from GPL to gas oil for the purpose of producing synthesis gas is characterized by finely controlled hydrodynamics and a high degree of thermal integration, and comprises an elongated jacket along an axis of any orientation, means (12) for supplying a preheated gas that contains oxygen and optionally water vapor, means (9) for supplying a hydrocarbon feedstock, means (11) for evacuation of a hydrogen-rich effluent, a first internal chamber (5) inside of which is carried out an essentially isothermal partial oxidation reaction that is connected to means (9) for supplying the hydrocarbon feedstock and to means (12) for supplying preheated gas, gas turbulizing means that are suitable for creating a perfect mixing flow, means (8) for linking first chamber (5) to a second chamber (7) with a suitable volume for carrying out a piston flow, linking means (8) that comprise at least one orifice, and second chamber (7
    Type: Grant
    Filed: May 22, 2008
    Date of Patent: December 1, 2009
    Assignee: Institut Francais du Petrole
    Inventors: Luc Nougier, Stéphane Bertholin, Willy Nastoll