Patents by Inventor Andreas Meiswinkel

Andreas Meiswinkel 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: 20240158322
    Abstract: A method for producing a target compound includes distributing a feed mixture at a temperature in a first temperature range to a plurality of parallel reaction tubes of a shell-and-tube reactor, and subjecting the feed mixture in first tube sections of the reaction tubes to heating to a temperature in a second temperature range and in second tube sections of the reaction tubes arranged downstream of the first tube sections to oxidative catalytic conversion using one or more catalysts. A gas mixture flowing out of the second tube sections is brought into contact in third tube sections arranged downstream of the second tube sections with a catalyst which has a volumetric activity below the highest volumetric activity of the one or the plurality of catalysts arranged in the second tube sections. A gas mixture from the third tube sections is withdrawn from the shell-and-tube reactor without further catalytic conversion.
    Type: Application
    Filed: March 14, 2022
    Publication date: May 16, 2024
    Inventors: Mathieu Zellhuber, Martin Schubert, Andreas Meiswinkel, Wolfgang Muller, Ernst Haidegger, Gerhard Mestl, Klaus Wanninger, Peter Scheck
  • Publication number: 20240150261
    Abstract: A method for producing a target compound, includes distributing feed mixture at a temperature in a first temperature range to a plurality of parallel reaction tubes of a shell-and-tube reactor. The method further includes subjecting the feed mixture in first tube sections of the reaction tubes to heating to a temperature in a second temperature range, and in second tube sections of the reaction tubes arranged downstream of the first tube sections to oxidative catalytic conversion using one or more catalysts arranged in the second tube sections. The heating is performed, at least in part, using a catalyst arranged in the first tube sections and having a light-off temperature in the first temperature range.
    Type: Application
    Filed: March 14, 2022
    Publication date: May 9, 2024
    Inventors: Mathieu Zellhuber, Martin Schubert, Andreas Meiswinkel, Wolfgang Muller, Ernst Haidegger, Gerhard Mestl, Klaus Wanninger, Peter Scheck
  • Publication number: 20240150263
    Abstract: A process for producing a target compound includes forming a feed mixture containing at least one reactant compound. The feed mixture is distributed to parallel reaction tubes of one or more shell-and-tube reactors and subjected to oxidative catalytic conversion in the reaction tubes. Steam is added to the feed mixture in an amount such that a steam fraction of the feed mixture is 5 to 95 vol %, oxygen is added to the feed mixture in the form of a fluid containing at least 95 vol % oxygen, and the oxidative catalytic conversion is carried out using one or more catalysts containing the metals molybdenum, vanadium, niobium and optionally tellurium.
    Type: Application
    Filed: March 14, 2022
    Publication date: May 9, 2024
    Inventors: Mathieu Zellhuber, Martin Schubert, Andreas Meiswinkel, Gerhard Mestl, Klaus Wanninger, Peter Scheck, Anina Wohl
  • Publication number: 20240150262
    Abstract: Producing a product hydrocarbon includes subjecting a feed mixture containing a feed hydrocarbon and oxygen to selective oxidation to obtain a product mixture containing product hydrocarbon and water. A subsequent mixture is formed from a portion of the product mixture by separating a portion of the water. Oxygen in the feed mixture is partially converted during the selective oxidation, so that the product mixture has a first residual oxygen content and the subsequent mixture has a second residual oxygen content. Detection of the first and/or the second residual oxygen content is performed using a first measuring device. A second measuring device at the end of the catalyst bed detects temperature. Using a process control and/or evaluation unit, measurement data of the first and/or second measuring device(s) are detected and are evaluated and/or processed while obtaining follow-up data. Process control is carried out on the basis of the follow-up data.
    Type: Application
    Filed: March 14, 2022
    Publication date: May 9, 2024
    Inventors: Mathieu Zellhuber, Martin Schubert, Andreas Meiswinkel, Anina Wohl
  • Publication number: 20240025819
    Abstract: Disclosed is a method for producing olefins having a carbon number of two to eight, in which carbon dioxide and hydrogen are fed to a hydrogenation step, and, wherein portions of carbon dioxide and hydrogen are then converted with one another on a bifunctional catalyst via an oxygenate as an intermediate into the one or more olefins. It is provided that the hydrogen fed to the hydrogenation step is provided by a reforming step, in which methane and water are converted into hydrogen, carbon monoxide, and carbon dioxide, and that the carbon dioxide that is fed to the hydrogenation step is provided in part using the reforming step and in part independently of the reforming step. Providing the portions of hydrogen and carbon dioxide comprises providing, using the reforming step, a gas mixture containing hydrogen, carbon monoxide and carbon dioxide and feeding at least a portion of the gas mixture to the hydrogenation step without separating hydrogen, carbon monoxide, and carbon dioxide.
    Type: Application
    Filed: January 14, 2021
    Publication date: January 25, 2024
    Inventors: Andreas MEISWINKEL, Hans-Jörg ZANDER
  • Publication number: 20230406786
    Abstract: A method for producing one or more hydrocarbons includes feeding a process gas stream into a reactor arrangement. The process gas stream includes carbon dioxide and/or carbon monoxide with hydrogen, which are converted at least in part in a first reaction step into one or more oxygenates, which are converted at least in part in a second reaction step into the one or more hydrocarbons. The reactor arrangement has one or more reactors, which comprise a first reaction zone and a second reaction zone arranged downstream of the first reaction zone. The first reaction zone and the second reaction zone are equipped with catalysts in such a way that the first and second reaction steps are catalyzed in the first reaction zone and that the second reaction step is catalyzed in the second reaction zone. In the second reaction zone, the first reaction step is generally not catalyzed.
    Type: Application
    Filed: November 4, 2021
    Publication date: December 21, 2023
    Inventors: Andreas Meiswinkel, Hans-Jorg Zander
  • Publication number: 20230202947
    Abstract: A process for producing propylene in which a first material stream is provided using a steam cracking method and one or more fractionations and is rich in ethylene, in which a second material stream containing carbon monoxide and hydrogen is provided using a synthesis gas production method, and in which at least a part of the ethylene from the first material stream is reacted with at least a part of the carbon monoxide and the hydrogen from the second material stream to form an aldehyde using a hydroformylation to obtain a third material stream, and in which at least a part of the aldehyde in the third material stream is converted to the propylene, wherein the ethylene is provided by means of the steam cracking method in a first component mixture, wherein the propylene is provided in a second component mixture.
    Type: Application
    Filed: June 8, 2021
    Publication date: June 29, 2023
    Inventors: Ernst Haidegger, Andreas Meiswinkel, Hans-Jorg Zander
  • Publication number: 20230146273
    Abstract: Disclosed is a method for the producingtiona target compoundby oxidative coupling of methane. A starting gas mixture is provided which contains an olefin, carbon monoxide, carbon dioxide and optionally hydrogen, wherein the olefin is subjected to hydroformylation with the carbon monoxide and the hydrogen of the starting mixture to obtain an aldehyde, wherein the paraffin and the olefin have a carbon chain with a first carbon number and the aldehyde has a carbon chain with a second carbon number which is greater by one than the first carbon number. The carbon dioxide present in the starting mixture is removed upstream and/or downstream of the hydroformylation. The carbon dioxide is subjected to dry reforming with methane to obtain carbon monoxide, and that the carbon monoxide subjected to hydroformylation comprises at least part of the carbon monoxide obtained in the dry reforming .
    Type: Application
    Filed: July 16, 2020
    Publication date: May 11, 2023
    Inventors: Andreas MEISWINKEL, Hans-Jörg ZANDER, Ernst HAIDEGGER, Isabel KIENDL
  • Patent number: 11560344
    Abstract: A process (100) is proposed for the production of one or more olefins, in which a reaction feed containing oxygen and one or more paraffins is formed and in which a part of the oxygen in the reaction feed is reacted with a part of the one or more paraffins to form the one or more olefins by an oxidative process, to obtain a process gas, the process gas containing at least the unreacted part of the one or more paraffins and oxygen, the one or more olefins, one or more acetylenes, carbon dioxide and water.
    Type: Grant
    Filed: March 4, 2020
    Date of Patent: January 24, 2023
    Assignee: LINDE GmbH
    Inventors: Helmut Fritz, Andreas Meiswinkel, Martin Schubert, Mathieu Zellhuber, Nicole Schödel, Sonja Schulte, Anina Wöhl
  • Publication number: 20220259127
    Abstract: Disclosed is a method for producing a target compound, in which a first gas mixture includes an olefin having a first carbon number and carbon monoxide, a second gas mixture formed using the first gas mixture and containing the olefin, hydrogen and carbon monoxide, is subjected to conversion steps to obtain a third gas mixture containing a compound with a second carbon number and at least carbon monoxide The conversion includes hydroformylation. The second carbon number is one greater than the first carbon number. Using at least a portion of the third gas mixture, a fourth gas mixture which is depleted in the compound has three carbon atoms, is enriched in carbon monoxide, and is formed using at least a portion of the third gas mixture The carbon monoxide in at least a portion of the fourth gas mixture is subjected to a water gas shift to form hydrogen and carbon dioxide, and that the hydrogen formed in the water gas shift is used in the formation of the second gas mixture.
    Type: Application
    Filed: July 16, 2020
    Publication date: August 18, 2022
    Inventors: Andreas MEISWINKEL, Hans-Jörg ZANDER, Ernst HAIDEGGER, Isabel KIENDL
  • Publication number: 20220241764
    Abstract: A catalyst composition including: (a) a chromium compound; (b) a ligand of the general structure (A) R1R2P—N(R3)—P(R4)—NR5R6 or (B) R1R2P—N(R3)—P(XR7)R8 or R1R2P—N(R3)—P(XR7)2, with X?O or S, wherein R1, R2, R3, R4, R5, R6, R7 and R8 are independently C1-C10-alkyl, C6-C20-aryl, C3-C10-cycloalkyl, aralkyl, alkylaryl, or trialkylsilyl, or any cyclic derivatives of (A) and (B), wherein at least one of the P or N atoms of the PNPN-unit or PNP-unit is a member of the ring system, the ring system being formed from one or more constituent compounds of structures (A) or (B) by substitution; and (c) an activator or co-catalyst; and a process for tri- and/or tetramerization.
    Type: Application
    Filed: April 18, 2022
    Publication date: August 4, 2022
    Applicant: SABIC Global Technologies B.V.
    Inventors: ANINA WOEHL, ANDREAS MEISWINKEL, HEINZ BOELT, BERND H. MUELLER, WOLFGANG MUELLER, NORMEN PEULECKE, UWE ROSENTHAL, MARCO HARFF, MOHAMMED H. AL-HAZMI, ABDULLAH ALQAHTANI
  • Publication number: 20220234973
    Abstract: The invention relates to a method (100) for producing a target compound, wherein a paraffin is subjected to an oxidative dehydrogenation (1) with oxygen to obtain an olefin, and wherein the olefin is subjected to a hydroformylation (2) with carbon monoxide to obtain an aldehyde, wherein the paraffin and the olefin have a carbon chain having a first carbon number and the aldehyde has a carbon chain having a second carbon number which is one greater than the first carbon number. It is provided that carbon dioxide is formed as a by-product in the oxidative dehydrogenation (1), that the carbon dioxide is subjected to dry reforming (3) at least in part with methane to obtain carbon monoxide and hydrogen, and that the carbon monoxide obtained in the dry reforming (3) and/or the hydrogen obtained in the dry reforming (3) is supplied to the hydroformylation (2). A corresponding installation is also the subject matter of the invention.
    Type: Application
    Filed: July 16, 2020
    Publication date: July 28, 2022
    Inventors: Andreas MEISWINKEL, Hans-Jörg ZANDER, Ernst HAIDEGGER
  • Publication number: 20220153661
    Abstract: A process (100) is proposed for the production of one or more olefins, in which a reaction feed containing oxygen and one or more paraffins is formed and in which a part of the oxygen in the reaction feed is reacted with a part of the one or more paraffins to form the one or more olefins by an oxidative process, to obtain a process gas, the process gas containing at least the unreacted part of the one or more paraffins and oxygen, the one or more olefins, one or more acetylenes, carbon dioxide and water.
    Type: Application
    Filed: March 4, 2020
    Publication date: May 19, 2022
    Inventors: Helmut FRITZ, Andreas MEISWINKEL, Martin SCHUBERT, Mathieu ZELLHUBER, Nicole SCHÖDEL, Sonja SCHULTE, Anina WÖHL
  • Patent number: 11331655
    Abstract: A method for preparing a homogenous catalyst for the production of linear alpha olefins includes: preparing a first pre-catalyst solution comprising a modifier and an organoaluminum compound in a first solvent wherein the first pre-catalyst solution is reacted and stored in a first vessel for a period of time of 1 hour to 90 days; preparing a second pre-catalyst solution comprising a second solvent, a ligand, and a chromium containing compound, wherein the second pre-catalyst solution is stored in a second vessel for a period of time of 1 hour to 90 days; and after a period of time, adding the first pre-catalyst solution to a catalyst pre-formation unit; after the same period of time, adding the second pre-catalyst solution to the catalyst pre-formation unit; forming a homogenous catalyst by mixing the first pre-catalyst solution and the second pre-catalyst solution; adding the homogeneous catalyst to a reaction vessel, wherein the reaction vessel comprises an alpha olefin; and forming the linear alpha olefin
    Type: Grant
    Filed: December 21, 2017
    Date of Patent: May 17, 2022
    Assignee: SABIC GLOBAL TECHNOLOGIES B.V.
    Inventors: Abdullah Saad Al-Dughaither, Shahid Azam, Abdulmajeed Mohammed Al-Hamdan, Dafer Mubarak Alshahrani, Sebastiano Licciulli, Anina Wohl, Wolfgang Muller, Heinz Bolt, Andreas Meiswinkel, Tobias Meier, Ralf Noack
  • Patent number: 11285469
    Abstract: A method for preparing a homogenous catalyst for use in preparing a linear alpha olefin includes: preparing a first pre-catalyst solution by mixing a chromium source and a ligand in a first solvent, wherein the first pre-catalyst solution is stored in a first vessel; preparing a second pre-catalyst solution by mixing an organoaluminum compound and a modifier in a second solvent, wherein the second pre-catalyst solution is stored in a second vessel; and simultaneously feeding the first pre-catalyst solution and the second pre-catalyst solution directly into a reaction vessel, wherein the reaction vessel includes a third solvent.
    Type: Grant
    Filed: December 28, 2017
    Date of Patent: March 29, 2022
    Assignee: SABIC GLOBAL TECHNOLOGIES B.V.
    Inventors: Abdullah Saad Al-Dughaither, Shahid Azam, Abdulmajeed Mohammed Al-Hamdan, Dafer Mubarak Alshahrani, Sebastiano Licciulli, Andreas Meiswinkel, Heinz Bolt, Wolfgang Muller, Anina Wohl
  • Patent number: 11225444
    Abstract: A method of column control includes: passing a feed stream and a make-up stream through a column; withdrawing an overhead fraction from the column; purging at least a portion of the overhead fraction; cooling at least a portion of the overhead fraction in a heat exchanger and passing it through a reflux drum; withdrawing a purge stream and a distillate stream from the reflux drum, wherein the distillate stream has a constant flow rate; recycling at least a portion of the distillate stream back to the column; and passing at least a portion of the distillate stream to a downstream process.
    Type: Grant
    Filed: December 19, 2017
    Date of Patent: January 18, 2022
    Assignee: SABIC GLOBAL TECHNOLOGIES B.V.
    Inventors: Abdullah Saad Al-Dughaiter, Shahid Azam, Abdulmajeed Mohammed Al-Hamdan, Dafer Mubarak Alshahrani, Ralf Noack, Tobias Meier, Gabriel Waurick, Heinz Bolt, Andreas Meiswinkel, Wolfgang Müller, Anina Wohl, Hans-Jorge Zander
  • Publication number: 20210230093
    Abstract: The invention relates to a method for producing one or more olefins and one or more carboxylic acids, in which one or more paraffins is or are subjected to an oxidative dehydrogenation. For the oxidative dehydrogenation, a reactor (10) having a plurality of reaction zones (11, 12, 13) is used, a gas mixture comprising the one or more paraffins is successively passed through the reaction zones (11, 12, 13), and at least two of the reaction zones (11, 12, 13) are subject to varying temperature influences. The invention also relates to a corresponding system (100).
    Type: Application
    Filed: June 19, 2019
    Publication date: July 29, 2021
    Inventors: Mathieu ZELLHUBER, Martin SCHUBERT, Andreas MEISWINKEL, Florian WINKLER, Desislava TOTA, Hans-Jörg ZANDER
  • Publication number: 20210130265
    Abstract: A method of column control includes: passing a feed stream and a make-up stream through a column; withdrawing an overhead fraction from the column; purging at least a portion of the overhead fraction; cooling at least a portion of the overhead fraction in a heat exchanger and passing it through a reflux drum; withdrawing a purge stream and a distillate stream from the reflux drum, wherein the distillate stream has a constant flow rate; recycling at least a portion of the distillate stream back to the column; and passing at least a portion of the distillate stream to a downstream process.
    Type: Application
    Filed: December 19, 2017
    Publication date: May 6, 2021
    Inventors: Abdullah Saad Al-Dughaiter, Shahid Azam, Abdulmajeed Mohammed Al-Hamdan, Dafer Mubarak Alshahrani, Ralf Noack, Tobias Meier, Gabriel Waurick, Heinz Bolt, Andreas Meiswinkel, Wolfgang Müller, Anina Wohl, Hans-Jorge Zander
  • Patent number: 10975015
    Abstract: A process for producing ethylene and acetic acid is proposed in which an ethane- and oxygen-containing reaction input stream is formed and a portion of the ethane and of the oxygen in the reaction input stream is converted into the ethylene and the acetic acid by oxidative dehydrogenation to obtain a process gas, wherein the process gas contains the unconverted portion of the ethane and of the oxygen, the ethylene and the acetic acid and also water. It is provided that the process comprises adjusting in the process gas a water partial pressure according to a specified product ratio of the acetic acid to the ethylene to a value in a range between 0.7 and 5 bar (abs.). A corresponding plant (100) likewise forms part of the subject matter of the present invention.
    Type: Grant
    Filed: December 22, 2017
    Date of Patent: April 13, 2021
    Assignee: LINDE AKTIENGESELLSCHAFT
    Inventors: Mathieu Zellhuber, Florian Winkler, Martin Schubert, Andreas Meiswinkel
  • Patent number: 10919821
    Abstract: The invention relates to a process for producing an olefin in which a reaction input stream containing at least one paraffin, oxygen and water is formed and in which a portion of the paraffin and of the oxygen in the reaction input stream is converted into the olefin by oxidative dehydrogenation using a catalyst to obtain a process gas, wherein the process gas contains at least the unconverted portion of the paraffin and of the oxygen, the olefin and the water from the reaction input stream. It is provided that at least one parameter which indicates an activity of the catalyst is determined and that an amount of the water in the reaction input stream is adjusted on the basis of the at least one determined parameter. A corresponding plant (100) likewise forms part of the subject matter of the invention.
    Type: Grant
    Filed: December 22, 2017
    Date of Patent: February 16, 2021
    Assignee: LINDE AKTIENGESELLSCHAFT
    Inventors: Mathieu Zellhuber, Martin Schubert, Florian Winkler, Andreas Meiswinkel