Patents by Inventor Rudiger Schutte
Rudiger Schutte 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).
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Patent number: 10337110Abstract: An apparatus for chlor-alkali electrolysis, comprising a cathode half-cell, an oxygen-consuming electrode arranged therein, a conduit for supply of gaseous oxygen to the cathode half-cell and a conduit for purging the cathode half-cell with inert gas, enables the flexible use of power by a method in which chlorine is produced in the apparatus by chlor-alkali electrolysis, wherein, when power supply is low, the oxygen-consuming electrode is supplied with gaseous oxygen, and oxygen is reduced at the oxygen-consuming electrode at a first cell voltage, and when power supply is high, the oxygen-consuming electrode is not supplied with any oxygen, and hydrogen is generated at the cathode at a second cell voltage which is higher than the first cell voltage.Type: GrantFiled: November 28, 2014Date of Patent: July 2, 2019Assignee: Covestro Deutschland AGInventors: Georg Markowz, Imad Moussallem, Rüdiger Schütte, Jürgen Erwin Lang
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Patent number: 10065865Abstract: The present invention relates to a process for preparing aqueous colloidal silica sols of high purity from silicate solutions, to aqueous colloidal silica sols with a specific profile of impurities, and to the use thereof. The invention further encompasses high-purity aqueous silica obtained as an intermediate in the course of the purification process, high-purity silicon dioxide obtainable by dewatering, and the use thereof.Type: GrantFiled: February 9, 2012Date of Patent: September 4, 2018Assignee: Evonik Degussa GmbHInventors: Claudia Fuhrmann, Dieter Oehm, Christian Panz, Florian Paulat, Rüdiger Schütte, Hartwig Rauleder, Georg Markowz, Jürgen Erwin Lang, Bodo Frings
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Patent number: 9530952Abstract: The invention relates to a method for producing a thermoelectric component or at least a semifinished version thereof, in which at least one thermoelectric active material in dry powder form is introduced into at least some of the holes of a perforated template. It addresses the problem of specifying a method which can be conducted in a particularly economically viable manner. The problem is solved by virtue of the active material remaining in the holes of the template, and the template filled with active material becoming a constituent of the thermoelectric component produced.Type: GrantFiled: March 26, 2013Date of Patent: December 27, 2016Assignee: Evonik Industries AGInventors: Patrik Stenner, Mareike Giesseler, Thorsten Schultz, Sascha Hoch, Jens Busse, Ann-Kathrin Herr, Rüdiger Schütte
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Publication number: 20160305030Abstract: An apparatus for chlor-alkali electrolysis, comprising a cathode half-cell, an oxygen-consuming electrode arranged therein, a conduit for supply of gaseous oxygen to the cathode half-cell and a conduit for purging the cathode half-cell with inert gas, enables the flexible use of power by a method in which chlorine is produced in the apparatus by chlor-alkali electrolysis, wherein, when power supply is low, the oxygen-consuming electrode is supplied with gaseous oxygen, and oxygen is reduced at the oxygen-consuming electrode at a first cell voltage, and when power supply is high, the oxygen-consuming electrode is not supplied with any oxygen, and hydrogen is generated at the cathode at a second cell voltage which is higher than the first cell voltage.Type: ApplicationFiled: November 28, 2014Publication date: October 20, 2016Applicant: Evonik Degussa GmbHInventors: GEORG MARKOWZ, IMAD MOUSSALLEM, RÜDIGER SCHÜTTE, JÜRGEN ERWIN LANG
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Publication number: 20160122194Abstract: The present invention relates to an integrated plant which comprises a plant for the electrothermic production of hydrogen cyanide and a separating device for separating hydrogen cyanide from the reaction mixture of the electrothermic production of hydrogen cyanide while obtaining at least one stream of gas containing hydrogen and/or hydrocarbons, the integrated plant having a device for introducing a gas into a natural gas network, to which device a stream of gas containing hydrogen and/or hydrocarbons is fed from the separating device via at least one conduit. This integrated plant affords flexible use of electricity by a method in which a stream of gas, containing hydrogen and/or hydrocarbons, is fed into a natural gas network from the separating device and the amount and/or the composition of the stream of gas fed into the natural gas network is changed in dependence on the electricity supply.Type: ApplicationFiled: April 30, 2014Publication date: May 5, 2016Inventors: Georg MARKOWZ, Jürgen Erwin Lang, Rüdiger Schütte
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Publication number: 20160108809Abstract: The present invention relates to an integrated plant which comprises a plant for the electrothermic production of hydrogen cyanide and a plant for electricity generation, the plant for the electrothermic production of hydrogen cyanide being connected to the plant for electricity generation via a conduit and electricity being generated in the plant for electricity generation from a product gas obtained in the plant for the electrothermic production of hydrogen cyanide. This integrated plant affords flexible use of electricity by a method in which, at times of a high electricity supply, the plant for the electrothermic production of hydrogen cyanide is operated and at least some of the hydrogen and/or gaseous hydrocarbons obtained in addition to hydrogen cyanide is stored and, at times of a low electricity supply, stored hydrogen and/or gaseous hydrocarbons are fed to the plant for electricity generation.Type: ApplicationFiled: April 30, 2014Publication date: April 21, 2016Applicant: Evonik Degussa GmbHInventors: Georg Markowz, Jürgen Erwin Lang, Rüdiger Schütte
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Publication number: 20150315936Abstract: The present invention relates to an integrated plant which comprises a plant for the electrothermic production of ethyne and a plant for electricity generation, the plant for the electrothermic production of ethyne being connected to the plant for electricity generation via a conduit and electricity being generated in the plant for electricity generation from a product gas obtained in the plant for the electrothermic production of ethyne. This integrated plant affords flexible use of electricity by a method in which, at times of a high electricity supply, the plant for the electrothermic production of ethyne is operated and at least some of the hydrogen and/or gaseous hydrocarbons obtained in addition to ethyne is stored and, at times of a low electricity supply, stored hydrogen and/or gaseous hydrocarbons are fed to the plant for electricity generation.Type: ApplicationFiled: November 8, 2013Publication date: November 5, 2015Inventors: Georg Markowz, Jürgen Erwin Lang, Rüdiger Schütte
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Publication number: 20150298093Abstract: The present invention relates to an integrated plant which comprises a plant for the electrothermic production of ethyne and a separating device for separating ethyne from the reaction mixture of the electrothermic production of ethyne while obtaining at least one stream of gas containing hydrogen and/or hydrocarbons, the integrated plant having a device for introducing a gas into a natural gas network, to which device a stream of gas containing hydrogen and/or hydrocarbons is fed from the separating device via at least one conduit. This integrated plant affords flexible use of electricity by a method in which a stream of gas, containing hydrogen and/or hydrocarbons, is fed into a natural gas network from the separating device and the amount and/or the composition of the stream of gas fed into the natural gas network is changed in dependence on the electricity supply.Type: ApplicationFiled: November 8, 2013Publication date: October 22, 2015Inventors: Georg Markowz, Jürgen Erwin Lang, Rüdiger Schütte
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Publication number: 20150236511Abstract: The present invention relates to a method for limiting the load of electricity transmission networks, comprising the generation of heat by operating an apparatus for the oxidation of a hydrocarbon-containing gas, in which alternatively a required provision of heat from the oxidation of the hydrocarbon-containing gas is substituted by the provision of heat from electrical energy with an apparatus for providing heat by using electrical power and the hydrocarbon-containing gas that is not oxidized is provided. A facility for carrying out the present method is also described.Type: ApplicationFiled: August 8, 2013Publication date: August 20, 2015Inventors: Jörg Strese, Gerd Hinüber, Christoph Butterweck, Georg Markowz, Jürgen Erwin Lang, Rüdiger Schütte
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Publication number: 20150218475Abstract: The present invention relates to a method for obtaining a hydrocarbon-containing gas, comprising the generation of heat by operating an apparatus for the oxidation of a hydrocarbon-containing gas, characterized in that alternatively a required provision of heat from the oxidation of the hydrocarbon-containing gas is substituted by the provision of heat from electrical energy with an apparatus for providing heat by using electrical power and the hydrocarbon-containing gas that is not oxidized is provided. A facility for carrying out the present method is also described.Type: ApplicationFiled: August 8, 2013Publication date: August 6, 2015Inventors: Jörg Strese, Gerd Hinüber, Christoph Butterweck, Georg Markowz, Jürgen Erwin Lang, Rüdiger Schütte
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Patent number: 9051526Abstract: A method for modification of a methane-containing gas stream, comprising the steps of: i) withdrawal of at least one substream from a methane-containing gas stream; ii) treatment of the substream with an electrically generated plasma, generating a modified gas composition which comprises a lower fraction of methane than the methane-containing gas stream used and iii) return of modified gas composition into the methane-containing gas stream. This method makes possible the storage of excess power in a natural gas line grid.Type: GrantFiled: June 18, 2012Date of Patent: June 9, 2015Assignee: Evonik Degussa GmbHInventors: Georg Markowz, Jürgen Erwin Lang, Rüdiger Schütte
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Publication number: 20140042359Abstract: The present invention relates to a process for preparing aqueous colloidal silica sols of high purity from silicate solutions, to aqueous colloidal silica sols with a specific profile of impurities, and to the use thereof. The invention further encompasses high-purity aqueous silica obtained as an intermediate in the course of the purification process, high-purity silicon dioxide obtainable by dewatering, and the use thereof.Type: ApplicationFiled: February 9, 2012Publication date: February 13, 2014Applicant: EVONIK DEGUSSA GMBHInventors: Claudia Fuhrmann, Dieter Oehm, Christian Panz, Florian Paulat, Rüdiger Schütte, Hartwig Rauleder, Georg Markowz, Jürgen Erwin Lang, Bodo Frings
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Publication number: 20140041548Abstract: The present invention relates to a process for producing SiO2 mouldings, comprising the preparation of a free-flowing aqueous SiO2 composition, solidification of the aqueous SiO2 composition and drying of the solidified SiO2 composition, wherein the aqueous SiO2 composition is a self-assembly composition. The present invention further relates to a moulding obtainable by the process according to the invention.Type: ApplicationFiled: February 14, 2012Publication date: February 13, 2014Applicant: EVONIK DEGUSSA GMBHInventors: Jürgen Erwin Lang, Maciej Olek, Hartwig Rauleder, Bodo Frings, Rüdiger Schütte, Georg Borchers, Georg Markowz, Florian Zschunke
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Publication number: 20120318661Abstract: A method for modification of a methane-containing gas stream, comprising the steps of: i) withdrawal of at least one substream from a methane-containing gas stream; ii) treatment of the substream with an electrically generated plasma, generating a modified gas composition which comprises a lower fraction of methane than the methane-containing gas stream used and iii) return of modified gas composition into the methane-containing gas stream. This method makes possible the storage of excess power in a natural gas line grid.Type: ApplicationFiled: June 18, 2012Publication date: December 20, 2012Applicant: Evonik Degussa GmbHInventors: Georg Markowz, Jürgen Erwin Lang, Rüdiger Schütte
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Publication number: 20080316858Abstract: The present invention relates to an oscillatory flow mixing reactor (OPM) oscillatory flow which is designed so that a flow with angular momentum is superposed by means effecting circular acceleration on the mixture flowing in with oscillation, with the result that good mixing of the individual phases of the mixture is achieved with the use of low shear forces. A use of the reactor according to the invention is also disclosed.Type: ApplicationFiled: February 13, 2006Publication date: December 25, 2008Applicant: DEGUSSA GMBHInventors: Heidi Gron, Rudiger Schutte, Karlheinz Drauz, Klaus Stadtmuller, James Ian Grayson
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Patent number: 7431906Abstract: A process for the selective catalytic reduction of nitrogen oxides with ammonia in a lean-mix exhaust gas from a combustion process operated with a first, lean-mix air/fuel mixture, wherein the ammonia required for selective reduction is obtained from a second, rich-mix air/fuel mixture which contains nitrogen monoxide by reduction of the nitrogen monoxide in a NH3 synthesis step to give ammonia with the formation of a product gas stream, and where the nitrogen monoxide-containing second air/fuel mixture is supplied to the NH3 synthesis step for reduction of the nitrogen monoxide to ammonia over a three-way converter catalyst and the ammonia formed is separated from the product gas stream and is stored in a storage medium for use as and when required for selective catalytic reduction.Type: GrantFiled: March 21, 2002Date of Patent: October 7, 2008Assignee: Degussa AGInventors: Jürgen Lang, Rüdiger Schütte, Markus Rudek
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Publication number: 20080121263Abstract: There are described thermoelectric elements that are manufactured by using a porous matrix or a porous substrate. The matrix consists of an electrically insulating material having sufficient thermal and chemical resistance as well as the lowest possible thermal conductivity, and is provided in predetermined regions with different thermoelectric materials, so that continuous conductors are formed in the matrix. These are electrically connected to one another to form thermocouples, which in turn are electrically interconnected with one another to form the thermoelectric element.Type: ApplicationFiled: November 21, 2007Publication date: May 29, 2008Applicant: EVONIK DEGUSSA GmbHInventors: Rudiger Schutte, Thorsten Schultz, Georg Markowz
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Patent number: 7332139Abstract: Reactions between at least two fluid reactants are performed in a reactor comprising wall elements (1), slot-shaped reaction spaces (3) and cavities (5) for conducting a fluid heat-carrier through. Depending on the process and throughput, a modular structural design is chosen wherein an arbitrary number of wall elements (1) are assembled to a right-parallelepipedal block (24), the reaction spaces (3) are formed between lateral surfaces (2) of right-parallelepipedal wall elements (1), the reactants are introduced into the reaction spaces (3) from edge regions of one side of the block (24) and are conducted through the reaction spaces (3) in parallel flows and the fluid heat-carrier is conducted through the tubular cavities (5) extending in the interior of the wall elements (1).Type: GrantFiled: August 22, 2001Date of Patent: February 19, 2008Assignee: Degussa AGInventors: Rüdiger Schütte, Torsten Balduf, Catrin Becker, Ina Hemme, Birgit Bertsch-Frank, Werner Wildner, Jürgen Rollmann, Georg Markowz
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Publication number: 20040146441Abstract: The invention relates to a method for the selective catalytic reduction of nitrogen oxides using ammonia in the poor exhaust gas from a combustion process which is carried out on a first poor air/fuel mixture. The ammonia necessary for the selective reduction is obtained from a second, rich air/fuel mixture containing nitrogen monoxide, by reducing the nitrogen monoxide to ammonia, in one NH3-synthesis step, forming a product gas flow. The ammonia formed is separated from the product gas flow and is stored in a storage medium to be used if needed in the selective catalytic reduction.Type: ApplicationFiled: November 17, 2003Publication date: July 29, 2004Inventors: Jurgen Lang, Rudiger Schutte, Markus Rudek
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Publication number: 20040136890Abstract: The invention relates to a method for carrying out the selective catalytic reduction of nitrogen oxides with ammonia in the lean exhaust gas of a combustion process executed using a first lean air/fuel mixture. According to the invention, the ammonia required for the selective reduction is obtained from a second rich air/fuel mixture, which contains nitrogen monoxide, by reducing the nitrogen monoxide in a NH3 synthesis stage to ammonia while forming a product gas stream. The ammonia produced thereby is separated out from the product gas stream and is stored in a storage medium for the requirement-orientated use during the selective catalytic reduction.Type: ApplicationFiled: November 17, 2003Publication date: July 15, 2004Inventors: Jurgen Lang, Rudiger Schutte, Markus Rudek, Jurgen Gieshoff, Bernd Engler